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Do spiders respond to global change? A study on the phenology of ballooning spiders in Switzerland

机译:蜘蛛会回应全球变化吗?瑞士膨胀气球的物候研究

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We studied ballooning spiders captured weekly over an 11-y period using a 12.2-m-high suction trap in an agricultural landscape of western Switzerland. We analyzed population trends, changes in phenology, and species composition. Yearly trends in population size of the most abundant species were studied with nonparametric correlations. We found that these trends were markedly different for ground-living (92% of all decreasing species) and upper-strata species (75% of all increasing species). These contrasting tendencies can be explained by a stronger effect of meteorological conditions on species living at ground level and by an observed decrease in habitat availability for open-habitat species. The phenology of ballooning spiders was analyzed using mixtures of Gaussian curves fitted to the yearly capture data; this was possible for the 7 most abundant species. From these, we estimated the dates of the ballooning peaks for each species and each year (1 to 4 peaks depending on the species). We found that the dates remained mostly constant: the timing of dispersal peaks showed no annual trend for all but 1 species. Using nonparametric correlation, we analyzed the relationships between the dates of the peaks and the meteorological parameters occurring before the peak dates. In line with the absence of trend, the dates of the peaks were only weakly related to meteorological conditions. The extreme climatic event of 2003 had a strong impact by reducing populations of ground-living species. Using Canonical Correspondence Analysis and clustering methods, we identified a strong shift in the phenological structure of the ballooning spider assemblage in that year. In all, despite noticeable trends in population size during the study period, the dispersal phenology did not change, which contrasts with observations from other arthropod groups.
机译:我们研究了在瑞士西部的农业景观中使用12.2米高的吸水弯管在11年内每周捕获的气球蜘蛛。我们分析了人口趋势,物候变化和物种组成。通过非参数相关性研究了最丰富物种的种群规模的年度趋势。我们发现,对于地面生活(所有下降物种的92%)和上地层物种(所有增长物种的75%),这些趋势明显不同。这些相反的趋势可以解释为气象条件对生活在地面上的物种产生了更大的影响,并且观察到开放栖息地物种的栖息地可利用性下降。使用拟合到年度捕获数据的高斯曲线的混合物来分析膨胀的蜘蛛的物候。这对于7个最丰富的物种是可能的。通过这些,我们估计了每个物种和每年的膨胀高峰的日期(取决于物种的1-4个高峰)。我们发现日期基本保持不变:除了1个物种外,其他所有物种的传播高峰时间均未显示年度趋势。使用非参数相关性,我们分析了峰日期与峰日期之前发生的气象参数之间的关系。与没有趋势一致,峰的日期与气象条件之间的关系很小。 2003年的极端气候事件通过减少地面生活物种的数量而产生了巨大影响。使用典范对应分析和聚类方法,我们确定了在那一年膨胀的蜘蛛组件的物候结构发生了重大变化。总体而言,尽管在研究期间人口规模出现了明显的趋势,但散布物候学并未改变,这与其他节肢动物群体的观察结果相反。

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