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Plant Organellar Proteomics in Response to Dehydration: Turning Protein Repertoire into Insights

机译:脱水反应中的植物有机体蛋白质组学:将蛋白质库变成洞察力

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摘要

Stress adaptation or tolerance in plants is a complex phenomenon involving changes in physiological and metabolic processes. Plants must develop elaborate networks of defense mechanisms, and adapt to and survive for sustainable agriculture. Water-deficit or dehydration is the most critical environmental factor that plants are exposed to during their life cycle, which influences geographical distribution and productivity of many crop species. The cellular responses to dehydration are orchestrated by a series of multidirectional relays of biochemical events at organelle level. The new challenge is to dissect the underlying mechanisms controlling the perception of stress signals and their transmission to cellular machinery for activation of adaptive responses. The completeness of current descriptions of spatial distribution of proteins, the relevance of subcellular locations in diverse functional processes, and the changes of protein abundance in response to dehydration hold the key to understanding how plants cope with such stress conditions. During past decades, organellar proteomics has proved to be useful not only for deciphering reprograming of plant responses to dehydration, but also to dissect stress–responsive pathways. This review summarizes a range of organellar proteomics investigations under dehydration to gain a holistic view of plant responses to water-deficit conditions, which may facilitate future efforts to develop genetically engineered crops for better adaptation.
机译:植物的逆境适应或耐受性是一个复杂的现象,涉及生理和代谢过程的变化。植物必须建立完善的防御机制网络,并适应可持续农业并生存。缺水或脱水是植物在生命周期中面临的最关键的环境因素,这会影响许多农作物的地理分布和生产力。细胞对脱水的反应是通过细胞器水平上一系列生化事件的多方向传递来协调的。新的挑战是剖析控制压力信号感知以及将其传递到细胞机制以激活适应性反应的潜在机制。当前对蛋白质空间分布的描述的完整,在各种功能过程中亚细胞位置的相关性以及对脱水反应的蛋白质丰度的变化,是理解植物如何应对这种胁迫条件的关键。在过去的几十年中,已经证明,细胞器蛋白质组学不仅可用于解密植物对脱水反应的重编程,而且可用于解析胁迫响应途径。这篇综述总结了在脱水条件下进行的一系列细胞器蛋白质组学研究,以全面了解植物对缺水状况的反应,这可能有助于将来开发转基因农作物以更好地适应气候变化。

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