National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Key Laboratory of Potato Biology and Biotechnology, Ministry of Agriculture and Rural Affairs, Huazhong Agricultural University, Wuhan, 430070, China.
College of Plant Science, Tarim University, Alar, Xinjiang, 843300, China.
J Exp Bot. 2023 Nov 21;74(21):6708-6721. doi: 10.1093/jxb/erad292.
Abscisic acid (ABA) is critical in drought tolerance and plant growth. Group A protein type 2C phosphatases (PP2Cs) are negative regulators of ABA signaling and plant adaptation to stress. Knowledge about the functions of potato group A PP2Cs is limited. Here, we report that the potato group A PP2C StHAB1 is broadly expressed in potato plants and strongly induced by ABA and drought. Suppression of StHAB1 enhanced potato ABA sensitivity and drought tolerance, whereas overexpression of the dominant mutant StHAB1G276D compromised ABA sensitivity and drought tolerance. StHAB1 interacts with almost all ABA receptors and the Snf1-Related Kinase OST1. Suppressing StHAB1 and overexpressing StHAB1G276D alter potato growth morphology; notably, overexpression of StHAB1G276D causes excessive shoot branching. RNA-sequencing analyses identified that the auxin efflux carrier genes StPIN3, StPIN5, and StPIN8 were up-regulated in StHAB1G276D-overexpressing axillary buds. Correspondingly, the auxin concentration was reduced in StHAB1G276D-overexpressing axillary buds, consistent with the role of auxin in repressing lateral branch outgrowth. The expression of BRANCHED1s (StBRC1a and StBRC1b) was unchanged in StHAB1G276D-overexpressing axillary buds, suggesting that StHAB1G276D overexpression does not cause axillary bud outgrowth via regulation of BRC1 expression. Our findings demonstrate that StHAB1 is vital in potato drought tolerance and shoot branching.
脱落酸(ABA)在耐旱性和植物生长中至关重要。A 组蛋白型 2C 磷酸酶(PP2Cs)是 ABA 信号和植物适应应激的负调控因子。关于马铃薯 A 组 PP2Cs 的功能知之甚少。在这里,我们报告马铃薯 A 组 PP2C StHAB1 在马铃薯植株中广泛表达,并被 ABA 和干旱强烈诱导。StHAB1 的抑制增强了马铃薯对 ABA 的敏感性和耐旱性,而显性突变体 StHAB1G276D 的过表达则削弱了 ABA 的敏感性和耐旱性。StHAB1 与几乎所有的 ABA 受体和 Snf1 相关激酶 OST1 相互作用。抑制 StHAB1 和过表达 StHAB1G276D 改变了马铃薯的生长形态;值得注意的是,过表达 StHAB1G276D 导致过度分枝。RNA-seq 分析鉴定出 StPIN3、StPIN5 和 StPIN8 等生长素外排载体基因在 StHAB1G276D 过表达的腋芽中上调。相应地,StHAB1G276D 过表达的腋芽中生长素浓度降低,这与生长素在抑制侧枝生长中的作用一致。StHAB1G276D 过表达的腋芽中 BRANCHED1s(StBRC1a 和 StBRC1b)的表达不变,表明 StHAB1G276D 过表达不是通过调节 BRC1 表达引起腋芽生长。我们的研究结果表明,StHAB1 在马铃薯耐旱性和分枝中起着至关重要的作用。