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Function of the Chloroplast Hydrogenase in the Microalga Chlamydomonas: The Role of Hydrogenase and State Transitions during Photosynthetic Activation in Anaerobiosis

机译:叶绿体加氢酶在微藻衣藻中的功能:厌氧菌中光合作用过程中的加氢酶和状态转变的作用

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摘要

Like a majority of photosynthetic microorganisms, the green unicellular alga Chlamydomonas reinhardtii may encounter O2 deprived conditions on a regular basis. In response to anaerobiosis or in a respiration defective context, the photosynthetic electron transport chain of Chlamydomonas is remodeled by a state transition process to a conformation that favours the photoproduction of ATP at the expense of reductant synthesis. In some unicellular green algae including Chlamydomonas, anoxia also triggers the induction of a chloroplast-located, oxygen sensitive hydrogenase, which accepts electrons from reduced ferredoxin to convert protons into molecular hydrogen. Although microalgal hydrogen evolution has received much interest for its biotechnological potential, its physiological role remains unclear. By using specific Chlamydomonas mutants, we demonstrate that the state transition ability and the hydrogenase function are both critical for induction of photosynthesis in anoxia. These two processes are thus important for survival of the cells when they are transiently placed in an anaerobic environment.
机译:像大多数光合微生物一样,绿色单细胞藻类莱茵衣藻可能会定期遇到O2剥夺的情况。响应厌氧菌或在呼吸缺陷的情况下,衣藻的光合作用电子传输链通过状态转换过程重塑为有利于ATP光产生的构象,但以还原剂合成为代价。在包括衣藻(Chlamydomonas)在内的一些单细胞绿藻中,缺氧也触发了位于叶绿体的,对氧敏感的氢化酶的诱导,该酶接受来自还原铁氧还蛋白的电子以将质子转化为分子氢。尽管微藻类氢的进化因其生物技术潜力而引起了广泛兴趣,但其生理作用仍不清楚。通过使用特定的衣藻突变体,我们证明了状态转换能力和氢化酶功能对于缺氧诱导光合作用都是至关重要的。因此,当将它们短暂地置于厌氧环境中时,这两个过程对于细胞的存活很重要。

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