FOMC Service Report

16S rRNA Gene V1V3 Amplicon Sequencing

Version V1.52

Version History

The Forsyth Institute, Cambridge, MA, USA
September 16, 2026

Project ID: FOMC33865


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I. Project Summary

Project FOMC33865 services include NGS sequencing of the V1V3 region of the 16S rRNA gene amplicons from the samples. First and foremost, please download this report, as well as the sequence raw data from the download links provided below. These links will expire after 60 days. We cannot guarantee the availability of your data after 60 days.

Full Bioinformatics analysis service was requested. We provide many analyses, starting from the raw sequence quality and noise filtering, pair reads merging, as well as chimera filtering for the sequences, using the DADA2 denosing algorithm and pipeline.

We also provide many downstream analyses such as taxonomy assignment, alpha and beta diversity analyses, and differential abundance analysis.

For taxonomy assignment, most informative would be the taxonomy barplots. We provide an interactive barplots to show the relative abundance of microbes at different taxonomy levels (from Phylum to species) that you can choose.

If you specify which groups of samples you want to compare for differential abundance, we provide both ANCOM and LEfSe differential abundance analysis.

 

II. Workflow Checklist

☑1.Sample Received
☑2.Sample Quality Evaluated
☑3.Sample Prepared for Sequencing
☑4.Next-Gen Sequencing
☑5.Sequence Quality Check
☑6.Absolute Abundance
☑7.Report and Raw Sequence Data Available for Download
☑8.Bioinformatics Analysis - Reads Processing (DADA2 Quality Trimming, Denoising, Paired Reads Merging)
☑9.Bioinformatics Analysis - Reads Taxonomy Assignment
☑10.Bioinformatics Analysis - Alpha Diversity Analysis
☑11.Bioinformatics Analysis - Beta Diversity Analysis
☑12.Bioinformatics Analysis - Differential Abundance Analysis
☑13.Bioinformatics Analysis - Heatmap Profile
☑14.Bioinformatics Analysis - Network Association
 

III. NGS Sequencing

The samples were processed and analyzed with the ZymoBIOMICS® Service: Targeted Metagenomic Sequencing (Zymo Research, Irvine, CA).

DNA Extraction: If DNA extraction was performed, the following DNA extraction kit was used according to the manufacturer’s instructions:

☐ZymoBIOMICS®-96 MagBead DNA Kit (Zymo Research, Irvine, CA)
☑N/A (DNA Extraction Not Performed)
Elution Volume: 50µL
Additional Notes: NA

Targeted Library Preparation: The DNA samples were prepared for targeted sequencing with the Quick-16S™ NGS Library Prep Kit (Zymo Research, Irvine, CA). These primers were custom designed by Zymo Research to provide the best coverage of the 16S gene while maintaining high sensitivity. The primer sets used in this project are marked below:

☐Quick-16S™ Primer Set V1-V2 (Zymo Research, Irvine, CA)
☑Quick-16S™ Primer Set V1-V3 (Zymo Research, Irvine, CA)
☐Quick-16S™ Primer Set V3-V4 (Zymo Research, Irvine, CA)
☐Quick-16S™ Primer Set V4 (Zymo Research, Irvine, CA)
☐Quick-16S™ Primer Set V6-V8 (Zymo Research, Irvine, CA)
Additional Notes: NA

The sequencing library was prepared using an innovative library preparation process in which PCR reactions were performed in real-time PCR machines to control cycles and therefore limit PCR chimera formation. The final PCR products were quantified with qPCR fluorescence readings and pooled together based on equal molarity. The final pooled library was cleaned up with the Select-a-Size DNA Clean & Concentrator™ (Zymo Research, Irvine, CA), then quantified with TapeStation® (Agilent Technologies, Santa Clara, CA) and Qubit® (Thermo Fisher Scientific, Waltham, WA).

Control Samples: The ZymoBIOMICS® Microbial Community Standard (Zymo Research, Irvine, CA) was used as a positive control for each DNA extraction, if performed. The ZymoBIOMICS® Microbial Community DNA Standard (Zymo Research, Irvine, CA) was used as a positive control for each targeted library preparation. Negative controls (i.e. blank extraction control, blank library preparation control) were included to assess the level of bioburden carried by the wet-lab process.

Sequencing: The final library was sequenced on Illumina® NextSeq 2000™ with a p1 (Illumina, Sand Diego, CA) reagent kit (600 cycles). The sequencing was performed with 25% PhiX spike-in.

Absolute Abundance Quantification*: A quantitative real-time PCR was set up with a standard curve. The standard curve was made with plasmid DNA containing one copy of the 16S gene and one copy of the fungal ITS2 region prepared in 10-fold serial dilutions. The primers used were the same as those used in Targeted Library Preparation. The equation generated by the plasmid DNA standard curve was used to calculate the number of gene copies in the reaction for each sample. The PCR input volume (2 µl) was used to calculate the number of gene copies per microliter in each DNA sample.
The number of genome copies per microliter DNA sample was calculated by dividing the gene copy number by an assumed number of gene copies per genome. The value used for 16S copies per genome is 4. The value used for ITS copies per genome is 200. The amount of DNA per microliter DNA sample was calculated using an assumed genome size of 4.64 x 106 bp, the genome size of Escherichia coli, for 16S samples, or an assumed genome size of 1.20 x 107 bp, the genome size of Saccharomyces cerevisiae, for ITS samples. This calculation is shown below:

Calculated Total DNA = Calculated Total Genome Copies × Assumed Genome Size (4.64 × 106 bp) ×
Average Molecular Weight of a DNA bp (660 g/mole/bp) ÷ Avogadro’s Number (6.022 x 1023/mole)


* Absolute Abundance Quantification is only available for 16S and ITS analyses.

The absolute abundance standard curve data can be viewed in Excel here:

The absolute abundance standard curve is shown below:

Absolute Abundance Standard Curve

 

IV. Complete Report Download

The complete report of your project, including all links in this report, can be downloaded by clicking the link provided below. The downloaded file is a compressed ZIP file and once unzipped, open the file “REPORT.html” (may only shown as "REPORT" in your computer) by double clicking it. Your default web browser will open it and you will see the exact content of this report.

Please download and save the file to your computer storage device. The download link will expire after 60 days upon your receiving of this report.

Complete report download link:

To view the report, please follow the following steps:

1.Download the .zip file from the report link above.
2.Extract all the contents of the downloaded .zip file to your desktop.
3.Open the extracted folder and find the "REPORT.html" (may shown as only "REPORT").
4.Open (double-clicking) the REPORT.html file. Your default browser will open the top age of the complete report. Within the report, there are links to view all the analyses performed for the project.

 

V. Raw Sequence Data Download

The raw NGS sequence data is available for download with the link provided below. The data is a compressed ZIP file and can be unzipped to individual sequence files. Since this is a Pac-Bio full-length (V1V9) 16S rRNA amplicon sequencing, raw sequences are available for download in a single compressed zip file in the download link below. After unzipping, you will find individual sequence files for each of your samples with the file extension “*.fastq.gz”. The files are in FASTQ format and are compressed. FASTQ format is a text-based data format for storing both a biological sequence and its corresponding quality scores. Most sequence analysis software will be able to open them. The Sample IDs associated with the fastq files are listed in the table below:

Sample IDOriginal Sample IDRead 1 File NameRead 2 File Name
F33865.S10original sample ID herezr33865_10V1V3_R1.fastq.gzzr33865_10V1V3_R2.fastq.gz
F33865.S11original sample ID herezr33865_11V1V3_R1.fastq.gzzr33865_11V1V3_R2.fastq.gz
F33865.S12original sample ID herezr33865_12V1V3_R1.fastq.gzzr33865_12V1V3_R2.fastq.gz
F33865.S13original sample ID herezr33865_13V1V3_R1.fastq.gzzr33865_13V1V3_R2.fastq.gz
F33865.S14original sample ID herezr33865_14V1V3_R1.fastq.gzzr33865_14V1V3_R2.fastq.gz
F33865.S15original sample ID herezr33865_15V1V3_R1.fastq.gzzr33865_15V1V3_R2.fastq.gz
F33865.S16original sample ID herezr33865_16V1V3_R1.fastq.gzzr33865_16V1V3_R2.fastq.gz
F33865.S17original sample ID herezr33865_17V1V3_R1.fastq.gzzr33865_17V1V3_R2.fastq.gz
F33865.S18original sample ID herezr33865_18V1V3_R1.fastq.gzzr33865_18V1V3_R2.fastq.gz
F33865.S19original sample ID herezr33865_19V1V3_R1.fastq.gzzr33865_19V1V3_R2.fastq.gz
F33865.S01original sample ID herezr33865_1V1V3_R1.fastq.gzzr33865_1V1V3_R2.fastq.gz
F33865.S20original sample ID herezr33865_20V1V3_R1.fastq.gzzr33865_20V1V3_R2.fastq.gz
F33865.S21original sample ID herezr33865_21V1V3_R1.fastq.gzzr33865_21V1V3_R2.fastq.gz
F33865.S22original sample ID herezr33865_22V1V3_R1.fastq.gzzr33865_22V1V3_R2.fastq.gz
F33865.S23original sample ID herezr33865_23V1V3_R1.fastq.gzzr33865_23V1V3_R2.fastq.gz
F33865.S24original sample ID herezr33865_24V1V3_R1.fastq.gzzr33865_24V1V3_R2.fastq.gz
F33865.S25original sample ID herezr33865_25V1V3_R1.fastq.gzzr33865_25V1V3_R2.fastq.gz
F33865.S26original sample ID herezr33865_26V1V3_R1.fastq.gzzr33865_26V1V3_R2.fastq.gz
F33865.S27original sample ID herezr33865_27V1V3_R1.fastq.gzzr33865_27V1V3_R2.fastq.gz
F33865.S28original sample ID herezr33865_28V1V3_R1.fastq.gzzr33865_28V1V3_R2.fastq.gz
F33865.S29original sample ID herezr33865_29V1V3_R1.fastq.gzzr33865_29V1V3_R2.fastq.gz
F33865.S02original sample ID herezr33865_2V1V3_R1.fastq.gzzr33865_2V1V3_R2.fastq.gz
F33865.S30original sample ID herezr33865_30V1V3_R1.fastq.gzzr33865_30V1V3_R2.fastq.gz
F33865.S31original sample ID herezr33865_31V1V3_R1.fastq.gzzr33865_31V1V3_R2.fastq.gz
F33865.S32original sample ID herezr33865_32V1V3_R1.fastq.gzzr33865_32V1V3_R2.fastq.gz
F33865.S33original sample ID herezr33865_33V1V3_R1.fastq.gzzr33865_33V1V3_R2.fastq.gz
F33865.S34original sample ID herezr33865_34V1V3_R1.fastq.gzzr33865_34V1V3_R2.fastq.gz
F33865.S35original sample ID herezr33865_35V1V3_R1.fastq.gzzr33865_35V1V3_R2.fastq.gz
F33865.S36original sample ID herezr33865_36V1V3_R1.fastq.gzzr33865_36V1V3_R2.fastq.gz
F33865.S37original sample ID herezr33865_37V1V3_R1.fastq.gzzr33865_37V1V3_R2.fastq.gz
F33865.S38original sample ID herezr33865_38V1V3_R1.fastq.gzzr33865_38V1V3_R2.fastq.gz
F33865.S39original sample ID herezr33865_39V1V3_R1.fastq.gzzr33865_39V1V3_R2.fastq.gz
F33865.S03original sample ID herezr33865_3V1V3_R1.fastq.gzzr33865_3V1V3_R2.fastq.gz
F33865.S40original sample ID herezr33865_40V1V3_R1.fastq.gzzr33865_40V1V3_R2.fastq.gz
F33865.S41original sample ID herezr33865_41V1V3_R1.fastq.gzzr33865_41V1V3_R2.fastq.gz
F33865.S42original sample ID herezr33865_42V1V3_R1.fastq.gzzr33865_42V1V3_R2.fastq.gz
F33865.S43original sample ID herezr33865_43V1V3_R1.fastq.gzzr33865_43V1V3_R2.fastq.gz
F33865.S44original sample ID herezr33865_44V1V3_R1.fastq.gzzr33865_44V1V3_R2.fastq.gz
F33865.S45original sample ID herezr33865_45V1V3_R1.fastq.gzzr33865_45V1V3_R2.fastq.gz
F33865.S46original sample ID herezr33865_46V1V3_R1.fastq.gzzr33865_46V1V3_R2.fastq.gz
F33865.S47original sample ID herezr33865_47V1V3_R1.fastq.gzzr33865_47V1V3_R2.fastq.gz
F33865.S48original sample ID herezr33865_48V1V3_R1.fastq.gzzr33865_48V1V3_R2.fastq.gz
F33865.S49original sample ID herezr33865_49V1V3_R1.fastq.gzzr33865_49V1V3_R2.fastq.gz
F33865.S04original sample ID herezr33865_4V1V3_R1.fastq.gzzr33865_4V1V3_R2.fastq.gz
F33865.S50original sample ID herezr33865_50V1V3_R1.fastq.gzzr33865_50V1V3_R2.fastq.gz
F33865.S51original sample ID herezr33865_51V1V3_R1.fastq.gzzr33865_51V1V3_R2.fastq.gz
F33865.S52original sample ID herezr33865_52V1V3_R1.fastq.gzzr33865_52V1V3_R2.fastq.gz
F33865.S53original sample ID herezr33865_53V1V3_R1.fastq.gzzr33865_53V1V3_R2.fastq.gz
F33865.S54original sample ID herezr33865_54V1V3_R1.fastq.gzzr33865_54V1V3_R2.fastq.gz
F33865.S55original sample ID herezr33865_55V1V3_R1.fastq.gzzr33865_55V1V3_R2.fastq.gz
F33865.S56original sample ID herezr33865_56V1V3_R1.fastq.gzzr33865_56V1V3_R2.fastq.gz
F33865.S57original sample ID herezr33865_57V1V3_R1.fastq.gzzr33865_57V1V3_R2.fastq.gz
F33865.S58original sample ID herezr33865_58V1V3_R1.fastq.gzzr33865_58V1V3_R2.fastq.gz
F33865.S59original sample ID herezr33865_59V1V3_R1.fastq.gzzr33865_59V1V3_R2.fastq.gz
F33865.S05original sample ID herezr33865_5V1V3_R1.fastq.gzzr33865_5V1V3_R2.fastq.gz
F33865.S60original sample ID herezr33865_60V1V3_R1.fastq.gzzr33865_60V1V3_R2.fastq.gz
F33865.S61original sample ID herezr33865_61V1V3_R1.fastq.gzzr33865_61V1V3_R2.fastq.gz
F33865.S62original sample ID herezr33865_62V1V3_R1.fastq.gzzr33865_62V1V3_R2.fastq.gz
F33865.S63original sample ID herezr33865_63V1V3_R1.fastq.gzzr33865_63V1V3_R2.fastq.gz
F33865.S64original sample ID herezr33865_64V1V3_R1.fastq.gzzr33865_64V1V3_R2.fastq.gz
F33865.S65original sample ID herezr33865_65V1V3_R1.fastq.gzzr33865_65V1V3_R2.fastq.gz
F33865.S66original sample ID herezr33865_66V1V3_R1.fastq.gzzr33865_66V1V3_R2.fastq.gz
F33865.S67original sample ID herezr33865_67V1V3_R1.fastq.gzzr33865_67V1V3_R2.fastq.gz
F33865.S06original sample ID herezr33865_6V1V3_R1.fastq.gzzr33865_6V1V3_R2.fastq.gz
F33865.S07original sample ID herezr33865_7V1V3_R1.fastq.gzzr33865_7V1V3_R2.fastq.gz
F33865.S08original sample ID herezr33865_8V1V3_R1.fastq.gzzr33865_8V1V3_R2.fastq.gz
F33865.S09original sample ID herezr33865_9V1V3_R1.fastq.gzzr33865_9V1V3_R2.fastq.gz

Please download and save the file to your computer storage device. The download link will expire after 60 days upon your receiving of this report.

Raw sequence data download link:

 

VI. Analysis - DADA2 Read Processing

What is DADA2?

DADA2 is a software package that models and corrects Illumina-sequenced amplicon errors [1]. DADA2 infers sample sequences exactly, without coarse-graining into OTUs, and resolves differences of as little as one nucleotide. DADA2 identified more real variants and output fewer spurious sequences than other methods.

DADA2’s advantage is that it uses more of the data. The DADA2 error model incorporates quality information, which is ignored by all other methods after filtering. The DADA2 error model incorporates quantitative abundances, whereas most other methods use abundance ranks if they use abundance at all. The DADA2 error model identifies the differences between sequences, eg. A->C, whereas other methods merely count the mismatches. DADA2 can parameterize its error model from the data itself, rather than relying on previous datasets that may or may not reflect the PCR and sequencing protocols used in your study.

DADA2 Software Package is available as an R package at : https://benjjneb.github.io/dada2/index.html

References

  1. Callahan BJ, McMurdie PJ, Rosen MJ, Han AW, Johnson AJ, Holmes SP. DADA2: High-resolution sample inference from Illumina amplicon data. Nat Methods. 2016 Jul;13(7):581-3. doi: 10.1038/nmeth.3869. Epub 2016 May 23. PMID: 27214047; PMCID: PMC4927377.

Analysis Procedures:

DADA2 pipeline includes several tools for read quality control, including quality filtering, trimming, denoising, pair merging and chimera filtering. Below are the major processing steps of DADA2:

Step 1. Read trimming based on sequence quality The quality of NGS Illumina sequences often decreases toward the end of the reads. DADA2 allows to trim off the poor quality read ends in order to improve the error model building and pair mergicing performance.

Step 2. Learn the Error Rates The DADA2 algorithm makes use of a parametric error model (err) and every amplicon dataset has a different set of error rates. The learnErrors method learns this error model from the data, by alternating estimation of the error rates and inference of sample composition until they converge on a jointly consistent solution. As in many machine-learning problems, the algorithm must begin with an initial guess, for which the maximum possible error rates in this data are used (the error rates if only the most abundant sequence is correct and all the rest are errors).

Step 3. Infer amplicon sequence variants (ASVs) based on the error model built in previous step. This step is also called sequence "denoising". The outcome of this step is a list of ASVs that are the equivalent of oligonucleotides.

Step 4. Merge paired reads. If the sequencing products are read pairs, DADA2 will merge the R1 and R2 ASVs into single sequences. Merging is performed by aligning the denoised forward reads with the reverse-complement of the corresponding denoised reverse reads, and then constructing the merged “contig” sequences. By default, merged sequences are only output if the forward and reverse reads overlap by at least 12 bases, and are identical to each other in the overlap region (but these conditions can be changed via function arguments).

Step 5. Remove chimera. The core dada method corrects substitution and indel errors, but chimeras remain. Fortunately, the accuracy of sequence variants after denoising makes identifying chimeric ASVs simpler than when dealing with fuzzy OTUs. Chimeric sequences are identified if they can be exactly reconstructed by combining a left-segment and a right-segment from two more abundant “parent” sequences. The frequency of chimeric sequences varies substantially from dataset to dataset, and depends on on factors including experimental procedures and sample complexity.

Results

1. Read Quality Plots NGS sequence analaysis starts with visualizing the quality of the sequencing. Below are the quality plots of the first sample for the R1 and R2 reads separately. In gray-scale is a heat map of the frequency of each quality score at each base position. The mean quality score at each position is shown by the green line, and the quartiles of the quality score distribution by the orange lines. The forward reads are usually of better quality. It is a common practice to trim the last few nucleotides to avoid less well-controlled errors that can arise there. The trimming affects the downstream steps including error model building, merging and chimera calling. FOMC uses an empirical approach to test many combinations of different trim length in order to achieve best final amplicon sequence variants (ASVs), see the next section “Optimal trim length for ASVs”.

Quality plots for all samples:

2. Optimal trim length for ASVs The final number of merged and chimera-filtered ASVs depends on the quality filtering (hence trimming) in the very beginning of the DADA2 pipeline. In order to achieve highest number of ASVs, an empirical approach was used -

  1. Create a random subset of each sample consisting of 5,000 R1 and 5,000 R2 (to reduce computation time)
  2. Trim 10 bases at a time from the ends of both R1 and R2 up to 50 bases
  3. For each combination of trimmed length (e.g., 300x300, 300x290, 290x290 etc), the trimmed reads are subject to the entire DADA2 pipeline for chimera-filtered merged ASVs
  4. The combination with highest percentage of the input reads becoming final ASVs is selected for the complete set of data

Below is the result of such operation, showing ASV percentages of total reads for all trimming combinations (1st Column = R1 lengths in bases; 1st Row = R2 lengths in bases):

R1/R2301291281271261251
30177.83%78.44%78.47%78.74%78.88%72.37%
29177.89%78.55%78.58%78.58%71.89%40.85%
28178.10%78.68%78.50%71.53%40.77%21.06%
27178.54%78.87%71.83%41.16%21.10%17.15%
26178.50%71.95%41.13%21.08%17.25%11.23%
25171.70%41.93%21.64%17.37%11.45%3.65%

Based on the above result, the trim length combination of R1 = 301 bases and R2 = 261 bases (highlighted red above), was chosen for generating final ASVs for all sequences. This combination generated highest number of merged non-chimeric ASVs and was used for downstream analyses, if requested.

3. Error plots from learning the error rates After DADA2 building the error model for the set of data, it is always worthwhile, as a sanity check if nothing else, to visualize the estimated error rates. The error rates for each possible transition (A→C, A→G, …) are shown below. Points are the observed error rates for each consensus quality score. The black line shows the estimated error rates after convergence of the machine-learning algorithm. The red line shows the error rates expected under the nominal definition of the Q-score. The ideal result would be the estimated error rates (black line) are a good fit to the observed rates (points), and the error rates drop with increased quality as expected.

Forward Read R1 Error Plot


Reverse Read R2 Error Plot

The PDF version of these plots are available here:

 

4. DADA2 Result Summary The table below shows the summary of the DADA2 analysis, tracking paired read counts of each samples for all the steps during DADA2 denoising process - including end-trimming (filtered), denoising (denoisedF, denoisedF), pair merging (merged) and chimera removal (nonchim).

Sample IDF33865.S01F33865.S02F33865.S03F33865.S04F33865.S05F33865.S06F33865.S07F33865.S08F33865.S09F33865.S10F33865.S11F33865.S12F33865.S13F33865.S14F33865.S15F33865.S16F33865.S17F33865.S18F33865.S19F33865.S20F33865.S21F33865.S22F33865.S23F33865.S24F33865.S25F33865.S26F33865.S27F33865.S28F33865.S29F33865.S30F33865.S31F33865.S32F33865.S33F33865.S34F33865.S35F33865.S36F33865.S37F33865.S38F33865.S39F33865.S40F33865.S41F33865.S42F33865.S43F33865.S44F33865.S45F33865.S46F33865.S47F33865.S48F33865.S49F33865.S50F33865.S51F33865.S52F33865.S53F33865.S54F33865.S55F33865.S56F33865.S57F33865.S58F33865.S59F33865.S60F33865.S61F33865.S62F33865.S63F33865.S64F33865.S65F33865.S66F33865.S67Row SumPercentage
input59,764153,72480,36976,42786,858115,78094,231135,98980,41984,17184,48467,01398,97985,560116,16799,40268,51475,279114,06096,65230,74578,833153,816103,30787,72171,444102,62191,870120,74188,668177,408103,55984,53480,75479,37581,678110,49593,549100,41378,78273,72992,795114,875158,177121,24181,292107,47897,97887,07368,99794,16297,206102,012137,528111,802125,61477,54262,95843098,858129,50388,73666,35592,18984,68271,46997,5836,336,419100.00%
filtered59,764153,72480,36976,42786,858115,78094,230135,98980,41984,17184,48367,01398,97985,560116,16799,40268,51475,279114,06096,65230,74578,833153,816103,30787,72171,444102,62191,870120,74088,668177,408103,55984,53480,75479,37581,678110,49593,549100,41378,78273,72992,795114,874158,177121,24181,292107,47897,97887,07368,99794,16297,206102,012137,528111,802125,61477,54262,95843098,858129,50388,73666,35592,18884,68271,46997,5836,336,414100.00%
denoisedF59,201153,25679,53375,74486,040114,08393,137134,31079,52183,29584,02066,38198,04084,718115,10998,80067,81674,402113,27395,93130,39677,924151,426102,48486,67570,685101,67890,916119,22587,738176,371102,17383,81180,21478,74880,894109,52792,64499,60677,81373,09291,959113,557157,371120,35680,453106,44496,90186,31868,27193,34796,452101,266136,679110,910124,26276,92762,25540397,994128,11487,48165,57191,18484,02370,57196,8556,276,57499.06%
denoisedR58,997153,16979,29775,24185,722113,78593,086134,31779,58083,20483,68266,41597,74384,579114,75698,77067,67374,050113,24595,75530,18277,892151,923102,44686,11070,667101,76690,945119,27487,755176,475101,63283,49580,32378,48880,558109,27292,24099,23877,62972,88392,139113,332157,338120,41080,260106,54396,84085,99168,09992,78596,303101,459136,532110,648123,87876,71562,01241597,946127,43587,12665,52791,10683,87270,12196,9046,265,99598.89%
merged55,762150,99473,89570,01978,913103,46087,069125,55973,84078,16179,48162,55490,86879,878106,24494,63462,83566,296108,18791,32527,98973,069144,40596,76774,80465,48395,86184,461111,34080,783169,05993,14977,80677,44873,67774,953102,78286,15393,27071,76769,46388,775105,194154,308115,05274,496100,35190,06479,89263,73387,17392,02897,487130,899104,976115,33671,33457,501092,608118,89779,62361,01585,43580,17363,72392,9525,887,48892.92%
nonchim50,237143,03167,16763,18668,55590,80674,398114,94964,95569,55569,92754,04978,91968,44993,32882,75748,61059,01495,74977,40224,06960,170127,83784,70763,98154,64381,43468,76596,65759,810130,16983,05465,93167,50962,24065,78682,17277,58579,55862,34561,80876,80194,898141,54589,77664,90486,13475,96871,39757,28974,61378,29379,071113,78192,170105,16261,20049,996080,335107,19071,62353,70374,85670,09556,47676,8595,099,40880.48%

This table can be downloaded as an Excel table below:

 

5. DADA2 Amplicon Sequence Variants (ASVs). A total of 9770 unique merged and chimera-free ASV sequences were identified, and their corresponding read counts for each sample are available in the "ASV Read Count Table" with rows for the ASV sequences and columns for sample. This read count table can be used for microbial profile comparison among different samples and the sequences provided in the table can be used to taxonomy assignment.

 

The table can be downloaded from this link:

 
 

Sample Meta Information

Download Sample Meta Information
#SampleIDSample_NameGroup
F33865.S0168270374Random_Group1
F33865.S0285067603Random_Group1
F33865.S0389369980Random_Group1
F33865.S0496516099Random_Group1
F33865.S05669630672Random_Group1
F33865.S0695251493Random_Group1
F33865.S0790477202Random_Group1
F33865.S0806242025_8Internal_Standard
F33865.S0968489838Random_Group1
F33865.S1072302870Random_Group1
F33865.S1196762130Random_Group1
F33865.S1267770982Random_Group1
F33865.S1378055940Random_Group1
F33865.S1490188903Random_Group1
F33865.S1567772929Random_Group1
F33865.S1684762880Random_Group1
F33865.S1781593498Random_Group1
F33865.S1894403459Random_Group1
F33865.S1996007880Random_Group1
F33865.S2095978050Random_Group1
F33865.S2172928930Repeat
F33865.S2278964455Random_Group1
F33865.S2369013729Random_Group1
F33865.S2479703631Random_Group1
F33865.S2595676103Random_Group1
F33865.S2684077866Random_Group1
F33865.S2784491493Random_Group1
F33865.S2881587394Random_Group1
F33865.S2968639371Random_Group1
F33865.S3094679074Random_Group1
F33865.S3191172862Random_Group1
F33865.S3206242025_9Internal_Standard
F33865.S3384548782Random_Group2
F33865.S3487633075Random_Group2
F33865.S3570658860Random_Group2
F33865.S3697229143Random_Group2
F33865.S3774191530Repeat
F33865.S3892157699Random_Group2
F33865.S3987188423Random_Group2
F33865.S4094687354Random_Group2
F33865.S4166166585Random_Group2
F33865.S4281562002Random_Group2
F33865.S4393167765Random_Group2
F33865.S4478400795Random_Group2
F33865.S4566229110Random_Group2
F33865.S4683954431Random_Group2
F33865.S4797741422Random_Group2
F33865.S4868554804Random_Group2
F33865.S4983420242Random_Group2
F33865.S5094751597Random_Group2
F33865.S5177957541Repeat
F33865.S5280607593Random_Group2
F33865.S5396447773Random_Group2
F33865.S5496795551Random_Group2
F33865.S5594791226Random_Group2
F33865.S5606242025_10Internal_Standard
F33865.S5789854359Random_Group2
F33865.S5887245097Random_Group2
F33865.S5982262829Random_Group2
F33865.S6092933068Random_Group2
F33865.S6160656167Random_Group2
F33865.S6292422449Random_Group2
F33865.S6396226144Random_Group2
F33865.S6493832420Random_Group2
F33865.S6568575411Random_Group2
F33865.S6692586052Random_Group2
F33865.S6785943583Random_Group2
 
 

ASV Read Counts by Samples

#Sample IDRead Count
F33865.S2124,069
F33865.S1748,610
F33865.S5849,996
F33865.S0150,237
F33865.S6353,703
F33865.S1254,049
F33865.S2654,643
F33865.S6656,476
F33865.S5057,289
F33865.S1859,014
F33865.S3059,810
F33865.S2260,170
F33865.S5761,200
F33865.S4161,808
F33865.S3562,240
F33865.S4062,345
F33865.S0463,186
F33865.S2563,981
F33865.S4664,904
F33865.S0964,955
F33865.S3665,786
F33865.S3365,931
F33865.S0367,167
F33865.S3467,509
F33865.S1468,449
F33865.S0568,555
F33865.S2868,765
F33865.S1069,555
F33865.S1169,927
F33865.S6570,095
F33865.S4971,397
F33865.S6271,623
F33865.S0774,398
F33865.S5174,613
F33865.S6474,856
F33865.S4875,968
F33865.S4276,801
F33865.S6776,859
F33865.S2077,402
F33865.S3877,585
F33865.S5278,293
F33865.S1378,919
F33865.S5379,071
F33865.S3979,558
F33865.S6080,335
F33865.S2781,434
F33865.S3782,172
F33865.S1682,757
F33865.S3283,054
F33865.S2484,707
F33865.S4786,134
F33865.S4589,776
F33865.S0690,806
F33865.S5592,170
F33865.S1593,328
F33865.S4394,898
F33865.S1995,749
F33865.S2996,657
F33865.S56105,162
F33865.S61107,190
F33865.S54113,781
F33865.S08114,949
F33865.S23127,837
F33865.S31130,169
F33865.S44141,545
F33865.S02143,031
 
 
 

VII. Analysis - Read Taxonomy Assignment

Read Taxonomy Assignment - Methods

 

The close-reference taxonomy assignment of the ASV sequences using BLASTN is based on the algorithm published by Al-Hebshi et. al. (2015)[2].

The species-level, open-reference 16S rRNA NGS reads taxonomy assignment pipeline

Version 20210310a
 
 

1. Raw sequences reads in FASTA format were BLASTN-searched against a combined set of 16S rRNA reference sequences - the FOMC 16S rRNA Reference Sequences version 20221029 (https://microbiome.forsyth.org/ftp/refseq/). This set consists of the HOMD (version 15.22 http://www.homd.org/index.php?name=seqDownload&file&type=R ), Mouse Oral Microbiome Database (MOMD version 5.1 https://momd.org/ftp/16S_rRNA_refseq/MOMD_16S_rRNA_RefSeq/V5.1/), and the NCBI 16S rRNA reference sequence set (https://ftp.ncbi.nlm.nih.gov/blast/db/16S_ribosomal_RNA.tar.gz). These sequences were screened and combined to remove short sequences (<1000nt), chimera, duplicated and sub-sequences, as well as sequences with poor taxonomy annotation (e.g., without species information). This process resulted in 1,015 full-length 16S rRNA sequences from HOMD V15.22, 356 from MOMD V5.1, and 22,126 from NCBI, a total of 23,497 sequences. Altogether these sequence represent a total of 17,035 oral and non-oral microbial species.

The NCBI BLASTN version 2.7.1+ (Zhang et al, 2000) [3] was used with the default parameters. Reads with ≥ 98% sequence identity to the matched reference and ≥ 90% alignment length (i.e., ≥ 90% of the read length that was aligned to the reference and was used to calculate the sequence percent identity) were classified based on the taxonomy of the reference sequence with highest sequence identity. If a read matched with reference sequences representing more than one species with equal percent identity and alignment length, it was subject to chimera checking with USEARCH program version v8.1.1861 (Edgar 2010). Non-chimeric reads with multi-species best hits were considered valid and were assigned with a unique species notation (e.g., spp) denoting unresolvable multiple species.

2. Unassigned reads (i.e., reads with < 98% identity or < 90% alignment length) were pooled together and reads < 200 bases were removed. The remaining reads were subject to the de novo operational taxonomy unit (OTU) calling and chimera checking using the USEARCH program version v8.1.1861 (Edgar 2010)[4]. The de novo OTU calling and chimera checking was done using 98% as the sequence identity cutoff, i.e., the species-level OTU. The output of this step produced species-level de novo clustered OTUs with 98% identity. Representative reads from each of the OTUs/species were then BLASTN-searched against the same reference sequence set again to determine the closest species for these potential novel species. These potential novel species were pooled together with the reads that were signed to specie-level in the previous step, for down-stream analyses.

Reference:

  1. Al-Hebshi NN, Nasher AT, Idris AM, Chen T. Robust species taxonomy assignment algorithm for 16S rRNA NGS reads: application to oral carcinoma samples. J Oral Microbiol. 2015 Sep 29;7:28934. doi: 10.3402/jom.v7.28934. PMID: 26426306; PMCID: PMC4590409.
  2. Zhang Z, Schwartz S, Wagner L, Miller W. A greedy algorithm for aligning DNA sequences. J Comput Biol. 2000 Feb-Apr;7(1-2):203-14. doi: 10.1089/10665270050081478. PMID: 10890397.
  3. Edgar RC. Search and clustering orders of magnitude faster than BLAST. Bioinformatics. 2010 Oct 1;26(19):2460-1. doi: 10.1093/bioinformatics/btq461. Epub 2010 Aug 12. PubMed PMID: 20709691.
  4. 3. Designations used in the taxonomy:

    	1) Taxonomy levels are indicated by these prefixes:
    	
    	   k__: domain/kingdom
    	   p__: phylum
    	   c__: class
    	   o__: order
    	   f__: family
    	   g__: genus  
    	   s__: species
    	
    	   Example: 
    	
    	   k__Bacteria;p__Firmicutes;c__Clostridia;o__Clostridiales;f__Lachnospiraceae;g__Blautia;s__faecis
    		
    	2) Unique level identified – known species:
    	   
    	   k__Bacteria;p__Firmicutes;c__Clostridia;o__Clostridiales;f__Lachnospiraceae;g__Roseburia;s__hominis
    	
    	   The above example shows some reads match to a single species (all levels are unique)
    	
    	3) Non-unique level identified – known species:
    
    	   k__Bacteria;p__Firmicutes;c__Clostridia;o__Clostridiales;f__Lachnospiraceae;g__Roseburia;s__multispecies_spp123_3
    	   
    	   The above example “s__multispecies_spp123_3” indicates certain reads equally match to 3 species of the 
    	   genus Roseburia; the “spp123” is a temporally assigned species ID.
    	
    	   k__Bacteria;p__Firmicutes;c__Clostridia;o__Clostridiales;f__Lachnospiraceae;g__multigenus;s__multispecies_spp234_5
    	   
    	   The above example indicates certain reads match equally to 5 different species, which belong to multiple genera.; 
    	   the “spp234” is a temporally assigned species ID.
    	
    	4) Unique level identified – unknown species, potential novel species:
    	   
    	   k__Bacteria;p__Firmicutes;c__Clostridia;o__Clostridiales;f__Lachnospiraceae;g__Roseburia;s__ hominis_nov_97%
    	   
    	   The above example indicates that some reads have no match to any of the reference sequences with 
    	   sequence identity ≥ 98% and percent coverage (alignment length)  ≥ 98% as well. However this groups 
    	   of reads (actually the representative read from a de novo  OTU) has 96% percent identity to 
    	   Roseburia hominis, thus this is a potential novel species, closest to Roseburia hominis. 
    	   (But they are not the same species).
    	
    	5) Multiple level identified – unknown species, potential novel species:
    	   k__Bacteria;p__Firmicutes;c__Clostridia;o__Clostridiales;f__Lachnospiraceae;g__Roseburia;s__ multispecies_sppn123_3_nov_96%
    	
    	   The above example indicates that some reads have no match to any of the reference sequences 
    	   with sequence identity ≥ 98% and percent coverage (alignment length)  ≥ 98% as well. 
    	   However this groups of reads (actually the representative read from a de novo  OTU) 
    	   has 96% percent identity equally to 3 species in Roseburia. Thus this is no single 
    	   closest species, instead this group of reads match equally to multiple species at 96%. 
    	   Since they have passed chimera check so they represent a novel species. “sppn123” is a 
    	   temporary ID for this potential novel species. 
    

 
4. The taxonomy assignment algorithm is illustrated in this flow char below:
 
 
 
 

Read Taxonomy Assignment - Result Summary *

CodeCategoryMPC=0% (>=1 read)MPC=0.01%(>=508 reads)
ATotal reads5,099,4085,099,408
BTotal assigned reads5,080,1605,080,160
CAssigned reads in species with read count < MPC033,872
DAssigned reads in samples with read count < 50000
ETotal samples6666
FSamples with reads >= 5006666
GSamples with reads < 50000
HTotal assigned reads used for analysis (B-C-D)5,080,1605,046,288
IReads assigned to single species4,701,6344,681,560
JReads assigned to multiple species173,654171,755
KReads assigned to novel species204,872192,973
LTotal number of species833306
MNumber of single species427245
NNumber of multi-species3914
ONumber of novel species36747
PTotal unassigned reads19,24819,248
QChimeric reads4444
RReads without BLASTN hits9,5529,552
SOthers: short, low quality, singletons, etc.9,6529,652
A=B+P=C+D+H+Q+R+S
E=F+G
B=C+D+H
H=I+J+K
L=M+N+O
P=Q+R+S
* MPC = Minimal percent (of all assigned reads) read count per species, species with read count < MPC were removed.
* Samples with reads < 500 were removed from downstream analyses.
* The assignment result from MPC=0.1% was used in the downstream analyses.
 
 
 

Read Taxonomy Assignment - ASV Species-Level Read Counts Table

This table shows the read counts for each sample (columns) and each species identified based on the ASV sequences. The downstream analyses were based on this table.
SPIDTaxonomyF33865.S01F33865.S02F33865.S03F33865.S04F33865.S05F33865.S06F33865.S07F33865.S08F33865.S09F33865.S10F33865.S11F33865.S12F33865.S13F33865.S14F33865.S15F33865.S16F33865.S17F33865.S18F33865.S19F33865.S20F33865.S21F33865.S22F33865.S23F33865.S24F33865.S25F33865.S26F33865.S27F33865.S28F33865.S29F33865.S30F33865.S31F33865.S32F33865.S33F33865.S34F33865.S35F33865.S36F33865.S37F33865.S38F33865.S39F33865.S40F33865.S41F33865.S42F33865.S43F33865.S44F33865.S45F33865.S46F33865.S47F33865.S48F33865.S49F33865.S50F33865.S51F33865.S52F33865.S53F33865.S54F33865.S55F33865.S56F33865.S57F33865.S58F33865.S60F33865.S61F33865.S62F33865.S63F33865.S64F33865.S65F33865.S66F33865.S67
SP1Bacteria;Firmicutes;Bacilli;Lactobacillales;Aerococcaceae;Abiotrophia;defectiva1310231222597314615226143693119231098590304197263162835316913781012834967144290377677518471841455717144178521059929922511654865317731528275017656834023541104160541533177113938481732122633606594134187418119316058363
SP10Bacteria;Actinobacteria;Actinomycetia;Corynebacteriales;Corynebacteriaceae;Corynebacterium;matruchotii3241238319136135072947934320896394313626916232456414219134417542221335654551513207944437338491039143212147710798581078419314148314435813999671159235163005325656820611645619365153655729263162
SP100Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT169003371332541041468950184535401191107495478009310311022072402172389956345812028668104564215142229401681000781621545202231820487008639344632943593184549993065903472
SP101Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnospiraceae_[G-2];bacterium HMT088006168023300002730263701200000000000000001180000175165001720000256157103009000000035560128080
SP102Bacteria;Proteobacteria;Betaproteobacteria;Burkholderiales;Burkholderiaceae;Lautropia;mirabilis785159103282518654328391128258656313185916720125714529451190251112777126306681413764011796796395194952722142127596253518105121920054101176311292658727107419795224954159546629016946995786
SP103Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT89600000000000000004000000000000000041500000049002500001100000000001213031510060
SP105Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;oris310215623177728344248763310151120856254100434411067200365161362606902988502640000156012629100030206036730000340400119001616802901820
SP106Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;australis240365211400242142406914000017850011143175712309530714219604021560507102362210165491329167002056001725204130330617100066
SP107Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;infelix120641745161171031960093492002116006009881105001773100002230237291316600110531145752000918782161001201980502380
SP108Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;histicola002016470969678310150294512070015606832747334000634230015630012021019061400028703188026793000002230852842
SP109Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-3];bacterium HMT3511008310483150114241012085400110102109003022205047130060013000800305900018251180134819017090
SP11Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;melaninogenica3445933939010632517661419721634941601242843401171497840512434617582783984416953371533416347309425737130438501051133508782524198712518516438235201450227993676274221151412125369688102293612
SP110Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;artemidis00316781400120001718133291546100100711307817002040028125090672006639137482808770057066875400130
SP111Bacteria;Actinobacteria;Actinomycetia;Propionibacteriales;Propionibacteriaceae;Arachnia;propionica1370121745463946361161890335156570421977384470410125607261405160280108831771145077618530817127222667133897310590168368135434354253783839534648139316159429666275848899148152111
SP112Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;salivae0040050180551003072206300009017001225000133100008000270330108000911131550001643112001600220950
SP113Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;salivarius305060156519423231734557642011712596123369379430506138540934104231191849800281253219171142932273018371088576451206536202233117032412748304541963
SP114Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Aggregatibacter;aphrophilus00451340501903004406603420005302100270035008001101550020040010192036000000310506631942090
SP115Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT89712013000300000302700000030000000026000000000003000000013900002000863000030
SP116Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-6];bacterium HMT870803507110210159916105083940016001163501201072391560800004810015003655006919905049045043554217100668112711517132017800
SP117Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;nucleatum_subsp._vincentii0000909065050005241000140270080037009078220041410000001901316401080533000700000590756509000000
SP118Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;nucleatum_subsp._animalis90492093993260105484909440198225511232001280142100213430058080000223190019272054600105104901109222200441145101637000116000
SP119Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT91400795360188795801791262817809740261009045150023203600223570056470571013406361460054290940226800296715404517857600101570
SP12Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;oralis_subsp._tigurinus_clade_070009200210120000012200340800000700000012000120001140600000740022000205112130000001680
SP120Bacteria;Proteobacteria;Gammaproteobacteria;Cardiobacteriales;Cardiobacteriaceae;Cardiobacterium;hominis69065575285217107164241230965110891625003094171211013256360638111258173115371714672128225251161377226418498189519151975456439992324426743214249252149765012517621620464849334503156348108
SP121Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Oribacterium;sinus10001435750184757250002480802800460144305245000146600023434440151549055265117225720018251665000229415135900
SP123Bacteria;Absconditabacteria_(SR1);Absconditabacteria_(SR1)_[C-1];Absconditabacteria_(SR1)_[O-1];Absconditabacteria_(SR1)_[F-1];Absconditabacteria_(SR1)_[G-1];bacterium HMT87400362793432901017152107004806070203201830002401257452284401600211538257079000016311612014519681571470
SP125Bacteria;Firmicutes;Bacilli;Bacillales;Gemellaceae;Gemella;haemolysans1026593790558359353133641116042823133894795123771389529338660152941657915421201673149583712877421326676830529194083154828735662626996178110898704753159442354214114045613519766651315603416488573789323931248122292161
SP126Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;sputigena1224918661351372840301013933722113001402755911600010354004509051904310010010160480801821371485306250261014302815
SP127Bacteria;Actinobacteria;Coriobacteriia;Coriobacteriales;Atopobiaceae;Lancefieldella;parvula7175036770123212761036027615060480165290910008430006000337000245025168106900105100001034240
SP128Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;pallens520965116401885372601900700016001301140739000013231000344720276001160445000119001081783031603255002600
SP13Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;oulorum450171119269351056249517446256993800015001016303715548016802900514909288440832406909632611520039008726805114310680720
SP130Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Pseudoleptotrichia;sp. HMT22100090236410975741309223004060827000023000135164702400000301108379132129001440002074324000002044053700139963
SP131Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;georgiae8007127934118160739231200001272910003801447202245447260047007301606800002923341525102002203730290160000
SP132Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Eikenella;corrodens0014344220812184167698717333182861992381174025101163241084101398221931558125453410750219694260652324776134404123423974311101624400422175221721312655142989013235316
SP133Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;sp. HMT137000410460206010002754200100090055005001013600000150004640000180180009422501074004040
SP134Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;perflava00271110001467196178024705100096000012505109500009830326000280001963029120589601080521203700498134000006699819000
SP135Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;elongata98018491802681793571123927731850760363530910133517003088310315942862041711571794704013215944614711214474491310969101518243741990964829681651203491140
SP136Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;sp. HMT4990014950007300476071206000010401400000000004807220033908006000350000061879065000000213095613
SP137Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;cristatus_clade_57841219202958912541938614118192712524692282345336778313681176266521511858446119558462011610591356352539105849783537912953027161497115875421717412469614123373691757142712008382429216521994762610633310537054015981227127739661718843128574
SP14Bacteria;Actinobacteria;Actinomycetia;Corynebacteriales;Corynebacteriaceae;Corynebacterium;durum1480971982210282118782605741452221192331540165343129105321654622538929420463747181250258274470335468046281290134070320040762311720231170701897628416411336084345939162326831
SP140Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptostreptococcaceae;Peptostreptococcaceae_[G-7];[Eubacterium]_yurii_subsps._yurii_&_margaretiae008845520012840141000914171227025018019000034700440002403908313025402718712601729579078014590004015124175355005000
SP142Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;sp. HMT920140120017600000020000030000180070047000007000000161400000082015140002100035100120333
SP143Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;sputorum00865922009418320804225001022322025001771046289017000181320111316606683392342021534615816353160109729780216462010117400
SP144Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Kingella;denitrificans31902918105682015517446050527731742213616751515794225156327348008778980909368255948115104223018212568663238918980133434569436130349021311100824620313815063371031511681285034280534015
SP145Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;catoniae1490171201756191545111817702196818310047292295390661222232186315079120314412798026499255422132301228202783206542117937163617000456372931351212775359369522951250
SP146Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;saccharolytica4091640197013100340202100117500006302160000409712902220011701325014201751300390132545724716100330
SP148Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT4170036021000477151167019032412010631500097591350461211515651580339740002183405939022600440003498722102704060160060204601110
SP149Bacteria;Firmicutes;Clostridia;Eubacteriales;Ruminococcaceae;Ruminococcaceae_[G-1];bacterium HMT075001037210119012273650112035289504013261103620052722872030646030206123161753191003830269553172918331914003287354368973728622316414350
SP15Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;veroralis006005838707704045020021000714069057604063000000015321201600028005034800082118002700100150
SP151Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Aggregatibacter;segnis2590331026640700000135340300160136001873440001252140003279159250000073137606302000494010002731625801670
SP152Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT170004500300057000004400000016000010300723001534299000037380004690010000130438954810052480180121090301506
SP153Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Tannerellaceae;Tannerella;serpentiformis005585027259002100013268001544400000000000004006383000000730000062700210012304005934911954011180
SP154Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnoanaerobaculum;orale00000767038657160000013512000000084233032001827610000056000045000070627300003715062017507000
SP156Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sobrinus000000000000000000001600000000000000000080000000000000000000000000105849
SP157Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;israelii0030000500000011900000000000000044100000000000600000000000000000000000
SP159Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;sp. HMT8630047810311810100015806003100050002600000900004619142152000000191000022400001210210213077001700
SP16Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT913520425317329028131008178615225180174272014005412250260090556581518060170001600427013001850002913024024110602123370
SP160Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;cristatus000000377843010000000073000000267002632000685000000239000900131000000037080801380000287000
SP162Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;sp. HMT942043221874596000019001049522930004544000000900970340400010830003490000130003020000990191960004490
SP163Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;oralis1677013892009888163914490878947863844112110663069041851612823182628959148124711673168511921395434816703566367187454276249114971409015771003180407171315164119971866787420011354561021161313086223612243431007217339
SP164Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Bacteroidales_[F-2];Bacteroidales_[G-2];bacterium HMT2740011501468800310014240020570000040000403400002140480011800770461300013660281019572300190
SP165Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;pleuritidis00000881810000002012001750000000010000011700000059001900000014350000141904045000410
SP166Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;sp. HMT204000816332690240288251240274562640066529359598293133262422313398501145723743030314019522000717216004763301026090001822489232832857987640420
SP167Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnoanaerobaculum;saburreum77948911434423570392936635313142162098736215384001271271801052322764262049912429298001563988172039110197336028915178717902310024062716221618988179150321019533
SP168Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;sp. HMT47500833046292000120172001403900000021600002201005061140000000000220000036120250130120001220
SP169Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT5250009451110039009085011115270014009983000241786000360003700520000054100000517025620011000
SP17Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;oris140428162105191456150171083011722418672112350169921271521588123019242064921069747015633733168122039653296167188145380024113103411611989725421512174
SP170Bacteria;Spirochaetes;Spirochaetia;Spirochaetales;Treponemataceae;Treponema;sp. HMT23100734563000603900000600000590000000000001002500330016020101800035129951161400000
SP171Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT21200187235211286295011973274213160217114295536617238132478035100639162710767241121326286592921132332343452112673901610975005652606151071281132781168467131853241452967115611357554016003796854824423103387
SP174Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;sp. HMT336000037002200001500004200000012000000014000000030390370023003313400000120021750012000
SP175Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Catonella;morbi0012012114510941045602471008753206067679035000372100222118093040386002615132189101627605385116144471297001185202489904913031115301170
SP176Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;sp. HMT332606028064029801700034017040000008013370001121710001602103571082170005441000658700652782213308883338917890
SP177Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;haemolyticus746138921159512731714801436283257115178361402021752491960000511919212198614293682520423156621289399119126021647193251200198570320150132953121236201990
SP178Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;sp. HMT3148140204048199063037412819062832524133755600740001039220090330940280010040012753017313070000000790121117401657420990
SP179Bacteria;Firmicutes;Tissierellia;Tissierellales;Peptoniphilaceae;Parvimonas;sp. HMT110160039157385001333000281644711041310252060000062451020244700700315000000307239040007005856500000
SP18Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;rogosae230312476670010562222880020000003294206700110000007440004180000023115301801250033407000117010090190113480012000
SP181Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sanguinis14672216946714148775591907043819931311223916134479146658144271957351024670046556585846167168651789370780551957057555532108266713911438121121849391457638388100444981668890446581805426317758051042061831028403008506487051383711748434927652893601
SP184Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;oralis_subsp._dentisani_clade_3980000001191616410000260030300000000044000080000000000000000000000023017304160010705170
SP188Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sp. HMT061001312150006411100000001300006231258160314130004000098080640680113026975014142701270002349520157030012100
SP189Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT49824012660045439686150104501158000649128006100061919305817475631000079506103805360011067300260000033417231721143126020501100
SP19Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnospiraceae_[G-3];bacterium HMT1004001071341504962012854457003062781525126270066100573331621208207241795007840350130122601293857500246163240388164300017422882181841012175843021380
SP190Bacteria;Actinobacteria;Actinomycetia;Micrococcales;Micrococcaceae;Rothia;dentocariosa080210384213143448821991651840323494869259108830884268714983249781017166012153100979250269712456932255112003500389122928636151294613311392148699416077568125228593374545034617071305102602931111701443604544674545
SP191Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sp. HMT06600305002016251803300041421009054978068400115150917434904332177284044003201335706462222009450631000
SP192Bacteria;Actinobacteria;Coriobacteriia;Coriobacteriales;Atopobiaceae;Lancefieldella;rimae00060004600000031024000000185000000638000002014800190000000000204100210000000
SP193Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;tannerae15049151831710001690016330001030003400000000072113040130035000220000000718000119001701080280780
SP194Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;lingnae00053700699400230000001100010004190280005498009552514077010000230120005801364800220040000
SP195Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;atypica2897681343103107852348804973402512629861410046139121544035202000536477150009040752443230234010491155246318030687380471080301211182163
SP197Bacteria;Proteobacteria;Epsilonproteobacteria;Campylobacterales;Campylobacteraceae;Campylobacter;showae007157241313257773230444839637551500140161088250040431750368066130387105603175491916204964023845510542538566912541106
SP198Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Stomatobaculum;longum00000273646099011800061022719000270101202004600041220000000251505650029040000050453680003870007190
SP2Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Dialister;invisus000106072020000070109033132000260352006002001731000000192008000016500183000260055100160130
SP20Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;sputigena13104814470134215348351292261562409017913242149129405115516163018713208691338231712191256149853443128791297901732044334213012772775544915212514653303057971991394534201553051066101516
SP200Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;sp. HMT380000000028012001808005000020500000000190000000000790000000180000160780891000000
SP201Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;johnsonii2150281246131851136192631111406411032374497051280026050277638422911736114811244146404133305525566243630497026312374264037100198000550226422383721130
SP202Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;paraphrohaemolyticus2307506647000161498011422431485960000249021000000005530476000620000002252541900250114000012501455930924500
SP203Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;graevenitzii00070804603630000087000000000210230002972408300000008040000050004164000000000
SP204Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT346509502121673621591212004890011120013400000569589000016331700208490087900594000001594160000015839905812018930240300
SP206Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;sp. HMT03635663653272223702280387196407449250960145215911674942101222300401375086263838201671633149140111015558118157010674644501312240256983724302372880
SP207Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;mutans0065008992748618900291911811724256800934172910958337352767200700001260011900760097073504436442134840426814840003050222116
SP208Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;nanceiensis7013491062920500106480430120000121061935120223990010800041210545461947284810444166523270842542258814202011503087005919121511800
SP211Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;dianae0060262980125000112100042000000006160007000009070052000031013290001219080614500000
SP215Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;hofstadii004848983570202149194855625326827205616170069460019913560144230118126823496450792180636207801917174341380579013443166462360012861391110026241240127441188369896611500
SP218Bacteria;Spirochaetes;Spirochaetia;Spirochaetales;Treponemataceae;Treponema;socranskii0085372304747001302031919000002627000038000001003300500000206110000327748762243050
SP219Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT9520151290000000000330230000013361000000000000000000003000006000200000000050317
SP22Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;anginosus001060020910004600010600290000570089000339020003800308005000000003840000000300000790
SP222Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;flava85001415244630304954559771219910209111516410970015200325366130000053412420450673563229824183852370074900502154052300255402632718053221102221368425800210300
SP223Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sp. HMT4232128860127123520179042154240697916272399241026842167422475613770138834729700200214083315420521831432764415938918894177022552449180649040463768179013381962253914290485977623566481052268119029924121276855222631576123811596564080023682886513437
SP224Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT39247501194332713421431063365801187386719352778306135348600289476578142449243901375471662976655832170514096301061205929701712910652851379315112263988827841548285357021361192663385103251510
SP228Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Aggregatibacter;sp. HMT89800212522712813610033001620000363721903100000593004106723260095280004701233027737001161900185260530168230620000
SP23Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;parvula326083793027118512111639256013617014409295342813661722739495547409414251361119173461553780828811045561018145410712321065105401685350531928173364198757638217355084342014403412722047322167331807521324152
SP232Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;downii8399822118510879632451686062692003119126037123716789667929926318124254714683203825749645166445190179505676774590546513557333951270801021702401127538816720247693528770141160893801345611485773190485458664
SP233Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnospiraceae_[G-2];bacterium HMT0960018000077401410000000000021000000000590000000000120038000033610000670000663000110
SP238Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;hwasookii00627681538220193958813004190142035645433001181025223814320102019400357323528387133273200356017018290380196570090009210288338892120950
SP24Bacteria;Firmicutes;Bacilli;Lactobacillales;Carnobacteriaceae;Granulicatella;adiacens311104901416202914351275207380069778175962410951464117457566348431838014801379117804140023319232153170694077021930855614491169797692615225319177530578270450366631147895814814453421222522991666431247618828114373926
SP240Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptostreptococcaceae;Peptostreptococcaceae_[G-1];[Eubacterium]_sulci0000000401570000000090000000070002870000000000120300070000304470000532000
SP242Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sp. HMT0640522602901111272601415785521276812146600430431451260041704040002616812800351610715917124459001891201016040125923162245502501802771030651796300
SP243Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;downei0000000000000000000000000000000000000000000000000000000011000000002350
SP245Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;wadei00033000191110013285476209112860008324248231583770827354000001347830048815900000018401570000015840629185002730380
SP246Bacteria;Firmicutes;Bacilli;Bacillales;Gemellaceae;Gemella;sanguinis304131500410124500000001490025025272774175003635718023423151372518289914561011601622408062300108500
SP249Bacteria;Actinobacteria;Actinomycetia;Propionibacteriales;Propionibacteriaceae;Arachnia;rubra020151300010050360000004583920530000054000011006300000000011100000000001501200185007600
SP25Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Stomatobaculum;sp. HMT097190087119370178315100000006500300002311800000175000220001202043018014041001500018307075103000031
SP250Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;intermedius6900504208311708237366211302262197821737111615136250975881312335411056823737492687121174714125913291032716006977216459562610181461365240145278970408903395585717936219545882188422336
SP256Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;micans470358010059095307100371301000062000100525021000082200200404450041200000028300001271469322056854920403060
SP257Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;oralis_subsp._tigurinus_clade_07100000190162460001112050014500012019570000203502040005000024000000000105400002022009507610230344141
SP258Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sp. HMT056003060560028316125013504082891004111316783631586410811073861204704404167701180961577183121223019918644253427112901164141100713000241611410678209
SP259Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptostreptococcaceae;Peptoanaerobacter;[Eubacterium] yurii000054610640000004000701300001290013721800334201850000130058000000017669440000355000014812830011390
SP261Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Peptidiphaga;sp. HMT183179400806680000000022186083201070010830662203472057000070047150601064470632800500044016160000000
SP262Bacteria;Proteobacteria;Epsilonproteobacteria;Campylobacterales;Campylobacteraceae;Campylobacter;concisus160326259771781252905113115054234180026229266238311000134290017126175112705000574387136020610004715773112342340256482613470
SP263Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;cinerea198133595152157154000116535931759852026502111906528967049030652736002170123573216824912066382020668803211231376631506993246502240028331394591112773013190
SP264Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnoanaerobaculum;gingivalis1304010315318801435337024134122901220668039269433311294511906658798016639663063460317331141921032589225194235353022228426147106163119234410200
SP266Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;sp. HMT203000166016133348130000000210000586000044000032210000980000130000000000003801700350657200
SP267Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT957170021005440275294000800000140001721900260000010560165227418034117000310000000261523048411162001300
SP27Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;parasanguinis_clade_411174160274902000175190323025134943002530050025477283070017161612210177623843512200432204443810612212358604120291891190083111452591
SP270Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Megasphaera;micronuciformis0000627061932000004300000000060012000407000000039001600400300120006770000605060
SP271Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;periodonticum160790000132880002450000001000070003403400561024000240111019000000300104100009712880057047880000
SP272Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Pseudoleptotrichia;goodfellowii0001223060391952901011419280173244516094073211662380410390062473015401249079035272293512333045002100294313501506500
SP279Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;sp. HMT9080381341820150001110121218480961012171100437100377040858104632012519374781510705522019000100047900071672362489330
SP280Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;sp. HMT13800038000641210008120137000075080000003620006001311112000012182345060000721600290000240
SP281Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;flavescens74049003439020440980075117180004210066010830106529446001051367490063101149182505478084710110294243306384331336005650187111810318104113160024000
SP283Bacteria;Absconditabacteria_(SR1);Absconditabacteria_(SR1)_[C-1];Absconditabacteria_(SR1)_[O-1];Absconditabacteria_(SR1)_[F-1];Absconditabacteria_(SR1)_[G-1];bacterium HMT87500812000484001400000001818000000000051000001440008150000000030004202007753000200
SP284Bacteria;Actinobacteria;Actinomycetia;Micrococcales;Micrococcaceae;Rothia;aeria3100271454343197453142316843045673922968453050857717302130121551413224452661482822450453586182342223014821379198133428691537398686410576747524028677252083598991668459321672799233523853139411959747715843741433
SP288Bacteria;Firmicutes;Erysipelotrichia;Erysipelotrichales;Erysipelotrichaceae;Solobacterium;moorei00713234205931171308705060260012029316074000444230016232950480090014033100005637051056647380
SP291Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;sp. HMT172006000080932900180055000000000974010000617100160001700008100007000007327000000000
SP294Bacteria;Firmicutes;Tissierellia;Tissierellales;Peptoniphilaceae;Parvimonas;micra00221310432080000014659000000600185060004508300000009100400000000110000082300750015401860
SP299Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Oribacterium;sp. HMT0788019916590249818051030982011319327001403942149590990272405230001081402300014019121019600626204813848300160130
SP3Bacteria;Proteobacteria;Gammaproteobacteria;Cardiobacteriales;Cardiobacteriaceae;Cardiobacterium;valvarum240512691808214441191100733111000311314201002413218581423811336222087697015013631034610317283500137311710018042233511155215582481147651510
SP30Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Weeksellaceae;Weeksellaceae_[G-1];sp. HMT900520356484843189395726151105914103492104240029132526211001370016854555431352060321073129641264401682501082093442744954640349910
SP303Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;peroris0285000714900039000001200003701380000018305800000424004284016605000000453000818000050055
SP305Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;sicca0022600059503320000584001132500240066430000025200011250002554170200000014013697114003641278700000341000001123200
SP306Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT223000000000600000000000000000000000000000000790000000000000008100000000
SP31Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Pseudoleptotrichia;sp. HMT219001818400211040006292700017321270350018270000010800692808871000007461490011803512000117018700016520331860
SP311Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT35200031100537635008000000500000090000039080000790007060000001601100052660030200000
SP314Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT218000000023316000000000000310000000002200000000000000000000000019700008400000
SP32Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;sp. HMT3700000027340000000000000000000000000000000000000000000017000000000000000
SP320Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sp. HMT074008000036418003307000420022902503612101300032100103024000313070019550600000340607004818000
SP325Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;sp. HMT2780059004216501593380013544001308522039080002785400002200250360330560034050070100490099010125097350092190
SP326Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;bacilliformis000000050000000000000008000000020000281000265000014073000011631001100000000210
SP327Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptostreptococcaceae;Peptostreptococcus;stomatis000015721038816530000099002000012202708400342465402000043004000000290134000038700033900000
SP328Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;sp. HMT87700019000000000049836000000000000000000000000000000000000000000010000000
SP329Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;dentalis001001305001600062404702000003616210000652306705000019621090000038280600007300566102400290
SP33Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;endodontalis00022051402020000300000000000001500001134000000000000000008000016000028130140100
SP337Bacteria;Proteobacteria;Epsilonproteobacteria;Campylobacterales;Campylobacteraceae;Campylobacter;gracilis1706798510851061411802214500151432213019028320013501905440005081039152214527181091319919701211879496163134579180470
SP34Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;pasteri126919231144214491353164815791061922788381722255312042921755150124773756782151903443050334933103235330451231632043333467485213103622947603617636911481481193513278416166640371581091669310212942214952190
SP344Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Aggregatibacter;sp. HMT51327000119391224173671950033816400001340000176090000012851091105005200323000520403580800191680654328722440012800
SP345Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Kingella;oralis2860522512004638553192100157172054372211393162551204088152113945938711188264221259721788834427983872565234314118133158390903612378305744777626230737879296220487803035374389
SP35Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT171602153271123116300144147232203922307900752812095242532011725905815101028001034019116217700009912735921533057370
SP350Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT4480000009000000000101470000260000214001283000000500000000000000930534000190000005480
SP355Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;mucosa8854243260073906840330318172507726020535438994611083942574169255217865316380378548012330194207916672240114123601223105730644258946515195180550728110196718085890074019633398226395175
SP357Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptostreptococcaceae;Mogibacterium;diversum000005042560000000700000000405000296002000000020000000000004150000000000
SP36Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT34779317006325513260001017126104377025037581506095635297828843674810080011697131160431704373757002800013774903180002343101890
SP360Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT349260161002401800000018000000000372019000015000000000000000000440000260000000000
SP362Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Weeksellaceae;Cloacibacterium;sp. HMT2062930777200016477410312004000035391311367928357173900097832750131710363114012333942395212641102572800581062130129019194018250550
SP363Bacteria;Proteobacteria;Betaproteobacteria;Burkholderiales;Comamonadaceae;Ottowia;sp. HMT894001200544902303217070017700760911221023830338963504351148810531051024700063104800000409037803669342670
SP364Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;sp. HMT248000040580000867001000000140000000000800000000000000083000000000070000028100
SP365Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;lactarius027600047470004700005300000420000000000000000000000000000000131400000000000551
SP366Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;pneumoniae02400000000000000713000000000000000000000014000000000000008000000000000
SP37Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT473227240514101194664135586850880211732932407062197295906242352131172751370026057561772642002269703285723547019712631421811408093294525548103501430158077029891510273010206185033327180527437812033
SP370Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT34821101915706633314711438934406050618513230482941380014015810033984006022089021400477277826639600135702573033209112756231000375951139158242938011122301040
SP378Bacteria;Actinobacteria;Coriobacteriia;Coriobacteriales;Atopobiaceae;Olsenella;sp. HMT8070015000000000000001700040031500000008000000980039700000000000000006370100130
SP38Bacteria;Firmicutes;Bacilli;Lactobacillales;Carnobacteriaceae;Granulicatella;elegans41121081386627425991131161611273361219273725119654222722558987183917651331105649841447195616232537205301442543581211615622564457174410367234904836118952382223880388117381885103263030802463564629393196176918175704582151204
SP380Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;oralis80062003616691166135141225400001304555113776240092148688604011000128051538120440681557660458188624097128001606163046705843550613840
SP386Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;koreensis021000005280000000800000000060000003740000920000000000000000004830000000000
SP4Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;maculosa60151419106206740000105608490002501031000211004600091228015001200640148219340001259110542052000450
SP402Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT87900102000000000304200000000000005010614000000000000000000000000000000000001420
SP403Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;sp. HMT01800630680087047064156860018827309801070800030108401605592032411480002803690640240002431948091024070000420
SP41Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;sp. HMT275170057115004802291832312712001494300041279004501037001280124238120000048046010006241076553149274408800010
SP416Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Kingella;negevensis046700090000000003900000000000000000000000000000000000000000000000000
SP42Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;intermedia0000037610210000001420000006240000000001460000076000000000090126300002130001141503302810
SP420Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT869000000000117000116500000000000000050000000000000000021800600001435040000600
SP43Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Kingella;sp. HMT012000940001616627706210020000410230000002920000125003064135012007862038107748062000071617200017827000410
SP435Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptostreptococcaceae;Peptostreptococcaceae_[G-9];[Eubacterium]_brachy2013722724792870001001470141780031006768170032018148007000350455000044525900002914058176200220100
SP44Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;odontolytica34722921534977189761021260271150520688034605726899862282517301537704373467605422511700357320261910312149612435791021688805160969812012300
SP442Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;meyeri0009800000000007500670000000084003500390340000009100000913000000000001300000
SP45Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;subflava17300169005811114000000570000500000005070035000000084385000001078010807000039151900011252880000
SP46Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;nucleatum10695785118143543334270713916775942871011427135639883043182337155531439998161415465459426487646812444944291120858349837120281681516178357293442215934781201251719794253455543764183991138511301137235155023672687255610912269126925231286
SP47Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT21511074724420100043325623007460093020012859039120174820530866282030113341475326717950424071281672134277155041792595280230404018311641306601561513600
SP48Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;mitis6452202607175831056453175393917101072011929200711879875067593894120381558370515268128565372504254511545427034086138341144276672990165901296464417525537936252953082262268465893254179652334206621948567316888957247735728675145838510930146532402831106331471341505950161052430279
SP49Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;oralis_subsp._dentisani_clade_058320598158190480014881751104351223420941040427810232636823865915570390207961381081177296538125734021530012802860337107392577205750375040013375852102443271364014231348
SP5Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;sp. HMT7802621192421165432310675600453051090212610415184118047814781645278190151011840378904890131015165808832047415913670219701490230653100019064018590453100104013670
SP50Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;buccalis496517459706682853351117398620997461174518431890565761820030800639286568860223111711097100463308811445424914820022480359269054528703686618500186391491012035949031092383123760
SP51Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;sp. HMT1360000000599000000000000000000000003730000000000000000000000044715000000000
SP52Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;granulosa1480149489406533338022549574671163630057798989712013433063922511394810254540271270213322784874102312001034022002312217545360001943615891115515781424559215239112
SP53Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;sp. HMT9301078107149418242120401051137514321114263520105028145743418140177719336717200710970401625498072376390564234885889777365680538395116331070203073701802732489452063049
SP54Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;sp. HMT472680210287113282442027404418651532026282666900907978959161200197586333045743190903460026360800161159933293149827100121414529248822731891801789
SP55Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Peptidiphaga;gingivicola00344300052811601010503713023011147600000101100101907335212659101114970000043823923446750345548555011919541250770
SP56Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;parahaemolyticus386065768202333127111871733555000432813820172258930910150100802714100227036034111013201410018159167130519000300014181782556557500
SP57Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;chosunense312709933289140930190127235740235080437412359561475781665158015793201454901382105525222320547211195713384354280835130651174238716108115782122217983581843293014243433216881424171068316502522861474718169226984571714
SP58Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;sp. HMT3173520110911611131227754615490390806825421364619425110127570600644010410741971271257271521114997608050120393487702514901016157760825441799226182680415810676923126354783232462614811124318031580
SP6Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;sp. HMT1781860744341307400672029201729491528573240035030811431831500147046401625033101349204700460123465110001110001237632594101050
SP60Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;jejuni0020013532039043031010000044050010000001375300040000000000046014000170524000000065
SP61Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;constellatus009654167141519030001392500932340007044411250000251139600000019800000000010890000290004123000750
SP62Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;denticola001040028707720003800730000000270111300036000023002870019000099650000047001400400650
SP64Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;nigrescens60120212621028343763532492240261988567706816668032304229001430236636320611182222200133600008320010810000283711421777000331428171579386348001150230
SP66Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;pseudopneumoniae00004555000060900220000000000000084000885802900001717116001472105191900003331094500000000000000
SP67Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Weeksellaceae;Weeksellaceae_[G-1];sp. HMT9315317017430922151169126250771316001075922000061100191441184354629690663461621780800700010010022002110226475
SP68Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Schaalia;sp. HMT1801100310185018131872164502709739350026140248893804800471338250906150038180100422101414420000133158500115240023032263
SP69Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Aggregatibacter;sp. HMT94962109130181301343200600000650001800120177000000314023031705002051803630000107000090340111000
SP7Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;gordonii0019922464147935381394752192310075240549225353200374411562129222391441848608111171610196045348208740110761001540855763790087272521666268610715425442161492757916081355620
SP70Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;hongkongensis178801302007181284081118113144263121823914763448390431397721124432629719239911262997322801261624125647613979632064922587165745546043502972260161979534724651621570115466617313264373711039541226113417112455319178524691265478911659019
SP71Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;sp. HMT1490000000215000000000000000000000001050000000000000000004034001750000000000
SP72Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT17507401235131335140156740114310067578161564720221140443498051940988123011517851515432414105512535118165869422666596056710881815214819322905361422692129719743865122841595
SP73Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;periodonticum23069410341532304791294971541604811276017030519487940384618168169851310886623003322861734138907215982827812202181618326208724653118217122783722035369269306070284531003913891572140
SP74Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;shahii31020304002735281853251410422640356197066831430452124500167176515016060411611018163342522452129603562269215125867015421811581002841582189444614375130171010316316194585791236611305230
SP75Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;naeslundii19202936613615299421674203541254101372014543763667260314540188962161104244461673600119111101650297328962736412675467501621275784407143841235451102552169917867815931461096485157
SP77Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;dispar3307412128151630613331901370102304099400014083264221121473743120336226877001747193114338183671270396137139153018090343287621107101431112404
SP78Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;endodontalis0010231459052153205915520131281100160601502713732170265006194119826311126006065201183119003735172233353091343443380
SP79Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Weeksellaceae;Riemerella;sp. HMT32213405316522340233316402141124782114553715484083830143115336343164199683145225207829675185321264331157391107734733134072132425134717510891863375931592853221741371028002026
SP8Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;leadbetteri154069118217219193306235872114256582711351531025252272389511641016823167561162413369201822880436722151182010628158239417353158504056315634026026128423012281394409278900206118
SP80Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;loescheii76028571212919001030380026413000008864058200002054928000029025000000028056000018407300003013150
SP81Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT308002818591670734131103910154968320000125257330274640004159660512101524944581136594444161152511732357204201859710323517350
SP82Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;parainfluenzae73764713396391209121843109401922112459720817847287611206132915846752314116698725967837155610326352693319929214613454725154852291737132429739267269194127710531029571543534529118984180466219237923959557123015178043661959160557934080
SP83Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Aggregatibacter;sp. HMT4580053952521982513642520922158110380185891800111810227432928353413502284401912881099447218171301950012313813895914191600433800631179189153810700
SP85Bacteria;Firmicutes;Bacilli;Bacillales;Gemellaceae;Gemella;morbillorum2710846263110435576844575140829145842619306431934213951223531161966384203891113810183247385706791228136727218348131219151133301333976128797898999183224003654749417705112890311603761087040
SP86Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;trevisanii18305967210367350402103801051971972466219300024800301271261820971530204000241920004246700152268503522222013600005764054674925553670
SP87Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnoanaerobaculum;umeaense54034729354340750518729070042931117237913820051453402612231027607383011606656215025757215011398203691328722666303354400505599240281115331318533689220
SP88Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;infantis_clade_4310063135760014371971402021470070024303259912710015334975040010410367296752071851630429144419095278214329667637699874724812740329401452344200
SP9Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;gingivalis150215912302355323227155480031903112958006925319114806711034553540260189264893810127716312363745329362357756816067518146223624621422101572300470
SP90Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;fusca000002849900000000000000000000000005000000000000000007000000000000000
SP91Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;noxia46012131551110288677071412234984214612930250597360111027570185430086082295170289044172306544218045028261582796617510750
SP92Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;massiliensis40501472857737980955334037547179172462674497813301057004645684934915001084304004035452101811117970648610463988155577628581249670627257893503707412562383676841510
SP93Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Johnsonella;ignava0043578041410154041015055000354071740276001075003929470477401970010602810036300000017522009811748347963860750150
SP94Bacteria;Actinobacteria;Actinomycetia;Micrococcales;Micrococcaceae;Rothia;mucilaginosa2135125166279833331755412551571785613416613364306501791429031002265123304380630411041411422718410334137819661788140632159541625134924514066110912852822901755436232058290681482462321258757211592380
SP95Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Tannerellaceae;Tannerella;sp. HMT28617304412935136135233132410184504669112813757110540152332622122009182120026515833122673317846633419420925477921430010140184007711192012501130
SP96Bacteria;Firmicutes;Clostridia;Eubacteriales;Peptococcaceae;Peptococcus;sp. HMT16700480335663500260526180003130070080039634934067800004000010900000006600000012256168330210140
SP97Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT912106010828998832000070612732040740000001329003202277910001222200002500112000013600016006655809754201960
SP99Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT2251880274164607107228151023800612173414019021190818101027044654356046507392159010217106700114863178961040249019302042128939433913600588153011926541140776536816400
SPN10Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;gordonii_nov_97.018%0061401550001581191492749902000007300000000000007000900760001480040000398000020133000650
SPN107Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Pseudoleptotrichia;goodfellowii_nov_91.416%110628784259386095400058043162141017812513060016018358200000380000341059000116268023863076600034001406730206900360815660954919040
SPN11Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Pseudoleptotrichia;goodfellowii_nov_97.204%00000000000000000000000000000000000834000000000000000000000000000000
SPN167Bacteria;Actinobacteria;Actinomycetia;Corynebacteriales;Corynebacteriaceae;Corynebacterium;durum_nov_97.699%1404104210340572203471154417024942641771571201215022101037297323202762942178169032080406593210530001813950020425213681952382569555
SPN192Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT175 nov_97.951%0014066047000000000384000021002661601706060023013037001003650012802240012571352000000130000189
SPN2Bacteria;Firmicutes;Tissierellia;Tissierellales;Peptoniphilaceae;Parvimonas;micra_nov_97.053%00001800296000000000013000000000000251000000000000000000000003050000000000
SPN215Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnospiraceae_[G-2];bacterium HMT088 nov_93.096%09203213051280000250000448040117100090014600450310350039100021122900001204141001830035302586000780
SPN22Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;sp. HMT370 nov_97.845%00000824000000000000000000000000000000000000000000000000000000000000
SPN235Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;sp. HMT780 nov_97.628%7601017501723105802310812600021700815110209031077100007428890001870001830163520057700000000220140054007211
SPN27Bacteria;Firmicutes;Negativicutes;Selenomonadales;Selenomonadaceae;Selenomonas;noxia_nov_97.030%6000001800560000310320000000101030010000002512310000114110380405605000000271260900170
SPN276Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Leptotrichia;sp. HMT392 nov_97.624%1373030900398000000106007700310000000450000002380021400000000268000341000000408600000000
SPN284Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sobrinus_nov_94.291%000000000000000000000000000000000000000000000000000000000000000003740
SPN287Bacteria;Proteobacteria;Gammaproteobacteria;Pseudomonadales;Moraxellaceae;Moraxella;oblonga_nov_93.776%0027300000000000004000000004100000006400010860000000000006720000000003100000
SPN293Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Peptidiphaga;gingivicola_nov_96.920%000002000000000320000000001714000000000000000000033430000000000000000000
SPN299Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Streptobacillus;notomytis_nov_93.856%174226497382677110010160268396200107808481426896000970038000123060046013758226735073322140580680022015043500118500282804326340001900
SPN30Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT347 nov_95.759%0033000000810010021000016200000000000198041000790082140131730000000019000021013047019
SPN300Bacteria;Proteobacteria;Gammaproteobacteria;Cardiobacteriales;Cardiobacteriaceae;Cardiobacterium;hominis_nov_97.718%00000002008700107250000000600023927000009470000079800000582900000240001302730110020088310
SPN306Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT171 nov_96.421%00000000000000001200000011000000218000090000150078001000000000000110000001688
SPN31Bacteria;Firmicutes;Clostridia;Eubacteriales;Ruminococcaceae;Ruminococcaceae_[G-1];bacterium HMT075 nov_91.453%0142113000000000042500000000000000000017040073800031000000000420011600370010600000
SPN311Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT473 nov_97.336%00313844221110352800220000622268000065016000780000016009701472600005170365000248209183619800030
SPN317Bacteria;Proteobacteria;Gammaproteobacteria;Cardiobacteriales;Cardiobacteriaceae;Cardiobacterium;hominis_nov_97.510%1701665600033194011125070012000000990010753000718003611200018000205424700000000120197200000
SPN319Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Kingella;oralis_nov_97.741%6000108000511304010342000460319903000110000003307926023184023000000038014000048000034816603800
SPN323Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;sp. HMT284 nov_97.546%5900006186522001502340000000002100600000100003811000027800370005615500007990194253100000
SPN326Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-1];bacterium HMT348 nov_95.089%0000000035003500270008710715123039007900000000040000151590000190015100002240000462000121760
SPN333Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;catoniae_nov_97.746%790180350241412050500601690000142840000000990001439000082013001590126340068901270003817517601320802600000
SPN334Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;sp. HMT175 nov_97.751%000000000000000000000000700000002100000050001309000067027000000009600048000
SPN338Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;oralis_subsp._tigurinus_clade_070_nov_97.980%000000740000000000000000000000010850000000000000000000000000000000119000
SPN340Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;gingivalis_nov_90.546%002505000012003000000500015800000000022000249130000049352700046500460008006005402
SPN343Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;sanguinis_nov_97.782%19100260310300071300180050166111540037014805016190943042946800426090000001570000010310042042570000004570004600
SPN345Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;gingivalis_nov_96.218%00003012405101111200000000000000000015060022017228012000020260000000027100442112202500
SPN351Bacteria;Proteobacteria;Betaproteobacteria;Neisseriales;Neisseriaceae;Neisseria;sp. HMT018 nov_97.942%000000000000000000000000000000000000000012000000000000000000000093300
SPN37Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Alloprevotella;sp. HMT913 nov_97.955%00010023200000019344800148000000000000004000200004200000000006000008000012010190
SPN43Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;hwasookii_nov_97.783%001739435000005500000000029613800000031800196003350001689000388410000000479700500001038005010001940
SPN44Bacteria;Saccharibacteria_(TM7);Saccharibacteria_(TM7)_[C-1];Saccharibacteria_(TM7)_[O-1];Saccharibacteria_(TM7)_[F-1];Saccharibacteria_(TM7)_[G-6];bacterium HMT870 nov_96.994%0640371000000252900174000092000000000001834000000000000000082014023000003304080
SPN49Bacteria;Proteobacteria;Betaproteobacteria;Burkholderiales;Comamonadaceae;Ottowia;sp. HMT894 nov_97.077%0044000000000040000000000000000000000005600000000000000000000000000280
SPN54Bacteria;Actinobacteria;Actinomycetia;Corynebacteriales;Corynebacteriaceae;Corynebacterium;matruchotii_nov_97.951%0000000000000000480000510000000000000000005120000000000000000000000000
SPN59Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;haemolyticus_nov_97.331%000033001730000000000000000000000012607000000000000110018000001810000000000
SPN65Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;cristatus_nov_97.576%00000000000000000000000000000000000000000000000000000000000546000000
SPN69Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;sp. HMT305 nov_93.878%000050020200000000000000000008000129000000000000000000000001810006000000
SPN7Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;gingivalis_nov_97.899%000050180000670020072000003200000002061100000002024000000900032990002400308888000
SPN74Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;parasanguinis_clade_411_nov_97.976%001000002010093000319000013400001900000000200362500000001500003000000086700
SPN75Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Leptotrichiaceae;Pseudoleptotrichia;goodfellowii_nov_91.845%33418900000000000000380008000000000001503706000000330700000000000000000039020
SPN81Bacteria;Actinobacteria;Actinomycetia;Actinomycetales;Actinomycetaceae;Actinomyces;israelii_nov_94.882%0015000000000000000000130166121000015500000000000000000000130000000003900000
SPN98Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lacrimispora;xylanolytica_nov_88.613%30197252381567241023822005223103000000046816015128754004803220400393763260093473001921092250400000009621112985343000860
SPP13Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Oribacterium;multispecies_spp13_20008210031422160000000023007002000700023700000000004800000230000002800100135040000
SPP15Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;multispecies_spp15_200000420823650022001990015000000709133700036000019010404802722025040262503702834290000403927000
SPP18Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;multispecies_spp18_309079019150251051059044141035142083700260252061288894210008610712284505171132120107001384053017506810710195108200137032584870099
SPP21Bacteria;Firmicutes;Negativicutes;Veillonellales;Veillonellaceae;Veillonella;multispecies_spp21_293612517331724241037312818251438267762295152371411042288372918893601945631196268134741211248127183232472292624130110433257310765620741711937140258933284145636465511845760988633121102117901708104284229706468733867484311646312615
SPP23Bacteria;Firmicutes;Clostridia;Eubacteriales;Lachnospiraceae;Lachnoanaerobaculum;multispecies_spp23_20000010206800019471500134000000253140061663125379938300091000001020000011000008958540023200900
SPP25Bacteria;Proteobacteria;Gammaproteobacteria;Pasteurellales;Pasteurellaceae;Haemophilus;multispecies_spp25_236070000003900096010033288197000001901400830080000410082203136667035900004412114000000101813680000
SPP26Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;multispecies_spp26_200000207237717000000000000480120051000552150003000071800000001800006640000000000
SPP31Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;multispecies_spp31_278014861188001781503191833691303500466930010018638075151181585174413182171707011101461798619157413085618016610442215219116026529915480211018242063044000
SPP32Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;multispecies_spp32_300049122001634673000000027000180007290180008700917004030165207503109801701300032013422000540033300
SPP37Bacteria;Bacteroidetes;Flavobacteriia;Flavobacteriales;Flavobacteriaceae;Capnocytophaga;multispecies_spp37_2000000001900000000082300000900000000088034369000000231250000000420000000013100
SPP39Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Prevotellaceae;Prevotella;multispecies_spp39_20000000000004050225000000000591000000019000000000000000000000000000000000
SPP4Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;multispecies_spp4_20002511031850866532003396304024512004801079800003608012000116001220046800080072200026256570724693536000460
SPP7Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;multispecies_spp7_2000000001270018800000000000000801828000000032000000000001120005020000000000000000
SPP9Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Tannerellaceae;Tannerella;multispecies_spp9_200134016404101640100019000250003400319007100130000143337400144010100005260000000370131025414010000490
SPPN10Bacteria;Bacteroidetes;Bacteroidia;Bacteroidales;Porphyromonadaceae;Porphyromonas;multispecies_sppn10_2_nov_97.536%002200002717100000000000401560260770007174000004600000001950000313000021519900485660000
SPPN2Bacteria;Fusobacteria;Fusobacteriia;Fusobacteriales;Fusobacteriaceae;Fusobacterium;multispecies_sppn2_3_nov_97.845%000068100342073000027000841500000000000029230000000000001700000007802403478781000300
SPPN6Bacteria;Firmicutes;Bacilli;Lactobacillales;Streptococcaceae;Streptococcus;multispecies_sppn6_3_nov_97.571%0000000000000000000000000000000000000255300000000000000000000001200000
 
 
Download OTU Tables at Different Taxonomy Levels
PhylumCount*: Relative**: CLR***:
ClassCount*: Relative**: CLR***:
OrderCount*: Relative**: CLR***:
FamilyCount*: Relative**: CLR***:
GenusCount*: Relative**: CLR***:
SpeciesCount*: Relative**: CLR***:
* Read count
** Relative abundance (count/total sample count)
*** Centered log ratio transformed abundance
;
 
The species listed in the table has full taxonomy and a dynamically assigned species ID specific to this report. When some reads match with the reference sequences of more than one species equally (i.e., same percent identiy and alignmnet coverage), they can't be assigned to a particular species. Instead, they are assigned to multiple species with the species notaton "s__multispecies_spp2_2". In this notation, spp2 is the dynamic ID assigned to these reads that hit multiple sequences and the "_2" at the end of the notation means there are two species in the spp2.

You can look up which species are included in the multi-species assignment, in this table below:
 
 
 
 
Another type of notation is "s__multispecies_sppn2_2", in which the "n" in the sppn2 means it's a potential novel species because all the reads in this species have < 98% idenity to any of the reference sequences. They were grouped together based on de novo OTU clustering at 98% identity cutoff. And then a representative sequence was chosed to BLASTN search against the reference database to find the closest match (but will still be < 98%). This representative sequence also matched equally to more than one species, hence the "spp" was given in the label.
 
 

Taxonomy Bar Plots for All Samples

 
 

Taxonomy Bar Plots for Individual Comparison Groups

 
 
Comparison No.Comparison NameFamiliesGeneraSpecies
Comparison 1Random_Group1 vs Random_Group2PDFSVGPDFSVGPDFSVG
 
 

VIII. Analysis - Alpha Diversity

 

In ecology, alpha diversity (α-diversity) is the mean species diversity in sites or habitats at a local scale. The term was introduced by R. H. Whittaker[5][6] together with the terms beta diversity (β-diversity) and gamma diversity (γ-diversity). Whittaker's idea was that the total species diversity in a landscape (gamma diversity) is determined by two different things, the mean species diversity in sites or habitats at a more local scale (alpha diversity) and the differentiation among those habitats (beta diversity).

 

References:

  1. Whittaker, R. H. (1960) Vegetation of the Siskiyou Mountains, Oregon and California. Ecological Monographs, 30, 279–338. doi:10.2307/1943563
  2. Whittaker, R. H. (1972). Evolution and Measurement of Species Diversity. Taxon, 21, 213-251. doi:10.2307/1218190

 

Alpha Diversity Analysis by Rarefaction

Diversity measures are affected by the sampling depth. Rarefaction is a technique to assess species richness from the results of sampling. Rarefaction allows the calculation of species richness for a given number of individual samples, based on the construction of so-called rarefaction curves. This curve is a plot of the number of species as a function of the number of samples. Rarefaction curves generally grow rapidly at first, as the most common species are found, but the curves plateau as only the rarest species remain to be sampled [7].


References:

  1. Willis AD. Rarefaction, Alpha Diversity, and Statistics. Front Microbiol. 2019 Oct 23;10:2407. doi: 10.3389/fmicb.2019.02407. PMID: 31708888; PMCID: PMC6819366.

 
 
 

Boxplot of Alpha-diversity Indices

The two main factors taken into account when measuring diversity are richness and evenness. Richness is a measure of the number of different kinds of organisms present in a particular area. Evenness compares the similarity of the population size of each of the species present. There are many different ways to measure the richness and evenness. These measurements are called "estimators" or "indices". Below is a diversity of 3 commonly used indices showing the values for all the samples (dots) and in groups (boxes) at the species level.

Printed on each graph is the statistical significance p values of the difference between the groups. The significance is calculated using either Kruskal-Wallis test or the Wilcoxon rank sum test, both are non-parametric methods (since microbiome read count data are considered non-normally distributed) for testing whether samples originate from the same distribution (i.e., no difference between groups). The Kruskal-Wallis test is used to compare three or more independent groups to determine if there are statistically significant differences between their medians. The Wilcoxon Rank Sum test, also known as the Mann-Whitney U test, is used to compare two independent groups to determine if there is a significant difference between their distributions.
The p-value is shown on the top of each graph. A p-value < 0.05 is considered statistically significant between/among the test groups.

 
Alpha Diversity Box Plots for All Groups - Species Level
 
 
 
 
 
 
 
 
 
Alpha Diversity Box Plots for Individual Comparisons at Species level
 
Comparison 1Random_Group1 vs Random_Group2View in PDFView in SVG
 
The above comparisons are at the species-level. Comparisons of other taxonomy levels, from phylum to genus, are also available:
 
 
 

IX. Analysis - Beta Diversity

 

NMDS and PCoA Plots

Beta diversity compares the similarity (or dissimilarity) of microbial profiles between different groups of samples. There are many different similarity/dissimilarity metrics [8]. In general, they can be quantitative (using sequence abundance, e.g., Bray-Curtis or weighted UniFrac) or binary (considering only presence-absence of sequences, e.g., binary Jaccard or unweighted UniFrac). They can be even based on phylogeny (e.g., UniFrac metrics) or not (non-UniFrac metrics, such as Bray-Curtis, etc.).

For microbiome studies, species profiles of samples can be compared with the Bray-Curtis dissimilarity, which is based on the count data type. The pair-wise Bray-Curtis dissimilarity matrix of all samples can then be subject to either multi-dimensional scaling (MDS, also known as PCoA) or non-metric MDS (NMDS).

MDS/PCoA is a scaling or ordination method that starts with a matrix of similarities or dissimilarities between a set of samples and aims to produce a low-dimensional graphical plot of the data in such a way that distances between points in the plot are close to original dissimilarities.

NMDS is similar to MDS, however it does not use the dissimilarities data, instead it converts them into the ranks and use these ranks in the calculation.

References:

  1. Plantinga, AM, Wu, MC (2021). Beta Diversity and Distance-Based Analysis of Microbiome Data. In: Datta, S., Guha, S. (eds) Statistical Analysis of Microbiome Data. Frontiers in Probability and the Statistical Sciences. Springer, Cham. https://doi.org/10.1007/978-3-030-73351-3_5

In our beta diversity analysis, Bray-Curtis dissimilarity matrix was first calculated and then plotted by the PCoA and NMDS separately. Below are beta diveristy results for all groups together, at the Species level:

 
 
NMDS and PCoA Plots for All Groups - Species Level
 
 
 
 
 

The above PCoA and NMDS plots are based on count data. The count data can also be transformed into centered log ratio (CLR) for each species. The CLR data is no longer count data and cannot be used in Bray-Curtis dissimilarity calculation. Instead CLR can be compared with Euclidean distances. When CLR data are compared by Euclidean distance, the distance is also called Aitchison distance.

Below are the NMDS and PCoA plots of the Aitchison distances of the samples at the Species level:

 
 
 
 
 
 
 
NMDS and PCoA Plots for Individual Comparisons at Species level
 
 
Comparison No.Comparison NameNMDAPCoA
Bray-CurtisCLR EuclideanBray-CurtisCLR Euclidean
Comparison 1Random_Group1 vs Random_Group2PDFSVGPDFSVGPDFSVGPDFSVG
 
 
 
 
 
 

Interactive 3D PCoA Plots - Bray-Curtis Dissimilarity

 
 
 

Interactive 3D PCoA Plots - Euclidean Distance

 
 
 

Interactive 3D PCoA Plots - Correlation Coefficients

 
 
 

X. Analysis - Differential Abundance

16S rRNA next generation sequencing (NGS) generates a fixed number of reads that reflect the proportion of different species in a sample, i.e., the relative abundance of species, instead of the absolute abundance. In Mathematics, measurements involving probabilities, proportions, percentages, and ppm can all be thought of as compositional data. This makes the microbiome read count data “compositional” (Gloor et al, 2017). In general, compositional data represent parts of a whole which only carry relative information [9].

The problem of microbiome data being compositional arises when comparing two groups of samples for identifying “differentially abundant” species. A species with the same absolute abundance between two conditions, its relative abundances in the two conditions (e.g., percent abundance) can become different if the relative abundance of other species change greatly. This problem can lead to incorrect conclusion in terms of differential abundance for microbial species in the samples.

When studying differential abundance (DA), the current better approach is to transform the read count data into log ratio data. The ratios are calculated between read counts of all species in a sample to a “reference” count (e.g., mean read count of the sample). The log ratio data allow the detection of DA species without being affected by percentage bias mentioned above

In this report, a compositional DA analysis tool “ANCOM” (analysis of composition of microbiomes) was used [10]. ANCOM transforms the count data into log-ratios and thus is more suitable for comparing the composition of microbiomes in two or more populations. "ANCOM" generates a table of features with W-statistics and whether the null hypothesis is rejected. The “W” is the W-statistic, or number of features that a single feature is tested to be significantly different against. Hence the higher the "W" the more statistical sifgnificant that a feature/species is differentially abundant.

 
 

ANCOM-BC2 Differential Abundance Analysis

 

Starting with version V1.2, we include the results of ANCOM-BC (Analysis of Compositions of Microbiomes with Bias Correction) (Lin and Peddada 2020) [9]. ANCOM-BC is an updated version of "ANCOM" that:
(a) provides statistically valid test with appropriate p-values,
(b) provides confidence intervals for differential abundance of each taxon,
(c) controls the False Discovery Rate (FDR),
(d) maintains adequate power, and
(e) is computationally simple to implement.

The bias correction (BC) addresses a challenging problem of the bias introduced by differences in the sampling fractions across samples. This bias has been a major hurdle in performing DA analysis of microbiome data. ANCOM-BC estimates the unknown sampling fractions and corrects the bias induced by their differences among samples. The absolute abundance data are modeled using a linear regression framework.

Starting with version V1.43, ANCOM-BC2 is used instead of ANCOM-BC, So that multiple pairwise directional test can be performed (if there are more than two gorups in a comparison). When performing pairwise directional test, the mixed directional false discover rate (mdFDR) is taken into account. The mdFDR is the combination of false discovery rate due to multiple testing, multiple pairwise comparisons, and directional tests within each pairwise comparison. The mdFDR is adopted from (Guo, Sarkar, and Peddada 2010 [10]; Grandhi, Guo, and Peddada 2016 [11]). For more detail explanation and additional features of ANCOM-BC2 please see author's documentation.

References:

  1. Gloor GB, Macklaim JM, Pawlowsky-Glahn V, Egozcue JJ. Microbiome Datasets Are Compositional: And This Is Not Optional. Front Microbiol. 2017 Nov 15;8:2224. doi: 10.3389/fmicb.2017.02224. PMID: 29187837; PMCID: PMC5695134.
  2. Mandal S, Van Treuren W, White RA, Eggesbø M, Knight R, Peddada SD. Analysis of composition of microbiomes: a novel method for studying microbial composition. Microb Ecol Health Dis. 2015 May 29;26:27663. doi: 10.3402/mehd.v26.27663. PMID: 26028277; PMCID: PMC4450248.
  3. Lin H, Peddada SD. Analysis of compositions of microbiomes with bias correction. Nat Commun. 2020 Jul 14;11(1):3514. doi: 10.1038/s41467-020-17041-7. PMID: 32665548; PMCID: PMC7360769.
  4. Guo W, Sarkar SK, Peddada SD. Controlling false discoveries in multidimensional directional decisions, with applications to gene expression data on ordered categories. Biometrics. 2010 Jun;66(2):485-92. doi: 10.1111/j.1541-0420.2009.01292.x. Epub 2009 Jul 23. PMID: 19645703; PMCID: PMC2895927.
  5. Grandhi A, Guo W, Peddada SD. A multiple testing procedure for multi-dimensional pairwise comparisons with application to gene expression studies. BMC Bioinformatics. 2016 Feb 25;17:104. doi: 10.1186/s12859-016-0937-5. PMID: 26917217; PMCID: PMC4768411.
 
 
ANCOM-BC Results for Individual Comparisons
 
Comparison No.Comparison Name
Comparison 1.Random_Group1 vs Random_Group2
 
 
 
 
 

LEfSe - Linear Discriminant Analysis Effect Size

LEfSe (Linear Discriminant Analysis Effect Size) is an alternative method to find "organisms, genes, or pathways that consistently explain the differences between two or more microbial communities" (Segata et al., 2011) [12]. Specifically, LEfSe uses rank-based Kruskal-Wallis (KW) sum-rank test to detect features with significant differential (relative) abundance with respect to the class of interest. Since it is rank-based, instead of proportional based, the differential species identified among the comparison groups is less biased (than percent abundance based).

Reference:

  1. Segata N, Izard J, Waldron L, Gevers D, Miropolsky L, Garrett WS, Huttenhower C. Metagenomic biomarker discovery and explanation. Genome Biol. 2011 Jun 24;12(6):R60. doi: 10.1186/gb-2011-12-6-r60. PMID: 21702898; PMCID: PMC3218848.
 
Random_Group1 vs Random_Group2
 
 
 
 
 
 
 

XI. Analysis - Heatmap Profile

 

Species vs Sample Abundance Heatmap for All Samples

 
 
 

Heatmaps for Individual Comparisons

 
A) Two-way clustering - clustered on both columns (Samples) and rows (organism)
Comparison No.Comparison NameFamily LevelGenus LevelSpecies Level
Comparison 1Random_Group1 vs Random_Group2PDFSVGPDFSVGPDFSVG
 
 
B) One-way clustering - clustered on rows (organism) only
Comparison No.Comparison NameFamily LevelGenus LevelSpecies Level
Comparison 1Random_Group1 vs Random_Group2PDFSVGPDFSVGPDFSVG
 
 
C) No clustering
Comparison No.Comparison NameFamily LevelGenus LevelSpecies Level
Comparison 1Random_Group1 vs Random_Group2PDFSVGPDFSVGPDFSVG
 
 

XII. Analysis - Network Association

To analyze the co-occurrence or co-exclusion between microbial species among different samples, network correlation analysis tools are usually used for this purpose. However, microbiome count data are compositional. If count data are normalized to the total number of counts in the sample, the data become not independent and traditional statistical metrics (e.g., correlation) for the detection of specie-species relationships can lead to spurious results. In addition, sequencing-based studies typically measure hundreds of OTUs (species) on few samples; thus, inference of OTU-OTU association networks is severely under-powered. We provide the network association result with SparCC (Sparse Correlations for Compositional data)(Friedman & Alm 2012), which is a method for inferring correlations from compositional data. SparCC estimates the linear Pearson correlations between the log-transformed components.


References:

Friedman J, Alm EJ. Inferring correlation networks from genomic survey data. PLoS Comput Biol. 2012;8(9):e1002687. doi: 10.1371/journal.pcbi.1002687. Epub 2012 Sep 20. PMID: 23028285; PMCID: PMC3447976.

 

Association Network Inference by SparCC

 

 

 
 

XIII. Disclaimer

The results of this analysis are for research purpose only. They are not intended to diagnose, treat, cure, or prevent any disease. Forsyth and FOMC are not responsible for use of information provided in this report outside the research area.

 

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