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In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae

Neonicotinoid and fungicide exposure has been linked to immunosuppression and increased susceptibility to disease in honeybees (Apis mellifera). European foulbrood, caused by the bacterium Melissococcus plutonius, is a disease of honeybee larvae which causes economic hardship for commercial beekeepe...

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Autores principales: Wood, Sarah C., Chalifour, Jocelyne C., Kozii, Ivanna V., Medici de Mattos, Igor, Klein, Colby D., Zabrodski, Michael W., Moshynskyy, Igor, Guarna, M. Marta, Wolf Veiga, Patricia, Epp, Tasha, Simko, Elemir
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240397/
https://www.ncbi.nlm.nih.gov/pubmed/32316434
http://dx.doi.org/10.3390/insects11040252
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author Wood, Sarah C.
Chalifour, Jocelyne C.
Kozii, Ivanna V.
Medici de Mattos, Igor
Klein, Colby D.
Zabrodski, Michael W.
Moshynskyy, Igor
Guarna, M. Marta
Wolf Veiga, Patricia
Epp, Tasha
Simko, Elemir
author_facet Wood, Sarah C.
Chalifour, Jocelyne C.
Kozii, Ivanna V.
Medici de Mattos, Igor
Klein, Colby D.
Zabrodski, Michael W.
Moshynskyy, Igor
Guarna, M. Marta
Wolf Veiga, Patricia
Epp, Tasha
Simko, Elemir
author_sort Wood, Sarah C.
collection PubMed
description Neonicotinoid and fungicide exposure has been linked to immunosuppression and increased susceptibility to disease in honeybees (Apis mellifera). European foulbrood, caused by the bacterium Melissococcus plutonius, is a disease of honeybee larvae which causes economic hardship for commercial beekeepers, in particular those whose colonies pollinate blueberries. We report for the first time in Canada, an atypical variant of M. plutonius isolated from a blueberry-pollinating colony. With this isolate, we used an in vitro larval infection system to study the effects of pesticide exposure on the development of European foulbrood disease. Pesticide doses tested were excessive (thiamethoxam and pyrimethanil) or maximal field-relevant (propiconazole and boscalid). We found that chronic exposure to the combination of thiamethoxam and propiconazole significantly decreased the survival of larvae infected with M. plutonius, while larvae chronically exposed to thiamethoxam and/or boscalid or pyrimethanil did not experience significant increases in mortality from M. plutonius infection in vitro. Based on these results, individual, calculated field-realistic residues of thiamethoxam and/or boscalid or pyrimethanil are unlikely to increase mortality from European foulbrood disease in honeybee worker brood, while the effects of field-relevant exposure to thiamethoxam and propiconazole on larval mortality from European foulbrood warrant further study.
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spelling pubmed-72403972020-06-02 In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae Wood, Sarah C. Chalifour, Jocelyne C. Kozii, Ivanna V. Medici de Mattos, Igor Klein, Colby D. Zabrodski, Michael W. Moshynskyy, Igor Guarna, M. Marta Wolf Veiga, Patricia Epp, Tasha Simko, Elemir Insects Article Neonicotinoid and fungicide exposure has been linked to immunosuppression and increased susceptibility to disease in honeybees (Apis mellifera). European foulbrood, caused by the bacterium Melissococcus plutonius, is a disease of honeybee larvae which causes economic hardship for commercial beekeepers, in particular those whose colonies pollinate blueberries. We report for the first time in Canada, an atypical variant of M. plutonius isolated from a blueberry-pollinating colony. With this isolate, we used an in vitro larval infection system to study the effects of pesticide exposure on the development of European foulbrood disease. Pesticide doses tested were excessive (thiamethoxam and pyrimethanil) or maximal field-relevant (propiconazole and boscalid). We found that chronic exposure to the combination of thiamethoxam and propiconazole significantly decreased the survival of larvae infected with M. plutonius, while larvae chronically exposed to thiamethoxam and/or boscalid or pyrimethanil did not experience significant increases in mortality from M. plutonius infection in vitro. Based on these results, individual, calculated field-realistic residues of thiamethoxam and/or boscalid or pyrimethanil are unlikely to increase mortality from European foulbrood disease in honeybee worker brood, while the effects of field-relevant exposure to thiamethoxam and propiconazole on larval mortality from European foulbrood warrant further study. MDPI 2020-04-17 /pmc/articles/PMC7240397/ /pubmed/32316434 http://dx.doi.org/10.3390/insects11040252 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wood, Sarah C.
Chalifour, Jocelyne C.
Kozii, Ivanna V.
Medici de Mattos, Igor
Klein, Colby D.
Zabrodski, Michael W.
Moshynskyy, Igor
Guarna, M. Marta
Wolf Veiga, Patricia
Epp, Tasha
Simko, Elemir
In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae
title In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae
title_full In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae
title_fullStr In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae
title_full_unstemmed In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae
title_short In Vitro Effects of Pesticides on European Foulbrood in Honeybee Larvae
title_sort in vitro effects of pesticides on european foulbrood in honeybee larvae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7240397/
https://www.ncbi.nlm.nih.gov/pubmed/32316434
http://dx.doi.org/10.3390/insects11040252
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