首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >OsNAP connects abscisic acid and leaf senescence by fine-tuning abscisic acid biosynthesis and directly targeting senescence-associated genes in rice
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OsNAP connects abscisic acid and leaf senescence by fine-tuning abscisic acid biosynthesis and directly targeting senescence-associated genes in rice

机译:OsNAP通过微调脱落酸的生物合成并直接靶向水稻中与衰老相关的基因来连接脱落酸和叶片衰老

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摘要

It has long been established that premature leaf senescence negatively impacts the yield stability of rice, but the underlying molecular mechanism driving this relationship remains largely unknown. Here, we identified a dominant premature leaf senescence mutant, prematurely senile 1 (ps1-D). PS1 encodes a plant-specific NAC (no apical meristem, Arabidopsis ATAF1/2, and cup-shaped cotyledon2) transcriptional activator, Oryza sativa NAC-like, activated by apetala3/pistillata (OsNAP). Overexpression of OsNAP significantly promoted senescence, whereas knockdown of OsNAP produced a marked delay of senescence, confirming the role of this gene in the development of rice senescence. OsNAP expression was tightly linked with the onset of leaf senescence in an age-dependent manner. Similarly, ChIP-PCR and yeast one-hybrid assays demonstrated that OsNAP positively regulates leaf senescence by directly targeting genes related to chlorophyll degradation and nutrient transport and other genes associated with senescence, suggesting that OsNAP is an ideal marker of senescence onset in rice. Further analysis determined that OsNAP is induced specifically by abscisic acid (ABA), whereas its expression is repressed in both aba1 and aba2, two ABA biosynthetic mutants. Moreover, ABA content is reduced significantly in ps1-D mutants, indicating a feedback repression of OsNAP on ABA biosynthesis. Our data suggest that OsNAP serves as an important link between ABA and leaf senescence. Additionally, reduced OsNAP expression leads to delayed leaf senescence and an extended grain-filling period, resulting in a 6.3% and 10.3% increase in the grain yield of two independent representative RNAi lines, respectively. Thus, fine-tuning OsNAP expression should be a useful strategy for improving rice yield in the future.
机译:早已确定过早的叶片衰老会对水稻的产量稳定性产生负面影响,但是驱动这种关系的潜在分子机制仍然很大程度上未知。在这里,我们确定了一个占主导地位的过早衰老的叶片突变体,早衰1(ps1-D)。 PS1编码一种植物特有的NAC(无顶端分生组织,拟南芥ATAF1 / 2和杯状子叶2)转录激活物,稻草NAC样,被apetala3 / pistillata(OsNAP)激活。 OsNAP的过表达显着促进了衰老,而敲除OsNAP则显着延缓了衰老,证实了该基因在水稻衰老发展中的作用。 OsNAP的表达与叶片衰老的发生紧密相关,且呈年龄依赖性。同样,ChIP-PCR和酵母一杂交试验表明,OsNAP通过直接靶向与叶绿素降解和养分转运相关的基因以及其他与衰老相关的基因来正向调节叶片的衰老,这表明OsNAP是水稻衰老的理想标记。进一步的分析确定,OsNAP是由脱落酸(ABA)特异性诱导的,而它的表达在两个ABA生物合成突变体aba1和aba2中均受到抑制。此外,在ps1-D突变体中ABA含量显着降低,表明OsNAP对ABA生物合成具有反馈抑制作用。我们的数据表明,OsNAP是ABA与叶片衰老之间的重要联系。另外,降低的OsNAP表达导致延迟的叶片衰老和延长的籽粒充实期,分别导致两个独立的代表性RNAi品系的籽粒产量分别增加6.3%和10.3%。因此,微调OsNAP表达应该是将来提高水稻产量的有用策略。

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