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蜜蜂的觅食范围及其与体型的关系。

Bee foraging ranges and their relationship to body size.

作者信息

Greenleaf Sarah S, Williams Neal M, Winfree Rachael, Kremen Claire

机构信息

Department of Plant Pathology, University of California, One Shields Avenue, Davis, CA 95616, USA.

出版信息

Oecologia. 2007 Sep;153(3):589-96. doi: 10.1007/s00442-007-0752-9. Epub 2007 May 5.

Abstract

Bees are the most important pollinator taxon; therefore, understanding the scale at which they forage has important ecological implications and conservation applications. The foraging ranges for most bee species are unknown. Foraging distance information is critical for understanding the scale at which bee populations respond to the landscape, assessing the role of bee pollinators in affecting plant population structure, planning conservation strategies for plants, and designing bee habitat refugia that maintain pollination function for wild and crop plants. We used data from 96 records of 62 bee species to determine whether body size predicts foraging distance. We regressed maximum and typical foraging distances on body size and found highly significant and explanatory nonlinear relationships. We used a second data set to: (1) compare observed reports of foraging distance to the distances predicted by our regression equations and (2) assess the biases inherent to the different techniques that have been used to assess foraging distance. The equations we present can be used to predict foraging distances for many bee species, based on a simple measurement of body size.

摘要

蜜蜂是最重要的传粉类群;因此,了解它们的觅食范围具有重要的生态意义和保护应用价值。大多数蜜蜂物种的觅食范围尚不清楚。觅食距离信息对于理解蜜蜂种群对景观的响应尺度、评估蜜蜂传粉者在影响植物种群结构中的作用、规划植物保护策略以及设计能维持野生植物和农作物授粉功能的蜜蜂栖息地避难所至关重要。我们利用62种蜜蜂的96条记录数据来确定体型是否能预测觅食距离。我们将最大觅食距离和典型觅食距离对体型进行回归分析,发现了高度显著且具有解释力的非线性关系。我们使用第二个数据集来:(1)将观察到的觅食距离报告与我们回归方程预测的距离进行比较,以及(2)评估用于评估觅食距离的不同技术所固有的偏差。我们给出的方程可用于根据简单的体型测量来预测许多蜜蜂物种的觅食距离。

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