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首页> 外文期刊>Oecologia >Spatial and environmental factors contributing to patterns in arboreal and terrestrial oribatid mite diversity across spatial scales.
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Spatial and environmental factors contributing to patterns in arboreal and terrestrial oribatid mite diversity across spatial scales.

机译:跨空间尺度的树栖和陆生oribatid螨多样性格局的空间和环境因素。

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Understanding the conditions under which species traits, species-environment relationships, and the spatial structure of the landscape interact to shape local communities requires quantifying the relative contributions of space and the environment on community composition. Using analogous sampling of arboreal and terrestrial oribatid mite communities across a large spatial scale in a temperate rainforest, we quantified the variation in oribatid mite community structure relating to environmental and spatial factors, and tested whether terrestrial and arboreal communities demonstrated a difference in their patterns of community composition based on the assumption of differences in dispersal potential. The expectation that terrestrial oribatid mite communities are spatially structured while arboreal communities are environmentally structured was supported by our analyses at the level of variation in beta diversity, but not by assessing beta diversity itself. We found that terrestrial oribatid mite communities with active, cursorial dispersal demonstrate spatial constraint consistent with reduced long-distance dispersal opportunities and high environmental dissimilarity among sites. Arboreal communities, which potentially disperse long distances via passive aerial vectors, show a spatial signature associated with patterns in beta diversity and a correlation with environmental dissimilarities among sites. In the arboreal community, moisture content of the substrate, total tree height, and average sampled branch height were significant factors explaining beta diversity patterns. For ground-dwelling species, predator abundance and soil type were important local determinants of community variability. Both communities showed clear spatial structuring, suggesting that dispersal limitation continues to influence community composition across multiple forest watershed locations. Our results provide evidence of dispersal-maintained diversity patterns in response to local environmental factors in arboreal and terrestrial communities. The relative importance of stochastic dispersal assembly may be dependent on strong deterministic effects associated with micro-site and macro-site environmental variation, particularly across large spatial scales.
机译:了解物种特征,物种与环境的关系以及景观的空间结构相互作用以塑造当地社区的条件要求量化空间和环境对社区组成的相对贡献。通过对一个温带雨林中较大空间尺度上的树栖和陆生螨类螨群落进行类似采样,我们量化了与环境和空间因素有关的栖螨螨群落结构的变化,并测试了陆栖和栖栖螨类群落是否显示出其格局的差异。社区组成基于分散潜力差异的假设。我们在β多样性变化水平上的分析支持了陆生四核螨群落在空间上结构而在树栖群落在环境上结构上的期望,而不是通过评估β多样性本身来支持。我们发现,具有活动性,游标性散布的陆地原螨螨群落表现出空间约束,与减少的长距离散布机会和站点之间的高度环境差异一致。可能通过被动空中矢量分散远距离的树栖群落显示出与β多样性的模式相关的空间特征,并与站点之间的环境差异相关。在树木群落中,基质的水分含量,总树高和平均采样枝高是解释β多样性模式的重要因素。对于地上物种,捕食者的丰富度和土壤类型是群落变异性的重要本地决定因素。两个群落都显示出清晰的空间结构,这表明散布限制继续影响着多个森林流域位置的群落组成。我们的研究结果提供了树木和陆地社区对当地环境因素的响应而保持分散状态的多样性模式的证据。随机分散组装的相对重要性可能取决于与微观场所和宏观场所环境变化相关的强烈确定性效应,尤其是在较大的空间尺度上。

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