Department of Animal Ecology and Tropical Biology, Biocenter, Julius-Maximilians-University Würzburg, Würzburg, Germany.
Field Station Fabrikschleichach, Department of Animal Ecology and Tropical Biology, Julius-Maximilians-University Würzburg, Würzburg, Germany.
Sci Adv. 2022 May 6;8(18):eabm9359. doi: 10.1126/sciadv.abm9359.
Changes in climate and land use are major threats to pollinating insects, an essential functional group. Here, we unravel the largely unknown interactive effects of both threats on seven pollinator taxa using a multiscale space-for-time approach across large climate and land-use gradients in a temperate region. Pollinator community composition, regional gamma diversity, and community dissimilarity (beta diversity) of pollinator taxa were shaped by climate-land-use interactions, while local alpha diversity was solely explained by their additive effects. Pollinator diversity increased with reduced land-use intensity (forest < grassland < arable land < urban) and high flowering-plant diversity at different spatial scales, and higher temperatures homogenized pollinator communities across regions. Our study reveals declines in pollinator diversity with land-use intensity at multiple spatial scales and regional community homogenization in warmer and drier climates. Management options at several scales are highlighted to mitigate impacts of climate change on pollinators and their ecosystem services.
气候变化和土地利用的变化是授粉昆虫这一重要功能类群的主要威胁。在这里,我们利用多尺度的时空替代方法,在温带地区跨越大的气候和土地利用梯度,揭示了这两种威胁对 7 种传粉媒介类群的相互作用的影响。授粉昆虫群落组成、区域伽马多样性和传粉者类群的群落差异(β多样性)受气候-土地利用相互作用的影响,而本地α多样性仅由它们的加性效应解释。在不同的空间尺度上,随着土地利用强度的降低(森林<草地<耕地<城市)和开花植物多样性的增加,授粉者多样性增加,而高温使区域间的授粉者群落同质化。我们的研究揭示了在多个空间尺度上,随着土地利用强度的增加,授粉者多样性下降,以及在更温暖和更干燥的气候条件下,区域群落同质化。我们强调了在多个尺度上的管理选择,以减轻气候变化对授粉者及其生态系统服务的影响。