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矮牵牛花粉管生长过程中的己糖转运及一种花粉特异性假定单糖转运蛋白的特性分析

Hexose transport in growing petunia pollen tubes and characterization of a pollen-specific, putative monosaccharide transporter.

作者信息

Ylstra B, Garrido D, Busscher J, van Tunen A J

机构信息

Department Cell Biology, Agricultural Research Department-Centre for Plant Breeding and Reproduction Research, P.O. Box 16, 6700 AA Wageningen, The Netherlands.

出版信息

Plant Physiol. 1998 Sep;118(1):297-304. doi: 10.1104/pp.118.1.297.

Abstract

We investigated the molecular and physiological processes of sugar uptake and metabolism during pollen tube growth and plant fertilization. In vitro germination assays showed that petunia (Petunia hybrida) pollen can germinate and grow not only in medium containing sucrose (Suc) as a carbon source, but also in medium containing the monosaccharides glucose (Glc) or fructose (Fru). Furthermore, high-performance liquid chromatography analysis demonstrated a rapid and complete conversion of Suc into equimolar amounts of Glc and Fru when pollen was cultured in a medium containing 2% Suc. This indicates the presence of wall-bound invertase activity and uptake of sugars in the form of monosaccharides by the growing pollen tube. A cDNA designated pmt1 (petunia monosaccharide transporter 1), which is highly homologous to plant monosaccharide transporters, was isolated from petunia. Pmt1 belongs to a small gene family and is expressed specifically in the male gametophyte, but not in any other vegetative or floral tissues. Pmt1 is activated after the first pollen mitosis, and high levels of mRNA accumulate in mature and germinating pollen. A model describing the transport of sugars to the style, the conversion of Suc into Glc and Fru, and the active uptake by a monosaccharide transporter into the pollen tube is presented.

摘要

我们研究了花粉管生长和植物受精过程中糖吸收与代谢的分子及生理过程。体外萌发试验表明,矮牵牛(Petunia hybrida)花粉不仅能在以蔗糖(Suc)作为碳源的培养基中萌发和生长,还能在含有单糖葡萄糖(Glc)或果糖(Fru)的培养基中萌发和生长。此外,高效液相色谱分析表明,当花粉在含有2% Suc的培养基中培养时,Suc能迅速且完全地转化为等摩尔量的Glc和Fru。这表明存在细胞壁结合型转化酶活性,且生长中的花粉管以单糖形式吸收糖类。从矮牵牛中分离出一个名为pmt1(矮牵牛单糖转运蛋白1)的cDNA,它与植物单糖转运蛋白高度同源。Pmt1属于一个小基因家族,在雄配子体中特异性表达,而在任何其他营养或花组织中均不表达。Pmt1在第一次花粉有丝分裂后被激活,在成熟和萌发的花粉中积累高水平的mRNA。本文提出了一个描述糖类向花柱运输、Suc转化为Glc和Fru以及单糖转运蛋白将糖类主动吸收到花粉管中的模型。

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