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蚕豆(Vicia faba L.)子叶发育过程中的蔗糖代谢受蔗糖磷酸合酶和蔗糖合酶协同作用的调控:表达模式、代谢调节及其对种子发育的影响

Sucrose metabolism during cotyledon development of Vicia faba L. is controlled by the concerted action of both sucrose-phosphate synthase and sucrose synthase: expression patterns, metabolic regulation and implications for seed development.

作者信息

Weber H, Buchner P, Borisjuk L, Wobus U

机构信息

Institut für Pflanzengenetik und Kulturpflanzenforschung, Gatersleben, Germany.

出版信息

Plant J. 1996 Jun;9(6):841-50. doi: 10.1046/j.1365-313x.1996.9060841.x.

Abstract

The roles of sucrose-phosphate synthase (Sps) and sucrose synthase (Sus) in developing embryos of Vicia faba have been characterized. In the cotyledons the expression of both Sps and Sus is initiated in cells differentiating into storage tissue. This stage is characterized by a switch in the carbohydrate state from a high to a low hexoses to sucrose ratio. The carbohydrate state was found earlier to be controlled by seed coat-associated invertase. During cotyledon development the Sps-enzyme undergoes a cycle of deactivation and reactivation: the activated state is associated with the prestorage phase, desiccation and germination and the deactivated state with the storage phase. Sus activity is associated with the storage phase. Sps and Sus are differentially influenced by free sugars. Feeding hexoses to storage phase cotyledons increases levels of Sps-mRNA but not Sus-mRNA, Sps activity and Sps activation state and impairs storage functions evidenced by an increased sucrose to starch ratio and a downregulation of storage protein legumin B-mRNA. Sus enzyme activity is inhibited by free hexoses in vitro. It is proposed that the changing carbohydrate state during cotyledon development controls the ratio of Sps to Sus. Sps may have some significance for the initiation of the storage process possibly decreasing hexoses and/or increasing sucrose. The relevance of the changing carbohydrate state with respect to development and storage processes is discussed.

摘要

已对蔗糖磷酸合酶(Sps)和蔗糖合酶(Sus)在蚕豆发育胚中的作用进行了表征。在子叶中,Sps和Sus的表达均在分化为贮藏组织的细胞中开始。此阶段的特征是碳水化合物状态从高己糖与蔗糖比率向低己糖与蔗糖比率转变。此前发现碳水化合物状态受种皮相关转化酶控制。在子叶发育过程中,Sps酶经历失活和再激活循环:激活状态与贮藏前阶段、干燥和萌发相关,失活状态与贮藏阶段相关。Sus活性与贮藏阶段相关。Sps和Sus受游离糖的影响不同。向处于贮藏阶段的子叶投喂己糖会增加Sps-mRNA水平,但不会增加Sus-mRNA水平、Sps活性和Sps激活状态,并损害贮藏功能,表现为蔗糖与淀粉比率增加以及贮藏蛋白豆球蛋白B-mRNA下调。体外游离己糖会抑制Sus酶活性。有人提出,子叶发育过程中碳水化合物状态的变化控制着Sps与Sus的比率。Sps可能对贮藏过程的启动具有一定意义,可能是通过降低己糖和/或增加蔗糖来实现。文中讨论了碳水化合物状态变化与发育和贮藏过程的相关性。

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