Cai Yan, Huang Tingxuan, Xu Yuekang, Zhou Guoping, Zou Ping, Zeng Guifeng, Liu Xiaojin
School of Food Science and Technology, Changzhou University, No.1# Gehu Middle Road, Changzhou, 213164, Jiangsu, People's Republic of China.
School of Biology and Pharmaceutical Engineering, Wuhan Polytechnic University, Wuhan, 430023, People's Republic of China.
Arch Microbiol. 2017 Jul;199(5):775-785. doi: 10.1007/s00203-017-1350-9. Epub 2017 Mar 10.
Non-hemolytic enterotoxin (NHE), a tri-partite, proteinaceous toxin encoded by contiguous nheA, nheB and nheC genes of Bacillus cereus sensu lato (B. cereus s.l.), is considered to be associated with the foodborne diarrheic syndrome. However, B. cereus s.l. includes a number of closely related strains, and the occurrence of NHE among them, and other members of Bacillus is unclear. Consequently, we aimed to determine the distribution and evolution of NHE within Bacillus by confirming the presence of the nheA, B and C sequences and variation within them using published data, and to analyze the genomic and genetic diversity. The phylogenetic tree of NHE proteins (NheA, NheB and NheC) from 81 different B. cereus s.l. strains was constructed. And on the genetic determinants of the NHE toxin did not bring any obvious link between the nheABC genes sequence of a strain and its virulence in the diarrhoeal pathogenesis. Analysis of the genomic diversity of the nheA, B and C loci revealed that their upstream regions were more conserved than the downstream sequences. Multilocus sequence typing schemes (MLST) based on seven concatenated housekeeping genes and nheA, B and C genes of the 75 strains were developed. The neighbor joining phylogenetic tree based on seven housekeeping genes together with nheA, B and C genes was similiar to published Bacillus phylogenetic trees. And on the genetic determinants of the NHE toxin did not bring any obvious link between the nheABC genes sequence of a strain and its virulence in the diarrhoeal pathogenesis.The results indicate that nheA, B and C genes do not affect the diversity of housekeeping genes, and this specific NHE protein does not participate in the diarrheic syndrome.
非溶血性肠毒素(NHE)是一种由蜡样芽孢杆菌复合体(B. cereus s.l.)中相邻的nheA、nheB和nheC基因编码的三聚体蛋白质毒素,被认为与食源性腹泻综合征有关。然而,B. cereus s.l.包括许多密切相关的菌株,NHE在它们以及芽孢杆菌属的其他成员中的出现情况尚不清楚。因此,我们旨在通过利用已发表的数据确认nheA、B和C序列的存在及其内部变异,来确定NHE在芽孢杆菌属内的分布和进化,并分析基因组和遗传多样性。构建了来自81种不同B. cereus s.l.菌株的NHE蛋白(NheA、NheB和NheC)的系统发育树。并且在腹泻发病机制中,NHE毒素的遗传决定因素并未在菌株的nheABC基因序列与其毒力之间带来任何明显联系。对nheA、B和C基因座的基因组多样性分析表明,它们的上游区域比下游序列更保守。基于75个菌株的7个串联管家基因以及nheA、B和C基因开发了多位点序列分型方案(MLST)。基于7个管家基因以及nheA、B和C基因构建的邻接法系统发育树与已发表的芽孢杆菌系统发育树相似。并且在腹泻发病机制中,NHE毒素的遗传决定因素并未在菌株的nheABC基因序列与其毒力之间带来任何明显联系。结果表明,nheA、B和C基因不影响管家基因的多样性,并且这种特定的NHE蛋白不参与腹泻综合征。