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Ecological filters and variability in stream macroinvertebrate communities: do taxonomic and functional structure follow the same path?

机译:河流无脊椎动物群落中的生态过滤器和变异性:分类学和功能结构是否遵循相同的路径?

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We examined the community-environment relationships of lotic macroinvertebrates in near-pristine headwater streams, and the correlation between patterns in taxonomic and functional structure at two regional extents. The across-ecoregion scale comprised five ecoregions spanning all of Finland, while the within-ecoregion scale comprised of north boreal and middle boreal ecoregions. We expected that taxonomic structure should exhibit stronger relationships than functional structure to spatial gradients, while the reverse should be true for local environmental factors. We found some support for this notion, because spatial variables were marginally more important for taxonomic than functional structure. Furthermore, within the two ecoregions, local environmental variables were slightly more important for functional than taxonomic structure. Geographical location (i.e. spatial variables) was more influential at the across-ecoregions extent than within the two ecoregions. Largely the same local environmental variables accounted for variation in both taxonomic and functional structure, including water pH, nutrients, colour, and stream size. Similar responses to local environmental features likely contributed to the significant correlation between patterns in taxonomic and functional structure. It has been suggested that functional traits may be rather insensitive to natural variation, yet our functional categorization showed distinct variation along local environmental, catchment, and spatial gradients across near-pristine streams. Thus, natural ecological filters should be accounted for prior to the examination of the effects of anthropogenic filters on stream macroinvertebrate community composition.
机译:我们研究了近原始原始水源地中大量无脊椎动物的群落-环境关系,以及两个区域范围内分类学和功能结构模式之间的相关性。整个生态区范围包括横跨整个芬兰的五个生态区,而内部生态区范围包括北北方和中北方生态区。我们预计,分类学结构应显示出比功能结构与空间梯度更强的关系,而对于局部环境因素则应相反。我们发现了对该概念的某种支持,因为空间变量对于分类学而言比功能结构更为重要。此外,在两个生态区域内,局部环境变量对于功能而言比分类结构更为重要。地理位置(即空间变量)在整个生态区域范围内的影响要大于在两个生态区域内的影响。大致相同的局部环境变量可解释生物分类和功能结构的变化,包括水的pH值,养分,颜色和河流大小。对当地环境特征的类似反应可能导致生物分类和功能结构模式之间的显着相关。有人提出,功能性状可能对自然变化不敏感,但是我们的功能分类显示出沿近原始流的局部环境,集水区和空间梯度的明显变化。因此,在检查人为过滤器对河流无脊椎动物群落组成的影响之前,应考虑使用天然生态过滤器。

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