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首页> 外文期刊>BMC Genomics >Genetic diversity in the plasticity zone and the presence of the chlamydial plasmid differentiates Chlamydia pecorum strains from pigs, sheep, cattle, and koalas
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Genetic diversity in the plasticity zone and the presence of the chlamydial plasmid differentiates Chlamydia pecorum strains from pigs, sheep, cattle, and koalas

机译:可塑性区的遗传多样性和衣原体质粒的存在将猪衣原体菌株与猪,绵羊,牛和考拉区别开来

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Chlamydia pecorum is a globally recognised pathogen of livestock and koalas. To date, comparative genomics of C. pecorum strains from sheep, cattle and koalas has revealed that only single nucleotide polymorphisms (SNPs) and a limited number of pseudogenes appear to contribute to the genetic diversity of this pathogen. No chlamydial plasmid has been detected in these strains despite its ubiquitous presence in almost all other chlamydial species. Genomic analyses have not previously included C. pecorum from porcine hosts. We sequenced the genome of three C. pecorum isolates from pigs with differing pathologies in order to re-evaluate the genetic differences and to update the phylogenetic relationships between C. pecorum from each of the hosts. Whole genome sequences for the three porcine C. pecorum isolates (L1, L17 and L71) were acquired using C. pecorum-specific sequence capture probes with culture-independent methods, and assembled in CLC Genomics Workbench. The pairwise comparative genomic analyses of 16 pig, sheep, cattle and koala C. pecorum genomes were performed using several bioinformatics platforms, while the phylogenetic analyses of the core C. pecorum genomes were performed with predicted recombination regions removed. Following the detection of a C. pecorum plasmid, a newly developed C. pecorum-specific plasmid PCR screening assay was used to evaluate the plasmid distribution in 227 C. pecorum samples from pig, sheep, cattle and koala hosts. Three porcine C. pecorum genomes were sequenced using C. pecorum-specific sequence capture probes with culture-independent methods. Comparative genomics of the newly sequenced porcine C. pecorum genomes revealed an increased average number of SNP differences (~11 500) between porcine and sheep, cattle, and koala C. pecorum strains, compared to previous C. pecorum genome analyses. We also identified a third copy of the chlamydial cytotoxin gene, found only in porcine C. pecorum isolates. Phylogenetic analyses clustered porcine isolates into a distinct clade, highlighting the polyphyletic origin of C. pecorum in livestock. Most surprising, we also discovered a plasmid in the porcine C. pecorum genome. Using this novel C. pecorum plasmid (pCpec) sequence, a) we developed a pCpec screening assay to evaluate the plasmid distribution in C. pecorum from different hosts; and b) to characterise the pCpec sequences from available previously sequenced C. pecorum genome data. pCpec screening showed that the pCpec is common in all hosts of C. pecorum, however not all C. pecorum strains carry pCpec. This study provides further insight into the complexity of C. pecorum epidemiology and novel genomic regions that may be linked to host specificity. C. pecorum plasmid characterisation may aid in improving our understanding of C. pecorum pathogenesis across the variety of host species this animal pathogen infects.
机译:衣原体是全球公认的牲畜和考拉病原体。迄今为止,来自绵羊,牛和考拉的角膜梭菌菌株的比较基因组学表明,只有单核苷酸多态性(SNP)和有限数量的假基因似乎有助于这种病原体的遗传多样性。尽管在几乎所有其他衣原体物种中普遍存在该菌株,但在这些菌株中未检测到衣原体质粒。基因组分析以前未包括来自猪宿主的角膜梭菌。我们对来自不同病理形态的猪的三种角膜梭菌分离株的基因组进行了测序,以便重新评估遗传差异并更新每个宿主的角膜梭菌之间的系统发育关系。使用不依赖培养的方法,使用猪瘟衣原体特异性序列捕获探针获得三种猪瘟衣原体分离株(L1,L17和L71)的全基因组序列,并在CLC Genomics Workbench中组装。使用几种生物信息学平台对16个猪,绵羊,牛和考拉角鲨的基因组进行成对比较基因组分析,同时对核心角鲨的基因组进行系统发育分析,并去除了预期的重组区域。在检测到猪毛衣原体质粒后,使用新开发的猪毛衣原体特异性质粒PCR筛选测定法评估了来自猪,绵羊,牛和考拉宿主的227个毛衣原体中的质粒分布。使用不依赖培养物的方法使用猪毛衣藻特异性序列捕获探针对三个猪猪毛衣藻基因组进行测序。新近测序的猪瘟衣原体基因组的比较基因组学表明,与以前的猪瘟衣原体基因组分析相比,猪与绵羊,牛和考拉鹦鹉衣原体之间的SNP差异平均数增加(〜11 500)。我们还鉴定了衣原体细胞毒素基因的第三份拷贝,仅在猪角膜梭菌分离物中发现。系统发育分析将猪分离物聚类成一个独特的进化枝,突出了家畜中角斑病菌的多系起源。最令人惊讶的是,我们还在猪粘液梭状芽胞杆菌基因组中发现了一个质粒。使用这种新颖的角果衣原体质粒(pCpec)序列,a)我们开发了一种pCpec筛选测定法,以评估来自不同宿主的角果衣原体中质粒的分布; b)从先前已测序的角果衣原体基因组数据中表征pCpec序列。 pCpec筛选显示pCpec在pecorum的所有宿主中都是常见的,但是并非所有pecorum菌株都携带pCpec。这项研究提供了进一步的洞察力的复杂性角锥虫流行病学和新的基因组区域,可能与宿主特异性有关。 C. pecorum质粒表征可能有助于增进我们对该动物病原体感染的多种宿主物种对C. pecorum发病机理的了解。

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