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Manipulating plant phylogenetic diversity for green roof ecosystem service delivery

机译:操纵植物系统发育多样性以提供绿色屋顶生态系统服务

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摘要

Plant species and functional trait diversity have each been shown to improve green roof services. Species and trait differences that contribute to ecosystem services are the product of past evolutionary change and phylogenetic diversity (PD), which quantifies the relatedness among species within a community. In this study, we present an experimental framework to assess the contribution of plant community PD for green roof ecosystem service delivery, and data from one season that support our hypotheses that PD would be positively correlated with two services: building cooling and rainwater management. Using 28 plant species in 12 families, we created six community combinations with different levels of PD. Each of these communities was replicated at eight green roofs along an elevation gradient, as well as a ground level control. We found that the minimum and mean roof temperature decreased with increasing PD in the plant community. Increasing PD also led to an increase in the volume of rainwater captured, but not the proportion of water lost via evapotranspiration 48 hr following the rain event. Our findings suggest that considering these evolutionary relationships could improve functioning of green infrastructure and we recommend that understanding how to make PD (and other measures of diversity) serviceable for plant selection by practitioners will improve the effectiveness of design and ecosystem service delivery. Lastly, since no two green roof sites are the same and can vary tremendously in microclimate conditions, our study illustrates the importance of including multiple independent sites in studies of green roof performance.
机译:植物种类和功能性状多样性均被证明可以改善屋顶绿化服务。有助于生态系统服务的物种和特征差异是过去进化变化和系统发育多样性(PD)的产物,该多样性量化了社区内物种之间的相关性。在这项研究中,我们提供了一个实验框架来评估植物群落PD对屋顶绿化生态系统服务交付的贡献,以及来自一个季节的数据支持了我们的假设,即PD与两种服务正相关:建筑物降温和雨水管理。我们使用12个科的28种植物,创建了六个具有不同PD水平的社区组合。这些社区中的每一个都沿着海拔梯度以及地面控制在八个绿色屋顶处被复制。我们发现最低和平均屋顶温度随着植物群落中PD的增加而降低。 PD的增加还导致捕获的雨水量增加,但雨后48小时通过蒸散损失的水的比例没有增加。我们的发现表明,考虑这些进化关系可以改善绿色基础设施的功能,我们建议了解如何使从业人员(以及其他多样性衡量标准)对从业人员进行植物选择有用,将提高设计和生态系统服务交付的有效性。最后,由于没有两个绿色屋顶站点是相同的,并且在微气候条件下可能会发生巨大变化,因此我们的研究表明在绿色屋顶性能研究中包括多个独立站点的重要性。

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