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Differential Gene Expression in Response to Salinity and Temperature in a Haloarcula Strain from Great Salt Lake Utah

机译:盐度和温度对盐胁迫和犹他州大盐湖盐沼菌株的响应差异基因表达

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摘要

Haloarchaea that inhabit Great Salt Lake (GSL), a thalassohaline terminal lake, must respond to the fluctuating climate conditions of the elevated desert of Utah. We investigated how shifting environmental factors, specifically salinity and temperature, affected gene expression in the GSL haloarchaea, NA6-27, which we isolated from the hypersaline north arm of the lake. Combined data from cultivation, microscopy, lipid analysis, antibiotic sensitivity, and 16S rRNA gene alignment, suggest that NA6-27 is a member of the Haloarcula genus. Our prior study demonstrated that archaea in the Haloarcula genus were stable in the GSL microbial community over seasons and years. In this study, RNA arbitrarily primed PCR (RAP-PCR) was used to determine the transcriptional responses of NA6-27 grown under suboptimal salinity and temperature conditions. We observed alteration of the expression of genes related to general stress responses, such as transcription, translation, replication, signal transduction, and energy metabolism. Of the ten genes that were expressed differentially under stress, eight of these genes responded in both conditions, highlighting this general response. We also noted gene regulation specific to salinity and temperature conditions, such as osmoregulation and transport. Taken together, these data indicate that the GSL Haloarcula strain, NA6-27, demonstrates both general and specific responses to salinity and/or temperature stress, and suggest a mechanistic model for homeostasis that may explain the stable presence of this genus in the community as environmental conditions shift.
机译:居住在大盐湖终末盐湖大盐湖(GSL)中的Haloarchaea必须应对犹他州高架沙漠不断变化的气候条件。我们调查了变化的环境因素(特别是盐度和温度)如何影响GSL haloarchaea(NA6-27)的基因表达,我们从湖的高盐度北臂分离出了该基因。来自培养,显微镜检查,脂质分析,抗生素敏感性和16S rRNA基因比对的综合数据表明,NA6-27是Haloarcula属的成员。我们以前的研究表明,在季节和年份中,GLA微生物群落中Halocrcula属的古细菌稳定。在这项研究中,RNA任意引物PCR(RAP-PCR)用于确定在次佳盐度和温度条件下生长的NA6-27的转录反应。我们观察到与一般应激反应有关的基因表达的改变,例如转录,翻译,复制,信号转导和能量代谢。在压力下差异表达的十个基因中,这些基因中的八个在两种条件下均响应,突出了这种总体响应。我们还注意到特定于盐度和温度条件(例如渗透压调节和转运)的基因调控。综上所述,这些数据表明,GSL Haloarcula菌株NA6-27既显示了对盐度和/或温度胁迫的一般响应也显示了特定响应,并提出了体内稳态的机理模型,可以解释该属在社区中的稳定存在。环境条件转变。

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