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Induction of the De Novo Formation of the Photosystem I-Related Light-Harvesting Chlorophyll Protein Complex LHCPa by Photoheterotrophic Nutrition

机译:光异养营养诱导光系统I相关光捕获叶绿素蛋白复合物LHCPa的从头形成

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摘要

The green alga Chlamydobotrys stellata contains in addition to the normal light-harvesting chlorophyll protein complex LHCPb a special LHCPa which is free of chlorophyll b and connected only to photosystem I (Brandt, Zufall, Wiessner 1983 Plant Physiol 71: 128-131). The kinetics of these two LHCP forms were analyzed during the transition in nutrition of the alga from autotrophy to photoheterotrophy, e.g. the replacement of CO2 by acetate as carbon source. As shown by incorporation experiments with [14C]acetate, this change in nutrition leads to an increased synthesis of LHCPa, whereas the synthesis of the photosystem II-related LHCPb decreases. The increase of the LHCPa synthesis starts immediately after the onset of photoheterotrophic nutrition together with the synthesis of the chlorophyll protein complex CPI. There is no interchange of complex components between LHCPa and LHCPb during the depletion of the latter. The formation of LHCPa is discussed with respect to the regulation of gene expression.
机译:除正常的光收集叶绿素蛋白复合物LHCPb外,绿藻衣藻还包含一种特殊的LHCPa,它不含叶绿素b,仅与光系统I连接(Brandt,Zufall,Wiessner 1983 Plant Physiol 71:128-131)。在藻类营养从自养到光养的转变过程中,对这两种LHCP形式的动力学进行了分析。用乙酸盐替代二氧化碳作为碳源。如与[ 14 C]乙酸盐的掺入实验所示,这种营养变化导致LHCPa的合成增加,而与光系统II相关的LHCPb的合成减少。 LHCPa合成的增加在光异养营养开始后立即开始,并开始合成叶绿素蛋白复合物CPI。在LHCPa和LHCPb耗尽期间,复杂成分之间没有互换。关于基因表达的调节,讨论了LHCPa的形成。

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