Université de Reims Champagne-Ardenne, UFR Sciences Exactes et Naturelles, Unité de Recherche Vigne et Vins de Champagne - EA 4707, Laboratoire de Stress, Défenses et Reproduction des Plantes, B,P, 1039, Reims, cedex 02, 51687, France.
BMC Plant Biol. 2013 Feb 8;13:24. doi: 10.1186/1471-2229-13-24.
The extracellular space or apoplast forms a path through the whole plant and acts as an interface with the environment. The apoplast is composed of plant cell wall and space within which apoplastic fluid provides a means of delivering molecules and facilitates intercellular communications. However, the apoplastic fluid extraction from in planta systems remains challenging and this is particularly true for grapevine (Vitis vinifera L.), a worldwide-cultivated fruit plant. Large-scale proteomic analysis reveals the protein content of the grapevine leaf apoplastic fluid and the free interactive proteome map considerably facilitates the study of the grapevine proteome.
To obtain a snapshot of the grapevine apoplastic fluid proteome, a vacuum-infiltration-centrifugation method was optimized to collect the apoplastic fluid from non-challenged grapevine leaves. Soluble apoplastic protein patterns were then compared to whole leaf soluble protein profiles by 2D-PAGE analyses. Subsequent MALDI-TOF/TOF mass spectrometry of tryptically digested protein spots was used to identify proteins. This large-scale proteomic analysis established a well-defined proteomic map of whole leaf and leaf apoplastic soluble proteins, with 223 and 177 analyzed spots, respectively. All data arising from proteomic, MS and MS/MS analyses were deposited in the public database world-2DPAGE. Prediction tools revealed a high proportion of (i) classical secreted proteins but also of non-classical secreted proteins namely Leaderless Secreted Proteins (LSPs) in the apoplastic protein content and (ii) proteins potentially involved in stress reactions and/or in cell wall metabolism.
This approach provides free online interactive reference maps annotating a large number of soluble proteins of the whole leaf and the apoplastic fluid of grapevine leaf. To our knowledge, this is the first detailed proteome study of grapevine apoplastic fluid providing a comprehensive overview of the most abundant proteins present in the apoplast of grapevine leaf that could be further characterized in order to elucidate their physiological function.
细胞外空间或质外体形成了贯穿整个植物的路径,并作为与环境的接口。质外体由植物细胞壁和其中的空间组成,质外体流体提供了输送分子的手段,并促进了细胞间的通讯。然而,从植物体内系统中提取质外体流体仍然具有挑战性,对于葡萄(Vitis vinifera L.)这种全球范围内种植的水果植物来说尤其如此。大规模蛋白质组学分析揭示了葡萄叶片质外体流体的蛋白质含量,以及自由交互蛋白质组图谱极大地方便了对葡萄蛋白质组的研究。
为了获得葡萄质外体流体蛋白质组的快照,优化了真空渗透离心法以从未受挑战的葡萄叶片中收集质外体流体。然后通过 2D-PAGE 分析比较了可溶质外体蛋白图谱与全叶可溶性蛋白图谱。随后对胰蛋白酶消化的蛋白斑点进行 MALDI-TOF/TOF 质谱分析,用于鉴定蛋白质。这项大规模蛋白质组学分析建立了一个明确的全叶和叶片可溶质外体可溶性蛋白质的蛋白质组图谱,分别有 223 和 177 个分析斑点。所有蛋白质组学、MS 和 MS/MS 分析产生的数据都已存入公共数据库 world-2DPAGE。预测工具揭示了质外体蛋白质含量中(i)经典分泌蛋白和非经典分泌蛋白(即无信号肽分泌蛋白 LSPs)的高比例,以及(ii)可能参与应激反应和/或细胞壁代谢的蛋白质。
这种方法提供了免费的在线交互参考图谱,注释了大量葡萄叶片的全叶和质外体流体的可溶性蛋白质。据我们所知,这是首次对葡萄质外体流体进行详细的蛋白质组研究,全面概述了葡萄叶片质外体中存在的最丰富的蛋白质,这些蛋白质可以进一步进行特征描述,以阐明其生理功能。