Liu Jia, Cheng Yuan, Ruan Meiying, Ye Qingjing, Wang Rongqing, Yao Zhuping, Zhou Guozhi, Li Zhimiao, Liu Chenxu, Wan Hongjian
State Key Laboratory for Quality and Safety of Agro-Products, Institute of Vegetables, China-Australia Research Centre for Crop Improvement, Zhejiang Academy of Agricultural Sciences, Hangzhou 310021, China.
Wulanchabu Academy of Agricultural and Forestry Sciences, Wulanchabu 012000, China.
Plants (Basel). 2025 Jan 22;14(3):320. doi: 10.3390/plants14030320.
Acid invertases (Ac-Invs) are crucial enzymes in plant physiology, regulating sucrose metabolism and hydrolyzing sucrose into glucose and fructose. These sugars serve not only as energy sources and structural components but also as signaling molecules, influencing diverse developmental processes, including seed and fruit growth, flowering, and stress responses. Ac-Invs are classified into cell wall invertases (CWINs) and vacuolar invertases (VINs) based on their subcellular localization, with both playing distinct roles in sucrose unloading, osmotic regulation, and sugar accumulation. Recent studies have also highlighted their involvement in abiotic stress adaptation and hormonal regulation, emphasizing their central role in plant resilience and productivity. However, gaps remain in understanding their regulatory mechanisms, particularly their interactions with plant hormones, defective invertases, and responses to environmental stresses. This review summarizes the biochemical characteristics, functions, and regulatory mechanisms of Ac-Invs, providing insights into their evolutionary significance and potential applications in crop improvement. Future research directions are proposed to elucidate unresolved questions and leverage Ac-Invs for enhancing agricultural sustainability.
酸性转化酶(Ac-Invs)是植物生理学中的关键酶,调节蔗糖代谢并将蔗糖水解为葡萄糖和果糖。这些糖类不仅作为能量来源和结构成分,还作为信号分子,影响包括种子和果实生长、开花以及应激反应在内的多种发育过程。根据亚细胞定位,Ac-Invs可分为细胞壁转化酶(CWINs)和液泡转化酶(VINs),二者在蔗糖卸载、渗透调节和糖分积累中发挥着不同作用。最近的研究还强调了它们参与非生物胁迫适应和激素调节,突显了它们在植物抗逆性和生产力中的核心作用。然而,在理解其调控机制方面仍存在差距,特别是它们与植物激素、缺陷型转化酶的相互作用以及对环境胁迫的响应。本综述总结了Ac-Invs的生化特性、功能和调控机制,深入探讨了它们的进化意义以及在作物改良中的潜在应用。提出了未来的研究方向,以阐明未解决的问题并利用Ac-Invs提高农业可持续性。