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Grana-Localized Proteins RIQ1 and RIQ2 Affect the Organization of Light-Harvesting Complex II and Grana Stacking in Arabidopsis

机译:格兰纳本地化蛋白RIQ1和RIQ2影响拟南芥中光采复合物II和格兰纳堆积的组织

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摘要

Grana are stacked thylakoid membrane structures in land plants that contain PSII and light-harvesting complex II proteins (LHCIIs). We isolated two Arabidopsis thaliana mutants, reduced induction of non-photochemical quenching1 (riq1) and riq2, in which stacking of grana was enhanced. The curvature thylakoid 1a (curt1a) mutant was previously shown to lack grana structure. In riq1 curt1a, the grana were enlarged with more stacking, and in riq2 curt1a, the thylakoids were abnormally stacked and aggregated. Despite having different phenotypes in thylakoid structure, riq1, riq2, and curt1a showed a similar defect in the level of nonphotochemical quenching of chlorophyll fluorescence (NPQ). In riq curt1a double mutants, induction was more severely affected than in either single mutant. In riq mutants, state transitions were inhibited and the PSII antennae were smaller than in wild-type plants. The riq defects did not affect induction in the chlorophyll b-less mutant. RIQ1 and RIQ2 are paralogous and encode uncharacterized grana thylakoid proteins, but despite the high level of identity of the sequence, the functions of RIQ1 and RIQ2 were not redundant. RIQ1 is required for RIQ2 accumulation, and the wild-type level of RIQ2 did not complement the and thylakoid phenotypes in riq1. We propose that RIQ proteins link the grana structure and organization of LHCIIs.
机译:谷物是陆地植物中堆积的类囊体膜结构,其中包含PSII和光捕获复合体II蛋白(LHCII)。我们分离了两个拟南芥突变体,减少了非光化学淬灭1(riq1)和riq2的诱导,其中增强了谷物的堆叠。以前显示曲率类囊体1a(curt1a)突变体缺乏格兰娜结构。在riq1 curt1a中,增大了谷物的堆积,而在riq2 curt1a中,类囊体异常地堆积并聚集。尽管类囊体结构具有不同的表型,但riq1,riq2和curt1a在叶绿素荧光(NPQ)的非光化学猝灭水平上显示出相似的缺陷。在riq curt1a双重突变体中,诱导比任何一个单一突变体都受到更严重的影响。在riq突变体中,状态转换受到抑制,并且PSII触角比野生型植物小。 riq缺陷不影响叶绿素b-less突变体的诱导。 RIQ1和 RIQ2 是旁系同源基因,编码未表征的粒类类囊体蛋白,但是尽管该序列具有很高的同一性,但RIQ1和RIQ2的功能并不是多余的。 RIQ1是RIQ2积累所必需的,而RIQ2的野生型水平不能补充 riq1 中的和类囊体表型。我们建议RIQ蛋白链接LHCIIs的格兰纳结构和组织。

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