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土地利用相关压力源相互作用,降低了个体和群体水平的熊蜂健康。

Land-use-associated stressors interact to reduce bumblebee health at the individual and colony level.

机构信息

Institute of Evolutionary Ecology and Conservation Genomics, Ulm University, Albert-Einstein-Allee 11, 89081 Ulm, Germany.

Plant-Insect-Interactions, Research Department Life Science Systems, Technical University of Munich, Hans-Carl-von-Carlowitz-Platz 2, 85354 Freising, Germany.

出版信息

Proc Biol Sci. 2023 Oct 11;290(2008):20231322. doi: 10.1098/rspb.2023.1322.

Abstract

In agricultural landscapes, bees face a variety of stressors, including insecticides and poor-quality food. Although both stressors individually have been shown to affect bumblebee health negatively, few studies have focused on stressor interactions, a scenario expected in intensively used agricultural landscapes. Using the bumblebee , a key pollinator in agricultural landscapes, we conducted a fully factorial laboratory experiment starting at nest initiation. We assessed the effects of food quality and insecticides, alone and in interaction, on health traits at various levels, some of which have been rarely studied. Pollen with a diluted nutrient content (low quality) reduced ovary size and delayed colony development. Wing asymmetry, indicating developmental stress, was increased during insecticide exposure and interactions with poor food, whereas both stressors reduced body size. Both stressors and their interaction changed the workers' chemical profile and reduced worker interactions and the immune response. Our findings suggest that insecticides combined with nutritional stress reduce bumblebee health at the individual and colony levels, thus possibly affecting colony performance, such as development and reproduction, and the stability of plant-pollinator networks. The synergistic effects highlight the need of combining stressors in risk assessments and when studying the complex effects of anthropogenic stressors on health outcomes.

摘要

在农业景观中,蜜蜂面临着多种压力源,包括杀虫剂和低质量的食物。尽管单独的压力源已经被证明会对熊蜂的健康产生负面影响,但很少有研究关注压力源的相互作用,而这种相互作用在集约化使用的农业景观中是预期会发生的。本研究使用了熊蜂,一种农业景观中的关键传粉媒介,从巢起始时开始进行了一项完全因子的实验室实验。我们评估了食物质量和杀虫剂单独以及相互作用对各种健康特征的影响,其中一些特征很少被研究过。营养成分稀释的花粉(低质量)会降低卵巢大小并延迟群体发育。在接触杀虫剂和与低质量食物相互作用时,翅膀不对称性增加,表明发育压力增加,而这两种压力源都会降低体型。这两种压力源及其相互作用改变了工蜂的化学特征,减少了工蜂之间的相互作用和免疫反应。我们的研究结果表明,杀虫剂与营养压力相结合会降低个体和群体水平的熊蜂健康,从而可能影响群体的表现,如发育和繁殖,以及植物-传粉媒介网络的稳定性。协同作用强调了在风险评估和研究人为压力源对健康结果的复杂影响时,需要综合考虑压力源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3362/10565366/db6e038380fa/rspb20231322f01.jpg

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