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新描述的嗜冷古菌 Methanolobus psychrophilus R15 的基因组和转录组揭示了其适应寒冷的特性。

The genome and transcriptome of a newly described psychrophilic archaeon, Methanolobus psychrophilus R15, reveal its cold adaptive characteristics.

机构信息

State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, No. 1 West Beichen Road, Beijing, 100101, China.

出版信息

Environ Microbiol Rep. 2012 Dec;4(6):633-41. doi: 10.1111/j.1758-2229.2012.00389.x. Epub 2012 Sep 25.

Abstract

We analysed the cold-responsive gene repertoire for a psychrophilic methanogen, Methanolobus psychrophilus R15 through genomic and RNA-seq assayed transcriptomic comparisons for cultures at 18°C (optimal temperature) versus 4°C. The differences found by RNA-seq analysis were verified using quantitative real time-PCR assay. The results showed that as in the Antarctic methanogen, Methanococcoides burtonii, genes for methanogenesis, biosynthesis and protein synthesis were all downregulated by the cold in R15. However, the RNA polymerase complex was upregulated at cold, as well as a gene cluster for a putative exosome complex, suggesting that exosome-mediated RNA decay may be cold-accelerated. Unexpectedly, the chaperonin genes for both thermosome and GroES/EL were all upregulated at 4°C. Strain R15 possessed eight protein families for oxygen detoxification, including both anaerobe-specific superoxide reductase (SOR) and the aerobe-typical superoxide dismutase (SOD)-catalase oxidant-removing system, implying the higher oxidative tolerance. Compared with a mesophilic methanogen, R15 survived in higher paraquat, a redox-cycling drug. Moreover, 71 one-component systems and 50 two-component systems for signal transduction ranked strain R15, together with M. burtonii, as being highly adaptive among archaea. Most of them exhibited cold-enhanced expression, indicating their involvement in cold adaptation. This study has added new perspectives on the cold adaptation of methanogenic archaea.

摘要

我们通过基因组和 RNA-seq 分析比较了嗜冷产甲烷菌 Methanolobus psychrophilus R15 在 18°C(最适温度)和 4°C 下的冷响应基因库。通过 RNA-seq 分析发现的差异通过定量实时 PCR 检测进行了验证。结果表明,与南极产甲烷菌 Methanococcoides burtonii 一样,在 R15 中,产甲烷、生物合成和蛋白质合成的基因都因寒冷而受到下调。然而,RNA 聚合酶复合物在寒冷时上调,以及一个假定的外切体复合物基因簇上调,表明外切体介导的 RNA 降解可能会因寒冷而加速。出乎意料的是,热休克蛋白和 GroES/EL 的伴侣蛋白基因在 4°C 时均上调。R15 菌株拥有 8 种用于氧解毒的蛋白质家族,包括厌氧菌特异性超氧化物还原酶(SOR)和需氧型典型超氧化物歧化酶(SOD)-过氧化氢酶氧化剂去除系统,这意味着更高的氧化耐受性。与中温产甲烷菌相比,R15 能够在更高浓度的百草枯(一种氧化还原循环药物)中存活。此外,71 个单组分系统和 50 个双组分系统用于信号转导,将 R15 菌株与 M. burtonii 一起列为古菌中适应性最强的菌株。它们中的大多数表现出冷增强表达,表明它们参与了冷适应。本研究为产甲烷古菌的冷适应提供了新的视角。

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