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MODD Mediates Deactivation and Degradation of OsbZIP46 to Negatively Regulate ABA Signaling and Drought Resistance in Rice

机译:MODD介导OsbZIP46的失活和降解以负调控水稻的ABA信号传导和抗旱性

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摘要

Plants have evolved complicated protective mechanisms to survive adverse conditions. Previously, we reported that the transcription factor OsbZIP46 regulates abscisic acid () signaling-mediated drought tolerance in rice (Oryza sativa) by modulating stress-related genes. An intrinsic D domain represses OsbZIP46 activity, but the detailed mechanism for the repression of OsbZIP46 activation remains unknown. Here, we report an OsbZIP46-interacting protein, MODD (Mediator of OsbZIP46 deactivation and degradation), which is homologous to the Arabidopsis thaliana ABSCISIC ACID-INSENSITIVE5 binding protein AFP. MODD was induced by and drought stress, but the induction was much slower than that of OsbZIP46. In contrast to OsbZIP46, MODD negatively regulates signaling and drought tolerance, and inhibits the expression of OsbZIP46 target genes. We found that MODD negatively regulates OsbZIP46 activity and stability. MODD represses OsbZIP46 activity via interaction with the OsTPR3-HDA702 corepressor complex and downregulation of the histone acetylation level at OsbZIP46 target genes. MODD promotes OsbZIP46 degradation via interaction with the U-box type ubiquitin E3 ligase OsPUB70. Interestingly, the D domain is required for both deactivation and degradation of OsbZIP46 via its interaction with MODD. These findings show that plants fine-tune their drought responses by elaborate regulatory mechanisms, including the coordination of activity and stability of key transcription factors.
机译:植物已经进化出复杂的保护机制以在不利条件下生存。以前,我们报道了转录因子OsbZIP46通过调节胁迫相关基因来调节脱落酸()信号介导的水稻(Oryza sativa)的耐旱性。固有的D结构域抑制OsbZIP46的活性,但抑制OsbZIP46激活的详细机制仍然未知。在这里,我们报告一个与OsbZIP46相互作用的蛋白MODD(OsbZIP46失活和降解的介体),与拟南芥ABSCISIC ACID-INSENSITIVE5结合蛋白AFP同源。 MODD是由干旱胁迫诱导的,但是诱导比OsbZIP46慢得多。与OsbZIP46相比,MODD负调控信号传导和干旱耐受性,并抑制OsbZIP46靶基因的表达。我们发现MODD负调节OsbZIP46活性和稳定性。 MODD通过与OsTPR3-HDA702共加压复合物相互作用并下调OsbZIP46目标基因上的组蛋白乙酰化水平来抑制OsbZIP46活性。 MODD通过与U-box型泛素E3连接酶OsPUB70相互作用来促进OsbZIP46降解。有趣的是,通过OsbZIP46与MODD的相互作用,OsbZIP46的失活和降解都需要D域。这些发现表明,植物通过精细的调节机制(包括活性和关键转录因子的稳定性的协调)来微调其干旱反应。

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