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Supporting data for "Machine learning based feature selection to search stable microbial biomarkers: application to inflammatory bowel disease"

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Dataset overview

Participants None
Samples 1,569
Reuse readiness 5.4/10 evidence-backed score

Machine learning-based feature selection to search stable microbial biomarkers: application to inflammatory bowel disease.

Abstract

<h4>Background</h4>Biomarker discovery exploiting feature importance of machine learning has risen recently in the microbiome landscape with its high predictive performance in several disease states. To have a concrete selection among a high number of features, recursive feature elimination (RFE) has been widely used in the bioinformatics field. However, machine learning-based RFE has factors that decrease the stability of feature selection. In this article, we suggested methods to improve stability while sustaining performance.<h4>Results</h4>We exploited the abundance matrices of the gut microbiome (283 taxa at species level and 220 at genus level) to classify between patients with inflammatory bowel disease (IBD) and healthy control (1,569 samples). We found that applying an already published data transformation before RFE improves feature stability significantly. Moreover, we performed an in-depth evaluation of different variants of the data transformation and identify those that demonstrate better improvement in stability while not sacrificing classification performance. To ensure a robust comparison, we evaluated stability using various similarity metrics, distances, the common number of features, and the ability to filter out noise features. We were able to confirm that the mapping by the Bray-Curtis similarity matrix before RFE consistently improves the stability while maintaining good performance. Multilayer perceptron algorithm exhibited the highest performance among 8 different machine learning algorithms when a large number of features (a few hundred) were considered based on the best performance across 100 bootstrapped internal test sets. Conversely, when utilizing only a limited number of biomarkers as a trade-off between optimal performance and method generalizability, the random forest algorithm demonstrated the best performance. Using the optimal pipeline we developed, we identified 14 biomarkers for IBD at the species level and analyzed their roles using Shapley additive explanations.<h4>Conclusion</h4>Taken together, our work not only showed how to improve biomarker discovery in the metataxonomic field without sacrificing classification performance but also provided useful insights for future comparative studies.

Study facts

Organism
Platform
Age group
Disease groups
Anatomical sites

Data availability

  • Analysis code

Strengths & limitations for reuse

Strengths

  • Feature/OTU tables are advertised
  • Taxonomic tables are advertised
  • Analysis code is available
  • Sample counts are documented

Limitations

  • Not documented: raw reads are advertised
  • Not documented: participant counts are documented
Extraction evidence & provenance

Each extracted field is shown with the source excerpt and location used to resolve it.

Assay

FieldValueEvidence
assay.sequencing_type amplicon_16s
the .biom file with the abundance matrices of the processed 16S rDNA sequences

Section Methods—Data, offset 6500

Data_Assets

FieldValueEvidence
data_assets.analysis_code True
Data after each preprocessing stage can be accessed by our code repository. Our code and other data further supporting this work ... are openly available

Section Data availability, offset 43800

data_assets.feature_or_otu_table True
We exploited the abundance matrices of the gut microbiome

Section description, offset 10220

data_assets.open_access True
Creative Commons Zero v1.0 Universal

Section rightsList, offset 8300

data_assets.pipeline_or_tool_versions True
trimming (QIIMEq2 1.9.1) and Pick closed-reference OTUs (QIIMEq2 1.9.1)

Section Methods—Data, offset 6800

data_assets.sample_metadata True
We downloaded the metadata file, with all the available covariates

Section Methods—Data, offset 6350

data_assets.taxonomic_table True
and the associated taxonomy

Section Methods—Data, offset 6550

Specimens

FieldValueEvidence
specimens.body_site gut
gut metataxonomic data

Section Introduction, offset 2800

specimens.number_of_samples 1569
We exploited the abundance matrices of the gut microbiome (283 taxa at species level and 220 at genus level) to classify between patients with inflammatory bowel disease (IBD) and healthy control (1569 samples).

Section description, offset 10300