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觅食距离分布揭示了蜜蜂摇摆舞招募如何随景观而变化。

Foraging distance distributions reveal how honeybee waggle dance recruitment varies with landscape.

机构信息

Department of Biological Sciences, Royal Holloway University of London, Egham, Surrey, TW20 0EX, UK.

The Alan Turing Institute, 96 Euston Road, London, NW1 2DB, UK.

出版信息

Commun Biol. 2024 Oct 11;7(1):1306. doi: 10.1038/s42003-024-06987-9.

Abstract

Honeybee (Apis mellifera) colonies use a unique collective foraging system, the waggle dance, to communicate and process the location of resources. Here, we present a means to quantify the effect of recruitment on colony forager allocation across the landscape by simply observing the waggle dance on the dancefloor. We show first, through a theoretical model, that recruitment leaves a characteristic imprint on the distance distribution of foraging sites that a colony visits, which varies according to the proportion of trips driven by individual search. Next, we fit this model to the real-world empirical distance distribution of forage sites visited by 20 honeybee colonies in urban and rural landscapes across South East England, obtained via dance decoding. We show that there is considerable variation in the use of dancing information in colony foraging, particularly in agri-rural landscapes. In our dataset, reliance on dancing increases as arable land gives way to built-up areas, suggesting that dancing may have the greatest impact on colony foraging in the complex and heterogeneous landscapes of forage-rich urban areas. Our model provides a tool to assess the relevance of this extraordinary behaviour across modern anthropogenic landscape types.

摘要

蜜蜂(Apis mellifera)群体使用独特的集体觅食系统——摇摆舞,来交流和处理资源的位置。在这里,我们通过简单地观察舞池上的摇摆舞,提出了一种量化招募对整个景观中群体觅食者分配影响的方法。我们首先通过理论模型表明,招募在一个群体访问的觅食地点的距离分布上留下了一个特征性的印记,而这种印记根据个体搜索驱动的旅行比例而有所不同。接下来,我们通过舞蹈解码,将该模型拟合到 20 个在英格兰东南部城市和农村景观中实际访问的觅食地点的真实世界经验距离分布上。我们表明,在群体觅食中,对舞蹈信息的利用存在很大的差异,特别是在农业农村景观中。在我们的数据集里,随着耕地让位于建成区,对舞蹈的依赖程度增加,这表明舞蹈可能对觅食丰富的城市地区复杂和异质景观中的群体觅食影响最大。我们的模型提供了一种工具,可用于评估这种特殊行为在现代人为景观类型中的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4be6/11470012/5946277d5c7b/42003_2024_6987_Fig1_HTML.jpg

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