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Honey bees have an important role in ecosystems as pollinators. However, in recent years, bee populations have declined, with habitat destruction, pesticide use, and climate change contributing to the decline. One of the most important risk factors is the use of neurotoxic pesticides, such as neonicotinoids. The aim of this work was to study the effects of imidacloprid in commercial Apis mellifera L. colonies artificially fed with syrups spiked with this [ver mas...]
dc.contributor.authorMichlig, Melina Paola
dc.contributor.authorPacini, Adriana Cecilia
dc.contributor.authorMerke, Julieta
dc.contributor.authorOrellano, Emanuel
dc.contributor.authorBrasca, Romina
dc.contributor.authorRepetti, María Rosa
dc.date.accessioned2023-04-27T17:46:02Z
dc.date.available2023-04-27T17:46:02Z
dc.date.issued2023-04
dc.identifier.citationMichlig, M.P., Pacini, A.C., Merke, J. et al. Sublethal exposure to imidacloprid in commercial Apis mellifera colonies in early spring: performance of honey bees and insecticide transference between in-hive products. Apidologie 54, 15 (2023). https://doi.org/10.1007/s13592-023-00993-2es_AR
dc.identifier.issn0044-8435 (print)
dc.identifier.issn1297-9678 (electronic)
dc.identifier.otherhttps://doi.org/10.1007/s13592-023-00993-2
dc.identifier.urihttp://hdl.handle.net/20.500.12123/14604
dc.identifier.urihttps://link.springer.com/article/10.1007/s13592-023-00993-2
dc.description.abstractHoney bees have an important role in ecosystems as pollinators. However, in recent years, bee populations have declined, with habitat destruction, pesticide use, and climate change contributing to the decline. One of the most important risk factors is the use of neurotoxic pesticides, such as neonicotinoids. The aim of this work was to study the effects of imidacloprid in commercial Apis mellifera L. colonies artificially fed with syrups spiked with this insecticide and its possible transfer among in-hive products such as honey and larvae. For this purpose, 30 colonies were placed in the same apiary; once a week for 7 weeks in early spring, each colony was fed with 0.5 L of syrup with the following doses of imidacloprid: 0, 15, 30, 120, and 240 µg kg−1. The colony strength was evaluated by monitoring: the number of adult bees and brood combs, queenlessness, unhealthy colonies (by detection of Nosema spp. spores and European foulbrood), as well as pollen and honey storage. Worker bees, larvae, honey, and beeswax were sampled to evaluate imidacloprid transfer within the hive. Trends in the persistence of the compound showed that up to 60% of the parent (not metabolized) was stored in honey, and the absence of residues in the larvae suggests that they were not exposed. Another result showed a certain impact in the honey reserves and honey yield with a reduction of this resource in the colonies exposed to imidacloprid.eng
dc.formatapplication/pdfes_AR
dc.language.isoenges_AR
dc.publisherSpringeres_AR
dc.relationinfo:eu-repograntAgreement/INTA/PNAPI-1112042/AR./Estrategias multidisciplinarias para mitigar el efecto del nuevo contexto ambiental y productivo sobre la colmena.es_AR
dc.rightsinfo:eu-repo/semantics/restrictedAccesses_AR
dc.rights.urihttp://creativecommons.org/licenses/by-nc-sa/4.0/es_AR
dc.sourceApidologie 54 (2) : 15 (April 2023)es_AR
dc.subjectImidacloprideng
dc.subjectApis melliferaes_AR
dc.subjectResidueseng
dc.subjectResiduoses_AR
dc.subjectAbeja Melífera
dc.subjectHoney Beeseng
dc.subjectProductos de la Colmena
dc.subjectHive Productseng
dc.subject.otherSublethal Doseseng
dc.subject.otherDosis Subletaleses_AR
dc.titleSublethal exposure to imidacloprid in commercial Apis mellifera colonies in early spring: performance of honey bees and insecticide transference between in-hive productses_AR
dc.typeinfo:ar-repo/semantics/artículoes_AR
dc.typeinfo:eu-repo/semantics/articlees_AR
dc.typeinfo:eu-repo/semantics/publishedVersiones_AR
dc.rights.licenseCreative Commons Attribution-NonCommercial-ShareAlike 4.0 International (CC BY-NC-SA 4.0)es_AR
dc.description.origenEEA Rafaelaes_AR
dc.description.filFil: Michlig, Melina Paola. Universidad Nacional del Litoral. Facultad de Ingeniería Química. Programa de Investigación y Análisis de Residuos y Contaminantes Químicos (PRINARC); Argentinaes_AR
dc.description.filFil: Michlig, Melina Paola. Consejo Nacional de Investigaciones Científicas Técnicas; Argentinaes_AR
dc.description.filFil: Pacini, Adriana Cecilia. Instituto Nacional de Tecnología Agropecuaria. Estación Experimental Agropecuaria Rafaela. Instituto de Investigación de la Cadena Láctea (IDICAL); Argentinaes_AR
dc.description.filFil: Pacini, Adriana Cecilia. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigación de la Cadena Láctea (IDICAL); Argentinaes_AR
dc.description.filFil: Merke, Julieta. Instituto Nacional de Tecnología Agropecuaria. Estación Experimental Agropecuaria Rafaela. Instituto de Investigación de la Cadena Láctea (IDICAL); Argentinaes_AR
dc.description.filFil: Merke, Julieta. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigación de la Cadena Láctea (IDICAL); Argentinaes_AR
dc.description.filFil: Orellano, Emanuel. Instituto Nacional de Tecnología Agropecuaria. Estación Experimental Agropecuaria Rafaela. Instituto de Investigación de la Cadena Láctea (IDICAL); Argentinaes_AR
dc.description.filFil: Orellano, Emanuel. Consejo Nacional de Investigaciones Científicas y Técnicas. Instituto de Investigación de la Cadena Láctea (IDICAL); Argentinaes_AR
dc.description.filFil: Brasca, Melina. Universidad Nacional del Litoral. Facultad de Ingeniería Química. Programa de Investigación y Análisis de Residuos y Contaminantes Químicos (PRINARC); Argentinaes_AR
dc.description.filFil: Brasca, Melina. Consejo Nacional de Investigaciones Científicas Técnicas; Argentinaes_AR
dc.description.filFil: Repetti, María Rosa. Universidad Nacional del Litoral. Facultad de Ingeniería Química. Programa de Investigación y Análisis de Residuos y Contaminantes Químicos (PRINARC); Argentinaes_AR
dc.subtypecientifico


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