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Birds and plants as indicators of arthropod species richness in temperate farmland

机译:鸟类和植物是温带农田节肢动物物种丰富度的指标

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摘要

Agricultural intensification has led to severe declines in biodiversity. Arthropods in particular have suffered from agricultural intensification but are rarely incorporated in large-scale biodiversity monitoring. Instead, a few established indicator taxa such as birds or plants are often used as a cost-and time-efficient assessment of overall biodiversity. However, recent studies provide varying results regarding correlations between these indicators and other taxa. The strong variability in cross-taxa relationships has been attributed to the spatial scale of the analyses, the studied habitat types, and the trophic interactions between taxa.Here, we studied cross-taxa relationships of birds, spiders, butterflies and moths, leaf-and plant-hoppers, and plants across different spatial scales in 21 landscapes. We first compared species richness of birds with the species richness of different arthropod taxa and plants at the landscape scale. In addition, we compared the species richness of plants with the species richness of the different arthropod taxa at the landscape and the plot scale. Therefore, we distinguished between three different habitat types and between trophic interactions of varying degrees of specialization.Positive relationships between the studied taxa were scarce and depended on the spatial scale of the analysis. Spiders were the only taxon that was positively related to the species richness of birds. At the plot scale, the species richness of plants was positively related to all studied arthropod taxa across different habitat types. Relationships between adjacent trophic levels and those with a high degree of specialization were stronger compared to less specialized species, with some exceptions.Given the inconsistency of positive cross-taxa relationships, we suggest that the use of indicator taxa involves a high degree of uncertainty concerning predictions on the species richness of arthropods. We therefore encourage conservationists to incorporate multiple arthropod taxa in large-scale monitoring in order to achieve a more comprehensive and reliable measurement of biodiversity.
机译:农业集约化导致生物多样性严重下降。节肢动物尤其受到农业集约化的影响,但很少被纳入大规模生物多样性监测中。取而代之的是,通常使用一些已建立的指标分类单元(例如鸟类或植物)作为整体生物多样性的成本和时间效率评估。但是,最近的研究提供了有关这些指标与其他分类单元之间相关性的不同结果。跨类群关系的强变异性归因于分析的空间尺度,研究的栖息地类型以及类群之间的营养相互作用。在这里,我们研究了鸟类,蜘蛛,蝴蝶和飞蛾,叶-和跳跃者,以及21种景观中不同空间比例的植物。我们首先在景观尺度上比较了鸟类的物种丰富度与不同节肢动物类群和植物的物种丰富度。此外,我们在景观和样地尺度上将植物的物种丰富度与不同节肢动物类群的物种丰富度进行了比较。因此,我们区分了三种不同的生境类型以及不同专业化程度的营养相互作用之间的关系。研究的类群之间的正相关关系很少,并且取决于分析的空间规模。蜘蛛是唯一与鸟类物种丰富度正相关的分类单元。在样地尺度上,植物的物种丰富度与不同生境类型下所有研究的节肢动物类群正相关。与少数专业化物种相比,相邻营养级别与高度专业化物种之间的关系更强,但有一些例外。鉴于正十字单元分类关系的不一致,我们建议使用指示性分类单元涉及以下高度不确定性关于节肢动物物种丰富度的预测。因此,我们鼓励保护主义者将多种节肢动物类群纳入大规模监测,以实现对生物多样性的更全面和可靠的测量。

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