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Expression of Acetaldehyde Dehydrogenase Gene Increases Hydrogen Production and Acetate Consumption by Rhodobacter sphaeroides

机译:乙醛脱氢酶基因的表达增加球形红球菌的产氢量和乙酸盐消耗量

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Rhodobacter sphaeroides RV (RV) produces high yields of hydrogen from organic acids in the presence of light. The hydrogen production from acetate is lower than that from lactate, probably because of its low ability to metabolize acetate. In this study, gene of acetaldehyde dehydrogenase (ACDH, EC 1.2.1.10) that catalyzes the reversible conversion of acetaldehyde and CoA to acetyl-CoA with the concurrent reduction of NAD to NADH, is overexpressed in the RV strain. The produced acetyl-CoA can be oxidized to carbon dioxide in the tricarboxylic acid (TCA) cycle, wherein electrons are generated and used for hydrogen production. The byproduct NADH can be used as reducing agent for acetate to produce acetaldehyde by acetate dehydrogenase. The recombinant RV strain (RVAC) expressing the ACDH gene showed ACDH activity with a specific activity of 3.2 mU/ mg, and the RV and the recombinant RV strain that harbored the intact (empty) plasmid pLP-1.2 (RVI) showed no detectable ACDH activity. The hydrogen yields of the RVAC strain from 21-mM acetate were 1.5-fold higher than that of the wild type RV strain and also that of the RVI strain. In contrast, hydrogen yield from 21-mM lactate was 30% lower than that in the control strains.
机译:球形红细菌RV(RV)在光照下可从有机酸中高产氢。乙酸盐产生的氢低于乳酸酸盐产生的氢,这可能是因为其代谢乙酸盐的能力较低。在这项研究中,乙醛脱氢酶(ACDH,EC 1.2.1.10)的基因在RV菌株中过表达,该基因催化乙醛和CoA可逆转化为乙酰辅酶A,同时NAD还原为NADH。产生的乙酰基-CoA可以在三羧酸(TCA)循环中被氧化成二氧化碳,其中电子被生成并用于制氢。副产物NADH可用作乙酸盐的还原剂,以通过乙酸盐脱氢酶产生乙醛。表达ACDH基因的重组RV菌株(AC)表现出ACDH活性,比活性为3.2 mU / mg,携带完整(空)质粒pLP-1.2(RVI)的RV和重组RV菌株均未检测到ACDH活动。来自21 mM乙酸盐的RVAC菌株的氢产率比野生型RV菌株和RVI菌株的氢产率高1.5倍。相比之下,来自21mM乳酸的氢产率比对照菌株低30%。

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