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Reconciling laboratory and field assessments of neonicotinoid toxicity to honeybees. | LitMetric

Reconciling laboratory and field assessments of neonicotinoid toxicity to honeybees.

Proc Biol Sci

Centre d'Etudes Biologiques de Chizé, UMR 7372, CNRS and Université de La Rochelle, 79360 Beauvoir-sur-Niort, France LTER 'Zone Atelier Plaine and Val de Sèvre', Centre d'Etudes Biologiques de Chizé, CNRS, 79360 Villiers-en-Bois, France.

Published: November 2015

European governments have banned the use of three common neonicotinoid pesticides due to insufficiently identified risks to bees. This policy decision is controversial given the absence of clear consistency between toxicity assessments of those substances in the laboratory and in the field. Although laboratory trials report deleterious effects in honeybees at trace levels, field surveys reveal no decrease in the performance of honeybee colonies in the vicinity of treated fields. Here we provide the missing link, showing that individual honeybees near thiamethoxam-treated fields do indeed disappear at a faster rate, but the impact of this is buffered by the colonies' demographic regulation response. Although we could ascertain the exposure pathway of thiamethoxam residues from treated flowers to honeybee dietary nectar, we uncovered an unexpected pervasive co-occurrence of similar concentrations of imidacloprid, another neonicotinoid normally restricted to non-entomophilous crops in the study country. Thus, its origin and transfer pathways through the succession of annual crops need be elucidated to conveniently appraise the risks of combined neonicotinoid exposures. This study reconciles the conflicting laboratory and field toxicity assessments of neonicotinoids on honeybees and further highlights the difficulty in actually detecting non-intentional effects on the field through conventional risk assessment methods.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4685821PMC
http://dx.doi.org/10.1098/rspb.2015.2110DOI Listing

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