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首页> 外文期刊>Plant and cell physiology >Genome Editing Reveals Both the Crucial Role of OsCOI2 in Jasmonate Signaling and the Functional Diversity of COI1 Homologs in Rice
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Genome Editing Reveals Both the Crucial Role of OsCOI2 in Jasmonate Signaling and the Functional Diversity of COI1 Homologs in Rice

机译:基因组编辑揭示了OsCOI2在茉莉酸信号转导中的关键作用以及水稻中COI1同源物的功能多样性

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Jasmonic acid (JA) regulates plant growth, development and stress responses. Coronatine insensitive 1 (COI1) and jasmonate zinc-finger inflorescence meristem-domain (JAZ) proteins form a receptor complex for jasmonoyl-l-isoleucine, a biologically active form of JA. Three COIs (OsCOI1a, OsCOI1b and OsCOI2) are encoded in the rice genome. In the present study, we generated mutants for each rice COI gene using genome editing to reveal the physiological functions of the three rice COIs. The oscoi2 mutants, but not the oscoi1a and oscoi1b mutants, exhibited severely low fertility, indicating the crucial role of OsCOI2 in rice fertility. Transcriptomic analysis revealed that the transcriptional changes after methyl jasmonate (MeJA) treatment were moderate in the leaves of oscoi2 mutants compared to those in the wild type or oscoi1a and oscoi1b mutants. MeJA-induced chlorophyll degradation and accumulation of antimicrobial secondary metabolites were suppressed in oscoi2 mutants. These results indicate that OsCOI2 plays a central role in JA response in rice leaves. In contrast, the assessment of growth inhibition upon exogenous application of JA to seedlings of each mutant revealed that rice COIs are redundantly involved in shoot growth, whereas OsCOI2 plays a primary role in root growth. In addition, a co-immunoprecipitation assay showed that OsJAZ2 and OsJAZ5 containing divergent Jas motifs physically interacted only with OsCOI2, whereas OsJAZ4 with a canonical Jas motif interacts with all three rice COIs. The present study demonstrated the functional diversity of rice COIs, thereby providing clues to the mechanisms regulating the various physiological functions of JA.
机译:茉莉酸 (JA) 调节植物生长、发育和胁迫反应。冠状不敏感 1 (COI1) 和茉莉酸锌指花序分生组织结构域 (JAZ) 蛋白形成茉莉酰-l-异亮氨酸的受体复合物,茉莉酰-l-异亮氨酸是 JA 的一种生物活性形式。三种COI(OsCOI1a、OsCOI1b和OsCOI2)被编码在水稻基因组中。在本研究中,我们利用基因组编辑为每个水稻COI基因生成了突变体,以揭示3个水稻COI的生理功能。oscoi2突变体,而oscoi1a和oscoi1b突变体的生育率极低,表明OsCOI2在水稻肥力中起着关键作用。转录组学分析显示,与野生型或oscoi1a和oscoi1b突变体相比,oscoi2突变体叶片经茉莉酸甲酯(MeJA)处理后的转录变化为中等。MeJA诱导的叶绿素降解和抗菌次生代谢产物的积累在oscoi2突变体中被抑制。这些结果表明,OsCOI2在水稻叶片JA响应中起着核心作用。相反,外源施用JA对各突变体幼苗生长抑制的评估表明,水稻COIs在地上部生长中是多余的,而OsCOI2在根系生长中起主要作用。此外,免疫共沉淀试验表明,含有不同Jas基序的OsJAZ2和OsJAZ5仅与OsCOI2发生物理相互作用,而具有典型Jas基序的OsJAZ4与所有三种水稻COI相互作用。本研究证明了水稻COIs的功能多样性,从而为调控JA各种生理功能的机制提供了线索。

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