Molecular Plant Biophysics and Biochemistry, Deptartment of Molecular Biology, University of Salzburg, Billrothstrasse 11, 5020 Salzburg, Austria.
J Proteome Res. 2009 Nov;8(11):5142-52. doi: 10.1021/pr900503f.
As a first step in understanding the membrane-related dynamics during pollen grain germination and subsequent tube growth, the changes in protein abundance of membrane and membrane-associated proteins of 5 different membrane/organelle fractions were studied at physiologically important stages (0, 10, 30, 60, and 240 min) of Lilium longiflorum pollen in vitro culture. Proteins of each fraction and time point were identified by 'shot-gun' proteomics (LC-MS/MS). Analysis of more than 270 identified proteins revealed an increase in the abundance of proteins involved in cytoskeleton, carbohydrate and energy metabolism, as well as ion transport before pollen grain germination (10-30 min), whereas proteins involved in membrane/protein trafficking, signal transduction, stress response and protein biosynthesis decreased in abundance during this time. Proteins of amino acids and lipids/steroids metabolism, proteolysis, transcription, cell wall biosynthesis as well as nutrient transport showed a time-independent abundance profile. These spatiotemporal patterns were confirmed by immunodetection of specific proteins of the cellular processes membrane/protein trafficking and ion transport. Our results reveal major protein rearrangements at endomembranes and the plasma membrane before and as the pollen grains start tube growth. The spatiotemporal protein abundance changes correlate with the underlying developmental and physiological processes of the germinating pollen grain.
为了初步了解花粉粒萌发和随后的花粉管生长过程中与膜相关的动力学变化,我们研究了百合花粉在体外培养的生理重要阶段(0、10、30、60 和 240 分钟)中 5 种不同膜/细胞器部分的膜和膜相关蛋白的蛋白质丰度变化。每个部分和时间点的蛋白质都是通过“鸟枪法”蛋白质组学(LC-MS/MS)鉴定的。对 270 多种鉴定出的蛋白质进行分析,发现与细胞骨架、碳水化合物和能量代谢以及花粉粒萌发前(10-30 分钟)的离子转运相关的蛋白质丰度增加,而参与膜/蛋白质运输、信号转导、应激反应和蛋白质生物合成的蛋白质在这段时间内的丰度降低。氨基酸和脂质/类固醇代谢、蛋白水解、转录、细胞壁生物合成以及养分运输的蛋白质表现出与时间无关的丰度模式。这些时空模式通过对细胞过程膜/蛋白质运输和离子转运的特定蛋白质进行免疫检测得到了证实。我们的研究结果揭示了花粉粒开始生长之前和生长过程中在内质网和质膜上的主要蛋白质重排。时空蛋白质丰度变化与萌发花粉粒的潜在发育和生理过程相关。