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首页> 外文期刊>Journal of proteomics >Proteomic analysis of embryonic axis of Pisum sativum seeds during germination and identification of proteins associated with loss of desiccation tolerance.
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Proteomic analysis of embryonic axis of Pisum sativum seeds during germination and identification of proteins associated with loss of desiccation tolerance.

机译:豌豆种子萌发过程中胚轴的蛋白质组学分析和鉴定与脱水耐性丧失相关的蛋白质。

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摘要

Seed germination is an important stage in life cycle of higher plants. The germination processes and its associated loss of desiccation tolerance, however, are still poorly understood. In present study, pea seeds were used to study changes in embryonic axis proteome during germination by 2-DE and mass spectrometry. We identified a total of 139 protein spots showing a significant (>2-fold) change during germination. The results show that seed germination is not only the activation of a series of metabolic processes, but also involves reorganization of cellular structure and activation of protective systems. To uncouple the physiological processes of germination and its associated loss of desiccation tolerance, we used the fact that pea seeds have different desiccation tolerance when imbibed in water, CaCl(2) and methylviologen at the same germination stage. We compared the proteome amongst these seeds to identify the candidate proteins associated with the loss of desiccation tolerance and found a total of seven proteins - tubulin alpha-1 chain, seed biotin-containing protein SBP65, P54 protein, vicilin, vicilin-like antimicrobial peptides 2-3, convicilin and TCP-1/cpn60 chaperonin family protein. The metabolic function of these proteins indicates that seed desiccation tolerance is related to pathogen defense, protein conformation conservation and cell structure stabilization.
机译:种子发芽是高等植物生命周期的重要阶段。然而,对发芽过程及其相关的脱水耐受性的丧失仍然知之甚少。在本研究中,豌豆种子被用于通过2-DE和质谱研究萌发过程中胚轴蛋白质组的变化。我们鉴定出总共139个蛋白点,它们在发芽过程中显示出显着(> 2倍)变化。结果表明,种子发芽不仅是一系列代谢过程的激活,而且还涉及细胞结构的重组和保护系统的激活。为了解耦发芽的生理过程及其相关的脱水耐受性丧失,我们利用了豌豆种子在同一发芽阶段吸收于水,CaCl(2)和甲基紫罗兰中时具有不同的脱水耐受性这一事实。我们比较了这些种子中的蛋白质组,以鉴定与脱水耐性丧失相关的候选蛋白,并发现了总共七个蛋白-微管蛋白α-1链,含种子生物素的蛋白SBP65,P54蛋白,丝胶蛋白,丝胶蛋白样抗菌肽2-3,convicilin和TCP-1 / cpn60伴侣蛋白家族蛋白。这些蛋白质的代谢功能表明种子脱水耐性与病原体防御,蛋白质构象保守和细胞结构稳定有关。

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