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Role and Regulation of Fatty Acid Biosynthesis in the Response of Shewanella piezotolerans WP3 to Different Temperatures and Pressures▿

机译:脂肪酸生物合成在耐高温希瓦氏菌WP3对不同温度和压力的响应中的作用和调控▿

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摘要

Members of the genus Shewanella inhabit various environments; they are capable of synthesizing various types of low-melting-point fatty acids, including monounsaturated fatty acids (MUFA) and branched-chain fatty acids (BCFA) with and without eicosapentanoic acid (EPA). The genes involved in fatty acid synthesis in 15 whole-genome-sequenced Shewanella strains were identified and compared. A typical type II fatty acid synthesis pathway in Shewanella was constructed. A complete EPA synthesis gene cluster was found in all of the Shewanella genomes, although only a few of them were found to produce EPA. The roles and regulation of fatty acids synthesis in Shewanella were further elucidated in the Shewanella piezotolerans WP3 response to different temperatures and pressures. The EPA and BCFA contents of WP3 significantly increased when it was grown at low temperature and/or under high pressure. EPA, but not MUFA, was determined to be crucial for its growth at low temperature and high pressure. A gene cluster for a branched-chain amino acid ABC transporter (LIV-I) was found to be upregulated at low temperature. Combined approaches, including mutagenesis and an isotopic-tracer method, revealed that the LIV-I transporter played an important role in the regulation of BCFA synthesis in WP3. The LIV-I transporter was identified only in the cold-adapted Shewanella species and was assumed to supply an important strategy for Shewanella cold adaptation. This is the first time the molecular mechanism of BCFA regulation in bacteria has been elucidated.
机译:希瓦氏菌属的成员生活在各种环境中。它们能够合成各种类型的低熔点脂肪酸,包括有和没有二十碳五烯酸(EPA)的单不饱和脂肪酸(MUFA)和支链脂肪酸(BCFA)。确定并比较了15个全基因组测序希瓦氏菌菌株中与脂肪酸合成有关的基因。构建了希瓦氏菌中典型的II型脂肪酸合成途径。在所有希瓦氏菌基因组中均发现了完整的EPA合成基因簇,尽管仅发现其中少数几个产生EPA。在不同温度和压力下,Shewanella piezotolerans WP3响应中进一步阐明了Shewanella中脂肪酸合成的作用和调节。 WP3在低温和/或高压下生长时,EPA和BCFA含量显着增加。已确定EPA(而非MUFA)对其在低温和高压下的生长至关重要。发现支链氨基酸ABC转运蛋白(LIV-1)的基因簇在低温下被上调。包括诱变和同位素示踪法在内的组合方法表明,LIV-1转运蛋白在WP3中BCFA合成的调控中起着重要作用。 LIV-I转运蛋白仅在适应寒冷的希瓦氏菌物种中鉴定,并被认为为希瓦氏菌的冷适应提供了重要的策略。这是首次阐明细菌中BCFA调控的分子机制。

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