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Global transcriptomics analysis of the Desulfovibrio vulgaris change from syntrophic growth with Methanosarcina barkeri to sulfidogenic metabolism

机译:Ventulfoviro Ventgaris Vulgario的全局转录组织分析从甲蛋白酶生长转化与甲氧喹啉纳巴尔米硫化代谢的变化

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Desulfovibrio vulgaris is a metabolically flexible micro-organism. It can use sulfate as an electron acceptor to catabolize a variety of substrates, or in the absence of sulfate can utilize organic acids and alcohols by forming a syntrophic association with a hydrogen-scavenging partner to relieve inhibition by hydrogen. These alternative metabolic types increase the chance of survival for D. vulgaris in environments where one of the potential external electron acceptors becomes depleted. In this work, whole-genome D. vulgaris microarrays were used to determine relative transcript levels as D. vulgaris shifted its metabolism from syntrophic in a lactate-oxidizing dual-culture with Methanosarcina barkeri to a sulfidogenic metabolism. Syntrophic dual-cultures were grown in two independent chemostats and perturbation was introduced after six volume changes with the addition of sulfate. The results showed that 132 genes were differentially expressed in D. vulgaris 2?h after addition of sulfate. Functional analyses suggested that genes involved in cell envelope and energy metabolism were the most regulated when comparing syntrophic and sulfidogenic metabolism. Upregulation was observed for genes encoding ATPase and the membrane-integrated energy-conserving hydrogenase (Ech) when cells shifted to a sulfidogenic metabolism. A five-gene cluster encoding several lipoproteins and membrane-bound proteins was downregulated when cells were shifted to a sulfidogenic metabolism. Interestingly, this gene cluster has orthologues found only in another syntrophic bacterium, Syntrophobacter fumaroxidans, and four recently sequenced Desulfovibrio strains. This study also identified several novel c-type cytochrome-encoding genes, which may be involved in the sulfidogenic metabolism.
机译:Visulfovibrio Vulgaris是一种代谢柔性的微生物。它可以用硫酸盐作为电子受体,以通过形成与氢清除合作伙伴的同步联合以缓解氢气来分解各种基材的电子受体,或者在不存在硫酸盐中可以利用有机酸和醇。这些替代的代谢类型增加了D. Ventgaris在潜在的外部电子受体变得耗尽的环境中存活的机会。在这项工作中,全基因组D.寻常的微阵列用于确定与D.Vulgaris以乳酸氧化双培养的乳酸氧化双培养物中的代谢移位其代谢的相对转录水平。在六体积随硫酸盐时,在两个独立的化学蹄槽箱中产生了两种独立的化学蹄片和扰动。结果表明,在加入硫酸盐之后,在D. vulgaris 2'h中差异表达132个基因。功能分析表明,在比较了语法和磺基代代谢时,涉及细胞包膜和能量代谢的基因是最受调节的。当细胞移入亚硫化代谢时,对编码ATP酶的基因和膜综合节能氢酶(ECH)的基因观察到上调。当细胞移至亚硫化代谢时,下调编码几种脂蛋白和膜结合蛋白的五基团簇。有趣的是,该基因簇仅在另一个语法细菌,Syntrophaction Fumaroxidans和四个最近测序的脱硫菌株中发现的直晶族。该研究还确定了几种新型C型细胞色素编码基因,其可参与亚硫化代谢。

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