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Photoregulation of the Light-Harvesting Chlorophyll Protein Complex Associated with Photosystem II in Dunaliella tertiolecta

机译:光吸收叶绿素蛋白复合体与光系统II在杜氏杜氏藻中的光调节。

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摘要

The marine chlorophyte Dunaliella tertiolecta Butcher responds to a one-step transition from a high growth irradiance level (700 micromoles quanta per square meter per second) to a low growth irradiance level (70 micromoles quanta per square meter per second) by increasing the total amount of light-harvesting chlorophyll (Chl) a/b binding protein associated with photosystem II (LHC II), and by modifying the relative abundance of individual LHC II apoproteins. When high light-adapted cells were incubated with gabaculine, which inhibits Chl synthesis, and transferred to low light, the LHC II apoproteins were still synthesized and the 35S-labeled LHC II apoproteins remained stable after a 24 hour chase. These results suggest that Chl synthesis is not required for stability of the LHC II apoproteins in this alga. However, when the control cells are transferred from high light to low light, the amount of the four LHC II apoproteins per cell increases, whereas it does not in the presence of gabaculine. These results suggest that Chl synthesis is required for a photoadaptive increase in the cellular level of LHC II.
机译:通过增加总量,海洋绿藻植物杜氏盐藻屠夫响应从高生长辐照度(每平方米每秒700微摩尔量子)到低生长辐照度(每秒每平方米70微摩尔量子)的一步转变。与光系统​​II(LHC II)相关的光收集叶绿素(Chl)a / b结合蛋白,并通过修饰单个LHC II载脂蛋白的相对丰度。当将适应高光照的细胞与抑制Chl合成的加巴奎林一起孵育并转移至弱光下时,仍会合成LHC II载脂蛋白,并且 35 标记的LHC II载脂蛋白在24天后仍保持稳定小时追逐。这些结果表明,在该藻中,LHC II载脂蛋白的稳定性不需要Chl合成。但是,当对照细胞从强光转移到弱光时,每个细胞四种LHC II载脂蛋白的量增加,而加巴奎林不存在。这些结果表明,Chl合成对于LHC II的细胞水平的光适应性增加是必需的。

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