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植物对干旱和复水的响应。

Plant responses to drought and rewatering.

机构信息

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Science, Xiangshan, Haidian District, Beijing, PR China.

出版信息

Plant Signal Behav. 2010 Jun;5(6):649-54. doi: 10.4161/psb.5.6.11398. Epub 2010 Jun 1.

Abstract

Plants would be more vulnerable to water stress and thereafter rewatering or a cycled water environmental change, which occur more frequently under climatic change conditions in terms of the prediction scenarios. Effects of water stress on plants alone have been well-documented in many reports. However, the combined responses to drought and rewatering and its mechanism are relatively scant. As we known, plant growth, photosynthesis and stomatal aperture may be limited under water deficit, which would be regulated by physical and chemical signals. Under severe drought, while peroxidation may be provoked, the relevant antioxidant metabolism would be involved to annihilate the damage of reactive oxygen species. As rewatering, the recoveries of plant growth and photosynthesis would appear immediately through growing new plant parts, re-opening the stomata, and decreasing peroxidation; the recovery extents (reversely: pre-drought limitation) due to rewatering strongly depend on pre-drought intensity, duration and species. Understanding how plants response to episodic drought and watering pulse and the underlying mechanism is remarkably helpful to implement vegetation management practices in climatic changing.

摘要

在气候变化条件下,预测情景表明,植物将更容易受到水胁迫的影响,随后再受到灌溉或循环水环境变化的影响。许多报告都充分记录了水胁迫对植物的单独影响。然而,对干旱和再浇水的综合反应及其机制相对较少。众所周知,在水分亏缺下,植物生长、光合作用和气孔开度可能受到限制,这将受到物理和化学信号的调节。在严重干旱下,可能会引发过氧化作用,相关抗氧化代谢物会参与消除活性氧的损伤。再浇水时,通过生长新的植物部分、重新打开气孔和降低过氧化作用,植物生长和光合作用会立即恢复;再浇水的恢复程度(相反:干旱前限制)强烈取决于干旱前的强度、持续时间和物种。了解植物如何应对间歇性干旱和浇水脉冲以及潜在机制,对于实施气候变化下的植被管理实践具有重要意义。

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Plant responses to drought and rewatering.植物对干旱和复水的响应。
Plant Signal Behav. 2010 Jun;5(6):649-54. doi: 10.4161/psb.5.6.11398. Epub 2010 Jun 1.

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