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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Promoter activity of a putative pollen monosaccharide transporter in Petunia hybrida and characterisation of a transposon insertion mutant
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Promoter activity of a putative pollen monosaccharide transporter in Petunia hybrida and characterisation of a transposon insertion mutant

机译:矮牵牛中假定花粉单糖转运蛋白的启动子活性和转座子插入突变体的表征

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摘要

For the growth of the male reproductive cells of plants, the pollen, the presence of sufficient sucrose or monosaccharides is of vital importance. From Petunia hybrida a pollen-specific putative monosaccharide transporter designated PMT1 (for petunia monosaccharide transporter) has been identified previously. The present work provides an in-depth analysis and characterisation of PMT1 in the context of pollen development with the GUS reporter gene and an insertion mutant. The promoter of the pollen-specific putative PMT1 gene has been isolated by inverse PCR and sequenced. Analysis of plants transformed with the promoter-GUS fusion confirmed the specificity of this gene, belonging to the late pollen-specific expressed genes. GUS activity was detected even after 24 h of in vitro pollen germination, at the pollen tube tip. To elucidate the importance of PMT1 for gametophyte development and fertilisation, we isolated a mutant plant containing a transposon insertion in the PMT1 gene by the dTph1 transposon-tagging PCR-based assay. The PMT1 mutant contained a dTph1 insertion in position 1474 bp of the transcribing part of the gene, before the last two transmembrane-spanning domains. Analysis of the progeny of the heterozygous mutant after selfing revealed no alterations in pollen viability and fertility. Mature pollen grains of a plant homozygous for the transposon insertion were able to germinate in vitro in a medium containing sucrose, glucose, or fructose, which indicates that PMT1 is not essential for pollen survival. Several explanations for these results are discussed in the present work.
机译:对于植物的雄性生殖细胞,花粉的生长,足够的蔗糖或单糖的存在至关重要。先前已从矮牵牛中鉴定出一种花粉特异性推定的单糖转运蛋白,称为PMT1(用于矮牵牛单糖转运蛋白)。本工作在花粉发育的背景下,利用GUS报告基因和插入突变体,对PMT1进行了深入的分析和表征。花粉特异性推定PMT1基因的启动子已通过反向PCR分离并测序。对用启动子-GUS融合体转化的植物的分析证实了该基因的特异性,属于晚期花粉特异性表达的基因。甚至在花粉管尖端的体外花粉萌发24小时后,仍检测到GUS活性。为了阐明PMT1对配子体发育和受精的重要性,我们通过基于dTph1转座子标记的PCR分离了一种在PMT1基因中含有转座子插入的突变植物。在最后两个跨膜结构域之前,PMT1突变体在基因转录部分的1474 bp位置包含dTph1插入。自交后对杂合突变体的后代进行分析表明,花粉活力和育性没有变化。转座子插入纯合植物的成熟花粉粒能够在含有蔗糖,葡萄糖或果糖的培养基中体外发芽,这表明PMT1对于花粉存活不是必需的。在本工作中讨论了这些结果的几种解释。

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