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6型肺炎球菌荚膜位点的进化遗传学

Evolutionary genetics of the capsular locus of serogroup 6 pneumococci.

作者信息

Mavroidi Angeliki, Godoy Daniel, Aanensen David M, Robinson D Ashley, Hollingshead Susan K, Spratt Brian G

机构信息

Department of Infectious Disease Epidemiology, Imperial College London, Room G22, Old Medical School Building, St. Mary's Hospital, Norfolk Place, London W2 1PG, United Kingdom.

出版信息

J Bacteriol. 2004 Dec;186(24):8181-92. doi: 10.1128/JB.186.24.8181-8192.2004.

Abstract

The evolution of the capsular biosynthetic (cps) locus of serogroup 6 Streptococcus pneumoniae was investigated by analyzing sequence variation within three serotype-specific cps genes from 102 serotype 6A and 6B isolates. Sequence variation within these cps genes was related to the genetic relatedness of the isolates, determined by multilocus sequence typing, and to the inferred patterns of recent evolutionary descent, explored using the eBURST algorithm. The serotype-specific cps genes had a low percent G+C, and there was a low level of sequence diversity in this region among serotype 6A and 6B isolates. There was also little sequence divergence between these serotypes, suggesting a single introduction of an ancestral cps sequence, followed by slight divergence to create serotypes 6A and 6B. A minority of serotype 6B isolates had cps sequences (class 2 sequences) that were approximately 5% divergent from those of other serotype 6B isolates (class 1 sequences) and which may have arisen by a second, more recent introduction from a related but distinct source. Expression of a serotype 6A or 6B capsule correlated perfectly with a single nonsynonymous polymorphism within wciP, the rhamnosyl transferase gene. In addition to ample evidence of the horizontal transfer of the serotype 6A and 6B cps locus into unrelated lineages, there was evidence for relatively frequent changes from serotype 6A to 6B, and vice versa, among very closely related isolates and examples of recent recombinational events between class 1 and 2 cps serogroup 6 sequences.

摘要

通过分析102株6A和6B血清型分离株的三个血清型特异性荚膜生物合成(cps)基因内的序列变异,研究了6型肺炎链球菌荚膜生物合成基因座的进化。这些cps基因内的序列变异与通过多位点序列分型确定的分离株的遗传相关性以及使用eBURST算法探索的近期进化谱系推断模式相关。血清型特异性cps基因的G+C百分比低,并且在6A和6B血清型分离株中该区域的序列多样性水平低。这些血清型之间的序列差异也很小,表明祖先cps序列单次引入,随后略有分歧以产生6A和6B血清型。少数6B血清型分离株具有cps序列(2类序列),与其他6B血清型分离株(1类序列)的序列差异约为5%,可能是由相关但不同来源的第二次、更近的引入产生的。6A或6B血清型荚膜的表达与鼠李糖基转移酶基因wciP内的单个非同义多态性完全相关。除了有充分证据表明6A和6B血清型cps基因座水平转移到不相关谱系外,还有证据表明在非常密切相关的分离株中6A血清型与6B血清型之间相对频繁地发生转变,反之亦然,以及1类和2类6型血清群cps序列之间近期重组事件的实例。

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