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Discovery of Ethanol-Responsive Small RNAs in Zymomonas mobilis

机译:在运动发酵单胞菌中发现乙醇反应性小RNA。

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摘要

Zymomonas mobilis is a bacterium that can produce ethanol by fermentation. Due to its unique metabolism and efficient ethanol production, Z. mobilis has attracted special interest for biofuel energy applications; an important area of study is the regulation of those specific metabolic pathways. Small RNAs (sRNAs) have been studied as molecules that function as transcriptional regulators in response to cellular stresses. While sRNAs have been discovered in various organisms by computational prediction and experimental approaches, their discovery in Z. mobilis has not yet been reported. In this study, we have applied transcriptome analysis and computational predictions to facilitate identification and validation of 15 novel sRNAs in Z. mobilis. We furthermore characterized their expression in the context of high and low levels of intracellular ethanol. Here, we report that 3 of the sRNAs (Zms2, Zms4, and Zms6) are differentially expressed under aerobic and anaerobic conditions, when low and high ethanol productions are observed, respectively. Importantly, when we tested the effect of ethanol stress on the expression of sRNAs in Z. mobilis, Zms2, Zms6, and Zms18 showed differential expression under 5% ethanol stress conditions. These data suggest that in this organism regulatory RNAs can be associated with metabolic functions involved in ethanol stress responses.
机译:运动发酵单胞菌是可以通过发酵产生乙醇的细菌。由于其独特的新陈代谢和高效的乙醇生产,运动发酵单胞菌引起了人们对生物燃料能源应用的特殊兴趣。研究的重要领域是那些特定代谢途径的调节。小RNA(sRNA)已作为响应细胞应激而起转录调节剂作用的分子而被研究。尽管通过计算预测和实验方法已在各种生物中发现了sRNA,但尚未报道它们在运动发酵单胞菌中的发现。在这项研究中,我们已应用转录组分析和计算预测来促进运动发酵单胞菌中15种新sRNA的鉴定和验证。我们进一步表征了它们在高和低水平细胞内乙醇中的表达。在这里,我们报告当有氧和无氧条件下分别观察到低和高乙醇产量时,有3个sRNA(Zms2,Zms4和Zms6)差异表达。重要的是,当我们测试乙醇胁迫对运动发酵单胞菌中sRNA表达的影响时,Zms2,Zms6和Zms18在5%乙醇胁迫条件下显示差异表达。这些数据表明,在这种生物中,调节性RNA可能与乙醇应激反应中涉及的代谢功能有关。

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