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番茄三种胞外转化酶同工酶mRNA的调控及组织特异性分布表明其在建立和维持库代谢中具有重要功能。

Regulation and tissue-specific distribution of mRNAs for three extracellular invertase isoenzymes of tomato suggests an important function in establishing and maintaining sink metabolism.

作者信息

Godt D E, Roitsch T

机构信息

Lehrstuhl für Zellbiologic und Pflanzenphysiologie, Universität Regensburg, Germany.

出版信息

Plant Physiol. 1997 Sep;115(1):273-82. doi: 10.1104/pp.115.1.273.

Abstract

The aim of the present study was to gain insight into the contribution of extracellular invertases for sink metabolism in tomato (Lycopersicon esculentum L.). The present study shows that extracellular invertase isoenzymes are encoded by a gene family comprising four members: Lin5, Lin6, Lin7, and Lin8. The regulation of mRNA levels by internal and external signals and the distribution in sink and source tissues has been determined and compared with mRNA levels of the intracellular sucrose (Suc)-cleaving enzymes Suc synthase and vacuolar invertase. The specific regulation of Lin5, Lin6, and Lin7 suggests an important function of apoplastic cleavage of Suc by cell wall-bound invertase in establishing and maintaining sink metabolism. Lin6 is expressed under conditions that require a high carbohydrate supply. The corresponding mRNA shows a sink tissue-specific distribution and the concentration is elevated by stress-related stimuli, by the growth-promoting phytohormone zeatin, and in response to the induction of heterotrophic metabolism. The expression of Lin5 and Lin7 in gynoecia and stamens, respectively, suggests an important function in supplying carbohydrates to these flower organs, whereas the Lin7 mRNA was found to be present exclusively in this specific sink organ.

摘要

本研究的目的是深入了解胞外转化酶对番茄(Lycopersicon esculentum L.)库代谢的贡献。本研究表明,胞外转化酶同工酶由一个包含四个成员的基因家族编码:Lin5、Lin6、Lin7和Lin8。已确定内部和外部信号对mRNA水平的调控以及在库和源组织中的分布,并与细胞内蔗糖(Suc)裂解酶蔗糖合酶和液泡转化酶的mRNA水平进行了比较。Lin5、Lin6和Lin7的特异性调控表明,细胞壁结合的转化酶对蔗糖进行质外体裂解在建立和维持库代谢中具有重要作用。Lin6在需要高碳水化合物供应的条件下表达。相应的mRNA显示出库组织特异性分布,并且其浓度在应激相关刺激、促进生长的植物激素玉米素作用下以及对异养代谢诱导的响应中升高。Lin5和Lin7分别在雌蕊和雄蕊中表达,表明在为这些花器官供应碳水化合物方面具有重要作用,而Lin7 mRNA仅在这个特定的库器官中存在。

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