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高等植物中的蔗糖运输

Sucrose transport in higher plants.

作者信息

Ward J M, Kühn C, Tegeder M, Frommer W B

机构信息

Institut für Botanik, Universität Tübingen, Germany.

出版信息

Int Rev Cytol. 1998;178:41-71. doi: 10.1016/s0074-7696(08)62135-x.

Abstract

Presumably due to its physicochemical properties, sucrose represents the major transport form of photosynthetically assimilated carbohydrates in plants. Sucrose synthesized in green leaves is transported via the phloem, the long distance distribution network for assimilates in order to supply nonphotosynthetic organs with energy and carbon skeletons. At least in Solanaceae, sugar export seems to be a tightly regulated process involving a number of specific plasma membrane proteins. Significant progress in this field was made possible by the recent identification of plasma membrane sucrose transporter genes. These carriers represent important parts of the long-distance transport machinery and can serve as a starting point to obtain a complete picture of long-distance sucrose transport in plants. A combination of biochemical studies of transporter properties together with expression and localization studies allow specific functions to be assigned to the individual proteins. Furthermore, the use of transgenic plants specifically impaired in sucrose transporter expression has provided strong evidence that SUT1 transporter function is required for phloem loading. Physiological analyses of these plants demonstrate that sucrose transporters are essential components of the sucrose translocation pathway at least in potato and tobacco.

摘要

据推测,由于其物理化学性质,蔗糖是植物中光合同化碳水化合物的主要运输形式。绿叶中合成的蔗糖通过韧皮部运输,韧皮部是同化物的长距离分配网络,以便为非光合器官提供能量和碳骨架。至少在茄科植物中,糖输出似乎是一个受到严格调控的过程,涉及许多特定的质膜蛋白。最近质膜蔗糖转运蛋白基因的鉴定使得该领域取得了重大进展。这些载体是长距离运输机制的重要组成部分,可以作为全面了解植物中长距离蔗糖运输的起点。对转运蛋白特性的生化研究与表达和定位研究相结合,能够将特定功能赋予各个蛋白质。此外,使用蔗糖转运蛋白表达特异性受损的转基因植物提供了强有力的证据,表明韧皮部装载需要SUT1转运蛋白的功能。对这些植物的生理分析表明,蔗糖转运蛋白至少在马铃薯和烟草中是蔗糖转运途径的重要组成部分。

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