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海洋专性放线菌盐生拉乌尔菌必需的大机械敏感通道基因 mscL 的遗传互补可使细胞免受渗透休克。

Genetic complementation of the obligate marine actinobacterium Salinispora tropica with the large mechanosensitive channel gene mscL rescues cells from osmotic downshock.

机构信息

Center for Marine Biotechnology and Biomedicine, Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California, USA.

出版信息

Appl Environ Microbiol. 2012 Jun;78(12):4175-82. doi: 10.1128/AEM.00577-12. Epub 2012 Apr 6.

Abstract

Marine actinomycetes in the genus Salinispora fail to grow when seawater is replaced with deionized (DI) water in complex growth media. While bioinformatic analyses have led to the identification of a number of candidate marine adaptation genes, there is currently no experimental evidence to support the genetic basis for the osmotic requirements associated with this taxon. One hypothesis is that the lineage-specific loss of mscL is responsible for the failure of strains to grow in media prepared with DI water. The mscL gene encodes a conserved transmembrane protein that reduces turgor pressure under conditions of acute osmotic downshock. In the present study, the mscL gene from a Micromonospora strain capable of growth on media prepared with DI water was transformed into S. tropica strain CNB-440. The single-copy, chromosomal genetic complementation yielded a recombinant Salinispora mscL(+) strain that demonstrated an increased capacity to survive osmotic downshock. The enhanced survival of the S. tropica transformant provides experimental evidence that the loss of mscL is associated with the failure of Salinispora spp. to grow in low-osmotic-strength media.

摘要

海洋放线菌 Salinispora 属的菌株在复杂生长培养基中,当海水被去离子(DI)水替代时,无法生长。虽然生物信息学分析已经确定了一些候选的海洋适应基因,但目前没有实验证据支持与该分类群相关的渗透压要求的遗传基础。一种假设是,mscL 的谱系特异性缺失是导致菌株无法在用 DI 水制备的培养基中生长的原因。mscL 基因编码一种保守的跨膜蛋白,可在急性渗透压下降的情况下降低膨压。在本研究中,能够在用 DI 水制备的培养基中生长的 Micromonospora 菌株的 mscL 基因被转化到 S. tropica 菌株 CNB-440 中。单拷贝、染色体基因互补产生了一个重组的 Salinispora mscL(+)菌株,该菌株表现出增强的耐渗透压下降能力。S. tropica 转化子的生存能力增强提供了实验证据,证明 mscL 的缺失与 Salinispora spp. 在低渗透压强度培养基中无法生长有关。

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