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高光条件下水稻中 LHCII-PSI-LHCI 复合物形成光捕获复合物 II 聚集体。

Formation of light-harvesting complex II aggregates from LHCII-PSI-LHCI complexes in rice plants under high light.

机构信息

Department of Molecular Biology, Pusan National University, Busan, Republic of Korea.

New Mexico Consortium, Los Alamos, USA.

出版信息

J Exp Bot. 2021 Jun 22;72(13):4938-4948. doi: 10.1093/jxb/erab188.

DOI:10.1093/jxb/erab188
PMID:33939808
Abstract

During low light- (LL) induced state transitions in dark-adapted rice (Oryza sativa) leaves, light-harvesting complex (LHC) II become phosphorylated and associate with PSI complexes to form LHCII-PSI-LHCI supercomplexes. When the leaves are subsequently transferred to high light (HL) conditions, phosphorylated LHCII complexes are no longer phosphorylated. Under the HL-induced transition in LHC phosphorylation status, we observed a new green band in the stacking gel of native green-PAGE, which was determined to be LHCII aggregates by immunoblotting and 77K chlorophyll fluorescence analysis. Knockout mutants of protein phosphatase 1 (PPH1) which dephosphorylates LHCII failed to form these LHCII aggregates. In addition, the ability to develop non-photochemical quenching in the PPH1 mutant under HL was less than for wild-type plants. As determined by immunoblotting analysis, LHCII proteins present in LHCII-PSI-LHCI supercomplexes included the Lhcb1 and Lhcb2 proteins. In this study, we provide evidence suggesting that LHCII in the LHCII-PSI-LHCI supercomplexes are dephosphorylated and subsequently form aggregates to dissipate excess light energy under HL conditions. We propose that this LHCII aggregation, involving LHCII L-trimers, is a newly observed photoprotective light-quenching process operating in the early stage of acclimation to HL in rice plants.

摘要

在黑暗适应的水稻(Oryza sativa)叶片中,在低光照(LL)诱导的状态转变期间,光捕获复合物(LHC)II 被磷酸化,并与 PSI 复合物结合形成 LHCII-PSI-LHCI 超复合物。当叶片随后被转移到高光(HL)条件下时,磷酸化的 LHCII 复合物不再被磷酸化。在 LHC 磷酸化状态的 HL 诱导转变下,我们在天然绿-PAGE 的堆叠凝胶中观察到一个新的绿色带,通过免疫印迹和 77K 叶绿素荧光分析确定为 LHCII 聚集体。去磷酸化 LHCII 的蛋白磷酸酶 1(PPH1)的敲除突变体未能形成这些 LHCII 聚集体。此外,在 HL 下,PPH1 突变体中发展非光化学猝灭的能力小于野生型植物。通过免疫印迹分析确定,LHCII-PSI-LHCI 超复合物中存在的 LHCII 蛋白包括 Lhcb1 和 Lhcb2 蛋白。在这项研究中,我们提供了证据表明,LHCII-PSI-LHCI 超复合物中的 LHCII 被去磷酸化,随后在 HL 条件下形成聚集体以耗散多余的光能。我们提出,这种涉及 LHCII L-三聚体的 LHCII 聚集是一种新观察到的光保护光猝灭过程,在水稻植物对 HL 的早期适应中起作用。

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