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首页> 外文期刊>Environmental and experimental botany >The challenge of the Mediterranean climate to plant hydraulics: responses and adaptations. (Special Issue: Response to abiotic stresses of plants of Mediterranean-type ecosystems.)
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The challenge of the Mediterranean climate to plant hydraulics: responses and adaptations. (Special Issue: Response to abiotic stresses of plants of Mediterranean-type ecosystems.)

机译:地中海气候对植物液压系统的挑战:应对和适应。 (特刊:对地中海型生态系统植物非生物胁迫的响应。)

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摘要

Mediterranean-type biomes characterized by warm summers with a distinct drought period lasting from 2 up to 10 months occur in several world regions including the Mediterranean basin, S-California, Chile, S-Africa and SW-Australia. All these areas are covered by a peculiar and hyper-diverse vegetation dominated by evergreen trees and shrubs with small and coriaceous leaves. Drought adaptation of Mediterranean plants relies on different mechanisms including deep rooting patterns, avoidance or resistance of cavitation-induced embolism, compensation or repair of embolism-induced hydraulic damage. The complementarity and/or co-occurrence of these physiological traits in different species inhabiting Mediterranean biomes is probably the basis for high plant biodiversity in these fascinating habitats. Ongoing climate changes, leading to enhanced frequency and intensity of drought episodes in Mediterranean biomes, represent a major threat to future conservation of these fragile ecosystems, especially if future harsher climate conditions will overcome the drought resistance limits of Mediterranean plants. Current knowledge about drought resistance mechanisms as well as about processes leading to decline and death of woody plants under extreme climatic conditions is revised and directions for future research are suggested.
机译:地中海型生物群系的特点是夏季温暖,干旱期持续2到10个月,分布在几个世界地区,包括地中海盆地,南加州,智利,南非和西南澳大利亚。所有这些地区都被一种奇特而又多样化的植被所覆盖,这些植被以常绿乔木和灌木丛以及小而具叶片的叶子为主。地中海植物的干旱适应依赖于不同的机制,包括深层生根模式,避免或抵抗空化引起的栓塞,补偿或修复栓塞引起的水力损害。这些生物特征在地中海生物群系中不同物种的互补性和/或同时存在可能是这些迷人栖息地中高植物生物多样性的基础。持续不断的气候变化,导致地中海生物群系干旱发生的频率和强度增加,对这些脆弱的生态系统的未来保护构成了重大威胁,特别是如果未来的更严酷的气候条件将克服地中海植物的抗旱极限。修订了有关抗旱机制以及导致极端气候条件下木本植物衰退和死亡的过程的现有知识,并提出了今后研究的方向。

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