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Light- induced electron transfer and ATP synthesis in a carotene synthesizing insect

机译:胡萝卜素合成昆虫中的光诱导电子转移和ATP合成

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A singular adaptive phenotype of a parthenogenetic insect species (Acyrthosiphon pisum) was selected in cold conditions and is characterized by a remarkable apparition of a greenish colour. The aphid pigments involve carotenoid genes well defined in chloroplasts and cyanobacteria and amazingly present in the aphid genome, likely by lateral transfer during evolution. The abundant carotenoid synthesis in aphids suggests strongly that a major and unknown physiological role is related to these compounds beyond their canonical anti-oxidant properties. We report here that the capture of light energy in living aphids results in the photo induced electron transfer from excited chromophores to acceptor molecules. The redox potentials of molecules involved in this process would be compatible with the reduction of the NAD+ coenzyme. This appears as an archaic photosynthetic system consisting of photo-emitted electrons that are in fine funnelled into the mitochondrial reducing power in order to synthesize ATP molecules.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:在寒冷条件下,选择了孤雌生殖昆虫物种(蚜虫)的奇异适应表型,其特征是显着的绿色。蚜虫色素涉及类胡萝卜素基因,在叶绿体和蓝细菌中定义良好,并且在蚜虫基因组中惊人地存在,可能是由于进化过程中的横向转移所致。蚜虫中大量类胡萝卜素的合成强烈表明,除了其典型的抗氧化特性外,与这些化合物相关的主要且未知的生理作用。我们在这里报告说,在活的蚜虫中捕获光能会导致光诱导的电子从激发的发色团转移到受体分子。参与该过程的分子的氧化还原电势将与NAD +辅酶的降低兼容。这看起来像是一个古老的光合作用系统,由光发射电子组成,这些光电子细化进入线粒体的还原能力,以合成ATP分子。 2012 Macmillan Publishers Limited。版权所有

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