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Comparative transcriptome analysis of responses of Methanothermobacter

机译:甲烷热菌反应的比较转录组分析

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Methanothermobacter thermautotrophicus strain Delta H is a model hydrogenotrophic methanogen, for which the complete genome sequence and extensive biochemical information are available. Little is known, however, about how this organism regulates its cellular functions in response to environmental stimuli. In this study, whole-genome oligonucleotide microarrays were constructed for M. thermautotrophicus and used to gain insights into how this organism responds to different environmental stimuli, including hydrogen depletion, shifts in pH and temperature and the occurrence of toxics (hydrogen peroxide and ammonia). Our analysis confirmed that methanogenesis genes (including mtd, mer, frh and mcr) were upregulated under hydrogen-limited conditions, while some of them were affected by other environmental stimuli. Concerning stress responses of this organism, several unique features were revealed. First, there was no universal stress response in this organism. Second, genes for alternative redox enzymes, such as rubrerythrin, were upregulated under the oxidative stress, but those for typical antioxidant enzymes were not. Third, genes relevant to the modification of cell surface structures were differentially expressed under stress conditions. Finally, energy-requiring CO2 assimilation systems were downregulated under stress conditions. These findings suggest that M. thermautotrophicus has complex transcriptional regulation mechanisms that facilitate it to survive in unstable ecosystems such as an anaerobic digester.
机译:甲烷嗜热菌嗜热自养菌Delta H是典型的氢营养型产甲烷菌,具有完整的基因组序列和广泛的生化信息。然而,关于这种生物如何响应环境刺激而调节其细胞功能的知之甚少。在这项研究中,为嗜热支原体构建了全基因组寡核苷酸微阵列,并用于深入了解这种生物如何响应不同的环境刺激,包括氢耗竭,pH和温度变化以及有毒物质(过氧化氢和氨水)的发生。 。我们的分析证实,产甲烷基因(包括mtd,mer,frh和mcr)在氢限制条件下被上调,而其中一些则受到其他环境刺激的影响。关于该生物体的应激反应,揭示了几个独特的特征。首先,在这种生物中没有普遍的应激反应。其次,在氧化应激下,替代氧化还原酶的基因,例如红血球菌红素,被上调,而典型的抗氧化酶的基因则没有。第三,在压力条件下差异表达与细胞表面结构修饰有关的基因。最后,在压力条件下将需要能量的CO2同化系统下调。这些发现表明,热自养分枝杆菌具有复杂的转录调控机制,可促进其在不稳定的生态系统(如厌氧消化器)中生存。

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