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Similar yet different: phylogenomic analysis to delineate Salmonella and Citrobacter species boundaries

机译:类似但不同的是:文学组织分析划列沙门氏菌和柠檬杆菌物种界限

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Salmonella enterica is a leading cause of foodborne illness worldwide resulting in considerable public health and economic costs. Testing for the presence of this pathogen in food is often hampered by the presence of background microflora that may present as Salmonella (false positives). False positive isolates belonging to the genus Citrobacter can be difficult to distinguish from Salmonella due to similarities in their genetics, cell surface antigens, and other phenotypes. In order to understand the genetic basis of these similarities, a comparative genomic approach was used to define the pan-, core, accessory, and unique coding sequences of a representative population of Salmonella and Citrobacter strains. Analysis of the genomic content of 58?S. enterica strains and 37 Citrobacter strains revealed the presence of 31,130 and 1540 coding sequences within the pan- and core genome of this population. Amino acid sequences unique to either Salmonella (n?=?1112) or Citrobacter (n?=?195) were identified and revealed potential niche-specific adaptations. Phylogenetic network analysis of the protein families encoded by the pan-genome indicated that genetic exchange between Salmonella and Citrobacter may have led to the acquisition of similar traits and also diversification within the genera. Core genome analysis suggests that the Salmonella enterica and Citrobacter populations investigated here share a common evolutionary history. Comparative analysis of the core and pan-genomes was able to define the genetic features that distinguish Salmonella from Citrobacter and highlight niche specific adaptations.
机译:Salmonella肠道是全球食源性疾病的主要原因,导致大量的公共卫生和经济成本。在食物中存在这种病原体的测试通常是通过可能作为沙门氏菌(假阳性)存在的背景微氯而受阻。由于其遗传学,细胞表面抗原和其他表型的相似性,属于柑橘杆菌属的假阳性分离物可能难以区分沙门氏菌。为了理解这些相似性的遗传基础,使用比较基因组方法来定义沙门氏菌和糖杆菌菌株的代表性群体的泛,核心,辅助性和独特编码序列。分析58'S的基因组含量。肠溶菌株和37个柠檬杆菌菌株揭示了该群体泛骨和核心基因组内31,130和1540个编码序列的存在。氨基酸序列是沙门氏菌(N?=α1112)或柑橘杆菌(N?= 195)独特的氨基酸序列,并揭示了潜在的潜在的利基特征。由泛基因组编码的蛋白质家族的系统发育网络分析表明,沙门氏菌和柑橘杆菌之间的遗传交换可能导致相似性状的采集,并且在属内也是多样化。核心基因组分析表明,在此研究的沙门氏菌和柠檬酸件群体分享了普遍的进化史。对核心和泛基因组的比较分析能够定义区分沙门氏菌的遗传特征,并突出利基特异性适应。

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