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大黄蜂对模拟降雨的行为反应。

The behavioural responses of bumblebees to simulated rain.

作者信息

Reeves Laura A, Jarvis Ellie M, Lawson David A, Rands Sean A

机构信息

School of Biological Science, University of Bristol, Bristol BS8 1TQ, UK.

Centre for Agri-Environmental Research, School of Agriculture, Policy and Development, University of Reading, Reading RG6 6AJ, UK.

出版信息

R Soc Open Sci. 2024 May 29;11(5):231882. doi: 10.1098/rsos.231882. eCollection 2024 May.

Abstract

Bumblebee activity typically decreases during rainfall, putting them under the threat of the increased frequency of precipitation due to climate change. A novel rain machine was used within a flight arena to observe the behavioural responses of bumblebees () to simulated rain at both a colony and individual level. During rainfall, a greater proportion of workers left the arena than entered, the opposite of which was seen during dry periods, implying that they compensate for their lack of activity when conditions improve. The proportion of workers flying and foraging decreased while resting increased in rain. This pattern reversed during dry periods, providing further evidence for compensatory activity. The increase in resting behaviour during rain is thought to evade the high energetic costs of flying while wet without unnecessarily returning to the nest. This effect was not repeated in individual time budgets, measured with lone workers, suggesting that the presence of conspecifics accelerates the decision of their behavioural response, perhaps via local enhancement. Bumblebees probably use social cues to strategize their energetic expenditure during precipitation, allowing them to compensate for the reduced foraging activity during rainfall when conditions improve.

摘要

在降雨期间,大黄蜂的活动通常会减少,这使它们面临因气候变化导致降水频率增加的威胁。在飞行场地内使用了一种新型降雨装置,以在群体和个体层面观察大黄蜂对模拟降雨的行为反应。在降雨期间,离开场地的工蜂比例高于进入场地的,而在干旱时期则相反,这意味着它们在条件改善时会弥补活动不足的情况。降雨时,飞行和觅食的工蜂比例下降,休息的比例增加。这种模式在干旱时期则相反,为补偿性活动提供了进一步证据。降雨期间休息行为的增加被认为是为了避免在潮湿时飞行的高能量消耗,而不必不必要地返回蜂巢。在对单独工蜂测量的个体时间分配中,这种效应没有重现,这表明同种个体的存在可能通过局部增强加速了它们行为反应的决策。大黄蜂可能利用社会线索来规划它们在降水期间的能量消耗,以便在条件改善时弥补降雨期间觅食活动的减少。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7abb/11285764/2adf6f511d5b/rsos.231882.f001.jpg

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