Transcriptional regulation and functional research of sucrose synthase in plant development.

IF 3.8 3区 生物学 Q1 PLANT SCIENCES
Planta Pub Date : 2025-07-29 DOI:10.1007/s00425-025-04786-y
Xiaomei Sun, Tianyang Zhang, Shuya Zhang, Kai Cui, Jin Li
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引用次数: 0

Abstract

Main conclusion: This paper reviews the pivotal role of sucrose synthase (SUS) in plant development and stress responses, highlights its upstream transcriptional regulation, as well as its involvement in cellulose synthesis and starch synthesis, facilitating a deeper insight into its biological functions and molecular mechanisms. Sucrose synthase (SUS) is a key enzyme in plant sucrose metabolism, catalyzing the reversible conversion of sucrose into fructose and uridine diphosphate glucose to maintain sucrose balance between source and sink. SUS, encoded by a multigene family, is categorized into SUS I, SUS II, and SUS III types, displaying largely tissue-specific expression and differential functions among family members. It plays a regulatory role in root development, flower and fruit development, seed development, as well as fiber development and elongation. In addition, it is involved in starch biosynthesis, cellulose synthesis, sugar metabolism, and response to various abiotic stresses, including drought, heat, cold, salt, hypoxic and weak light. Here, we summarize structure characteristics, evolutionary relationships, classification, expression profiles, upstream transcriptional regulation of SUS genes, and particularly its multiple roles in plant development and stress responses, aiming to lay a theoretical foundation for further research on the biological functions and molecular regulatory mechanisms of SUS.

蔗糖合酶在植物发育中的转录调控及功能研究。
主要结论:本文综述了蔗糖合酶(SUS)在植物发育和逆境响应中的关键作用,重点介绍了其上游转录调控,以及其在纤维素合成和淀粉合成中的作用,有助于深入了解其生物学功能和分子机制。蔗糖合成酶(SUS)是植物蔗糖代谢的关键酶,催化蔗糖可逆转化为果糖和尿苷二磷酸葡萄糖,维持蔗糖源库平衡。SUS由一个多基因家族编码,分为SUS I、SUS II和SUS III型,在家族成员中主要表现出组织特异性表达和差异功能。它在根发育、花果发育、种子发育以及纤维发育和伸长中起调节作用。此外,它还参与淀粉生物合成、纤维素合成、糖代谢以及对干旱、热、冷、盐、缺氧和弱光等各种非生物胁迫的响应。本文综述了SUS基因的结构特点、进化关系、分类、表达谱、上游转录调控,特别是其在植物发育和胁迫应答中的多重作用,旨在为进一步研究SUS的生物学功能和分子调控机制奠定理论基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Planta
Planta 生物-植物科学
CiteScore
7.20
自引率
2.30%
发文量
217
审稿时长
2.3 months
期刊介绍: Planta publishes timely and substantial articles on all aspects of plant biology. We welcome original research papers on any plant species. Areas of interest include biochemistry, bioenergy, biotechnology, cell biology, development, ecological and environmental physiology, growth, metabolism, morphogenesis, molecular biology, new methods, physiology, plant-microbe interactions, structural biology, and systems biology.
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