Animal Ecology and Tropical Biology, University of Würzburg , Würzburg, Germany.
Department of Chemical Ecology, Plant Protection Institute, Centre of Agricultural Research, HUN-REN , Budapest, Hungary.
Proc Biol Sci. 2024 Aug;291(2029):20240352. doi: 10.1098/rspb.2024.0352. Epub 2024 Aug 28.
Global climate change disrupts key ecological processes and biotic interactions. The recent increase in heatwave frequency and severity prompts the evaluation of physiological processes that ensure the maintenance of vital ecosystem services such as pollination. We used experimental heatwaves to determine how high temperatures affect the bumblebees' ability to detect floral scents. Heatwaves induced strong reductions in antennal responses to floral scents in both tested bumblebee species ( and ). These reductions were generally stronger in workers than in males. Bumblebees showed no consistent pattern of recovery 24 h after heat events. Our results suggest that the projected increased frequency and severity of heatwaves may jeopardize bumblebee-mediated pollination services by disrupting the chemical communication between plants and pollinators. The reduced chemosensitivity can decrease the bumblebees' abilities to locate food sources and lead to declines in colonies and populations.
全球气候变化扰乱了关键的生态过程和生物相互作用。最近热浪频率和强度的增加促使人们评估那些确保传粉等重要生态系统服务得以维持的生理过程。我们使用实验性热浪来确定高温如何影响熊蜂探测花香的能力。热浪导致两种测试的熊蜂物种( Bombus terrestris 和 Bombus impatiens )的触角对花香的反应明显减弱。在工蜂中,这种减少通常比在雄蜂中更为强烈。在热事件发生后 24 小时,熊蜂没有表现出一致的恢复模式。我们的研究结果表明,预计热浪的频率和强度增加可能会破坏植物和传粉者之间的化学通讯,从而危及熊蜂介导的传粉服务。这种降低的化感敏感性会降低熊蜂找到食物来源的能力,并导致蜂群和种群数量下降。