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Pollinator decline has attracted global attention and substantial efforts are underway to respond through national pollinator strategies and action plans. These policy responses require clarity on what is driving pollinator decline and what risks it generates for society in different parts of the world. Using a formal expert elicitation process, we evaluated the relative regional and global importance of eight drivers of pollinator decline and ten consequent risks to human well-being. Our results indicate that global policy responses should focus on reducing pressure from changes in land cover and configuration, land management and pesticides, as these were considered very important drivers in most regions. We quantify how the importance of drivers and risks from pollinator decline, differ among regions. For example, losing access to managed pollinators was considered a serious risk only for people in North America, whereas yield instability in pollinator-dependent crops was classed as a serious or high risk in four regions but only a moderate risk in Europe and North America. Overall, perceived risks were substantially higher in the Global South. Despite extensive research on pollinator decline, our analysis reveals considerable scientific uncertainty about what this means for human society.
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http://dx.doi.org/10.1038/s41559-021-01534-9 | DOI Listing |
Sci Total Environ
September 2025
Center for Climate and Carbon Cycle Research, Korea Institute of Science and Technology (KIST), Seoul 02792, Republic of Korea; Division of Energy & Environment Technology, KIST School, University of Science and Technology, Seoul 02792, Republic of Korea. Electronic address:
Neonicotinoid insecticides have been identified as significant contributors to the decline of pollinators. To evaluate potential exposure of pollinators to neonicotinoids in South Korea, 79 honey samples and 27 pollen samples were obtained from agricultural, mountain, and urban areas. These samples were analyzed for 17 compounds, including neonicotinoids and their metabolites using liquid chromatography coupled with mass spectrometry.
View Article and Find Full Text PDFEcology
September 2025
Department of Biology, University of North Carolina, Chapel Hill, North Carolina, USA.
Widespread declines in the abundance of insects portend ill-fated futures for their host ecosystems, all of which require their services to function. For many such reports, human activities have directly altered the land or water of these ecosystems, raising questions about how insects in less impacted environments are faring. I quantified the abundance of flying insects during 15 seasons spanning 2004-2024 on a relatively unscathed, subalpine meadow in Colorado, where weather data have been recorded for 38 years.
View Article and Find Full Text PDFEcology
September 2025
School of Agriculture Biomedicine and Environment, La Trobe University, Bundoora, Victoria, Australia.
Climate change threatens biodiversity and ecosystem services around the globe. Despite the importance of native bees as pollinators, there is evidence of global declines, and we know very little about how climate shapes their distributions now and into the future. In the current study, we combined large-scale seasonal field sampling and experimental acclimation to examine whether populations of an Australian bee, Exoneura robusta, vary in their capacity to adapt to different climates.
View Article and Find Full Text PDFBiology (Basel)
August 2025
College of Animal Science and Technology, Yangzhou University, 88 South University Rd, Yangzhou 225009, China.
Honeybees () are indispensable pollinators vital to global biodiversity, ecosystem stability, and agricultural productivity, and they promote over 35% of food crops and 75% of flowering plants. Yet, they are in unprecedented decline, partly as a result of neonicotinoid pesticide use elsewhere. These effects on honey bee health are synthesized in this paper through molecular, physiological, and behavioral data showing that sublethal effects of neonicotinoids impair honey bee health.
View Article and Find Full Text PDFJ Agric Food Chem
September 2025
Shandong Key Laboratory for Green Prevention and Control of Agricultural Pests, Key Laboratory of Biological Control of Pests, Ministry of Agriculture and Rural Affairs, Institute of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan 250100, China.
Solitary bees face overlooked herbicide risks. , a key early spring solitary bee, is especially vulnerable during soil-contact nesting, which coincides with peak herbicide use. We evaluated sublethal effects of glufosinate-P on .
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