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首页> 外文期刊>Ecological indicators >Spatial factors contribute to benthic diatom structure in streams across spatial scales: Considerations for biomonitoring
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Spatial factors contribute to benthic diatom structure in streams across spatial scales: Considerations for biomonitoring

机译:空间因素在空间尺度上影响河流底栖硅藻结构:生物监测的考虑因素

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摘要

Diatoms are widely used in the biological monitoring of streams because they are strong responders to environmental change, but dispersal and spatial factors can play important and potentially confounding roles in the presence, absence, and abundance of species along with characterizing species-environment relationships. To examine how spatial factors affect diatom community structure and biomonitoring, multiple scales were sampled including the Western Allegheny Plateau (n = 58), Leading Creek watershed (n = 18), and the adjacent Shade River watershed (n = 21) in southeast Ohio. Partitioning of spatial, environmental, and spatially-structured environmental variation was conducted on diatom assemblages and on diatom metrics used in biomonitoring. At the regional scale, diatom assemblages and metrics had strong relationships with agricultural (e.g., significant correlations with nutrients, conductivity, and pasture/row crops in the watershed) and alkalinity gradients. Diatom assemblages and metrics in both watersheds were strongly associated with acid mine drainage (AMD) impacts, and when spatial factors were set as covariables in CCAs, relationships with AMD gradients became even stronger, indicating the need to consider how spatial factors could reduce the strength of diatom-environment relationships. Metrics calculated at all scales had very little variation explained exclusively by spatial factors, likely because multiple species are combined into a simplified metric that reduces the effects of species dispersal. Local environmental variables accounted for 57, 42, and 42% of the total variation explained (TVE), and spatial variables accounted for 28,31, and 37% of the TVE in the regional, Leading Creek, and Shade River datasets, respectively. The amounts of variation in diatom assemblages explained solely by spatial factors at these scales were substantial and similar to what has been reported at continental, national, and large regional (Level I Omernik ecoregions) scales (approximately 1/3 of WE). Although amounts of variation explained are similar across scales, processes underlying the spatial structure likely differ. In addition to describing ecological patterns, recognizing the potential influence of spatial factors could improve the identification and management of environmental problems at a range of scales, as well as aid in the development of new research questions and hypotheses aimed at exploring factors that could explain portions of the spatially explicit variation.
机译:硅藻被广泛用于河流生物监测,因为它们对环境变化有很强的响应能力,但是扩散和空间因素在存在,不存在和丰富的物种以及表征物种与环境之间的关系方面都可能发挥重要且潜在的混淆作用。为了研究空间因素如何影响硅藻群落结构和生物监测,对多个尺度进行了采样,包括俄亥俄东南部的西部阿勒格尼高原(n = 58),前导溪流域(n = 18)和相邻的阴影河流域(n = 21)。 。对空间,环境和空间结构化环境变化的分区是根据硅藻组合物和用于生物监测的硅藻指标进行的。在区域范围内,硅藻的组成和度量与农业(例如,与流域中养分,电导率和牧场/行作物的显着相关)和碱度梯度有很强的关系。两个流域中的硅藻组合和度量标准与酸性矿山排水(AMD)的影响密切相关,并且当在CCA中将空间因素设置为协变量时,与AMD梯度的关系变得更加强烈,这表明需要考虑空间因素如何降低强度硅藻与环境的关系。在所有尺度上计算的度量标准几乎没有用空间因素解释的差异,这很可能是因为将多种物种合并为简化的度量标准,从而减少了物种扩散的影响。在区域,Leading Creek和Shade River数据集中,局部环境变量分别占解释的总变异量(TVE)的57%,42%和42%,空间变量分别占TVE的28.31%和37%。在这些尺度上,仅由空间因素解释的硅藻集合体的变化量是巨大的,并且与大陆,国家和大型区域(Omernik一级生态区)尺度(约WE的1/3)所报道的相似。尽管所解释的变化量在各个尺度上都是相似的,但潜在的空间结构过程可能有所不同。除了描述生态模式之外,认识到空间因素的潜在影响还可以在一定范围内改善对环境问题的识别和管理,并有助于开发新的研究问题和假设,以探索可解释各部分的因素。在空间上的显着变化。

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