State Key Laboratory of Crop Gene Resources and Breeding, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100081, China.
State Key Laboratory of Crop Stress Adaptation and Improvement, School of Life Sciences, Henan University, Kaifeng, 475001, China.
New Phytol. 2023 Aug;239(3):920-935. doi: 10.1111/nph.18972. Epub 2023 May 20.
Drought stress causes substantial losses in crop production per year worldwide, threatening global food security. Identification of the genetic components underlying drought tolerance in plants is of great importance. In this study, we report that loss-of-function of the chromatin-remodeling factor PICKLE (PKL), which is involved in repression of transcription, enhances drought tolerance of Arabidopsis. At first, we find that PKL interacts with ABI5 to regulate seed germination, but PKL regulates drought tolerance independently of ABI5. Then, we find that PKL is necessary for repressing the drought-tolerant gene AFL1, which is responsible for the drought-tolerant phenotype of pkl mutant. Genetic complementation tests demonstrate that the Chromo domain and ATPase domain but not the PHD domain are required for the function of PKL in regulating drought tolerance. Interestingly, we find that the DNA-binding domain (DBD) is essential for the protein stability of PKL. Furthermore, we demonstrate that the SUMO E3 ligase MMS21 interacts with and enhances the protein stability of PKL. Genetic interaction analysis shows that MMS21 and PKL additively regulate plant drought tolerance. Collectively, our findings uncover a MMS21-PKL-AFL1 module in regulating plant drought tolerance and offer insights into a novel strategy to improve crop drought tolerance.
干旱胁迫每年都会导致全球作物减产,威胁全球粮食安全。因此,鉴定植物耐旱性的遗传组成部分非常重要。在本研究中,我们报告称,参与转录抑制的染色质重塑因子 PICKLE(PKL)的功能丧失会增强拟南芥的耐旱性。首先,我们发现 PKL 与 ABI5 相互作用以调节种子萌发,但 PKL 独立于 ABI5 调节耐旱性。然后,我们发现 PKL 对于抑制耐旱基因 AFL1 是必需的,AFL1 负责 pkl 突变体的耐旱表型。遗传互补测试表明,PKL 调节耐旱性所需的是 Chromo 结构域和 ATPase 结构域,而不是 PHD 结构域。有趣的是,我们发现 DNA 结合结构域(DBD)对于 PKL 的蛋白质稳定性是必需的。此外,我们证明 SUMO E3 连接酶 MMS21 与 PKL 相互作用并增强其蛋白稳定性。遗传互作分析表明,MMS21 和 PKL 共同调节植物的耐旱性。总之,我们的研究结果揭示了一个 MMS21-PKL-AFL1 模块在调节植物耐旱性中的作用,并为提高作物耐旱性提供了新的策略。