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Gene regulatory cascade of senescence-associated NAC transcription factors activated by ETHYLENE-INSENSITIVE2-mediated leaf senescence signalling in Arabidopsis

机译:拟南芥中ETHETHENE-INSENSITIVE2介导的叶片衰老信号激活的衰老相关NAC转录因子的基因调控级联反应。

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摘要

Leaf senescence is a finely tuned and genetically programmed degeneration process, which is critical to maximize plant fitness by remobilizing nutrients from senescing leaves to newly developing organs. Leaf senescence is a complex process that is driven by extensive reprogramming of global gene expression in a highly coordinated manner. Understanding how gene regulatory networks involved in controlling leaf senescence are organized and operated is essential to decipher the mechanisms of leaf senescence. It was previously reported that the trifurcate feed-forward pathway involving EIN2, ORE1, and miR164 in Arabidopsis regulates age-dependent leaf senescence and cell death. Here, new components of this pathway have been identified, which enhances knowledge of the gene regulatory networks governing leaf senescence. Comparative gene expression analysis revealed six senescence-associated NAC transcription factors (TFs) (ANAC019, AtNAP, ANAC047, ANAC055, ORS1, and ORE1) as candidate downstream components of ETHYLENE-INSENSITIVE2 (EIN2). EIN3, a downstream signalling molecule of EIN2, directly bound the ORE1 and AtNAP promoters and induced their transcription. This suggests that EIN3 positively regulates leaf senescence by activating ORE1 and AtNAP, previously reported as key regulators of leaf senescence. Genetic and gene expression analyses in the ore1 atnap double mutant revealed that ORE1 and AtNAP act in distinct and overlapping signalling pathways. Transient transactivation assays further demonstrated that ORE1 and AtNAP could activate common as well as differential NAC TF targets. Collectively, the data provide insight into an EIN2-mediated senescence signalling pathway that coordinates global gene expression during leaf senescence via a gene regulatory network involving EIN3 and senescence-associated NAC TFs.
机译:叶片衰老是经过微调和基因编程的变性过程,对于通过将养分从衰老的叶片中转移到新发育的器官中来最大化植物适应性至关重要。叶片衰老是一个复杂的过程,由高度协调的方式对全局基因表达进行大量重新编程来驱动。了解如何控制和控制叶片衰老的基因调控网络的组织和运作,对破译叶片衰老的机制至关重要。以前有报道说拟南芥中涉及EIN2,ORE1和miR164的三叉前馈途径调节了年龄依赖性的叶片衰老和细胞死亡。在这里,已经确定了该途径的新成分,从而增强了对控制叶片衰老的基因调控网络的了解。比较基因表达分析揭示了六个衰老相关的NAC转录因子(TFs)(ANAC019,AtNAP,ANAC047,ANAC055,ORS1和ORE1)作为乙二烯-INSENSITIVE2(EIN2)的候选下游成分。 EIN3,EIN2的下游信号分子,直接结合ORE1和AtNAP启动子并诱导其转录。这表明EIN3通过激活ORE1和AtNAP来积极地调节叶片的衰老,以前报道这是叶片衰老的关键调节因子。在ore1 atnap双重突变体中的遗传和基因表达分析表明,ORE1和AtNAP在不同的和重叠的信号通路中起作用。瞬时反式激活分析进一步证明,ORE1和AtNAP可以激活常见的和不同的NAC TF靶标。总体而言,数据提供了对EIN2介导的衰老信号通路的见解,该信号通路通过涉及EIN3和衰老相关的NAC TF的基因调控网络来协调叶片衰老期间的全局基因表达。

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