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水稻 MEDIATOR25(OsMED25)是茉莉酸介导的根系发育和 OsMYC2 介导的叶片衰老所必需的亚基。

Rice MEDIATOR25, OsMED25, is an essential subunit for jasmonate-mediated root development and OsMYC2-mediated leaf senescence.

机构信息

Plant Genome and Resource Research Center, Faculty of Agriculture, Kagawa University, Miki, Kagawa, 761-0795, Japan.

Philippine Rice Research Institute, Central Experiment Station, Science City of Muñoz, Nueva Ecija, 3119, Philippines.

出版信息

Plant Sci. 2021 May;306:110853. doi: 10.1016/j.plantsci.2021.110853. Epub 2021 Feb 19.

Abstract

The Mediator multiprotein complex acts as a universal adaptor between transcription factors (TFs) and RNA polymerase II. MEDIATOR25 (MED25) has an important role in jasmonic acid (JA) signaling in Arabidopsis. However, no research has been conducted on the role of MED25 in JA signaling in rice, which is one of the most important food crops globally and is a model plant for molecular studies in other monocotyledonous species. In the present study, we isolated the loss-of function mutant of MED25, osmed25, through the map-based cloning and phenotypic complementation analysis by the introduction of OsMED25 and investigated the role of OsMED25 in JA signaling in rice. The osmed25 mutants had longer primary (seminal) roots than those of the wild-type (WT) and exhibited JA-insensitive phenotypes. S-type lateral root densities in osmed25 mutants were lower than those in the WT, whereas L-type lateral root densities in osmed25 mutants were higher than those in the WT. Furthermore, the osmed25 mutants retarded JA-regulated leaf senescence under dark-induced senescence. Mutated osmed25 protein could not interact with OsMYC2, which is a positive TF in JA signaling in rice. The expression of JA-responsive senescence-associated genes was not upregulated in response to JA in the osmed25 mutants. The results suggest that OsMED25 participates in JA-mediated root development and OsMYC2-mediated leaf senescence in rice.

摘要

中介多蛋白复合物作为转录因子 (TFs) 和 RNA 聚合酶 II 之间的通用衔接子。在拟南芥中,中介蛋白 25 (MED25) 在茉莉酸 (JA) 信号转导中发挥重要作用。然而,目前还没有研究表明 MED25 在水稻 JA 信号转导中的作用,水稻是全球最重要的粮食作物之一,也是其他单子叶植物分子研究的模式植物。本研究通过图位克隆和通过引入 OsMED25 进行表型互补分析,分离出 MED25 的功能丧失突变体 osmed25,并研究了 OsMED25 在水稻 JA 信号转导中的作用。osmed25 突变体的初级(种子)根比野生型 (WT) 长,表现出 JA 不敏感表型。osmed25 突变体的 S 型侧根密度低于 WT,而 L 型侧根密度高于 WT。此外,osmed25 突变体在黑暗诱导的衰老下延迟了 JA 调节的叶片衰老。突变的 osmed25 蛋白不能与 OsMYC2 相互作用,而 OsMYC2 是水稻 JA 信号转导中的一个正 TF。osmed25 突变体中 JA 响应的衰老相关基因的表达没有因 JA 而上调。结果表明,OsMED25 参与了水稻中 JA 介导的根发育和 OsMYC2 介导的叶片衰老。

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