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Drought-induced xylem cavitation and hydraulic deterioration: Risk factors for urban trees under climate change?

机译:干旱引起的木质部空化和水力退化:​​气候变化下城市树木的危险因素?

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摘要

Urban trees help towns to cope with climate warming by cooling both air and surfaces. The challenges imposed by the urban environment, with special reference to low water availability due to the presence of extensive pavements, result in high rates of mortality of street trees, that can be increased by climatic extremes.\udWe investigated the water relations and xylem hydraulic safety/efficiency of Quercus ilex trees growing at urban sites with different percentages of surrounding impervious pavements. Seasonal changes of plant water potential and gas exchange, vulnerability to cavitation and embolism level, and morpho-anatomical traits were measured.\udWe found patterns of increasing water stress and vulnerability to drought at increasing percentages of impervious pavement cover, with a consequent reduction in gas exchange rates, decreased safety margins toward embolism development, and increased vulnerability to cavitation, suggesting the occurrence of stress-induced hydraulic deterioration.\udThe amount of impermeable surface and chronic exposure to water stress influence the site-specific risk of drought-induced dieback of urban trees under extreme drought. Besides providing directions for management of green spaces in towns, our data suggest that xylem hydraulics is key to a full understanding of the responses of urban trees to global change.
机译:城市树木通过冷却空气和地面来帮助城镇应对气候变暖。城市环境所带来的挑战,特别是由于存在大量人行道而导致的可用水量低,导致行道树的死亡率很高,而极端气候可能会增加死亡率。\ ud我们研究了水的关系和木质部水力在城市工地生长的具有不同百分比的不透水人行道的栎树的安全性/效率。测量了植物水势和气体交换的季节性变化,对空化和栓塞的脆弱性以及形态解剖特征。气体交换速率,降低的栓塞安全性裕度以及增加的气蚀脆弱性,这表明发生了应力诱发的水力恶化。\ ud不透水表面的数量和长期暴露于水分胁迫会影响因干旱而导致的局部死亡的特定地点风险干旱下的城市树木的数量。除了为城镇的绿地管理提供指导外,我们的数据还表明木质部水力学对于全面理解城市树木对全球变化的响应至关重要。

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