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细胞分裂素对藜麦中胞外转化酶和葡萄糖转运蛋白mRNA的协同诱导作用。

Co-ordinated induction of mRNAs for extracellular invertase and a glucose transporter in Chenopodium rubrum by cytokinins.

作者信息

Ehness R, Roitsch T

机构信息

Lehrstuhl für Zellbiologie und Pflanzenphysiologie, Universität Regensburg, Germany.

出版信息

Plant J. 1997 Mar;11(3):539-48. doi: 10.1046/j.1365-313x.1997.11030539.x.

Abstract

Extracellular or cell wall invertase is regarded as crucial to supply sink tissues with carbohydrates via an apoplastic pathway. A cell wall invertase from Chenopodium rubrum was purified to homogeneity and the corresponding cDNA encoding CIN1 was identified via peptide sequences. The CIN1 mRNA was found to be highly induced by physiological concentrations of both adenine- and phenylureaderived cytokinins in suspension culture cells. This was paralleled both by a higher steady-state protein level and a higher enzyme activity of the extracellular invertase. The cytokinin-inducible accumulation of CIN1 mRNA in tissues of C. rubrum plants supports the physiological significance of this regulatory mechanism. In contrast to the extracellular sucrose cleaving enzyme, the mRNA levels of the two putative intracellular invertases CIN2 and CIN3 and of sucrose synthase were not elevated. In addition, it has been found that the accumulation of mRNA for one out of three hexose transporters present in the suspension culture cells is induced co-ordinately with the mRNA for extracellular invertase by cytokinins. It has been shown that this regulatory mechanism results in higher uptake rates both for sucrose, via the hexose monomers, and for glucose. The increased level of both extracellular invertase and hexose transporters and the resulting higher carbohydrate supply are discussed with respect to the control of carbohydrate partitioning by plant hormones and the molecular basis for known physiological cytokinin responses such as the stimulation of cell division.

摘要

胞外或细胞壁转化酶被认为对于通过质外体途径为库组织提供碳水化合物至关重要。从藜中纯化出一种细胞壁转化酶并使其达到同质状态,通过肽序列鉴定出编码CIN1的相应cDNA。发现在悬浮培养细胞中,腺嘌呤和苯基脲衍生的细胞分裂素的生理浓度均可高度诱导CIN1 mRNA。这与胞外转化酶较高的稳态蛋白水平和较高的酶活性同时出现。CIN1 mRNA在藜植物组织中的细胞分裂素诱导积累支持了这种调节机制的生理意义。与胞外蔗糖裂解酶相反,两种假定的胞内转化酶CIN2和CIN3以及蔗糖合酶的mRNA水平并未升高。此外,还发现悬浮培养细胞中存在的三种己糖转运蛋白中的一种的mRNA积累与胞外转化酶的mRNA受细胞分裂素协同诱导。已经表明,这种调节机制导致通过己糖单体对蔗糖以及对葡萄糖的摄取率更高。就植物激素对碳水化合物分配的控制以及已知的生理细胞分裂素反应(如刺激细胞分裂)的分子基础而言,讨论了胞外转化酶和己糖转运蛋白水平的增加以及由此产生的更高碳水化合物供应。

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