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A Novel Nuclear-Localized CCCH-Type Zinc Finger Protein OsDOS Is Involved in Delaying Leaf Senescence in Rice

机译:一种新型的核定位CCCH型锌指蛋白OsDOS参与延迟水稻叶片衰老。

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摘要

Leaf senescence is a developmentally programmed degeneration process, which is fine tuned by a complex regulatory network for plant fitness. However, molecular regulation of leaf senescence is poorly understood, especially in rice (Oryza sativa), an important staple crop for more than half of the world population. Here, we report a novel nuclear-localized CCCH-type zinc finger protein, Oryza sativa delay of the onset of senescence (OsDOS), involved in delaying leaf senescence in rice. The expression of OsDOS was down-regulated during natural leaf senescence, panicle development, and pollination, although its transcripts were accumulated in various organs. RNAi knockdown of OsDOS caused an accelerated age-dependent leaf senescence, whereas its overexpression produced a marked delay of leaf senescence, suggesting that it acts as a negative regulator for leaf senescence. A genome-wide expression analysis further confirmed its negative regulation for leaf senescence and revealed that, in particular, the jasmonate (JA) pathway was found to be hyperactive in the OsDOS RNAi transgenic lines but impaired in the OsDOS overexpressing transgenic lines, indicating that this pathway is likely involved in the OsDOS-mediated delaying of leaf senescence. Furthermore, methyl JA treatments of both seeds and detached leaves from the RNAi and the overexpressing transgenic lines showed hyper- and hyporesponses, respectively, consistent with the negative regulation of the JA pathway by OsDOS. Together, these results indicate that OsDOS is a novel nuclear protein that delays leaf senescence likely, at least in part, by integrating developmental cues to the JA pathway.
机译:叶片衰老是一个经过程序设计的变性过程,可通过用于植物适应性的复杂调控网络进行微调。但是,人们对叶衰老的分子调控了解甚少,尤其是在水稻(稻谷)中,水稻是占世界一半以上人口的重要主食。在这里,我们报告一种新型的核定位CCCH型锌指蛋白,水稻的衰老开始延迟(OsDOS),参与延迟水稻叶片衰老。尽管其转录本积累在各​​个器官中,但在自然叶片衰老,穗发育和授粉过程中,OsDOS的表达下调。 OsDOS的RNAi敲除导致了衰老相关的叶片衰老加速,而其过表达则导致了叶片衰老的明显延迟,表明它是叶片衰老的负调节剂。全基因组表达分析进一步证实了其对叶片衰老的负调节作用,并揭示了茉莉(JA)途径在OsDOS RNAi转基因株系中过度活跃,但在过表达OsDOS的转基因株系中受损,这表明OsDOS介导的叶片衰老延迟可能参与了该途径。此外,从RNAi和过表达的转基因品系对种子和分离叶的甲基JA处理分别显示了高反应和低反应,与OsDOS对JA途径的负调控相一致。总之,这些结果表明,OsDOS是一种新型的核蛋白,可能至少部分地通过将发育线索整合到JA途径中来延迟叶片衰老。

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