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Fixation of CO2 using the ethylmalonyl-CoA pathway in the photoheterotrophic marine bacterium Dinoroseobacter shibae

机译:使用乙基甘油酰基-CoA途径在皮肤养殖海洋细菌毒素Shibae中固定二氧化碳途径

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摘要

The ability of aerobic anoxygenic photoheterotrophs (AAPs) to gain additional energy from sunlight represents a competitive advantage, especially in conditions where light has easy access or under environmental conditions may change quickly, such as those in the world ' s oceans. However, the knowledge about the metabolic consequences of aerobic anoxygenic photosynthesis is very limited. Combining transcriptome and metabolome analyses, isotopic labelling techniques, measurements of growth, oxygen uptake rates, flow cytometry, and a number of other biochemical analytical techniques we obtained a comprehensive overview on the complex adaption of the marine bacterium Dinoroseobacter shibae DFL12(T) during transition from heterotrophy to photoheterotrophy (growth on succinate). Growth in light was characterized by reduced respiration, a decreased metabolic flux through the tricarboxylic acid (TCA) cycle and the assimilation of CO2 via an enhanced flux through the ethylmalonyl-CoA (EMC) pathway, which was shown to be connected to the serine metabolism. Adaptation to photoheterotrophy is mainly characterized by metabolic reactions caused by a surplus of reducing potential and might depend on genes located in one operon, encoding branching point enzymes of the EMC pathway, serine metabolism and the TCA cycle.
机译:有氧偶氮摄影术(AAP)从阳光下获得额外能量的能力代表了竞争优势,特别是在轻松进入或环境条件下的条件下可能会迅速变化,例如世界上的海洋。然而,关于有氧缺氧性光合作用的代谢后果的知识非常有限。结合转录组和代谢物分析,同位素标记技术,生长测量,氧吸收率,流式细胞术以及许多其他生物化学分析技术,我们在过渡期间综合概述了海洋细菌的含Dinoroseobactionshibae DFL12(T)的复杂适应从异营养素到PhotoHerTotoRophy(琥珀酸盐的生长)。光的生长表征了呼吸减少,通过三羧酸(TCA)循环降低的代谢通量和通过通过乙基丙酮(EMC)途径的增强的通量通过增强的通量同化CO 2,其显示与丝氨酸代谢相连。适应光学萎缩的适应主要是由剩余减少潜力引起的代谢反应,并且可能取决于位于一个操纵子中的基因,编码EMC途径的分支点酶,丝氨酸代谢和TCA循环。

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  • 来源
    《Environmental microbiology》 |2017年第7期|共16页
  • 作者单位

    Tech Univ Carolo Wilhelmina Braunschweig Inst Biochem Biotechnol &

    Bioinformat Rebenring 56 D-38106 Braunschweig Germany;

    Helmholtz Ctr Infect Res HZI Dept Microbial Commun Inhoffenstr 7 D-38124 Braunschweig Germany;

    Tech Univ Carolo Wilhelmina Braunschweig Inst Biochem Biotechnol &

    Bioinformat Rebenring 56 D-38106 Braunschweig Germany;

    Tech Univ Carolo Wilhelmina Braunschweig Inst Biochem Biotechnol &

    Bioinformat Rebenring 56 D-38106 Braunschweig Germany;

    Tech Univ Carolo Wilhelmina Braunschweig Inst Biochem Biotechnol &

    Bioinformat Rebenring 56 D-38106 Braunschweig Germany;

    Tech Univ Carolo Wilhelmina Braunschweig Inst Biochem Biotechnol &

    Bioinformat Rebenring 56 D-38106 Braunschweig Germany;

    Helmholtz Ctr Infect Res HZI Dept Microbial Commun Inhoffenstr 7 D-38124 Braunschweig Germany;

    Tech Univ Carolo Wilhelmina Braunschweig Inst Biochem Biotechnol &

    Bioinformat Rebenring 56 D-38106 Braunschweig Germany;

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  • 正文语种 eng
  • 中图分类 微生物学;
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