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The Antisense RNA Approach: a New Application for In Vivo Investigation of the Stress Response of Oenococcus oeni, a Wine-Associated Lactic Acid Bacterium

机译:反义RNA方法:酒类乳酸菌Oenococcus oeni的应激反应体内研究的新应用。

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Oenococcus oeni is a wine-associated lactic acid bacterium mostly responsible for malolactic fermentation in wine. In wine, O. oeni grows in an environment hostile to bacterial growth (low pH, low temperature, and ethanol) that induces stress response mechanisms. To survive, O. oeni is known to set up transitional stress response mechanisms through the synthesis of heat stress proteins (HSPs) encoded by the hsp genes, notably a unique small HSP named Lo18. Despite the availability of the genome sequence, characterization of O. oeni genes is limited, and little is known about the in vivo role of Lo18. Due to the lack of genetic tools for O. oeni , an efficient expression vector in O. oeni is still lacking, and deletion or inactivation of the hsp18 gene is not presently practicable. As an alternative approach, with the goal of understanding the biological function of the O. oeni hsp18 gene in vivo , we have developed an expression vector to produce antisense RNA targeting of hsp18 mRNA. Recombinant strains were exposed to multiple stresses inducing hsp18 gene expression: heat shock and acid shock. We showed that antisense attenuation of hsp18 affects O. oeni survival under stress conditions. These results confirm the involvement of Lo18 in heat and acid tolerance of O. oeni . Results of anisotropy experiments also confirm a membrane-protective role for Lo18, as previous observations had already suggested. This study describes a new, efficient tool to demonstrate the use of antisense technology for modulating gene expression in O. oeni .
机译:Oenococcus oeni是一种与葡萄酒有关的乳酸菌,主要负责葡萄酒中的苹果酸乳酸发酵。在葡萄酒中,O。oeni生长在对细菌生长不利的环境中(低pH,低温和乙醇),这种环境会诱导压力响应机制。为了生存,O。oeni通过合成由hsp基因编码的热应激蛋白(HSP),特别是名为Lo18的独特小HSP来建立过渡应激反应机制。尽管基因组序列的可用性,O.oeni基因的表征是有限的,关于Lo18的体内作用知之甚少。由于缺乏O. oeni的遗传工具,仍然缺乏在O. oeni中的有效表达载体,并且hsp18基因的缺失或失活目前尚不可行。作为一种替代方法,以了解O. oeni hsp18基因在体内的生物学功能为目标,我们开发了一种表达载体,可产生靶向hsp18 mRNA的反义RNA。重组菌株暴露于多种诱导hsp18基因表达的胁迫:热激和酸激。我们表明hsp18的反义衰减影响应激条件下O. oeni生存。这些结果证实了Lo18参与了O. oeni的耐热和耐酸性。各向异性实验的结果也证实了Lo18的膜保护作用,正如先前的观察已经表明的那样。这项研究描述了一种新的有效工具,以证明反义技术可用于调控O. oeni中的基因表达。

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