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Function of glucose catabolic pathways in hydrogen production from glucose in Rhodobacter sphaeroides 6016

机译:球形红球菌6016中葡萄糖分解代谢途径在葡萄糖产生氢中的作用

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摘要

Purple non-sulfur (PNS) bacteria can convert volatile fatty acids into hydrogen with a high substrate conversion efficiency. However, when PNS bacteria utilize sugars as a carbon source, such as glucose and sucrose, the substrate conversion efficiency is relatively low. In order to investigate the contributions of the glucose catabolic pathways in Rhodobacter sphaeroides 6016 to its hydrogen production, the cfxA gene from the Embden-Meyerhof-Parnas (EMP) pathway, edd from the Entner-Doudoroff (ED) pathway, and fedg from the semi-phosphorylative ED bypass were knocked out to construct the mutant strains edd , cfxA , and kdg , respectively. Additionally, two of these three genes were knocked out to construct the mutant strains kdg edd , fedg cfxA , and cfxA edd . Hydrogen productions by these mutant strains were compared to that of the wild type strain 6016 using 25 mM glucose as a carbon source. Compared to 6016, variations in hydrogen production and growth were detected in the edd mutant strains (kdg edd , cfxA edd , and edd ), while no obvious changes were detected in the others. Notably, the kdg edd mutant did not produce hydrogen, and its maximum growth was 70% less than that of R. sphaeroides 6016. These results indicate that the ED pathway and semi-phosphorylative ED bypass have a governing impact on cell growth and hydrogen production from glucose in R. sphaeroides 6016. The potential synergistic function of the ED pathway and semi-phosphorylative ED bypass and the reasons for the low hydrogen yield from sugar carbon sources in R. sphaeroides 6016 are discussed.
机译:紫色非硫(PNS)细菌可以高底物转化效率将挥发性脂肪酸转化为氢。然而,当PNS细菌利用糖作为碳源时,例如葡萄糖和蔗糖,底物转化效率相对较低。为了研究球形红球菌6016中的葡萄糖分解代谢途径对其产氢的贡献,来自Entner-Doudoroff(ED)途径的Embden-Meyerhof-Parnas(EMP)途径的cfxA基因,以及敲除半磷酸化ED旁路,以分别构建突变株edd,cfxA和kdg。另外,敲除这三个基因中的两个以构建突变菌株kdg edd,fedg cfxA和cfxA edd。使用25 mM葡萄糖作为碳源,将这些突变菌株的产氢量与野生型菌株6016的产氢量进行了比较。与6016相比,在edd突变菌株(kdg edd,cfxA edd和edd)中检测到氢气产生和生长的变化,而在其他菌株中未检测到明显的变化。值得注意的是,kdg edd突变体不产生氢,并且其最大生长比球形红螺菌6016降低70%。这些结果表明ED途径和半磷酸化ED旁路对细胞生长和氢产生具有决定性影响从球形红球菌6016中的葡萄糖中提取糖。讨论了ED途径和半磷酸化ED旁路的潜在协同功能,以及球形红球菌6016中糖碳源氢产量低的原因。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第9期|4215-4221|共7页
  • 作者单位

    Laboratory of Conservation and Utilization of Bio-Resources, Yunnan University, North Cuihu Rd 2, Kunming, Yunnan 650091, China;

    Laboratory of Conservation and Utilization of Bio-Resources, Yunnan University, North Cuihu Rd 2, Kunming, Yunnan 650091, China;

    Key Laboratory of Synthetic Biology, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Fenglin Rd 300, Shanghai 200032, China;

    Key Laboratory of Synthetic Biology, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Fenglin Rd 300, Shanghai 200032, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen production; Semi-phosphorylative ED bypass; Rhodobacter sphaeroides 6016;

    机译:制氢;半磷酸化ED旁路;球形红细菌6016;
  • 入库时间 2022-08-18 00:23:58

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