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花粉管如何争夺养分:蔗糖载体和转化酶对花粉发育及花粉管生长的影响

How pollen tubes fight for food: the impact of sucrose carriers and invertases of on pollen development and pollen tube growth.

作者信息

Seitz Jessica, Reimann Theresa Maria, Fritz Carolin, Schröder Carola, Knab Johanna, Weber Walter, Stadler Ruth

机构信息

Molecular Plant Physiology, Department of Biology, Friedrich-Alexander University Erlangen-Nuremberg, Erlangen, Germany.

Cell Biology, Department of Biology, Friedrich-Alexander University Erlangen-Nuremberg, Erlangen, Germany.

出版信息

Front Plant Sci. 2023 Jun 22;14:1063765. doi: 10.3389/fpls.2023.1063765. eCollection 2023.

Abstract

Pollen tubes of higher plants grow very rapidly until they reach the ovules to fertilize the female gametes. This growth process is energy demanding, however, the nutrition strategies of pollen are largely unexplored. Here, we studied the function of sucrose transporters and invertases during pollen germination and pollen tube growth. RT-PCR analyses, reporter lines and knockout mutants were used to study gene expression and protein function in pollen. The genome of Arabidopsis thaliana contains eight genes that encode functional sucrose/H symporters. Apart from , which is companion cell specific, all other genes are expressed in pollen tubes. AtSUC1 is present in developing pollen and seems to be the most important sucrose transporter during the fertilization process. Pollen of an plant contain less sucrose and have defects in pollen germination and pollen tube growth. The loss of other sucrose carriers affects neither pollen germination nor pollen tube growth. A multiple knockout line shows a phenotype that is comparable to the Atsuc1 mutant line. Loss of AtSUC1 can`t be complemented by AtSUC9, suggesting a special function of AtSUC1. Besides sucrose carriers, pollen tubes also synthesize monosaccharide carriers of the AtSTP family as well as invertases. We could show that and are expressed in pollen, in the transmitting tissue and in the funiculi of the ovary. The vacuolar invertase is also expressed in pollen, and a knockout of leads to a severe reduction in pollen germination. Our data indicate that AtSUC1 mediated sucrose accumulation during late stages of pollen development and cleavage of vacuolar sucrose into monosaccharides is important for the process of pollen germination.

摘要

高等植物的花粉管生长迅速,直至到达胚珠使雌配子受精。然而,这个生长过程需要能量,而花粉的营养策略在很大程度上尚未得到探索。在这里,我们研究了蔗糖转运蛋白和转化酶在花粉萌发和花粉管生长过程中的功能。利用逆转录-聚合酶链反应(RT-PCR)分析、报告株系和基因敲除突变体来研究花粉中的基因表达和蛋白质功能。拟南芥基因组包含八个编码功能性蔗糖/氢离子同向转运蛋白的基因。除了仅在伴胞中特异表达的那个基因外,所有其他基因都在花粉管中表达。AtSUC1存在于发育中的花粉中,似乎是受精过程中最重要的蔗糖转运蛋白。AtSUC1基因敲除植物的花粉含有较少的蔗糖,并且在花粉萌发和花粉管生长方面存在缺陷。其他蔗糖载体的缺失既不影响花粉萌发也不影响花粉管生长。一个多基因敲除株系表现出与Atsuc1突变株系类似的表型。AtSUC1的缺失不能被AtSUC9互补,这表明AtSUC1具有特殊功能。除了蔗糖载体外,花粉管还合成AtSTP家族的单糖载体以及转化酶。我们发现AtSTP13和AtSTP17在花粉中表达,AtSTP1在传递组织中表达,AtSTP11在子房的珠柄中表达。液泡转化酶AtβVIN1也在花粉中表达,AtβVIN1基因敲除导致花粉萌发严重减少。我们的数据表明,AtSUC1介导的花粉发育后期蔗糖积累以及液泡蔗糖裂解为单糖对于花粉萌发过程很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bbe/10352115/1872ea314801/fpls-14-1063765-g001.jpg

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