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首页> 外文期刊>Forests >The Urban Environment Can Modify Drought Stress of Small-Leaved Lime ( Tilia cordata Mill.) and Black Locust ( Robinia pseudoacacia L.)
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The Urban Environment Can Modify Drought Stress of Small-Leaved Lime ( Tilia cordata Mill.) and Black Locust ( Robinia pseudoacacia L.)

机译:城市环境可以改变小叶石灰(Tilia cordata Mill。)和刺槐(Robinia pseudoacacia L.)的干旱胁迫

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The urban environment characterized by various stresses poses challenges to trees. In particular, water deficits and high temperatures can cause immense drought stress to urban trees, resulting in reduced growth and die-off. Drought-tolerant species are expected to be resilient to these conditions and are therefore advantageous over other, more susceptible species. However, the drought tolerance of urban trees in relation to the specific growth conditions in urban areas remains poorly researched. This study aimed to analyze the annual growth and drought tolerance of two common urban tree species, namely small-leaved lime ( Tilia cordata Mill. ( T. cordata )) and black locust ( Robinia pseudoacacia L. ( R. pseudoacacia )), in two cities in southern Germany in relation to their urban growing conditions. Marked growth reductions during drought periods and subsequent fast recovery were found for R. pseudoacacia , whereas T. cordata exhibited continued reduced growth after a drought event, although these results were highly specific to the analyzed city. We further show that individual tree characteristics and environmental conditions significantly influence the growth of urban trees. Canopy openness and other aspects of the surrounding environment (water supply and open surface area of the tree pit), tree size, and tree species significantly affect urban tree growth and can modify the ability of trees to tolerate the drought stress in urban areas. Sustainable tree planting of well adapted tree species to their urban environment ensures healthy trees providing ecosystem services for a high quality of life in cities.
机译:以各种压力为特征的城市环境对树木构成了挑战。特别是缺水和高温会给城市树木造成巨大的干旱压力,导致生长减少和枯死。耐旱物种有望在这些条件下具有弹性,因此比其他更易受伤害的物种更具优势。但是,关于城市树木与城市特定生长条件相关的耐旱性仍然研究不足。本研究旨在分析两种常见的城市树种的年生长和耐旱性,即小叶石灰(Tilia cordata Mill。(T. cordata))和刺槐(Robinia pseudoacacia L.(R. pseudoacacia))。关于德国南部两个城市的城市发展状况。在干旱时期,伪阿拉伯树(R. pseudoacacia)的生长明显减少,随后迅速恢复,而干旱事件发生后,T。cordata的生长继续减少,尽管这些结果对所分析的城市高度特定。我们进一步表明,个体树木的特征和环境条件显着影响城市树木的生长。树木冠层的开放度和周围环境的其他方面(供水和树坑的开放表面积),树木的大小和树木种类会严重影响城市树木的生长,并会改变树木承受城市干旱压力的能力。可持续地种植适应城市环境的树种可确保健康的树木为城市的高质量生活提供生态系统服务。

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