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Whole genome analysis of diverse Chlamydia trachomatis strains identifies phylogenetic relationships masked by current clinical typing

机译:多样化的沙眼衣原体株识别的全基因组分析的系统发育关系掩盖由目前的临床分型

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摘要

Chlamydia trachomatis is responsible for both trachoma and sexually transmitted infections causing substantial morbidity and economic cost globally. Despite this, our knowledge of its population and evolutionary genetics is limited. Here we present a detailed whole genome phylogeny from representative strains of both trachoma and lymphogranuloma venereum (LGV) biovars from temporally and geographically diverse sources. Our analysis demonstrates that predicting phylogenetic structure using the ompA gene, traditionally used to classify Chlamydia, is misleading because extensive recombination in this region masks true relationships. We show that in many instances ompA is a chimera that can be exchanged in part or whole, both within and between biovars. We also provide evidence for exchange of, and recombination within, the cryptic plasmid, another important diagnostic target. We have used our phylogenetic framework to show how genetic exchange has manifested itself in ocular, urogenital and LGV C. trachomatis strains, including the epidemic LGV serotype L2b.
机译:Chlamydia Trachomatis负责沙眼和性传播的感染,导致全球性发病率和经济成本。尽管如此,我们对其人口和进化遗传学的了解是有限的。在这里,我们从在时间上和地理上不同的来源出现来自沙眼和淋巴瘤的代表性菌株(LGV)Biovars的特征的整个基因组。我们的分析表明,使用传统上用于对衣原体进行分类的OMPA基因预测系统发育结构是误导性的,因为该地区的广泛复合掩盖了真正的关系。我们认为,在许多情况下,OMPA是一种嵌合体,可以在Biovars内和之间部分或全部交换。我们还提供了汇率交换和重组的证据,隐秘质粒另一种重要诊断靶标。我们使用过的系统发育框架来展示遗传交换如何表现出在眼睑,泌尿生殖器和LGV C. Thachomatis菌株中表现出来,包括流行性LGV血清型L2B。

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