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Landscape-scale processes influence riparian plant composition along a regulated river

机译:景观尺度过程影响受管制河流沿岸植物的组成

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Hierarchical frameworks are useful constructs when exploring landscape- and local-scale factors affecting patterns of vegetation in riparian areas. In drylands, which have steep environmental gradients and high habitat heterogeneity, landscape-scale variables, such as climate, can change rapidly along a river's course, affecting the relative influence of environmental variables at different scales. To assess how landscape-scale factors change the structure of riparian vegetation, we measured riparian vegetation composition along the Colorado River through Grand Canyon, determined which factors best explain observed changes, identified how richness and functional diversity vary, and described the implications of our results for river management. Cluster analysis identified three divergent floristic groups that are distributed longitudinally along the river. These groups were distributed along gradients of elevation, temperature and seasonal precipitation, but were not associated with annual precipitation or local-scale factors. Species richness and functional diversity decreased as a function of distance downstream showing that changing landscape-scale factors result in changes to ecosystem characteristics. Species composition and distribution remain closely linked to seasonal precipitation and temperature. These patterns in floristic composition in a semiarid system inform management and provide insights into potential future changes as a result of shifts in climate and changes in flow management.
机译:当探索影响河岸地区植被格局的景观和局部尺度因素时,层次框架是有用的构造。在环境梯度陡峭,栖息地异质性高的干旱地区,景观尺度变量(例如气候)会沿着河流变化迅速,从而影响了不同尺度下环境变量的相对影响。为了评估景观尺度因素如何改变河岸植被的结构,我们测量了穿越大峡谷的科罗拉多河沿岸的河岸植被组成,确定了哪些因素可以最好地解释观测到的变化,确定了丰富度和功能多样性如何变化,并描述了我们研究结果的含义。用于河流管理。聚类分析确定了沿河纵向分布的三个不同的植物群。这些组沿海拔,温度和季节性降水的梯度分布,但与年降水量或局部尺度因素无关。物种丰富度和功能多样性作为下游距离的函数而降低,表明变化的景观尺度因素导致生态系统特征的变化。物种组成和分布仍然与季节性降水和温度密切相关。半干旱系统中植物区系的这些模式为管理提供了信息,并为气候变化和流量管理变化带来的未来潜在变化提供了见识。

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