Structures of PSI–FCPI from Thalassiosira pseudonana grown under high light provide evidence for convergent evolution and light‐adaptive strategies in diatom FCPIs

海链藻 岩藻黄质 硅藻 光合作用 叶绿素a 植物 叶绿素 叶绿素c 700页 生物 光系统II 生物物理学 光系统I 叶绿素荧光 藻类 浮游植物 生态学 营养物
作者
Yue Feng,Zhenhua Li,Yang YANG,Lili Shen,Xiaoyi Li,Xueyang Liu,Xiaofei Zhang,Jinyang Zhang,F.M. Ren,Yuan Wang,Cheng Liu,Guangye Han,Xuchu Wang,Tingyun Kuang,Jian‐Ren Shen,Wenda Wang
出处
期刊:Journal of Integrative Plant Biology [Wiley]
被引量:5
标识
DOI:10.1111/jipb.13816
摘要

Diatoms rely on fucoxanthin chlorophyll a/c-binding proteins (FCPs) for light harvesting and energy quenching under marine environments. Here we report two cryo-electron microscopic structures of photosystem I (PSI) with either 13 or five fucoxanthin chlorophyll a/c-binding protein Is (FCPIs) at 2.78 and 3.20 Å resolutions from Thalassiosira pseudonana grown under high light (HL) conditions. Among them, five FCPIs are stably associated with the PSI core, these include Lhcr3, RedCAP, Lhcq8, Lhcf10, and FCP3. The eight additional Lhcr-type FCPIs are loosely associated with the PSI core and detached under the present purification conditions. The pigments of this centric diatom showed a higher proportion of chlorophylls a, diadinoxanthins, and diatoxanthins; some of the chlorophyll as and diadinoxanthins occupy the locations of fucoxanthins found in the huge PSI-FCPI from another centric diatom Chaetoceros gracilis grown under low-light conditions. These additional chlorophyll as may form more energy transfer pathways and additional diadinoxanthins may form more energy dissipation sites relying on the diadinoxanthin-diatoxanthin cycle. These results reveal the assembly mechanism of FCPIs and corresponding light-adaptive strategies of T. pseudonana PSI-FCPI, as well as the convergent evolution of the diatom PSI-FCPI structures.
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