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首页> 外文期刊>Fundamental and applied limnology >Environmental drivers - Spatial and temporal variation of macroinvertebrate communities in island streams: The case of the Azores Archipelago
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Environmental drivers - Spatial and temporal variation of macroinvertebrate communities in island streams: The case of the Azores Archipelago

机译:环境驱动因素-岛屿河流中大型无脊椎动物群落的时空变化:以亚速尔群岛为例

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摘要

Freshwater systems on the volcanic oceanic islands of Macaronesia and the macroinvertebrate communities that occupy them differ strongly from European mainland systems. This is a result of their geological origin, relatively small size, catchment morphology and distance from potential sources of colonization. The spatial and temporal distribution patterns of benthic macroinvertebrate assemblages were assessed over two seasons at 23 sites in 13 streams across the Azores Archipelago. ANOSIM results indicated signifcant spatiotemporal differences in macroinvertebrate assemblages between islands. Links between environmental factors distributed over different spatial scales and macroinvertebrate assemblages were assessed using DISTLM, a linear model for distance-based multivariate analysis and partial redundancy analysis (pRDA). Latitude and island age complex largely explained macroinvertebrate composition at the regional scale, while drivers of change at the local scale were land use, temperature, conductivity and nutrient levels. Flow variation was identifed as the principal factor driving temporal change in macroinvertebrate community patterns. The results of this study provide support for current and future stream ecosystem research and baseline information for developing integrated freshwater management strategies for streams on the Azorean archipelago.
机译:在马卡罗尼西亚火山岛上的淡水系统和占领它们的大型无脊椎动物群落与欧洲大陆系统有很大不同。这是由于它们的地质起源,相对较小的规模,流域形态以及与潜在殖民地的距离所致。在两个季节内,在亚速尔群岛的13条河流中的23个地点对底栖大型无脊椎动物种群的时空分布格局进行了评估。 ANOSIM结果表明,岛屿之间大型无脊椎动物组合的时空差异很大。使用DISTLM(基于距离的多元分析和部分冗余分析(pRDA)的线性模型)评估了分布在不同空间尺度上的环境因素与大型无脊椎动物集合之间的联系。纬度和岛屿年龄复合体在很大程度上解释了区域尺度上的大型无脊椎动物组成,而局部尺度上变化的驱动因素是土地利用,温度,电导率和营养水平。流量变化被确定为驱动大型无脊椎动物群落模式时间变化的主要因素。这项研究的结果为当前和将来的溪流生态系统研究提供了支持,并为开发亚速尔群岛溪流的综合淡水管理策略提供了基准信息。

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