State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
College of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang 212100, China.
Plant Physiol. 2022 Aug 29;190(1):843-859. doi: 10.1093/plphys/kiac283.
Sodium (Na+) and potassium (K+) homeostasis is essential for plant survival in saline soils. A member of the High-Affinity K+ Transporter (HKT) family in rice (Oryza sativa), OsHKT1;1, is a vital regulator of Na+ exclusion from shoots and is bound by a MYB transcription factor (OsMYBc). Here, we generated transgenic rice lines in the oshkt1;1 mutant background for genetic complementation using genomic OsHKT1;1 containing a native (Com) or mutated (mCom) promoter that cannot be bound by OsMYBc. In contrast to wild-type (WT) or Com lines, the mCom lines were not able to recover the salt-sensitive phenotype of oshkt1;1. The OsMYBc-overexpressing plants were more tolerant to salt stress than WT plants. A yeast two-hybrid screen using the OsMYBc N-terminus as bait identified a rice MYBc stress-related RING finger protein (OsMSRFP). OsMSRFP is an active E3 ligase that ubiquitinated OsMYBc in vitro and mediated 26S proteasome-mediated degradation of OsMYBc under semi-in vitro and in vivo conditions. OsMSRFP attenuated OsMYBc-mediated OsHKT1;1 expression, and knockout of OsMSRFP led to rice salt tolerance. These findings uncover a regulatory mechanism of salt response that fine-tunes OsHKT1;1 transcription by ubiquitination of OsMYBc.
钠离子(Na+)和钾离子(K+)的稳态对于植物在盐渍土壤中的生存至关重要。水稻(Oryza sativa)高亲和钾转运体(HKT)家族的一个成员 OsHKT1;1 是一种重要的调节因子,可将 Na+从 shoots 中排出,并受 MYB 转录因子(OsMYBc)的束缚。在这里,我们在 oshkt1;1 突变体背景下使用含有天然(Com)或突变(mCom)启动子的基因组 OsHKT1;1 进行遗传互补,生成了转基因水稻品系,该启动子不能被 OsMYBc 结合。与野生型(WT)或 Com 品系相比,mCom 品系无法恢复 oshkt1;1 的盐敏感表型。过表达 OsMYBc 的植株比 WT 植株更能耐受盐胁迫。使用 OsMYBc N 端作为诱饵的酵母双杂交筛选鉴定了一种水稻 MYBc 应激相关的环指蛋白(OsMSRFP)。OsMSRFP 是一种活性 E3 连接酶,可在体外泛素化 OsMYBc,并在半体外和体内条件下介导 26S 蛋白酶体介导的 OsMYBc 降解。OsMSRFP 减弱了 OsMYBc 介导的 OsHKT1;1 表达,而 OsMSRFP 的敲除导致水稻耐盐性增强。这些发现揭示了一种盐响应的调节机制,通过 OsMYBc 的泛素化来精细调节 OsHKT1;1 的转录。