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康氏立克次体和普氏立克次体的进化机制。

Mechanisms of evolution in Rickettsia conorii and R. prowazekii.

作者信息

Ogata H, Audic S, Renesto-Audiffren P, Fournier P E, Barbe V, Samson D, Roux V, Cossart P, Weissenbach J, Claverie J M, Raoult D

机构信息

Information Génétique & Structurale, CNRS-AVENTIS UMR 1889, 31 chemin Joseph Aiguier, 13402 Marseille Cedex 20, France.

出版信息

Science. 2001 Sep 14;293(5537):2093-8. doi: 10.1126/science.1061471.

Abstract

Rickettsia conorii is an obligate intracellular bacterium that causes Mediterranean spotted fever in humans. We determined the 1,268,755-nucleotide complete genome sequence of R. conorii, containing 1374 open reading frames. This genome exhibits 804 of the 834 genes of the previously determined R. prowazekii genome plus 552 supplementary open reading frames and a 10-fold increase in the number of repetitive elements. Despite these differences, the two genomes exhibit a nearly perfect colinearity that allowed the clear identification of different stages of gene alterations with gene remnants and 37 genes split in 105 fragments, of which 59 are transcribed. A 38-kilobase sequence inversion was dated shortly after the divergence of the genus.

摘要

康氏立克次体是一种专性细胞内细菌,可引起人类地中海斑疹热。我们测定了康氏立克次体1,268,755个核苷酸的完整基因组序列,其中包含1374个开放阅读框。该基因组展现出先前测定的普氏立克次体基因组834个基因中的804个,外加552个补充开放阅读框,并且重复元件数量增加了10倍。尽管存在这些差异,但这两个基因组表现出近乎完美的共线性,这使得能够清晰地识别基因改变的不同阶段,包括基因残余以及37个基因分裂成105个片段,其中59个片段被转录。一个38千碱基的序列倒位发生在该属分化后不久。

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