首页> 美国卫生研究院文献>PLoS Clinical Trials >The Potential Influence of Bumble Bee Visitation on Foraging Behaviors and Assemblages of Honey Bees on Squash Flowers in Highland Agricultural Ecosystems
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The Potential Influence of Bumble Bee Visitation on Foraging Behaviors and Assemblages of Honey Bees on Squash Flowers in Highland Agricultural Ecosystems

机译:大黄蜂来访对高原农业生态系统中南瓜对南瓜花觅食行为和组合的潜在影响

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摘要

Bee species interactions can benefit plant pollination through synergistic effects and complementary effects, or can be of detriment to plant pollination through competition effects by reducing visitation by effective pollinators. Since specific bee interactions influence the foraging performance of bees on flowers, they also act as drivers to regulate the assemblage of flower visitors. We selected squash (Cucurbita pepo L.) and its pollinators as a model system to study the foraging response of honey bees to the occurrence of bumble bees at two types of sites surrounded by a high amount of natural habitats (≥ 58% of land cover) and a low amount of natural habitats (≤ 12% of land cover) in a highland agricultural ecosystem in China. At the individual level, we measured the elapsed time from the departure of prior pollinator(s) to the arrival of another pollinator, the selection of honey bees for flowers occupied by bumble bees, and the length of time used by honey bees to explore floral resources at the two types of sites. At the community level, we explored the effect of bumble bee visitation on the distribution patterns of honey bees on squash flowers. Conclusively, bumble bee visitation caused an increase in elapsed time before flowers were visited again by a honey bee, a behavioral avoidance by a newly-arriving honey bee to select flowers occupied by bumble bees, and a shortened length of time the honey bee takes to examine and collect floral resources. The number of overall bumble bees on squash flowers was the most important factor explaining the difference in the distribution patterns of honey bees at the community level. Furthermore, decline in the number of overall bumble bees on the squash flowers resulted in an increase in the number of overall honey bees. Therefore, our study suggests that bee interactions provide an opportunity to enhance the resilience of ecosystem pollination services against the decline in pollinator diversity.
机译:蜜蜂之间的相互作用可以通过协同效应和互补效应使植物授粉受益,或者可以通过减少有效授粉者的访问而通过竞争效应而损害植物授粉。由于特定的蜜蜂相互作用会影响蜜蜂在花朵上的觅食性能,因此它们还可以充当驱动程序来调节花朵访客的集合。我们选择南瓜(Cucurbita pepo L.)及其传粉媒介作为模型系统,以研究蜜蜂对在大量自然栖息地(≥58%的土地被包围)的两种类型的地点发生的大黄蜂的觅食响应)和中国高原农业生态系统中的自然栖息地数量少(≤土地覆盖率的12%)。在个体层面上,我们测量了从前一个授粉媒介离开到另一个授粉媒介到来的时间,为蜜蜂所占的花朵选择蜜蜂的时间,以及蜜蜂探索花的时间。两种类型的网站上的资源。在社区一级,我们探讨了大黄蜂探访对蜜蜂在南瓜花上的分布模式的影响。总之,大黄蜂的探访导致蜜蜂再次造访花所花费的时间增加,新来的蜜蜂选择大黄蜂所占花朵的行为避免,并且蜜蜂花费的时间缩短了。检查并收集花卉资源。南瓜上大黄蜂的总数是解释蜜蜂在社区一级分布模式差异的最重要因素。此外,南瓜花上大黄蜂的总数减少导致蜜蜂总数的增加。因此,我们的研究表明,蜜蜂的相互作用提供了一个机会,可以增强生态系统的授粉服务的抵抗力,以防止传粉媒介多样性的下降。

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