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Evolution of Bacillus subtilis to Enhanced Growth at Low Pressure: Up-Regulated Transcription of des-desKR, Encoding the Fatty Acid Desaturase System

机译:枯草芽孢杆菌进化到低压下的增强生长:des-desKR的上调转录,编码脂肪酸去饱和酶系统

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The atmospheric pressure on Mars ranges from 1-10 mbar, about 1% of Earth pressure (~1013 mbar). Low pressure is a growth-inhibitory factor for terrestrial microorganisms on Mars, and a putative low-pressure barrier for growth of Earth bacteria of ~25 mbar has been postulated. In a previous communication, we described the isolation of a strain of Bacillus subtilis that had evolved enhanced growth ability at the near-inhibitory low pressure of 50 mbar. To explore mechanisms that enabled growth of the low-pressure-adapted strain, numerous genes differentially transcribed between the ancestor strain WN624 and low-pressure-evolved strain WN1106 at 50 mbar were identified by microarray analysis. Among these was a cluster of three candidate genes (des, desK, and desR), whose mRNA levels in WN1106 were higher than the ancestor on the microarrays. Up-regulation of these genes was confirmed by quantitative reverse transcription-polymerase chain reaction (qRT-PCR) analysis. The des, desK, and desR genes encode the Des membrane fatty acid (FA) desaturase, the DesK sensor kinase, and the DesR response regulator, respectively, which function to maintain membrane fluidity in acute response to temperature downshift. Pressure downshift caused an up-regulation of des mRNA levels only in WN1106, but expression of a des-lacZ transcriptional fusion was unaffected, which suggests that des regulation was different in response to temperature versus pressure downshift. Competition experiments showed that inactivation of the des gene caused a slight, but statistically significant, loss of fitness of strain WN1106 at 50 mbar. Further, analysis of membrane FA composition of cells grown at 1013 versus 50 mbar revealed a decrease in the ratio of unsaturated to saturated Fas but an increase in the ratio of anteiso- to iso-Fas. The present study represents a first step toward identification of molecular mechanisms by which B. subtilis could sense and respond to the novel environmental stress of low pressure.
机译:火星上的大气压范围为1-10毫巴,约为地球压力(〜1013毫巴)的1%。低压是火星上陆地微生物的生长抑制因子,并且已推定了〜25 mbar的地球细菌生长的假定低压屏障。在先前的交流中,我们描述了枯草芽孢杆菌菌株的分离,该菌株在50 mbar的近抑制低压下具有增强的生长能力。为了探索能够使适应低压的菌株生长的机制,通过微阵列分析鉴定了在50 mbar下在祖先菌株WN624和低压进化菌株WN1106之间差异转录的众多基因。其中有三个候选基因(des,desK和desR)的簇,其WN1106中的mRNA水平高于微阵列中的祖先。这些基因的上调通过定量逆转录-聚合酶链反应(qRT-PCR)分析得到证实。 des,desK和desR基因分别编码Des膜脂肪酸(FA)去饱和酶,DesK传感器激酶和DesR响应调节剂,其功能是在对温度下降的急性响应中维持膜的流动性。压力降低仅在WN1106中引起des mRNA水平的上调,但des-lacZ转录融合蛋白的表达不受影响,这表明des调节对温度和压力降低的响应不同。竞争实验表明,des基因的失活导致菌株WN1106在50 mbar时的适度损失,但在统计学上却很显着。此外,对在1013对50 mbar下生长的细胞的膜FA组成的分析表明,不饱和Fas与饱和Fas的比例降低,而前异异构体与iso-Fas的比例却增加。本研究代表了确定分子机制的第一步,通过该分子机制枯草芽孢杆菌可以感知和响应新型的低压环境压力。

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