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首页> 外文期刊>FEBS letters. >The importance of flavodoxin for environmental stress tolerance in photosynthetic microorganisms and transgenic plants. Mechanism, evolution and biotechnological potential
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The importance of flavodoxin for environmental stress tolerance in photosynthetic microorganisms and transgenic plants. Mechanism, evolution and biotechnological potential

机译:黄酮毒素对于光合微生物和转基因植物中环境胁迫耐受性的重要性。机制,进化和生物技术潜力

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Ferredoxins are electron shuttles harboring iron-sulfur clusters which participate in oxido-reductive pathways in organisms displaying very different lifestyles. Ferredoxin levels decline in plants and cyanobacteria exposed to environmental stress and iron starvation. Flavodoxin is an isofunctional flavoprotein present in cyanobacteria and algae (not plants) which is induced and replaces ferredoxin under stress. Expression of a chloroplast-targeted flavodoxin in plants confers tolerance to multiple stresses and iron deficit. We discuss herein the bases for functional equivalence between the two proteins, the reasons for ferredoxin conservation despite its susceptibility to aerobic stress and for the loss of flavodoxin as an adaptive trait in higher eukaryotes. We also propose a mechanism to explain the tolerance conferred by flavodoxin when expressed in plants.
机译:铁氧还蛋白是携带铁-硫簇的电子航天飞机,其参与表现出截然不同生活方式的生物体的氧化还原途径。受环境压力和铁饥饿影响的植物和蓝细菌中铁氧还蛋白水平下降。 Flavodoxin是存在于蓝细菌和藻类(不是植物)中的一种同功能的黄素蛋白,可被诱导并在压力下替代铁氧还蛋白。在植物中表达叶绿体的黄酮毒素赋予了对多种胁迫和铁缺乏的耐受性。我们在这里讨论这两种蛋白质之间功能等效的基础,尽管其对有氧应激很敏感,但铁氧还蛋白保守的原因以及黄酮毒素丧失为高等真核生物的适应性状。我们还提出了一种机制来解释黄素毒素在植物中表达时所赋予的耐受性。

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