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PMID: 39037482 Published · ppublish English

Whole Genome Sequence Analysis of Brucella spp. from Human, Livestock, and Wildlife in South Africa.

Journal of microbiology (Seoul, Korea) ·Vol. 62 ·No. 9 ·2024-09-00

Mazwi KD, Lekota KE, Glover BA, Kolo FB, Hassim A, Rossouw J, Jonker A, Wojno JM, Profiti G, Martelli PL, Casadio R, Zilli K, Janowicz A, Marotta F, Garofolo G, van Heerden H

Abstract

Brucellosis is an economically important zoonotic disease affecting humans, livestock, and wildlife health globally and especially in Africa. Brucella abortus and B. melitensis have been isolated from human, livestock (cattle and goat), and wildlife (sable) in South Africa (SA) but with little knowledge of the population genomic structure of this pathogen in SA. As whole genome sequencing can assist to differentiate and trace the origin of outbreaks of Brucella spp. strains, the whole genomes of retrospective isolates (n = 19) from previous studies were sequenced. Sequences were analysed using average nucleotide identity (ANI), pangenomics, and whole genome single nucleotide polymorphism (wgSNP) to trace the geographical origin of cases of brucellosis circulating in human, cattle, goats, and sable from different provinces in SA. Pangenomics analysis of B. melitensis (n = 69) and B. abortus (n = 56) was conducted with 19 strains that included B. abortus from cattle (n = 3) and B. melitensis from a human (n = 1), cattle (n = 1), goat (n = 1), Rev1 vaccine strain (n = 1), and sable (n = 12). Pangenomics analysis of B. melitensis genomes, highlighted shared genes, that include 10 hypothetical proteins and genes that encodes for acetyl-coenzyme A synthetase (acs), and acylamidase (aam) amongst the sable genomes. The wgSNP analysis confirmed the B. melitensis isolated from human was more closely related to the goat from the Western Cape Province from the same outbreak than the B. melitensis cattle sample from different cases in the Gauteng Province. The B. melitensis sable strains could be distinguished from the African lineage, constituting their own African sub-clade. The sequenced B. abortus strains clustered in the C2 lineage that is closely related to the isolates from Mozambique and Zimbabwe. This study identified genetically diverse Brucella spp. among various hosts in SA. This study expands the limited known knowledge regarding the presence of B. melitensis in livestock and humans in SA, further building a foundation for future research on the distribution of the Brucella spp. worldwide and its evolutionary background.

Keywords
B. abortus B. melitensis Brucellosis Human Livestock Wildlife
MeSH 主题词
Humans Animals Livestock Animals, Wild Goats Mustelidae Cattle Whole Genome Sequencing Brucella melitensis/classification,genetics,isolation & purification Brucella abortus/classification,genetics,isolation & purification Polymorphism, Single Nucleotide Multilocus Sequence Typing Phylogeny Brucellosis/microbiology,veterinary Abattoirs
Article Info
Journal
Journal of microbiology (Seoul, Korea)
Abbr.
J Microbiol
ISSN
1976-3794
Published
2024-09-00
Language
English
Country/Region
Korea (South)
NLM ID
9703165
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