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黑小麦成熟花粉和柱头蛋白质组——为有性相遇组装蛋白质。

The triticale mature pollen and stigma proteomes - assembling the proteins for a productive encounter.

机构信息

Ottawa Research and Development Centre, 960 Carling Ave., Ottawa, Ontario K1A 0C6, Canada; Carleton University, Department of Biology, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada.

Ottawa Research and Development Centre, 960 Carling Ave., Ottawa, Ontario K1A 0C6, Canada.

出版信息

J Proteomics. 2023 Apr 30;278:104867. doi: 10.1016/j.jprot.2023.104867. Epub 2023 Mar 3.

Abstract

Triticeae crops are major contributors to global food production and ensuring their capacity to reproduce and generate seeds is critical. However, despite their importance our knowledge of the proteins underlying Triticeae reproduction is severely lacking and this is not only true of pollen and stigma development, but also of their pivotal interaction. When the pollen grain and stigma are brought together they have each accumulated the proteins required for their intended meeting and accordingly studying their mature proteomes is bound to reveal proteins involved in their diverse and complex interactions. Using triticale as a Triticeae representative, gel-free shotgun proteomics was used to identify 11,533 and 2977 mature stigma and pollen proteins respectively. These datasets, by far the largest to date, provide unprecedented insights into the proteins participating in Triticeae pollen and stigma development and interactions. The study of the Triticeae stigma has been particularly neglected. To begin filling this knowledge gap, a developmental iTRAQ analysis was performed revealing 647 proteins displaying differential abundance as the stigma matures in preparation for pollination. An in-depth comparison to an equivalent Brassicaceae analysis divulged both conservation and diversification in the makeup and function of proteins involved in the pollen and stigma encounter. SIGNIFICANCE: Successful pollination brings together the mature pollen and stigma thus initiating an intricate series of molecular processes vital to crop reproduction. In the Triticeae crops (e.g. wheat, barley, rye, triticale) there persists a vast deficit in our knowledge of the proteins involved which needs to be addressed if we are to face the many upcoming challenges to crop production such as those associated with climate change. At maturity, both the pollen and stigma have acquired the protein complement necessary for their forthcoming encounter and investigating their proteomes will inevitably provide unprecedented insights into the proteins enabling their interactions. By combining the analysis of the most comprehensive Triticeae pollen and stigma global proteome datasets to date with developmental iTRAQ investigations, proteins implicated in the different phases of pollen-stigma interaction enabling pollen adhesion, recognition, hydration, germination and tube growth, as well as those underlying stigma development were revealed. Extensive comparisons between equivalent Triticeae and Brassiceae datasets highlighted both the conservation of biological processes in line with the shared goal of activating the pollen grain and promoting pollen tube invasion of the pistil to effect fertilization, as well as the significant distinctions in their proteomes consistent with the considerable differences in their biochemistry, physiology and morphology.

摘要

小麦族作物是全球粮食生产的主要贡献者,确保其繁殖和产生种子的能力至关重要。然而,尽管它们很重要,但我们对小麦族繁殖所涉及的蛋白质的了解却严重不足,这不仅适用于花粉和柱头的发育,也适用于它们的关键相互作用。当花粉粒和柱头结合在一起时,它们各自积累了所需的蛋白质,因此研究它们成熟的蛋白质组必然会揭示参与它们多样化和复杂相互作用的蛋白质。本文以黑麦小麦为代表,使用无凝胶Shotgun 蛋白质组学技术分别鉴定出 11533 个和 2977 个成熟柱头和花粉蛋白。这些数据集是迄今为止最大的数据集,为参与小麦族花粉和柱头发育以及相互作用的蛋白质提供了前所未有的见解。对小麦族柱头的研究一直被忽视。为了开始填补这一知识空白,进行了发育性 iTRAQ 分析,揭示了 647 种在柱头成熟为授粉做准备的过程中显示出丰度差异的蛋白质。与类似的芸薹科植物分析进行深入比较,揭示了参与花粉和柱头相遇的蛋白质的组成和功能的保守性和多样化。意义:成功授粉使成熟花粉和柱头结合在一起,从而启动一系列对作物繁殖至关重要的复杂分子过程。在小麦族作物(如小麦、大麦、黑麦、小黑麦)中,我们对所涉及的蛋白质的了解仍然存在巨大的差距,如果我们要应对即将到来的作物生产挑战,如与气候变化相关的挑战,就必须解决这个问题。在成熟时,花粉和柱头都获得了即将相遇所需的蛋白质补充,研究它们的蛋白质组必然会提供前所未有的见解,了解使它们相互作用的蛋白质。通过将迄今为止最全面的小麦族花粉和柱头全球蛋白质组数据集的分析与发育性 iTRAQ 研究相结合,揭示了参与花粉-柱头相互作用的不同阶段的蛋白质,包括花粉附着、识别、水合、萌发和管生长,以及那些参与柱头发育的蛋白质。对等效的小麦族和芸薹科植物数据集的广泛比较突出了与激活花粉粒和促进花粉管侵入雌蕊以实现受精的共同目标相一致的生物过程的保守性,以及与它们在生物化学、生理学和形态学上的巨大差异相一致的蛋白质组的显著区别。

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