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Enhancement on hydrogen production performance of Rhodobacter sphaeroides HY01 by overexpressing fdxN

机译:过表达fdxN增强球形红球菌HY01的产氢性能

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Ferredoxin I (FdI), encoded by fdxN gene, is proved to be the main electron donor of nitrogenase for hydrogen production. In this work, fdxN gene overexpression was implemented in a mutant MHY01, which was constructed by inserting fdxN gene into the hupSL region in Rhodobacter sphaeroides HY01 genome. Its photo-fermentative H-2 production performance was studied. The results showed that the expression level of fdxN and nitrogenase activity in MHY01 (hupSL::fdxN) were enhanced by 177% and 61.7% respectively compared with that of wild type HY01. Using 25 mM acetate and 34 mM butyrate as carbon source and 6 mM L-glutamate as nitrogen source, the maximum H-2 production rate was 156.1 mL/(L.h.), which was increased by 50.7% compared with that of HY01. The maximum H-2 production rates of MHY01 were enhanced by 30.0%, 52.5% and 50.7% compared with those obtained from HY01 at the inoculation size of 5%, 10% and 15% respectively. The results suggested that overexpressing fdxN could enhance the nitrogenase activity and H-2 production performance of purple non-sulfur bacteria. The abundancy of ferredoxin I might limit the efficiency of electron transfer flux associated with the biohydrogen production process. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:由fdxN基因编码的铁氧还蛋白I(FdI)被证明是产生氢的固氮酶的主要电子供体。在这项工作中,在突变体MHY01中实现了fdxN基因的过表达,该突变体是通过将fdxN基因插入球形红球菌HY01基因组的hupSL区域构建的。研究了其光发酵H-2的生产性能。结果表明,与野生型HY01相比,MHY01(hupSL :: fdxN)中fdxN的表达水平和固氮酶活性分别提高了177%和61.7%。使用25 mM乙酸盐和34 mM丁酸作为碳源,6 mM L-谷氨酸作为氮源,最大H-2生产率为156.1 mL /(L.h。),与HY01相比提高了50.7%。接种量分别为5%,10%和15%时,MHY01的最高H-2生产率比从HY01获得的最高H-2生产率提高了30.0%,52.5%和50.7%。结果表明,过表达fdxN可以增强紫色非硫细菌的固氮酶活性和H-2的生产性能。铁氧还蛋白I的丰度可能会限制与生物氢生产过程相关的电子转移通量的效率。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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