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Coping With Water Shortage: An Update on the Role of K+, Cl-, and Water Membrane Transport Mechanisms on Drought Resistance

机译:应对缺水:关于K +,CL-和水膜输送机制对抗旱机制的作用的更新

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摘要

Drought is now recognized as the abiotic stress that causes most problems in agriculture, mainly due to the strong water demand from intensive culture and the effects of climate change, especially in arid/semi-arid areas. When plants suffer from water deficit (WD), a plethora of negative physiological alterations such as cell turgor loss, reduction of CO2 net assimilation rate, oxidative stress damage, and nutritional imbalances, among others, can lead to a decrease in the yield production and loss of commercial quality. Nutritional imbalances in plants grown under drought stress occur by decreasing water uptake and leaf transpiration, combined by alteration of nutrient uptake and long-distance transport processes. Plants try to counteract these effects by activating drought resistance mechanisms. Correct accumulation of salts and water constitutes an important portion of these mechanisms, in particular of those related to the cell osmotic adjustment and function of stomata. In recent years, molecular insights into the regulation of K+, Cl-, and water transport under drought have been gained. Therefore, this article brings an update on this topic. Moreover, agronomical practices that ameliorate drought symptoms of crops by improving nutrient homeostasis will also be presented.
机译:干旱现在被认为是非生物压力,导致农业大多数问题,主要是由于强化文化的强劲需求和气候变化的影响,特别是在干旱/半干旱地区。当植物患水赤字(WD)时,细胞Turgor损失如细胞损失,CO2净同化率,氧化应激损伤和营养不平衡等血清的过多,可以导致产量产生和降低损失商业质量。通过减少水吸收和叶片蒸腾,通过营养吸收和长距离运输过程的改变来发生在干旱胁迫下生长的植物中生长的植物中的营养不平衡。植物试图通过激活抗旱机制来抵消这些影响。正确的盐和水的积累构成了这些机制的重要部分,特别是与细胞渗透调整和气孔功能有关的那些。近年来,已经获得了干旱下k +,Cl-和水运输调节的分子见解。因此,本文为此主题带来了更新。此外,还将提出通过改善营养稳态改善作物的改善干旱症状的农艺实践。

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