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Whole genome investigation of a divergent clade of the pathogen Streptococcus suis

机译:猪链球菌病原体分歧进化枝的全基因组研究

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摘要

Streptococcus suis is a major porcine and zoonotic pathogen responsible for significant economic losses in the pig industry and an increasing number of human cases. Multiple isolates of S. suis show marked genomic diversity. Here, we report the analysis of whole genome sequences of nine pig isolates that caused disease typical of S. suis and had phenotypic characteristics of S. suis, but their genomes were divergent from those of many other S. suis isolates. Comparison of protein sequences predicted from divergent genomes with those from normal S. suis reduced the size of core genome from 793 to only 397 genes. Divergence was clear if phylogenetic analysis was performed on reduced core genes and MLST alleles. Phylogenies based on certain other genes (16S rRNA, sodA, recN, and cpn60) did not show divergence for all isolates, suggesting recombination between some divergent isolates with normal S. suis for these genes. Indeed, there is evidence of recent recombination between the divergent and normal S. suis genomes for 249 of 397 core genes. In addition, phylogenetic analysis based on the 16S rRNA gene and 132 genes that were conserved between the divergent isolates and representatives of the broader Streptococcus genus showed that divergent isolates were more closely related to S. suis. Six out of nine divergent isolates possessed a S. suis-like capsule region with variation in capsular gene sequences but the remaining three did not have a discrete capsule locus. The majority (40/70), of virulence-associated genes in normal S. suis were present in the divergent genomes. Overall, the divergent isolates extend the current diversity of S. suis species but the phenotypic similarities and the large amount of gene exchange with normal S. suis gives insufficient evidence to assign these isolates to a new species or subspecies. Further, sampling and whole genome analysis of more isolates is warranted to understand the diversity of the species.
机译:猪链球菌是主要的猪和人畜共患病原体,在养猪业和大量人类病例中造成重大经济损失。猪链球菌的多个分离株显示出明显的基因组多样性。在这里,我们报告分析了九种猪分离株的全基因组序列,这些猪分离株引起猪链球菌的典型疾病并具有猪链球菌的表型特征,但它们的基因组与许多其他猪链球菌的分离。从不同基因组预测的蛋白质序列与正常猪链球菌预测的蛋白质序列比较,将核心基因组的大小从793个减少到仅397个基因。如果对减少的核心基因和MLST等位基因进行系统发育分析,则差异很明显。基于某些其他基因(16S rRNA,sodA,recN和cpn60)的系统发育没有对所有分离株显示出差异,这表明这些基因与正常猪链球菌之间存在一些重组分离株的重组。确实,有证据表明397个核心基因中有249个在发散猪链球菌和正常猪链球菌基因组之间发生了重组。此外,基于16S rRNA基因和132个基因的系统进化分析表明,分离的菌株与猪链球菌的亲缘关系更密切。在九种不同的分离株中,有六种具有猪链球菌样的荚膜区域,其荚膜基因序列存在差异,但其余三个没有离散的荚膜基因座。正常猪链球菌中大多数与毒力相关的基因(40/70)存在于不同的基因组中。总体而言,不同的分离株扩展了猪链球菌的当前多样性,但表型相似性和与正常 S的大量基因交换。 suis 提供的证据不足,无法将这些分离物分配给新的物种或亚种。此外,有必要对更多分离株进行采样和全基因组分析,以了解该物种的多样性。

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