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Origins, evolutionary history, and taxonomic distribution of alternative oxidase and plastoquinol terminal oxidase

机译:起源、进化历史和分类替代氧化酶和的分布plastoquinol末端氧化酶

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Alternative oxidase (AOX) and plastoquinol terminal oxidase (PTOX) are related quinol oxidases associated with respiratory and photosynthetic electron transport chains, respectively. Contrary to previous belief, AOX is present in numerous animal phyla, as well as heterotrophic and marine phototrophic proteobacteria. PTOX appears limited to organisms capable of oxygenic photosynthesis, including cyanobacteria, algae and plants. We propose that both oxidases originated in prokaryotes from a common ancestral di-iron carboxylate protein that diversified to AOX within ancient proteobacteria and PTOX within ancient cyanobacteria. Each then entered the eukaryotic lineage separately; AOX by the endosymbiotic event that gave rise to mitochondria and later PTOX by the endosymbiotic event that gave rise to chloroplasts. Both oxidases then spread through the eukaryotic domain by vertical inheritance, as well as by secondary and potentially tertiary endosymbiotic events. (c) 2006 Elsevier Inc. All rights reserved.
机译:替代氧化酶(AOX)和plastoquinol终端氧化酶(PTOX)对苯二酚有关氧化酶类与呼吸道和有关光合电子传递链,分别。目前在众多动物类群,以及异养和海洋光养变形菌门。含氧的光合作用的能力,包括蓝细菌,藻类和植物。两种氧化酶类起源于原核生物的共同的祖先di-iron羧酸盐蛋白质多元化中AOX古代变形菌门和PTOX古老的蓝藻。分别进入真核血统;内共生的事件,引发了线粒体,后来PTOX共生事件引发了叶绿体。通过真核氧化酶类然后传播域由垂直的继承,以及二级和三级共生事件。保留。

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