Sulfoxaflor exposure reduces bumblebee reproductive success.

Siviter, Harry; Brown, Mark J F; Leadbeater, Ellouise · Nature · 2018

basic_science · Level V

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Abstract

Intensive agriculture currently relies on pesticides to maximize crop yield<sup>1,2</sup>. Neonicotinoids are the most widely used insecticides globally<sup>3</sup>, but increasing evidence of negative impacts on important pollinators<sup>4-9</sup> and other non-target organisms<sup>10</sup> has led to legislative reassessment and created demand for the development of alternative products. Sulfoximine-based insecticides are the most likely successor<sup>11</sup>, and are either licensed for use or under consideration for licensing in several worldwide markets<sup>3</sup>, including within the European Union<sup>12</sup>, where certain neonicotinoids (imidacloprid, clothianidin and thiamethoxam) are now banned from agricultural use outside of permanent greenhouse structures. There is an urgent need to pre-emptively evaluate the potential sub-lethal effects of sulfoximine-based pesticides on pollinators<sup>11</sup>, because such effects are rarely detected by standard ecotoxicological assessments, but can have major impacts at larger ecological scales<sup>13-15</sup>. Here we show that chronic exposure to the sulfoximine-based insecticide sulfoxaflor, at dosages consistent with potential post-spray field exposure, has severe sub-lethal effects on bumblebee (Bombus terrestris) colonies. Field-based colonies that were exposed to sulfoxaflor during the early growth phase produced significantly fewer workers than unexposed controls, and ultimately produced fewer reproductive offspring. Differences between the life-history trajectories of treated and control colonies first became apparent when individuals exposed as larvae began to emerge, suggesting that direct or indirect effects on a small cohort may have cumulative long-term consequences for colony fitness. Our results caution against the use of sulfoximines as a direct replacement for neonicotinoids. To avoid continuing cycles of novel pesticide release and removal, with concomitant impacts on the environment, a broad evidence base needs to be assessed prior to the development of policy and regulation.

Medical subject headings