Reconsidering <i>Mycobacterium bovis</i> as a proxy for zoonotic tuberculosis: a molecular epidemiological surveillance study.

Duffy, Shannon C; Srinivasan, Sreenidhi; Schilling, Megan A; Stuber, Tod; Danchuk, Sarah N; Michael, Joy S; Venkatesan, Manigandan; Bansal, Nitish et al. · Lancet Microbe · 2020

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Abstract

Zoonotic tuberculosis is defined as human infection with <i>Mycobacterium bovis</i>. Although globally, India has the largest number of human tuberculosis cases and the largest cattle population, in which bovine tuberculosis is endemic, the burden of zoonotic tuberculosis is unknown. The aim of this study was to obtain estimates of the human prevalence of animal-associated members of the <i>Mycobacterium tuberculosis</i> complex (MTBC) at a large referral hospital in India. We did a molecular epidemiological surveillance study of 940 positive mycobacteria growth indicator tube (MGIT) cultures, collected from patients visiting the outpatient department at Christian Medical College (Vellore, India) with suspected tuberculosis between Oct 1, 2018, and March 31, 2019. A PCR-based approach was applied to subspeciate cultures. Isolates identified as MTBC other than <i>M tuberculosis</i> or as inconclusive on PCR were subject to whole-genome sequencing (WGS), and phylogenetically compared with publicly available MTBC sequences from south Asia. Sequences from WGS were deposited in the National Center for Biotechnology Information Sequence Read Archive, accession number SRP226525 (BioProject database number PRJNA575883). The 940 MGIT cultures were from 548 pulmonary and 392 extrapulmonary samples. A conclusive identification was obtained for all 940 isolates; wild-type <i>M bovis</i> was not identified. The isolates consisted of <i>M tuberculosis</i> (913 [97·1%] isolates), <i>Mycobacterium orygis</i> (seven [0·7%]), <i>M bovis</i> BCG (five [0·5%]), and non-tuberculous mycobacteria (15 [1·6%]). Subspecies were assigned for 25 isolates by WGS, which were analysed against 715 MTBC sequences from south Asia. Among the 715 genomes, no <i>M bovis</i> was identified. Four isolates of cattle origin were dispersed among human sequences within <i>M tuberculosis</i> lineage 1, and the seven <i>M orygis</i> isolates from human MGIT cultures were dispersed among sequences from cattle. <i>M bovis</i> prevalence in humans is an inadequate proxy of zoonotic tuberculosis. The recovery of <i>M orygis</i> from humans highlights the need to use a broadened definition, including MTBC subspecies such as <i>M orygis</i>, to investigate zoonotic tuberculosis. The identification of <i>M tuberculosis</i> in cattle also reinforces the need for One Health investigations in countries with endemic bovine tuberculosis. Bill & Melinda Gates Foundation, Canadian Institutes for Health Research.

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