Key Laboratory of Horticultural Plant Biology (Ministry of Education), College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, 430070, China.
School of Horticulture, Anhui Agricultural University, Hefei, 230036, China.
New Phytol. 2023 Apr;238(1):216-236. doi: 10.1111/nph.18526. Epub 2022 Nov 22.
Arginine decarboxylase (ADC)-mediated putrescine (Put) biosynthesis plays an important role in plant abiotic stress response. SNF1-related protein kinases 2s (SnRK2s) and abscisic acid (ABA)-response element (ABRE)-binding factors (ABFs), are core components of the ABA signaling pathway involved in drought stress response. We previously reported that ADC of Poncirus trifoliata (PtrADC) functions in drought tolerance. However, whether and how SnRK2 and ABF regulate PtrADC to modulate putrescine accumulation under drought stress remains largely unclear. Herein, we employed a set of physiological, biochemical, and molecular approaches to reveal that a protein complex composed of PtrSnRK2.4 and PtrABF2 modulates putrescine biosynthesis and drought tolerance by directly regulating PtrADC. PtrABF2 was upregulated by dehydration in an ABA-dependent manner. PtrABF2 activated PtrADC expression by directly and specifically binding to the ABRE core sequence within its promoter and positively regulated drought tolerance via modulating putrescine accumulation. PtrSnRK2.4 interacts with and phosphorylates PtrABF2 at Ser93. PtrSnRK2.4-mediated PtrABF2 phosphorylation is essential for the transcriptional regulation of PtrADC. Besides, PtrSnRK2.4 was shown to play a positive role in drought tolerance by facilitating putrescine synthesis. Taken together, this study sheds new light on the regulatory module SnRK2.4-ABF2-ADC responsible for fine-tuning putrescine accumulation under drought stress, which advances our understanding on transcriptional regulation of putrescine synthesis.
精氨酸脱羧酶(ADC)介导的腐胺(Put)生物合成在植物非生物胁迫响应中发挥重要作用。SNF1 相关蛋白激酶 2s(SnRK2s)和脱落酸(ABA)反应元件(ABRE)结合因子(ABFs)是涉及干旱胁迫响应的 ABA 信号通路的核心组成部分。我们之前报道过,枳椇 ADC(PtrADC)在耐旱性中起作用。然而,SnRK2 和 ABF 是否以及如何调节 PtrADC 以在干旱胁迫下调节腐胺积累仍在很大程度上不清楚。在此,我们采用了一系列生理、生化和分子方法来揭示,由 PtrSnRK2.4 和 PtrABF2 组成的蛋白质复合物通过直接调节 PtrADC 来调节腐胺生物合成和耐旱性。PtrABF2 依赖 ABA 脱水而上调。PtrABF2 通过直接和特异性结合其启动子内的 ABRE 核心序列来激活 PtrADC 表达,并通过调节腐胺积累来正向调控耐旱性。PtrSnRK2.4 与 PtrABF2 相互作用并在 Ser93 处磷酸化 PtrABF2。PtrSnRK2.4 介导的 PtrABF2 磷酸化对于 PtrADC 的转录调控是必不可少的。此外,PtrSnRK2.4 通过促进腐胺合成在耐旱性中发挥积极作用。总之,这项研究揭示了在干旱胁迫下精细调节腐胺积累的 SnRK2.4-ABF2-ADC 调控模块,这提高了我们对腐胺合成的转录调控的理解。