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Water deficit as a regulatory switch for legume root responses

机译:水分亏缺作为豆科植物根系反应的调控开关

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摘要

Plant roots perceive declining soil water potential as an initial signal which further triggers an array of physiological, morphological and molecular responses in the whole plant. Understanding the root responses with parallel insights on protein level changes has always been an area of interest for stress biologists. In a recent study, we reported drought stress-induced changes among certain structural and functional root proteins involved in reactive oxygen species (ROS) detoxification, primary and secondary metabolite biosynthetic pathways as well as proteins associated with cell signaling in an economically important legume crop Vigna radiata (L.) Wilczek. We also demonstrated photosynthetic gas exchange characteristics and root physiology under varying levels of water-deficit and recovery. In this report, we depict a closer analysis of the expression patterns of the identified proteins which were categorized into five major functional groups. These proteins represent a unique coherence and networking with each other as well as with the overall physiological and metabolic machinery in the plant cell.
机译:植物根系认为土壤水势下降是一个初始信号,这进一步触发了整个植物的一系列生理,形态和分子反应。通过对蛋白质水平变化的平行了解来了解根系反应一直是应激生物学家感兴趣的领域。在最近的一项研究中,我们报道了干旱胁迫引起的某些结构和功能根蛋白之间的变化,这些根蛋白参与了活性氧物种(ROS)的解毒,一级和二级代谢产物的生物合成途径,以及与具有经济意义的豆类作物Vigna的细胞信号相关的蛋白质辐射(L.)我们还展示了在不同水平的水分亏缺和恢复下光合气体交换特性和根系生理。在此报告中,我们描绘了对已识别蛋白质的表达模式的更详细分析,这些蛋白质被分为五个主要功能组。这些蛋白质彼此之间以及与植物细胞中的整体生理和代谢机制之间具有独特的一致性和网络性。

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