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番茄雄配子体的膜蛋白质组

The membrane proteome of male gametophyte in Solanum lycopersicum.

作者信息

Paul Puneet, Chaturvedi Palak, Selymesi Mario, Ghatak Arindam, Mesihovic Anida, Scharf Klaus-Dieter, Weckwerth Wolfram, Simm Stefan, Schleiff Enrico

机构信息

Goethe University, Department of Biosciences, Molecular Cell Biology of Plants, Frankfurt/Main, Germany; SPOT-ITN Consortium.

SPOT-ITN Consortium; University of Vienna, Department of Ecogenomics and Systems biology, Vienna, Austria.

出版信息

J Proteomics. 2016 Jan 10;131:48-60. doi: 10.1016/j.jprot.2015.10.009. Epub 2015 Oct 9.

Abstract

UNLABELLED

Pollen cells possess specialized cellular compartments separated by membranes. Consequently, mature pollen contains proteinaceous factors for inter- and intracellular transport of metabolites or ions to facilitate the upcoming energy exhausting processes - germination and fertilization. Despite the current advancement in the understanding of pollen development little is known about the role and molecular nature of the membrane proteome that participates in functioning and development of male gametophyte. We dissected the membrane proteome of mature pollen from economically important crop Solanum lycopersicum (tomato). Isolated membrane fractions from mature pollen of two tomato cultivars (cv. Moneymaker and cv. Red setter) were subjected to shotgun proteomics (GEL-LC-Orbitrap-MS). The global tomato protein assignment was achieved by mapping the peptides on reference genome (cv. Heinz 1706) and de novo assembled transcriptome based on mRNA sequencing from the respective cultivar. We identified 687 proteins, where 176 were assigned as putative membrane proteins. About 58% of the identified membrane proteins participate in transport processes. In depth analysis revealed proteins corresponding to energy related pathways (Glycolysis and Krebs cycle) as prerequisite for mature pollen, thereby revealing a reliable model of energy reservoir of the male gametophyte.

BIOLOGICAL SIGNIFICANCE

Mature pollen plays an indispensable role in plant fertility and crop production. To decipher the functionality of pollen global proteomics studies have been undertaken. However, these datasets are deficient in membrane proteins due to their low abundance and solubility. The work presented here provides a comprehensive investigation of membrane proteome of male gametophyte of an agriculturally important crop plant tomato. The analysis of membrane enriched fractions from two tomato cultivars ensured an effective profiling of the pollen membrane proteome. Particularly proteins of the Krebs cycle or the glycolysis process have been detected and thus a model for the energy dynamics and preparedness of the male gametophyte for the upcoming events - germination and fertilization is provided.

摘要

未标记

花粉细胞具有由膜分隔的特殊细胞区室。因此,成熟花粉含有蛋白质因子,用于代谢物或离子的细胞间和细胞内运输,以促进即将到来的能量消耗过程——萌发和受精。尽管目前在花粉发育的理解方面取得了进展,但对于参与雄配子体功能和发育的膜蛋白质组的作用和分子性质知之甚少。我们剖析了经济上重要的作物番茄(Solanum lycopersicum)成熟花粉的膜蛋白质组。从两个番茄品种(金钱番茄和红赛特番茄)的成熟花粉中分离出膜组分,进行鸟枪法蛋白质组学分析(凝胶液相色谱-轨道阱质谱)。通过将肽段映射到参考基因组(海因茨1706品种)上,并基于各自品种的mRNA测序进行从头组装转录组,实现了番茄蛋白质的全局分配。我们鉴定出687种蛋白质,其中176种被指定为推定的膜蛋白。约58%的已鉴定膜蛋白参与运输过程。深入分析揭示了与能量相关途径(糖酵解和三羧酸循环)相对应的蛋白质是成熟花粉的先决条件,从而揭示了雄配子体能量储备的可靠模型。

生物学意义

成熟花粉在植物育性和作物生产中起着不可或缺的作用。为了解析花粉的功能,已经开展了全球蛋白质组学研究。然而,由于膜蛋白的低丰度和溶解性,这些数据集缺乏膜蛋白。本文的工作对农业重要作物番茄雄配子体的膜蛋白质组进行了全面研究。对两个番茄品种的膜富集组分进行分析,确保了花粉膜蛋白质组的有效分析。特别检测到了三羧酸循环或糖酵解过程的蛋白质,从而提供了雄配子体能量动态以及为即将到来的事件——萌发和受精做好准备的模型。

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