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MdERF17 通过 MdMPK4 的磷酸化促进苹果果实果皮在光/暗转换期间的脱绿。

Phosphorylation of MdERF17 by MdMPK4 promotes apple fruit peel degreening during light/dark transitions.

机构信息

College of Horticulture, State Key Laboratory of Agrobiotechnology, China Agricultural University, Beijing, China.

Plant Science and Technology College, Beijing University of Agriculture, Beijing, China.

出版信息

Plant Cell. 2022 Apr 26;34(5):1980-2000. doi: 10.1093/plcell/koac049.

Abstract

As apple fruits (Malus domestica) mature, they accumulate anthocyanins concomitantly with losing chlorophyll (Chl); however, the molecular pathways and events that coordinate Chl degradation and fruit coloration have not been elucidated. We showed previously that the transcription factor ETHYLENE RESPONSE FACTOR17 (MdERF17) modulates Chl degradation in apple fruit peels and that variation in the pattern of MdERF17 serine (Ser) residues is responsible for differences in its transcriptional regulatory activity. Here, we report that MdERF17 interacts with and is phosphorylated by MAP KINASE4 (MdMPK4-14G). Phosphorylation of MdERF17 at residue Thr67 by MdMPK4-14G is necessary for its transcriptional regulatory activity and its regulation of Chl degradation. We also show that MdERF17 mutants with different numbers of Ser repeat insertions exhibit altered phosphorylation profiles, with more repeats increasing its interaction with MdMPK4. MdMPK4-14G can be activated by exposure to darkness and is involved in the dark-induced degreening of fruit peels. We also demonstrate that greater phosphorylation of MdERF17 by MdMPK4-14G is responsible for the regulation of Chl degradation during light/dark transitions. Overall, our findings reveal the mechanism by which MdMPK4 controls fruit peel coloration.

摘要

随着苹果果实(Malus domestica)成熟,它们会同时积累花青苷和失去叶绿素(Chl);然而,协调 Chl 降解和果实着色的分子途径和事件尚未阐明。我们之前曾表明,转录因子 ETHYLENE RESPONSE FACTOR17(MdERF17)调节苹果果皮中的 Chl 降解,并且 MdERF17 丝氨酸(Ser)残基模式的变化是其转录调节活性差异的原因。在这里,我们报告说 MdERF17 与 MAP KINASE4(MdMPK4-14G)相互作用并被其磷酸化。由 MdMPK4-14G 在 Thr67 残基上对 MdERF17 的磷酸化对于其转录调节活性及其对 Chl 降解的调节是必需的。我们还表明,具有不同 Ser 重复插入数的 MdERF17 突变体表现出改变的磷酸化谱,重复次数越多,与 MdMPK4 的相互作用越强。MdMPK4-14G 可以通过暴露于黑暗中而被激活,并参与果实果皮的暗诱导褪绿。我们还证明,MdMPK4-14G 对 MdERF17 的更强磷酸化负责在光/暗转换期间调节 Chl 降解。总的来说,我们的发现揭示了 MdMPK4 控制果皮着色的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1574/9048921/681cd0fbe311/koac049f1.jpg

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