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Proteomic approaches to uncover the flooding and drought stress response mechanisms in soybean

机译:蛋白质组学方法来揭示大豆涌出的洪水和干旱应激响应机制

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摘要

Abstract Soybean is the important crop with abundant protein, vegetable oil, and several phytochemicals. With such predominant values, soybean is cultivated with a long history. However, flooding and drought stresses exert deleterious effects on soybean growth. The present review summarizes the morphological changes and affected events in soybean exposed to such extreme-water conditions. Sensitive organ in stressed soybean at different-developmental stages is presented based on protein profiles. Protein quality control and calcium homeostasis in the endoplasmic reticulum are discussed in soybean under both stresses. In addition, the way of calcium homeostasis in mediating protein folding and energy metabolism is addressed. Finally, stress response to flooding and drought is systematically demonstrated. This review concludes the recent findings of plant response to flooding and drought stresses in soybean employed proteomic approaches. Biological significance Soybean is considered as traditional-health food because of nutritional elements and pharmacological values. Flooding and drought exert deleterious effects to soybean growth. Proteomic approaches have been employed to elucidate stress response in soybean exposed to flooding and drought stresses. In this review, stress response is presented on organ-specific manner in the early-stage plant and soybean seedling exposed to combined stresses. The endoplasmic reticulum (ER) stress is induced by both stresses; and stress-response in the ER is addressed in the root tip of early-stage soybean. Moreover, calcium-response processes in stressed plant are described in the ER and in the cytosol. Additionally, stress-dependent response was discussed in flooded and drought-stressed plant. This review depicts stress response in the sensitive organ of stressed soybean and forms the basis to develop molecular markers related to plant defense under flooding and drought stresses. Graphical abstract Display Omitted Highlights ? Morphological, biochemical, and physiological changes of soybean under flooding and drought stresses were described. ? Organ-specific response to flooding and drought stresses in the early-stage plant and soybean seedling was summarized. ? Protein folding and calcium homeostasis in the ER of soybean-root tip exposed to combined stresses were presented. ? Effects of calcium on protein folding and energy metabolism in stressed soybean were elucidated. ? Stress-dependent response and localization of related proteins in stressed soybean were presented.
机译:摘要大豆是具有丰富蛋白质,植物油和几种植物化学物质的重要作物。具有这种主要值,大豆被悠久地培养。然而,洪水和干旱强调对大豆生长产生有害影响。本综述总结了暴露于这种极水条件的大豆的形态变化和影响事件。基于蛋白质谱来提出不同发展阶段的强调大豆中的敏感器官。在两种应激下,大豆中讨论了内质网中的蛋白质质量控​​制和内质网的钙稳态。此外,解决了在介导蛋白质折叠和能量代谢中的钙稳态的方式。最后,系统地证明了对洪水和干旱的压力反应。该评论结束了大豆采用蛋白质组学方法的最近对洪水和干旱胁迫的最新发现。由于营养元素和药理价值,生物意义大豆被认为是传统健康食品。洪水和干旱对大豆生长产生有害影响。已经采用蛋白质组学方法来阐明暴露于洪水和干旱胁迫的大豆中的应力反应。在本综述中,在早期植物和暴露于组合应力的大豆幼苗中,将压力响应呈现给器官特异性。两种应力诱导内质网(ER)应力;在早期大豆的根尖中解决了ER中的压力反应。此外,在ER和胞质溶胶中描述了应力植物中的钙响应过程。此外,在泛滥和干旱的植物中讨论了应力依赖性响应。本综述描述了强调大豆的敏感器官中的应力反应,并形成了开发与植物防御相关的分子标志物的基础和干旱胁迫。图形抽象显示省略了亮点?描述了大豆在洪水和干旱胁迫下的形态学,生化和生理变化。还总结了早期植物和大豆幼苗在早期植物和大豆幼苗对洪水和干旱胁迫的特异性反应。还介绍了暴露于组合应力的大豆根尖端中的蛋白质折叠和钙稳态。还阐明了钙对蛋白质折叠和能量代谢在胁迫大豆中的影响。还提出了应激依赖性蛋白质依赖性响应和相关蛋白质中的局部化。

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