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Biogenesis and Evolution of Photosynthetic (Thylakoid) Membranes

机译:光合(类囊体)膜的生物发生和进化

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Work in molecular phylogeny during the past few years has documented that the biogenesis, maintenance, adaptation, and controlled resorption of thylakoid (photosynthetic) membranes are by far more complex than the requirements for maintaining their function, especially in plants (eukaryotic photoautotrophs). Plants, due to their genome compartmentation that originated in a cohabitation of cells (endosymbiotic events), have evolved an exquisite set of regulatory mechanisms for their energy-transducing organelles. These operate in concert with basically ancient regulatory circuits originating in the organelle ancestors. It appears that the biogenesis of thylakoid membranes, as that of chloroplasts in general, cannot be understood without knowledge of the history of the cells.
机译:在过去的几年中,分子系统发育研究表明,类囊体(光合)膜的生物发生,维持,适应和受控吸收远比维持其功能的要求复杂得多,尤其是在植物(真核自养生物)中。植物由于源自细胞共存(内共生事件)的基因组分隔,已经为它们的能量传导细胞器进化出一套精妙的调节机制。它们与起源于细胞器祖先的基本上古老的调节回路协同工作。似乎不知道细胞的历史就无法理解类囊体膜的生物发生,就像一般的叶绿体一样。

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