首页> 外文期刊>Polar biology >Characterization and expression analysis of three cold shock protein (CSP) genes under different stress conditions in the Antarctic bacterium Psychrobacter sp. G
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Characterization and expression analysis of three cold shock protein (CSP) genes under different stress conditions in the Antarctic bacterium Psychrobacter sp. G

机译:南极杆菌Psychrobacter sp。中三种应激条件下三个冷休克蛋白(CSP)基因的表征和表达分析。 G

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摘要

Low temperature is one of the major environmental challenges that Antarctic bacteria must face. Detailed studies of cold shock responses of cold-adapted microorganisms are still insufficient. Here, we cloned three cold shock protein (CSP) genes (Csp 1137, Csp2039, and Csp2531) in the Antarctic bacterium Psychrobacter sp. G and their regulatory sequences were identified. The three CSPs were highly conserved with other known CspAs. qRT-PCR was performed to evaluate their expression characteristics under stress conditions, and the potential influence of regulatory sequences also was analyzed. The expression of Csp 1137 was enhanced both by low (0, 10 ℃) and high temperature (30 ℃). The expression of Csp2039 was enhanced by low temperature (0 ℃), but was lower than that of Csp 1137. This can be explained by the absence in Csp2039 of the AT-rich UP element. Different from Csp 1137, the expression of Csp2531 was inhibited by low temperature (0 ℃), even with the presence of AT-rich UP element, and it was not sensitive to high temperature (30 ℃). The expression of Csp 1137 was enhanced by high salinity (90, 120), whereas that of Csp2531was enhanced by low salinity (0, 15). At 0 ℃ and a salinity of 15, the expression of Csp 1137 was repressed initially, but then it increased greatly during the next 10 h. The expressions of Csp2039 and Csp 2531 were repressed significantly under four different combinations of stress conditions. Our results showed that the role of the upstream regulation sequences were much more complex than previously thought. Also, gene expressions were also affected by the environmental salinity. These are helpful in further clarification of the adaptation mechanism of Psychrobacter sp. G.
机译:低温是南极细菌必须面对的主要环境挑战之一。对冷适应微生物的冷激反应的详细研究仍不足。在这里,我们在南极细菌Psychrobacter sp。中克隆了三个冷休克蛋白(CSP)基因(Csp 1137,Csp2039和Csp2531)。鉴定了G及其调节序列。这三个CSP与其他已知的CspA高度保守。进行了qRT-PCR以评估它们在应激条件下的表达特征,并且还分析了调控序列的潜在影响。低温(0,10℃)和高温(30℃)均可增强Csp 1137的表达。 Csp2039的表达在低温(0℃)下有所增强,但低于Csp 1137的表达。这可以通过Csp2039中缺少富含AT的UP元件来解释。与Csp 1137不同的是,即使存在富含AT的UP元素,Csp2531的表达也受到低温(0℃)的抑制,并且对高温(30℃)不敏感。高盐度增强Csp 1137的表达(90,120),而低盐度增强Csp2531的表达(0,15)。在0℃和盐度为15时,Csp 1137的表达最初被抑制,但在接下来的10h内大大升高。在四种不同的应激条件下,Csp2039和Csp 2531的表达被显着抑制。我们的结果表明,上游调控序列的作用比以前认为的要复杂得多。同样,基因表达也受到环境盐度的影响。这些有助于进一步阐明Psychrobacter sp。的适应机制。 G。

著录项

  • 来源
    《Polar biology》 |2012年第10期|p.1515-1524|共10页
  • 作者单位

    First Institute of Oceanography, SOA, Qingdao 266061, China,Key Lab of Marine Bioactive Substances, SOA, Qingdao 266061, China;

    First Institute of Oceanography, SOA, Qingdao 266061, China,Key Lab of Marine Bioactive Substances, SOA, Qingdao 266061, China;

    First Institute of Oceanography, SOA, Qingdao 266061, China,Key Lab of Marine Bioactive Substances, SOA, Qingdao 266061, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    psychrobacter; cold shock protein; stress response; qRT-PCR;

    机译:精神细菌冷激蛋白压力反应;定量PCR;

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