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双定位 WHIRLY1 与 LHCA1 相互作用改变了光系统 I 的光化学活性,并参与拟南芥的光适应。

Dual-Located WHIRLY1 Interacting with LHCA1 Alters Photochemical Activities of Photosystem I and Is Involved in Light Adaptation in Arabidopsis.

机构信息

Center for Molecular Cell and Systems Biology, Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Int J Mol Sci. 2017 Nov 7;18(11):2352. doi: 10.3390/ijms18112352.

Abstract

Plastid-nucleus-located WHIRLY1 protein plays a role in regulating leaf senescence and is believed to associate with the increase of reactive oxygen species delivered from redox state of the photosynthetic electron transport chain. In order to make sure whether WHIRLY1 plays a role in photosynthesis, in this study, the performances of photosynthesis were detected in knockout () and plastid localized WHIRLY1 overexpression () plants. Loss of WHIRLY1 leads to a higher photochemical quantum yield of photosystem I Y(I) and electron transport rate (ETR) and a lower non-photochemical quenching (NPQ) involved in the thermal dissipation of excitation energy of chlorophyll fluorescence than the wild type. Further analyses showed that WHIRLY1 interacts with Light-harvesting protein complex I (LHCA1) and affects the expression of genes encoding photosystem I (PSI) and light harvest complexes (LHCI). Moreover, loss of WHIRLY1 decreases chloroplast NAD(P)H dehydrogenase-like complex (NDH) activity and the accumulation of NDH supercomplex. Several genes encoding the PSI-NDH complexes are also up-regulated in and the double mutant () but steady in plants. However, under high light conditions (800 μmol m s), both and plants show lower ETR than wild-type which are contrary to that under normal light condition. Moreover, the expression of several PSI-NDH encoding genes and which is related to jasmonate (JA) response varied in under different light conditions. These results indicate that WHIRLY1 is involved in the alteration of ETR by affecting the activities of PSI and supercomplex formation of PSI with LHCI or NDH and may acting as a communicator between the plastids and the nucleus.

摘要

质体-核定位的 WHIRLY1 蛋白在调控叶片衰老中起作用,并且被认为与来自光合作用电子传递链氧化还原状态的活性氧的增加有关。为了确定 WHIRLY1 是否在光合作用中起作用,在这项研究中,检测了 WHIRLY1 敲除()和质体定位 WHIRLY1 过表达()植物的光合作用性能。与野生型相比,WHIRLY1 的缺失导致更高的光系统 I Y(I)的光化学量子产量和电子传递速率(ETR)以及更低的非光化学猝灭(NPQ),这涉及叶绿素荧光的激发能的热耗散。进一步的分析表明,WHIRLY1 与光捕获蛋白复合物 I(LHCA1)相互作用,并影响编码光系统 I(PSI)和光捕获复合物(LHCI)的基因的表达。此外,WHIRLY1 的缺失降低了质体 NAD(P)H 脱氢酶样复合物(NDH)的活性和 NDH 超复合物的积累。几个编码 PSI-NDH 复合物的基因在和双突变体()中也上调,但在植物中稳定。然而,在高光条件(800 μmol m s)下,和植物的 ETR 均低于野生型,这与正常光照条件下的情况相反。此外,在不同光照条件下,PSI-NDH 编码基因和与茉莉酸(JA)反应相关的的表达在中发生变化。这些结果表明,WHIRLY1 通过影响 PSI 的活性和 PSI 与 LHCI 或 NDH 的超复合物形成来参与 ETR 的改变,并且可能作为质体和核之间的通讯器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7963/5713321/913556685726/ijms-18-02352-g001.jpg

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