Huang Xiao-Yu, Wang Chu-Kun, Zhao Yu-Wen, Sun Cui-Hui, Hu Da-Gang
National Key Laboratory of Crop Biology; Shandong Collaborative Innovation Center of Fruit & Vegetable Quality and Efficient Production; College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an, Shandong, 271018, China.
Hortic Res. 2021 Oct 25;8(1):227. doi: 10.1038/s41438-021-00702-z.
In fleshy fruits, organic acids are the main source of fruit acidity and play an important role in regulating osmotic pressure, pH homeostasis, stress resistance, and fruit quality. The transport of organic acids from the cytosol to the vacuole and their storage are complex processes. A large number of transporters carry organic acids from the cytosol to the vacuole with the assistance of various proton pumps and enzymes. However, much remains to be explored regarding the vacuolar transport mechanism of organic acids as well as the substances involved and their association. In this review, recent advances in the vacuolar transport mechanism of organic acids in plants are summarized from the perspectives of transporters, channels, proton pumps, and upstream regulators to better understand the complex regulatory networks involved in fruit acid formation.
在肉质果实中,有机酸是果实酸度的主要来源,在调节渗透压、pH稳态、抗逆性和果实品质方面发挥着重要作用。有机酸从细胞质转运到液泡及其储存是复杂的过程。大量转运蛋白在各种质子泵和酶的协助下将有机酸从细胞质转运到液泡。然而,关于有机酸的液泡转运机制以及所涉及的物质及其关联仍有许多有待探索的地方。在本综述中,从转运蛋白、通道、质子泵和上游调节因子的角度总结了植物中有机酸液泡转运机制的最新进展,以更好地理解参与果实酸形成的复杂调控网络。