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高变异性在酒球菌属进化中的作用。

Role of hypermutability in the evolution of the genus Oenococcus.

作者信息

Marcobal Angela M, Sela David A, Wolf Yuri I, Makarova Kira S, Mills David A

机构信息

Department of Viticulture and Enology, University of California, One Shields Ave., Davis, CA 95616, USA.

出版信息

J Bacteriol. 2008 Jan;190(2):564-70. doi: 10.1128/JB.01457-07. Epub 2007 Nov 9.

Abstract

Oenococcus oeni is an alcohol-tolerant, acidophilic lactic acid bacterium primarily responsible for malolactic fermentation in wine. A recent comparative genomic analysis of O. oeni PSU-1 with other sequenced lactic acid bacteria indicates that PSU-1 lacks the mismatch repair (MMR) genes mutS and mutL. Consistent with the lack of MMR, mutation rates for O. oeni PSU-1 and a second oenococcal species, O. kitaharae, were higher than those observed for neighboring taxa, Pediococcus pentosaceus and Leuconostoc mesenteroides. Sequence analysis of the rpoB mutations in rifampin-resistant strains from both oenococcal species revealed a high percentage of transition mutations, a result indicative of the lack of MMR. An analysis of common alleles in the two sequenced O. oeni strains, PSU-1 and BAA-1163, also revealed a significantly higher level of transition substitutions than were observed in other Lactobacillales species. These results suggest that the genus Oenococcus is hypermutable due to the loss of mutS and mutL, which occurred with the divergence away from the neighboring Leuconostoc branch. The hypermutable status of the genus Oenococcus explains the observed high level of allelic polymorphism among known O. oeni isolates and likely contributed to the unique adaptation of this genus to acidic and alcoholic environments.

摘要

酒类酒球菌是一种耐酒精、嗜酸的乳酸菌,主要负责葡萄酒中的苹果酸-乳酸发酵。最近对酒类酒球菌PSU-1与其他已测序乳酸菌进行的比较基因组分析表明,PSU-1缺乏错配修复(MMR)基因mutS和mutL。与缺乏MMR一致,酒类酒球菌PSU-1和另一种酒类酒球菌北原酒球菌的突变率高于邻近分类群戊糖片球菌和肠系膜明串珠菌的突变率。对来自这两种酒类酒球菌的利福平抗性菌株中rpoB突变的序列分析显示,转换突变的比例很高,这一结果表明缺乏MMR。对两种已测序的酒类酒球菌菌株PSU-1和BAA-1163中的常见等位基因进行分析,也发现转换替代水平明显高于其他乳杆菌目物种。这些结果表明,由于mutS和mutL的缺失,酒类酒球菌属具有高度易突变性,这种缺失发生在与邻近的明串珠菌分支分化之时。酒类酒球菌属的高度易突变状态解释了在已知的酒类酒球菌分离株中观察到的高水平等位基因多态性,并且可能促成了该属对酸性和酒精环境的独特适应性。

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