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Membrane Transport, Sensing and Signaling in Plant Adaptation to Environmental Stress

机译:植物对环境胁迫的膜迁移,传感和信号传递

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摘要

Plants are generally well adapted to a wide range of environmental conditions. Even though they have notably prospered in our planet, stressful conditions such as salinity, drought and cold or heat, which are increasingly being observed worldwide in the context of the ongoing climate changes, limit their growth and productivity. Behind the remarkable ability of plants to cope with these stresses and still thrive, sophisticated and efficient mechanisms to re-establish and maintain ion and cellular homeostasis are involved. Among the plant arsenal to maintain homeostasis are efficient stress sensing and signaling mechanisms, plant cell detoxification systems, compatible solute and osmoprotectant accumulation and a vital rearrangement of solute transport and compartmentation. The key role of solute transport systems and signaling proteins in cellular homeostasis is addressed in the present work. The full understanding of the plant cell complex defense mechanisms under stress may allow for the engineering of more tolerant plants or the optimization of cultivation practices to improve yield and productivity, which is crucial at the present time as food resources are progressively scarce.
机译:植物通常能很好地适应各种环境条件。尽管它们在我们的星球上特别繁荣,但由于持续的气候变化,全球范围内越来越多地观察到盐碱,干旱,寒冷或高温等压力条件,限制了它们的生长和生产力。在植物应对这些压力的显着能力以及仍然兴旺发展的背后,涉及到了重新建立和维持离子与细胞稳态的复杂而有效的机制。维持体内平衡的植物武库包括有效的压力感应和信号传导机制,植物细胞排毒系统,相容的溶质和渗透保护剂蓄积以及溶质运输和分隔的重要重排。本工作探讨了溶质转运系统和信号蛋白在细胞稳态中的关键作用。充分了解胁迫下的植物细胞复合物防御机制,可以设计出更具耐受性的植物或优化栽培方法以提高产量和生产力,这在当前至关重要,因为粮食资源日益匮乏。

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