National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, Wuhan, 430070, Hubei, China.
Plant Cell Rep. 2020 Feb;39(2):181-194. doi: 10.1007/s00299-019-02480-4. Epub 2019 Nov 12.
GbWRKY1 can function as a negative regulator of ABA signaling via JAZ1 and ABI1, with effects on salt and drought tolerance. WRKY transcription factors play important roles in plant development and stress responses. GbWRKY1 was initially identified as a defense-related gene in cotton and negatively regulates the response to fungal pathogens by activating the expression of JAZ1. Here, we characterized the role of GbWRKY1, an orthologue of the Arabidopsis gene AtWRKY75, in abiotic stress (salt and drought) and established novel connection between JAZ1 and ABA signaling in Arabidopsis. GbWRKY1 is nucleus localized and its expression is significantly induced by treatment with ABA and osmotic stresses NaCl and PEG. Increased levels of expression of GbWRKY1 in transgenic Arabidopsis enhance sensitivity to salt and drought as revealed by seed germination tests and soil stress experiments. Similarly, GbWRKY1 overexpression cotton plants also display increased sensitivity to PEG treatment and drought. Expression analysis shows that the induction of two ABA responsive genes, RAB18 and RD29A by NaCl, mannitol, and ABA treatment is significantly impaired in GbWRKY1 overexpression Arabidopsis lines. GbWRKY1 overexpression Arabidopsis displays a strong ABA-insensitive phenotype at both germination and early stages of seedling development. Further genetic evidence suggested that the ABA-insensitive phenotype of GbWRKY1 overexpression Arabidopsis was dependent on JAZ1, and overexpression of JAZ1 also displayed an ABA-insensitive phenotype. In addition, yeast two hybrid and bimolecular fluorescence complementation assays showed that JAZ1 directly interacts with ABI1, a key negative regulator of ABA signaling. We, therefore, demonstrate that GbWRKY1 acts as a negative regulator of ABA signaling, through an interaction network involving JAZ1 and ABI1, to regulate salt and drought tolerance.
GbWRKY1 可以通过 JAZ1 和 ABI1 作为 ABA 信号的负调控因子发挥作用,从而影响盐和干旱胁迫耐受性。WRKY 转录因子在植物发育和应激反应中发挥重要作用。GbWRKY1 最初被鉴定为棉花中的防御相关基因,通过激活 JAZ1 的表达来负调控对真菌病原体的反应。在这里,我们描述了 GbWRKY1(拟南芥基因 AtWRKY75 的同源物)在非生物胁迫(盐和干旱)中的作用,并在拟南芥中建立了 JAZ1 和 ABA 信号之间的新联系。GbWRKY1 位于细胞核内,其表达水平在 ABA 和渗透胁迫 NaCl 和 PEG 处理下显著诱导。转 GbWRKY1 拟南芥中 GbWRKY1 表达水平的升高增强了对盐和干旱胁迫的敏感性,这通过种子萌发试验和土壤胁迫实验得到证实。同样,GbWRKY1 过表达棉花植株也对 PEG 处理和干旱表现出更高的敏感性。表达分析表明,在 GbWRKY1 过表达拟南芥中,NaCl、甘露醇和 ABA 处理诱导的两个 ABA 响应基因 RAB18 和 RD29A 的表达显著受损。GbWRKY1 过表达拟南芥在种子萌发和幼苗早期发育阶段均表现出强烈的 ABA 不敏感表型。进一步的遗传证据表明,GbWRKY1 过表达拟南芥的 ABA 不敏感表型依赖于 JAZ1,而 JAZ1 的过表达也表现出 ABA 不敏感表型。此外,酵母双杂交和双分子荧光互补测定表明,JAZ1 与 ABA 信号的关键负调控因子 ABI1 直接相互作用。因此,我们证明 GbWRKY1 通过涉及 JAZ1 和 ABI1 的相互作用网络作为 ABA 信号的负调节剂发挥作用,从而调节盐和干旱胁迫耐受性。