蒸腾作用
非生物成分
缺水
气孔导度
光合作用
生物
用水
水分胁迫
农业
农学
用水效率
水运
环境科学
植物
水流
生态学
环境工程
作者
Nir Sade,Alem Gebremedhin,Menachem Moshelion
出处
期刊:Plant Signaling & Behavior
[Taylor & Francis]
日期:2012-07-01
卷期号:7 (7): 767-770
被引量:262
摘要
Water scarcity is a critical limitation for agricultural systems. Two different water management strategies have evolved in plants: an isohydric strategy and an anisohydric strategy. Isohydric plants maintain a constant midday leaf water potential (Ψleaf) when water is abundant, as well as under drought conditions, by reducing stomatal conductance as necessary to limit transpiration. Anisohydric plants have more variable Ψleaf and keep their stomata open and photosynthetic rates high for longer periods, even in the presence of decreasing leaf water potential. This risk-taking behavior of anisohydric plants might be beneficial when water is abundant, as well as under moderately stressful conditions. However, under conditions of intense drought, this behavior might endanger the plant. We will discuss the advantages and disadvantages of these two water-usage strategies and their effects on the plant's ability to tolerate abiotic and biotic stress. The involvement of plant tonoplast AQPs in this process will also be discussed.
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