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新月柄杆菌对低温的响应特性及抗冻相关基因的鉴定

Characterization of Caulobacter crescentus response to low temperature and identification of genes involved in freezing resistance.

作者信息

Mazzon Ricardo R, Lang Elza A S, Braz Vânia S, Marques Marilis V

机构信息

Department of Microbiology, Instituto de Ciências Biomédicas, Universidade de São Paulo, São Paulo, SP, Brazil.

出版信息

FEMS Microbiol Lett. 2008 Nov;288(2):178-85. doi: 10.1111/j.1574-6968.2008.01337.x. Epub 2008 Sep 16.

DOI:10.1111/j.1574-6968.2008.01337.x
PMID:18801049
Abstract

Free-living bacteria must respond to a wide range of temperature changes, and have developed specific mechanisms to survive in extreme environments. In this work we describe a remarkable resistance of mesophilic bacterium Caulobacter crescentus to several cycles of freezing at -80 degrees C, which was able to grow at low temperatures. Exponentially growing cells and late stationary-phase cells presented higher freezing resistance at both -20 and -80 degrees C than early stationary-phase cells. Cryotolerance was observed when log-phase cultures grown at 30 degrees C were preincubated at 5, 15 or 20 degrees C before freezing at -20 degrees C. A transposon library was screened to identify mutants sensitive to freezing at -80 degrees C and three strains presenting <10% survival were isolated. Identification of genes disrupted in each mutant showed that they encoded an AddA family DNA helicase, a DEAD/DEAH box RNA helicase and a putative RND (resistance, nodulation, cell division) efflux system component. These strains showed longer generation times than wild-type cells when growing at 15 degrees C, with the RNA helicase mutant presenting a severe growth defect. These analyses suggest that the singular intrinsic resistance to freezing of C. crescentus is in fact a consequence of several independent traits, especially the maintenance of a proper degree of supercoiling of nucleic acids.

摘要

自由生活的细菌必须应对广泛的温度变化,并已发展出特定机制以在极端环境中生存。在这项工作中,我们描述了嗜温细菌新月柄杆菌对在-80℃下多次冷冻循环具有显著抗性,它能够在低温下生长。指数生长期细胞和稳定期末期细胞在-20℃和-80℃时比稳定期早期细胞表现出更高的抗冻性。当在30℃下生长的对数期培养物在-20℃冷冻前在5℃、15℃或20℃预孵育时,观察到了耐冻性。筛选转座子文库以鉴定对-80℃冷冻敏感的突变体,并分离出三株存活率<10%的菌株。对每个突变体中破坏的基因进行鉴定表明,它们编码一个AddA家族DNA解旋酶、一个DEAD/DEAH盒RNA解旋酶和一个假定的RND(抗性、结瘤、细胞分裂)外排系统组分。当在15℃生长时,这些菌株的代时比野生型细胞长,RNA解旋酶突变体表现出严重的生长缺陷。这些分析表明,新月柄杆菌对冷冻的独特内在抗性实际上是几个独立性状的结果,特别是核酸适度超螺旋的维持。

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