Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions
Sulfoximines, the next generation systemic insecticides developed to replace neonicotinoids, have been shown to negatively impact pollinator development and reproduction. However, field-realistic studies on sulfoximines are few and consequences on pollination services unexplored. Moreover, the impac...
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doaj-701b5c1fb1bd4d97932f3d0299eee9692021-10-01T04:46:28ZengElsevierEnvironment International0160-41202021-12-01157106813Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditionsGiovanni Tamburini0Maria-Helena Pereira-Peixoto1Jonas Borth2Simon Lotz3Dimitry Wintermantel4Matthew J. Allan5Robin Dean6Janine Melanie Schwarz7Anina Knauer8Matthias Albrecht9Alexandra‑Maria Klein10University of Freiburg, Nature Conservation and Landscape Ecology, Freiburg, Germany; University of Bari, Department of Soil, Plant and Food Sciences (DiSSPA – Entomology), Bari, Italy; Corresponding author at: University of Bari, Department of Soil, Plant and Food Sciences (DiSSPA – Entomology), Bari, Italy.University of Freiburg, Nature Conservation and Landscape Ecology, Freiburg, GermanyUniversity of Freiburg, Nature Conservation and Landscape Ecology, Freiburg, GermanyUniversity of Freiburg, Nature Conservation and Landscape Ecology, Freiburg, GermanyUniversity of Freiburg, Nature Conservation and Landscape Ecology, Freiburg, GermanyAtlantic Pollination Ltd, Eastleigh, United KingdomRed Beehive Company, United KingdomAgroscope, Agroecology and Environment, Zurich, SwitzerlandAgroscope, Agroecology and Environment, Zurich, SwitzerlandAgroscope, Agroecology and Environment, Zurich, SwitzerlandUniversity of Freiburg, Nature Conservation and Landscape Ecology, Freiburg, GermanySulfoximines, the next generation systemic insecticides developed to replace neonicotinoids, have been shown to negatively impact pollinator development and reproduction. However, field-realistic studies on sulfoximines are few and consequences on pollination services unexplored. Moreover, the impacts of other agrochemicals such as fungicides, and their combined effects with insecticides remain poorly investigated. Here, we show in a full factorial semi-field experiment that spray applications of both the product Closer containing the insecticide sulfoxaflor and the product Amistar containing the fungicide azoxystrobin, negatively affected the individual foraging performance of bumblebees (Bombus terrestris). Insecticide exposure further reduced colony growth and size whereas fungicide exposure decreased pollen deposition. We found indications for resource limitation that might have exacerbated pesticide effects on bumblebee colonies. Our work demonstrates that field-realistic exposure to sulfoxaflor can adversely impact bumblebees and that applications before bloom may be insufficient as a mitigation measure to prevent its negative impacts on pollinators. Moreover, fungicide use during bloom could reduce bumblebee foraging performance and pollination services.http://www.sciencedirect.com/science/article/pii/S0160412021004384AzoxystrobinBombus terrestrisPollinatorsPesticidesSulfoxaflorSulfoximines |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Giovanni Tamburini Maria-Helena Pereira-Peixoto Jonas Borth Simon Lotz Dimitry Wintermantel Matthew J. Allan Robin Dean Janine Melanie Schwarz Anina Knauer Matthias Albrecht Alexandra‑Maria Klein |
spellingShingle |
Giovanni Tamburini Maria-Helena Pereira-Peixoto Jonas Borth Simon Lotz Dimitry Wintermantel Matthew J. Allan Robin Dean Janine Melanie Schwarz Anina Knauer Matthias Albrecht Alexandra‑Maria Klein Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions Environment International Azoxystrobin Bombus terrestris Pollinators Pesticides Sulfoxaflor Sulfoximines |
author_facet |
Giovanni Tamburini Maria-Helena Pereira-Peixoto Jonas Borth Simon Lotz Dimitry Wintermantel Matthew J. Allan Robin Dean Janine Melanie Schwarz Anina Knauer Matthias Albrecht Alexandra‑Maria Klein |
author_sort |
Giovanni Tamburini |
title |
Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions |
title_short |
Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions |
title_full |
Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions |
title_fullStr |
Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions |
title_full_unstemmed |
Fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions |
title_sort |
fungicide and insecticide exposure adversely impacts bumblebees and pollination services under semi-field conditions |
publisher |
Elsevier |
series |
Environment International |
issn |
0160-4120 |
publishDate |
2021-12-01 |
description |
Sulfoximines, the next generation systemic insecticides developed to replace neonicotinoids, have been shown to negatively impact pollinator development and reproduction. However, field-realistic studies on sulfoximines are few and consequences on pollination services unexplored. Moreover, the impacts of other agrochemicals such as fungicides, and their combined effects with insecticides remain poorly investigated. Here, we show in a full factorial semi-field experiment that spray applications of both the product Closer containing the insecticide sulfoxaflor and the product Amistar containing the fungicide azoxystrobin, negatively affected the individual foraging performance of bumblebees (Bombus terrestris). Insecticide exposure further reduced colony growth and size whereas fungicide exposure decreased pollen deposition. We found indications for resource limitation that might have exacerbated pesticide effects on bumblebee colonies. Our work demonstrates that field-realistic exposure to sulfoxaflor can adversely impact bumblebees and that applications before bloom may be insufficient as a mitigation measure to prevent its negative impacts on pollinators. Moreover, fungicide use during bloom could reduce bumblebee foraging performance and pollination services. |
topic |
Azoxystrobin Bombus terrestris Pollinators Pesticides Sulfoxaflor Sulfoximines |
url |
http://www.sciencedirect.com/science/article/pii/S0160412021004384 |
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