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Plant proteome changes under abiotic stress--contribution of proteomics studies to understanding plant stress response.

机译:非生物胁迫下的植物蛋白质组变化-蛋白质组学研究对理解植物胁迫反应的贡献

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摘要

Plant acclimation to stress is associated with profound changes in proteome composition. Since proteins are directly involved in plant stress response, proteomics studies can significantly contribute to unravel the possible relationships between protein abundance and plant stress acclimation. In this review, proteomics studies dealing with plant response to a broad range of abiotic stress factors--cold, heat, drought, waterlogging, salinity, ozone treatment, hypoxia and anoxia, herbicide treatments, inadequate or excessive light conditions, disbalances in mineral nutrition, enhanced concentrations of heavy metals, radioactivity and mechanical wounding are discussed. Most studies have been carried out on model plants Arabidopsis thaliana and rice due to large protein sequence databases available; however, the variety of plant species used for proteomics analyses is rapidly increasing. Protein response pathways shared by different plant species under various stress conditions (glycolytic pathway, enzymes of ascorbate-glutathione cycle, accumulation of LEA proteins) as well as pathways unique to a given stress are discussed. Results from proteomics studies are interpreted with respect to physiological factors determining plant stress response. In conclusion, examples of application of proteomics studies in search for protein markers underlying phenotypic variation in physiological parameters associated with plant stress tolerance are given.
机译:植物适应胁迫与蛋白质组组成的深刻变化有关。由于蛋白质直接参与植物的逆境反应,因此蛋白质组学研究可以为阐明蛋白质丰度与植物逆境适应之间的可能关系做出重大贡献。在这篇综述中,蛋白质组学研究涉及植物对各种非生物胁迫因素的反应-冷,热,干旱,涝渍,盐度,臭氧处理,缺氧和缺氧,除草剂处理,光照条件不足或过多,矿物质营养失衡讨论了提高的重金属浓度,放射性和机械伤害。由于已有大量的蛋白质序列数据库,大多数研究已在模型植物拟南芥和水稻上进行。然而,用于蛋白质组学分析的植物种类正在迅速增加。讨论了在不同胁迫条件下不同植物物种共有的蛋白质响应途径(糖酵解途径,抗坏血酸-谷胱甘肽循环酶,LEA蛋白积累)以及给定胁迫所独有的途径。蛋白质组学研究的结果与决定植物胁迫反应的生理因素有关。总之,给出了蛋白质组学研究在寻找与植物抗逆性相关的生理参数中表型变异基础的蛋白质标志物方面的应用实例。

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