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Chloroplast history clarified by the criterion of light-harvesting complex

机译:通过光收获复合物的标准阐明了叶绿体历史

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摘要

Bacterial essence of mitochondria and chloroplasts was initially proclaimed in general outline. Later, the remarkable insight gave way to an elaborate hypothesis. Finally, it took shape of a theory confirmed by molecular biology data. In particular, the rrn operon, which is the key phylogeny marker, locates chloroplasts on the tree of Cyanobacteria. Chloroplast ancestry and diversity can be also traced with the rpoC and psbA genes, rbc operon, and other molecular criteria of prime importance. Another criterion, also highly reliable, is light-harvesting complex (LHC). LHC pigment and protein moieties specify light acclimation strategies in evolutionary retrospect and modern biosphere. The onset of symbiosis between eukaryotic host and pre-chloroplast, as well as further mutual adjustment of partners depended on physiological competence of LHC. In this review, the criterion of LHC is applied to the origin and diversity of chloroplasts. In particular, ancient cyanobacterium possessing tandem antenna (encoded by the cbp genes and the pbp genes, correspondingly), and defined as a prochlorophyte, is argued to be chloroplast ancestor.
机译:线粒体和叶绿体的细菌本质最初在一般轮廓中宣告。后来,显着的洞察力给了一个精心的假设。最后,它采用了分子生物学数据证实的理论。特别是,作为关键的系统发育标记物的RRN操纵子位于蓝藻树上定位叶绿体。叶绿体血液和多样性也可以追溯到RPOC和PSBA基因,RBC操纵子和其他主要重要性的其他分子标准。另一种标准也高度可靠,是光收获复合物(LHC)。 LHC颜料和蛋白质部分在进化回报和现代生物圈中指定了光线加速策略。真核宿主和前叶绿体之间的共生发作,以及合作伙伴的进一步调整依赖于LHC的生理能力。在本文中,将LHC的标准应用于叶绿体的起源和多样性。特别是,具有串联天线(由CBP基因和PBP基因编码的抗体)和定义为促氯化物的古代蓝杆菌被认为是叶绿体祖先。

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