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A Nucleus-Encoded Chloroplast Protein YL1 Is Involved in Chloroplast Development and Efficient Biogenesis of Chloroplast ATP Synthase in Rice

机译:核编码的叶绿体蛋白YL1与水稻的叶绿体发育和叶绿体ATP合酶的有效生物发生有关。

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摘要

Chloroplast ATP synthase (cpATPase) is an importance thylakoid membrane-associated photosynthetic complex involved in the light-dependent reactions of photosynthesis. In this study, we isolated and characterized a rice (Oryza sativa) mutant yellow leaf 1 (yl1), which exhibits chlorotic leaves throughout developmental stages. The YL1 mutation showed reduced chlorophyll contents, abnormal chloroplast morphology, and decreased photochemical efficiency. Moreover, YL1 deficiency disrupts the expression of genes associated with chloroplast development and photosynthesis. Molecular and genetic analyses revealed that YL1 is a nucleus-encoded protein with a predicted transmembrane domain in its carboxyl-terminus that is conserved in the higher plant kingdom. YL1 localizes to chloroplasts and is preferentially expressed in green tissues containing chloroplasts. Immunoblot analyses showed that inactivation of YL1 leads to drastically reduced accumulation of AtpA (α) and AtpB (β), two core subunits of CF1αβ subcomplex of cpATPase, meanwhile, a severe decrease (ca. 41.7%) in cpATPase activity was observed in the yl1-1 mutant compared with the wild type. Furthermore, yeast two-hybrid and bimolecular fluorescence complementation assays revealed a specific interaction between YL1 and AtpB subunit of cpATPase. Taken together, our results suggest that YL1 is a plant lineage-specific auxiliary factor involved in the biogenesis of the cpATPase complex, possibly via interacting with the β-subunit.
机译:叶绿体ATP合酶(cpATPase)是类囊体膜相关的光合作用的重要组成部分,参与光合作用的光依赖性反应。在这项研究中,我们分离并鉴定了水稻(Oryza sativa)突变黄叶1(yl1),该叶在整个发育阶段均显示出褪绿的叶子。 YL1突变显示出降低的叶绿素含量,异常的叶绿体形态和降低的光化学效率。此外,YL1缺乏会破坏与叶绿体发育和光合作用相关的基因的表达。分子和遗传分析表明,YL1是一种核编码蛋白,在其羧基末端具有预测的跨膜结构域,在高级植物界中是保守的。 YL1定位于叶绿体,并优先在含有叶绿体的绿色组织中表达。免疫印迹分析表明,YL1的失活导致cpATPase的CF1αβ亚复合物的两个核心亚基AtpA(α)和AtpB(β)的积聚急剧减少,与此同时,观察到cpATPase活性严重降低(约41.7%)。 yl1-1突变体与野生型相比。此外,酵母双杂交和双分子荧光互补分析揭示了YL1和cpATPase AtpB亚基之间的特异性相互作用。综上所述,我们的结果表明YL1是一种植物谱系特异性辅助因子,可能通过与β亚基相互作用而参与cpATPase复合物的生物发生。

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