<p>Brucellosis is among the most widespread zoonotic diseases globally, affecting multiple domestic animal species. We report the first isolation of <i>Brucella suis</i> from a vaginal swab collected from an aborted cow in India. The isolate (VS1) was confirmed as <i>B. suis</i> bv. 1 by biochemical assays and species-specific PCR. Whole genome sequencing analysis of the VS1 isolate revealed a 32,81,903&#xa0;bp genome with a guanosine and cytosine (GC) content of 57.29%. Multilocus sequence typing (MLST) 9-gene, 21-gene, and core genome MLST (cgMLST) schemes identified sequence types ST14, ST75, and ST1054/1075, respectively. Comparative genomics involving publicly available <i>B. suis</i> genome sequences showed conservation of key virulence genes. The genome <i>B. suis</i> strain 1330 was used to identify the single nucleotide polymorphisms (SNP) in study genomes and 63 SNPs were identified in the virulence-associated genes. The study indicates that <i>B. suis</i> biovar 1 can infect cattle, and likely contributes in the epidemiology and control of bovine brucellosis in India.</p>

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Isolation of Brucella suis from cattle in India: whole genome analysis unravels potential for zoonotic transmission

  • M. Suman Kumar,
  • S. S. R. Vakamalla,
  • Haris Ayoub,
  • C. Lalsangzuala,
  • A. R. Chandni,
  • Himani Dhanze,
  • Valil Kunjukunju Vinod,
  • S. Anbazhagan,
  • Prasad Thomas

摘要

Brucellosis is among the most widespread zoonotic diseases globally, affecting multiple domestic animal species. We report the first isolation of Brucella suis from a vaginal swab collected from an aborted cow in India. The isolate (VS1) was confirmed as B. suis bv. 1 by biochemical assays and species-specific PCR. Whole genome sequencing analysis of the VS1 isolate revealed a 32,81,903 bp genome with a guanosine and cytosine (GC) content of 57.29%. Multilocus sequence typing (MLST) 9-gene, 21-gene, and core genome MLST (cgMLST) schemes identified sequence types ST14, ST75, and ST1054/1075, respectively. Comparative genomics involving publicly available B. suis genome sequences showed conservation of key virulence genes. The genome B. suis strain 1330 was used to identify the single nucleotide polymorphisms (SNP) in study genomes and 63 SNPs were identified in the virulence-associated genes. The study indicates that B. suis biovar 1 can infect cattle, and likely contributes in the epidemiology and control of bovine brucellosis in India.