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Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India

Whole-genome sequencing has created a revolution in tuberculosis management by providing a comprehensive picture of the various genetic polymorphisms with unprecedented accuracy. Studies mapping genomic heterogeneity in clinical isolates of Mycobacterium tuberculosis using a whole-genome sequencing...

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Autores principales: Rao, Mahadev, Wollenberg, Kurt, Harris, Michael, Kulavalli, Shrivathsa, Thomas, Levin, Chawla, Kiran, Shenoy, Vishnu Prasad, Varma, Muralidhar, Saravu, Kavitha, Hande, H. Manjunatha, Shanthigrama Vasudeva, Chidananda Sanju, Jeffrey, Brendan, Gabrielian, Andrei, Rosenthal, Alex
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10580826/
https://www.ncbi.nlm.nih.gov/pubmed/37671895
http://dx.doi.org/10.1128/spectrum.04531-22
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author Rao, Mahadev
Wollenberg, Kurt
Harris, Michael
Kulavalli, Shrivathsa
Thomas, Levin
Chawla, Kiran
Shenoy, Vishnu Prasad
Varma, Muralidhar
Saravu, Kavitha
Hande, H. Manjunatha
Shanthigrama Vasudeva, Chidananda Sanju
Jeffrey, Brendan
Gabrielian, Andrei
Rosenthal, Alex
author_facet Rao, Mahadev
Wollenberg, Kurt
Harris, Michael
Kulavalli, Shrivathsa
Thomas, Levin
Chawla, Kiran
Shenoy, Vishnu Prasad
Varma, Muralidhar
Saravu, Kavitha
Hande, H. Manjunatha
Shanthigrama Vasudeva, Chidananda Sanju
Jeffrey, Brendan
Gabrielian, Andrei
Rosenthal, Alex
author_sort Rao, Mahadev
collection PubMed
description Whole-genome sequencing has created a revolution in tuberculosis management by providing a comprehensive picture of the various genetic polymorphisms with unprecedented accuracy. Studies mapping genomic heterogeneity in clinical isolates of Mycobacterium tuberculosis using a whole-genome sequencing approach from high tuberculosis burden countries are underrepresented. We report whole-genome sequencing results of 242 clinical isolates of culture-confirmed M. tuberculosis isolates from tuberculosis patients referred to a tertiary care hospital in Southern India. Phylogenetic analysis revealed that the isolates in our study belonged to five different lineages, with Indo-Oceanic (lineage 1, n = 122) and East-African Indian (lineage 3, n = 80) being the most prevalent. We report several mutations in genes conferring resistance to first and second line antitubercular drugs including the genes rpoB, katG, ahpC, inhA, fabG1, embB, pncA, rpsL, rrs, and gyrA. The majority of these mutations were identified in relatively high proportions in lineage 1. Our study highlights the utility of whole-genome sequencing as a potential supplemental tool to the existing genotypic and phenotypic methods, in providing expedited comprehensive surveillance of mutations that may be associated with antitubercular drug resistance as well as lineage characterization of M. tuberculosis isolates. Further larger-scale whole-genome datasets with linked minimum inhibition concentration testing are imperative for resolving the discrepancies between whole-genome sequencing and phenotypic drug sensitivity testing results and quantifying the level of the resistance associated with the mutations for optimization of antitubercular drug and precise dose selection in clinics. IMPORTANCE: Studies mapping genetic heterogeneity of clinical isolates of M. tuberculosis for determining their strain lineage and drug resistance by whole-genome sequencing are limited in high tuberculosis burden settings. We carried out whole-genome sequencing of 242 M. tuberculosis isolates from drug-sensitive and drug-resistant tuberculosis patients, identified and collected as part of the TB Portals Program, to have a comprehensive insight into the genetic diversity of M. tuberculosis in Southern India. We report several genetic variations in M. tuberculosis that may confer resistance to antitubercular drugs. Further wide-scale efforts are required to fully characterize M. tuberculosis genetic diversity at a population level in high tuberculosis burden settings for providing precise tuberculosis treatment.
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spelling pubmed-105808262023-10-18 Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India Rao, Mahadev Wollenberg, Kurt Harris, Michael Kulavalli, Shrivathsa Thomas, Levin Chawla, Kiran Shenoy, Vishnu Prasad Varma, Muralidhar Saravu, Kavitha Hande, H. Manjunatha Shanthigrama Vasudeva, Chidananda Sanju Jeffrey, Brendan Gabrielian, Andrei Rosenthal, Alex Microbiol Spectr Research Article Whole-genome sequencing has created a revolution in tuberculosis management by providing a comprehensive picture of the various genetic polymorphisms with unprecedented accuracy. Studies mapping genomic heterogeneity in clinical isolates of Mycobacterium tuberculosis using a whole-genome sequencing approach from high tuberculosis burden countries are underrepresented. We report whole-genome sequencing results of 242 clinical isolates of culture-confirmed M. tuberculosis isolates from tuberculosis patients referred to a tertiary care hospital in Southern India. Phylogenetic analysis revealed that the isolates in our study belonged to five different lineages, with Indo-Oceanic (lineage 1, n = 122) and East-African Indian (lineage 3, n = 80) being the most prevalent. We report several mutations in genes conferring resistance to first and second line antitubercular drugs including the genes rpoB, katG, ahpC, inhA, fabG1, embB, pncA, rpsL, rrs, and gyrA. The majority of these mutations were identified in relatively high proportions in lineage 1. Our study highlights the utility of whole-genome sequencing as a potential supplemental tool to the existing genotypic and phenotypic methods, in providing expedited comprehensive surveillance of mutations that may be associated with antitubercular drug resistance as well as lineage characterization of M. tuberculosis isolates. Further larger-scale whole-genome datasets with linked minimum inhibition concentration testing are imperative for resolving the discrepancies between whole-genome sequencing and phenotypic drug sensitivity testing results and quantifying the level of the resistance associated with the mutations for optimization of antitubercular drug and precise dose selection in clinics. IMPORTANCE: Studies mapping genetic heterogeneity of clinical isolates of M. tuberculosis for determining their strain lineage and drug resistance by whole-genome sequencing are limited in high tuberculosis burden settings. We carried out whole-genome sequencing of 242 M. tuberculosis isolates from drug-sensitive and drug-resistant tuberculosis patients, identified and collected as part of the TB Portals Program, to have a comprehensive insight into the genetic diversity of M. tuberculosis in Southern India. We report several genetic variations in M. tuberculosis that may confer resistance to antitubercular drugs. Further wide-scale efforts are required to fully characterize M. tuberculosis genetic diversity at a population level in high tuberculosis burden settings for providing precise tuberculosis treatment. American Society for Microbiology 2023-09-06 /pmc/articles/PMC10580826/ /pubmed/37671895 http://dx.doi.org/10.1128/spectrum.04531-22 Text en https://doi.org/10.1128/AuthorWarrantyLicense.v1This is a work of the U.S. Government and is not subject to copyright protection in the United States. Foreign copyrights may apply (https://doi.org/10.1128/AuthorWarrantyLicense.v1) .
spellingShingle Research Article
Rao, Mahadev
Wollenberg, Kurt
Harris, Michael
Kulavalli, Shrivathsa
Thomas, Levin
Chawla, Kiran
Shenoy, Vishnu Prasad
Varma, Muralidhar
Saravu, Kavitha
Hande, H. Manjunatha
Shanthigrama Vasudeva, Chidananda Sanju
Jeffrey, Brendan
Gabrielian, Andrei
Rosenthal, Alex
Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India
title Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India
title_full Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India
title_fullStr Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India
title_full_unstemmed Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India
title_short Lineage classification and antitubercular drug resistance surveillance of Mycobacterium tuberculosis by whole-genome sequencing in Southern India
title_sort lineage classification and antitubercular drug resistance surveillance of mycobacterium tuberculosis by whole-genome sequencing in southern india
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10580826/
https://www.ncbi.nlm.nih.gov/pubmed/37671895
http://dx.doi.org/10.1128/spectrum.04531-22
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