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Updated: Jan 11, 2026

Identification of Mycobacterium Species by DNA Microarray Chip Method
Published on: June 24, 2025
Comparative Analysis of Evolutionary Distances Using the Genus Mycobacterium
Danila Zimenkov1, Anastasia Ushtanit1
1Center for High-Tech Bioeconomy, Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991 Moscow, Russia.
Average amino acid identity (AAI) best distinguishes Mycobacterium species. This study confirms rRNA gene thresholds for genus delineation and estimates at least 402 Mycobacterium species, aiding in identification and classification.
Area of Science:
- Genomics and Bioinformatics
- Microbiology and Infectious Diseases
- Evolutionary Biology
Background:
- Nontuberculous mycobacteria infections are a growing global health concern, particularly in vulnerable populations.
- Accurate identification and understanding of evolutionary relationships within the Mycobacterium genus are crucial for effective disease management.
- Existing methods for species identification and genus delineation require refinement to address the increasing complexity of mycobacterial infections.
Purpose of the Study:
- To evaluate various genomic metrics for their efficacy in distinguishing the Mycobacterium genus from related taxa within Mycobacteriales.
- To establish reliable thresholds for genus delineation using ribosomal RNA (rRNA) genes.
- To assess the validity of proposed genus splits and estimate the total number of species within the Mycobacterium genus.
Main Methods:
- Comparative genomic analyses including average nucleotide identity (ANI), genome-genome distance calculations, Mash, multilocus sequence analysis (MLSA), and average amino acid identity (AAI).
- Evaluation of 16S rRNA (rrs) and 23S rRNA (rrl) gene sequences for genus delineation.
- Phylogenetic analysis using whole-genome sequences to construct a genus tree and estimate species diversity.
Main Results:
- Average amino acid identity (AAI) demonstrated the highest discriminatory power for genus-level identification within Mycobacteriales.
- Confirmed 94.5-95.0% identity threshold for the 16S rRNA gene (rrs) and established an 88.5-89.0% threshold for the 23S rRNA gene (rrl) for genus delineation.
- The proposed splitting of the Mycobacterium genus into five distinct genera was not supported by the genus-delineating thresholds; at least 402 species are estimated, with 246 found in human clinical samples.
Conclusions:
- AAI is the most effective metric for distinguishing the Mycobacterium genus.
- Established rRNA gene thresholds provide a robust framework for genus delineation.
- The current study provides a reliable phylogenetic framework and species list for the Mycobacterium genus, crucial for accurate taxonomic positioning and identification of novel species.
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