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Elucidation of salt stress defense and tolerance mechanisms of crop plants using proteomics-Current achievements and perspectives

机译:用蛋白质组学阐明作物的盐胁迫防御和耐受机制-当前的成就和观点

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Salinity is a major threat limiting the productivity of crop plants. A clear demand for improving the salinity tolerance of the major crop plants is imposed by the rapidly growing world population. This review summarizes the achievements of proteomic studies to elucidate the response mechanisms of selected model and crop plants to cope with salinity stress. We also aim at identifying research areas, which deserve increased attention in future proteome studies, as a prerequisite to identify novel targets for breeding strategies. Such areas include the impact of plant-microbial communities on the salinity tolerance of crops under field conditions, the importance of hormone signaling in abiotic stress tolerance, and the significance of control mechanisms underlying the observed changes in the proteome patterns. We briefly highlight the impact of novel tools for future proteome studies and argue for the use of integrated approaches. The evaluation of genetic resources by means of novel automated phenotyping facilities will have a large impact on the application of proteomics especially in combination with metabolomics or transcriptomics.
机译:盐分是限制农作物生产力的主要威胁。快速增长的世界人口对提高主要农作物的耐盐性提出了明确的要求。这篇综述总结了蛋白质组学研究的成果,以阐明所选模型和农作物应对盐分胁迫的响应机制。我们还旨在确定研究领域,这是确定新的育种策略目标的前提,在未来的蛋白质组研究中应引起更多关注。这些领域包括在田间条件下植物微生物群落对农作物耐盐性的影响,激素信号在非生物胁迫耐受性中的重要性以及蛋白质组模式观察到的控制机制的重要性。我们简要强调了新型工具对未来蛋白质组学研究的影响,并主张使用整合方法。通过新型自动表型分析工具对遗传资源的评估将对蛋白质组学的应用产生重大影响,尤其是与代谢组学或转录组学结合使用时。

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