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Ensuring access to high-quality resources reduces the impacts of heat stress on bees

机译:确保获得优质资源的机会减少了热应激对蜜蜂的影响

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摘要

Pollinators are experiencing declines globally, negatively affecting the reproduction of wild plants and crop production. Well-known drivers of these declines include climatic and nutritional stresses, such as a change of dietary resources due to the degradation of habitat quality. Understanding potential synergies between these two important drivers is needed to improve predictive models of the future effects of climate change on pollinator declines. Here, bumblebee colony bioassays were used to evaluate the interactive effects of heat stress, a reduction of dietary resource quality, and colony size. Using a total of 117 colonies, we applied a fully crossed experiment to test the effect of three dietary quality levels under three levels of heat stress with two colony sizes. Both nutritional and heat stress reduced colony development resulting in a lower investment in offspring production. Small colonies were much more sensitive to heat and nutritional stresses than large ones, possibly because a higher percentage of workers helps maintain social homeostasis. Strikingly, the effects of heat stress were far less pronounced for small colonies fed with suitable diets. Overall, our study suggests that landscape management actions that ensure access to high-quality resources could reduce the impacts of heat stress on bee decline.
机译:授粉媒介正在全球范围内减少,对野生植物的繁殖和农作物的产量产生了负面影响。这些下降的众所周知的驱动因素包括气候和营养压力,例如由于栖息地质量下降而引起的饮食资源变化。需要了解这两个重要驱动因素之间的潜在协同作用,以改善气候变化对传粉媒介减少的未来影响的预测模型。在这里,大黄蜂菌落生物测定法被用来评估热应激,饮食资源质量降低和菌落大小的相互作用。我们使用总共117个菌落,进行了一项完全交叉的实验,以测试在两个菌落大小的三个热应激水平下三个饮食质量水平的影响。营养和热应激都会减少菌落的发育,从而降低对后代生产的投资。小殖民地比大殖民地对热和营养压力敏感得多,这可能是因为较高比例的工人有助于维持社会动态平衡。令人惊讶的是,对于饲喂适当饮食的小菌落,热应激的影响远不那么明显。总体而言,我们的研究表明,确保获得优质资源的景观管理措施可以减少高温胁迫对蜂群下降的影响。

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