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Species Richness-Environment Relationships of European Arthropods at Two Spatial Grains: Habitats and Countries

机译:欧洲节肢动物在两个空间谷物物种丰富度环境的关系:栖息地和国家

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摘要

We study how species richness of arthropods relates to theories concerning net primary productivity, ambient energy, water-energy dynamics and spatial environmental heterogeneity. We use two datasets of arthropod richness with similar spatial extents (Scandinavia to Mediterranean), but contrasting spatial grain (local habitat and country). Samples of ground-dwelling spiders, beetles, bugs and ants were collected from 32 paired habitats at 16 locations across Europe. Species richness of these taxonomic groups was also determined for 25 European countries based on the Fauna Europaea database. We tested effects of net primary productivity (NPP), annual mean temperature (T), annual rainfall (R) and potential evapotranspiration of the coldest month (PETmin) on species richness and turnover. Spatial environmental heterogeneity within countries was considered by including the ranges of NPP, T, R and PETmin. At the local habitat grain, relationships between species richness and environmental variables differed strongly between taxa and trophic groups. However, species turnover across locations was strongly correlated with differences in T. At the country grain, species richness was significantly correlated with environmental variables from all four theories. In particular, species richness within countries increased strongly with spatial heterogeneity in T. The importance of spatial heterogeneity in T for both species turnover across locations and for species richness within countries suggests that the temperature niche is an important determinant of arthropod diversity. We suggest that, unless climatic heterogeneity is constant across sampling units, coarse-grained studies should always account for environmental heterogeneity as a predictor of arthropod species richness, just as studies with variable area of sampling units routinely consider area.
机译:我们研究节肢动物的物种丰富度如何与有关净初级生产力,环境能量,水能动力学和空间环境异质性的理论相关。我们使用两个节肢动物丰富度数据集,它们具有相似的空间范围(从斯堪的纳维亚到地中海),但具有相反的空间粒度(本地生境和国家)。从欧洲16个地点的32个成对栖息地中收集了地下蜘蛛,甲虫,虫子和蚂蚁的样本。还根据欧洲动物区系数据库确定了25个欧洲国家的这些生物分类群的物种丰富度。我们测试了净初级生产力(NPP),年平均温度(T),年降雨量(R)和最冷月份的潜在蒸散量(PETmin)对物种丰富度和周转率的影响。通过包括NPP,T,R和PETmin的范围来考虑国家内部空间环境的异质性。在当地栖息地的谷物中,物种和营养类之间物种丰富度与环境变量之间的关系差异很大。但是,跨地区的物种更新与T的差异密切相关。在该国家的谷物上,物种丰富度与所有四个理论的环境变量都具有显着的关联。特别是,随着T的空间异质性,国家内部的物种丰富度急剧增加。T的空间异质性对于跨区域的物种周转和国家内部的物种丰富性的重要性表明,温度生态位是节肢动物多样性的重要决定因素。我们建议,除非跨采样单位的气候异质性是恒定的,否则粗粒度研究应始终将环境异质性视为节肢动物物种丰富度的预测指标,就像采样单位的面积可变的研究通常会考虑面积一样。

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