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Genome sequence of Chlamydophila caviae (Chlamydia psittaci GPIC): examining the role of niche-specific genes in the evolution of the Chlamydiaceae

机译:衣原体衣原体基因组序列(衣原体psittaci GPIC):研究利基特异性基因在衣原体进化中的作用

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摘要

The genome of Chlamydophila caviae (formerly Chlamydia psittaci, GPIC isolate) (1 173 390 nt with a plasmid of 7966 nt) was determined, representing the fourth species with a complete genome sequence from the Chlamydiaceae family of obligate intracellular bacterial pathogens. Of 1009 annotated genes, 798 were conserved in all three other completed Chlamydiaceae genomes. The C.caviae genome contains 68 genes that lack orthologs in any other completed chlamydial genomes, including tryptophan and thiamine biosynthesis determinants and a ribose-phosphate pyrophosphokinase, the product of the prsA gene. Notable amongst these was a novel member of the virulence-associated invasin/intimin family (IIF) of Gram-negative bacteria. Intriguingly, two authentic frameshift mutations in the ORF indicate that this gene is not functional. Many of the unique genes are found in the replication termination region (RTR or plasticity zone), an area of frequent symmetrical inversion events around the replication terminus shown to be a hotspot for genome variation in previous genome sequencing studies. In C.caviae, the RTR includes several loci of particular interest including a large toxin gene and evidence of ancestral insertion(s) of a bacteriophage. This toxin gene, not present in Chlamydia pneumoniae, is a member of the YopT effector family of type III-secreted cysteine proteases. One gene cluster (guaBA-add) in the RTR is much more similar to orthologs in Chlamydia muridarum than those in the phylogenetically closest species C.pneumoniae, suggesting the possibility of horizontal transfer of genes between the rodent-associated Chlamydiae. With most genes observed in the other chlamydial genomes represented, C.caviae provides a good model for the Chlamydiaceae and a point of comparison against the human atherosclerosis-associated C.pneumoniae. This crucial addition to the set of completed Chlamydiaceae genome sequences is enabling dissection of the roles played by niche-specific genes in these important bacterial pathogens.
机译:确定了衣原体衣原体(以前为衣原体衣原体,GPIC分离株)的基因组(1173390 nt,质粒7966 nt),代表了第四种具有完整专性胞内细菌病原体衣原体科的完整基因组序列。在1009个带注释的基因中,有798个在所有其他三个完整的衣原体基因组中均得到了保守。 C.caviae基因组包含68个在任何其他完整衣原体基因组中都缺少直系同源基因的基因,包括色氨酸和硫胺素生物合成决定簇以及核糖磷酸焦磷酸激酶(prsA基因的产物)。其中值得注意的是革兰氏阴性细菌的毒力相关的入侵素/内膜素家族(IIF)的新成员。有趣的是,ORF中两个真实的移码突变表明该基因无功能。在复制终止区(RTR或可塑性区)中发现了许多独特基因,复制终止区附近是频繁发生对称倒置事件的区域,在先前的基因组测序研究中,这是基因组变异的热点。在C.caviae中,RTR包括几个特别感兴趣的基因座,包括一个大毒素基因和一个噬菌体祖先插入的证据。这种毒素基因不存在于肺炎衣原体中,是III型分泌的半胱氨酸蛋白酶的YopT效应子家族的成员。 RTR中的一个基因簇(guaBA-add)与系统性最接近的肺炎衣原体C. pneumoniae中的同源基因非常相似,而与衣原体中的直向同源物更为相似,这表明在与啮齿动物相关的衣原体之间水平转移基因的可能性。以其他衣原体基因组中观察到的大多数基因为代表,C.caviae为衣原体提供了一个很好的模型,并为与人类动脉粥样硬化相关的肺炎衣原体提供了比较点。对完成的衣原体基因组序列集的这一至关重要的补充,使得能够解剖这些重要细菌病原体中的利基特异性基因所起的作用。

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