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Impervious surface thresholds for urban tree site selection

机译:城市树网站选择的不透水表面阈值

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Impervious surfaces are a ubiquitous urban feature that increase temperature and tree drought stress and are a demonstrated indicator of Acer rubrum L. tree condition and insect pest abundance. We examined the relationship between A. rubrum condition, impervious surface cover, and Melanaspis tenebricosa (Comstock) abundance, a primary herbivore of urban A. rubrum, in eight cities across the southern distribution of A. rubrum. We predicted that the effects of warming, due to impervious surface, would be greater in warmer southern cities than in cooler northern cities. We found that impervious surface was a robust predictor of tree condition, but this effect was not significantly affected by background temperature. Melanaspis tenebricosa abundance was a function of impervious surface and background temperature, with greatest abundances occurring at mid latitudes. Based on these relationships, we developed impervious surface thresholds to inform site selection for A. rubrum throughout the southeastern USA. Planting criteria based on habitat characteristics should maximize urban tree longevity and services provided.
机译:不透水的表面是一种普遍的城市特征,可以增加温度和树干的胁迫,并且是宏碁Rubrum L.树木状况和害虫丰富的展示指标。我们审查了A. Rubrum条件,不受欢迎的表面覆盖物和Melanaspis Tenebricosa(Comstock)的关系,是城市A. rubrum的一位初级食草动物,在八个城市的南部分布的八个城市。我们预测,由于不透水的表面,温暖的变暖的影响将在南部城市的温暖,而不是在较冷的北方城市。我们发现,不透水表面是树木状况的稳健预测因子,但这种效果不会受到背景温度的显着影响。 Melanaspis Tenebricosa丰富是一种不透水表面和背景温度的函数,在中纬度地区发生最大的丰富。基于这些关系,我们开发了不透水的表面阈值,以便在美国东南部的A. Rubrum上通知网站选择。基于栖息地特性的种植标准应最大限度地提高城市树长寿和服务。

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