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Long-term effects of global change on occupancy and flight period of wild bees in Belgium

机译:相比之下,全球变革对野生蜜蜂占用和飞行期的长期影响

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摘要

Global change affects species by modifying their abundance, spatial distribution, and activity period. The challenge is now to identify the respective drivers of those responses and to understand how those responses combine to affect species assemblages and ecosystem functioning. Here we correlate changes in occupancy and mean flight date of 205 wild bee species in Belgium with temporal changes in temperature trend and interannual variation, agricultural intensification, and urbanization. Over the last 70 years, bee occupancy decreased on average by 33%, most likely because of agricultural intensification, and flight period of bees advanced on average by 4 days, most likely because of interannual temperature changes. Those responses resulted in a synergistic effect because species which increased in occupancy tend to be those that have shifted their phenologies earlier in the season. This leads to an overall advancement and shortening of the pollination season by 9 and 15 days respectively, with lower species richness and abundance compared to historical pollinator assemblages, except at the early start of the season. Our results thus suggest a strong decline in pollination function and services.
机译:全球变化通过修改其丰富,空间分布和活动期限来影响物种。挑战现已识别这些反应的各自驱动因素,并了解这些反应如何影响物种组合和生态系统功能。在这里,我们将比利时205种野生蜜蜂种类的占用和平均航班日期的变化与温度趋势和年间变异,农业强化和城市化的时间变化相关。在过去的70年中,蜜蜂的入住平均下降了33%,最有可能因农业强化,平均前进的蜜蜂的飞行时期,最有可能因年间温度变化而达到4天。这些反应导致了协同效应,因为占用中增加的物种往往是在本赛季早期改变其卓越的种类。除了季节早期开始,这分别导致9和15天的整体进步和缩短了授粉季节,分别为9和15天,与历史粉碎机组合相比,较低的物种丰富性和丰富。因此,我们的结果表明授粉功能和服务的强劲下降。

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