Literature DB >> 33510722

Characterization of Bacillus cereus Group Isolates From Human Bacteremia by Whole-Genome Sequencing.

Angelica Bianco1, Loredana Capozzi1, Maria Rosa Monno2, Laura Del Sambro1, Viviana Manzulli1, Graziano Pesole3, Daniela Loconsole4, Antonio Parisi1.   

Abstract

Members of the Bacillus cereus group are spore-forming organisms commonly associated with food poisoning and intestinal infections. Moreover, some strains of the group (i.e., B. cereus sensu stricto and Bacillus thuringiensis) can cause bacteremia in humans, mainly in immunocompromised individuals. Here we performed the genetic characterization of 17 human clinical strains belonging to B. cereus group isolated from blood culture. The whole-genome sequencing (WGS) revealed that the isolates were closely related to B. cereus sensu stricto and B. thuringiensis-type strain. Multilocus sequence typing analysis performed on the draft genome revealed the genetic diversity of our isolates, which were assigned to different sequence types. Based on panC nucleotide sequence, the isolates were grouped in the phylogenetic groups III and IV. The NHE, cer, and inhA gene cluster, entA, entFM, plcA, and plcB, were the most commonly detected virulence genes. Although we did not assess the ability to generate biofilm by phenotypic tests, we verified the prevalence of biofilm associated genes using an in silico approach. A high prevalence of pur gene cluster, xerC, clpY, codY, tasA, sipW, sinI, and sigB genes, was found. Genes related to the resistance to penicillin, trimethoprim, and ceftriaxone were identified in most of the isolates. Intriguingly, the majority of these virulence and AMR genes appeared to be evenly distributed among B. cereus s.s. isolates, as well as closely related to B. thuringiensis isolates. We showed the WGS represents a good approach to rapidly characterize B. cereus group strains, being able to give useful information about genetic epidemiology, the presence of virulence and antimicrobial genes, and finally about the potential hazard related to this underestimated risk.
Copyright © 2021 Bianco, Capozzi, Monno, Del Sambro, Manzulli, Pesole, Loconsole and Parisi.

Entities:  

Keywords:  ANIBlast; BTyper; Bacillus cereus group; virulence factors; whole-genome sequencing (WGS)

Year:  2021        PMID: 33510722      PMCID: PMC7835510          DOI: 10.3389/fmicb.2020.599524

Source DB:  PubMed          Journal:  Front Microbiol        ISSN: 1664-302X            Impact factor:   5.640


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