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光驯化影响中心硅藻塔玛亚历山大藻光合系统超复合体的分子特征。

Photoacclimation impacts the molecular features of photosystem supercomplexes in the centric diatom Thalassiosira pseudonana.

机构信息

Institute of Molecular Biosciences, Goethe University Frankfurt, 60438 Frankfurt am Main, Germany.

Institute of Molecular Biosciences, Goethe University Frankfurt, 60438 Frankfurt am Main, Germany.

出版信息

Biochim Biophys Acta Bioenerg. 2022 Oct 1;1863(7):148589. doi: 10.1016/j.bbabio.2022.148589. Epub 2022 Jun 30.

Abstract

In diatoms, light-harvesting processes take place in a specific group of proteins, called fucoxanthin chlorophyll a/c proteins (FCP). This group includes many members and represents the major characteristic of the diatom photosynthetic apparatus, with specific pigments bound (chlorophyll c, fucoxanthin, diadino- and diatoxanthin besides chlorophyll a). In thylakoids, FCP and photosystems (PS) form multimeric supercomplexes. In this study, we compared the biochemical properties of PS supercomplexes isolated from Thalassiosira pseudonana cells grown under low light or high light conditions, respectively. High light acclimation changed the molecular features of the PS and their ratio in thylakoids. In PSII, no obvious changes in polypeptide composition were observed, whereas for PSI changes in one specific group of FCP proteins were detected. As reported before, the amount of xanthophyll cycle pigments and their de-epoxidation ratio was increased in PSI under HL. In PSII, however, no additional xanthophyll cycle pigments occurred, but the de-epoxidation ratio was increased as well. This comparison suggests how mechanisms of photoprotection might take place within and in the proximity of the PS, which gives new insights into the capacity of diatoms to adapt to different conditions and in different environments.

摘要

在硅藻中,光捕获过程发生在一组特定的蛋白质中,称为叶黄素叶绿素 a/c 蛋白(FCP)。该组包含许多成员,是硅藻光合作用器官的主要特征,具有特定的结合色素(叶绿素 c、岩藻黄素、二氢二酮和二酮叶黄素除叶绿素 a 外)。在类囊体中,FCP 和光系统(PS)形成多聚超复合物。在这项研究中,我们比较了分别在低光和高光条件下生长的拟菱形藻细胞中分离的 PS 超复合物的生化特性。高光驯化改变了 PS 的分子特征及其在类囊体中的比例。在 PSII 中,未观察到多肽组成的明显变化,而在 PSI 中检测到一组特定的 FCP 蛋白质的变化。如前所述,在 HL 下 PSI 中的叶黄素循环色素及其去环氧化比值增加。然而,在 PSII 中,没有发生额外的叶黄素循环色素,但去环氧化比值也增加了。这种比较表明了在 PS 内部和附近可能发生的光保护机制,这为硅藻适应不同条件和不同环境的能力提供了新的见解。

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