State Key Laboratory of Crop Biology, Shandong Provincial Key Laboratory of Agricultural Microbiology, College of Plant Protection, Shandong Agricultural University, Tai'an 271018, China.
State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China.
Int J Mol Sci. 2022 Apr 21;23(9):4581. doi: 10.3390/ijms23094581.
A key step in jasmonic acid (JA) signaling is the ligand-dependent assembly of a coreceptor complex comprising the F-box protein COI1 and JAZ transcriptional repressors. The assembly of this receptor complex results in proteasome-mediated degradation of JAZ repressors, which in turn bind and repress MYC transcription factors. Many studies on JAZs have been performed in , but the function of JAZs in rice is largely unknown. To systematically reveal the function of OsJAZs, in this study, we compared the various phenotypes resulting from 13 via ectopic expression in and the phenotypes of 12 overexpression (OE) lines. Phylogenetic analysis showed that the 25 proteins could be divided into three major groups. Yeast two-hybrid (Y2H) assays revealed that most OsJAZ proteins could form homodimers or heterodimers. The statistical results showed that the phenotypes of the OE plants were quite different from those of OE plants in terms of plant growth, development, and immunity. As an example, compared with other OE plants, OE plants exhibited a JA-insensitive phenotype and enhanced resistance to DC3000. The protein stability after JA treatment of OsJAZ11 emphasized the specific function of the protein. This study aimed to explore the commonalities and characteristics of different JAZ proteins functions from a genetic perspective, and to screen genes with disease resistance value. Overall, the results of this study provide insights for further functional analysis of rice JAZ family proteins.
茉莉酸(JA)信号转导的一个关键步骤是配体依赖性组装一个包含 F-box 蛋白 COI1 和 JAZ 转录阻遏物的核心受体复合物。该受体复合物的组装导致蛋白酶体介导的 JAZ 阻遏物降解,而 JAZ 阻遏物反过来结合并抑制 MYC 转录因子。许多关于 JAZ 的研究都是在拟南芥中进行的,但 JAZ 在水稻中的功能在很大程度上是未知的。为了系统地揭示 OsJAZs 的功能,在本研究中,我们通过在水稻中异位表达 13 个 OsJAZs 比较了它们的各种表型,并比较了 12 个过表达(OE)系的表型。系统发育分析表明,这 25 个蛋白可以分为三大类。酵母双杂交(Y2H)试验表明,大多数 OsJAZ 蛋白可以形成同源二聚体或异源二聚体。统计结果表明,OE 植株的表型在植物生长、发育和免疫方面与 OE 植株的表型有很大的不同。例如,与其他 OE 植株相比,OE 植株表现出对 JA 不敏感的表型,并增强了对 DC3000 的抗性。OsJAZ11 在 JA 处理后的蛋白稳定性强调了该蛋白的特异性功能。本研究旨在从遗传角度探讨不同 JAZ 蛋白功能的共性和特点,并筛选具有抗病价值的基因。总的来说,这项研究的结果为进一步分析水稻 JAZ 家族蛋白的功能提供了思路。