Thiamethoxam soil contaminations reduce fertility of soil-dwelling beetles, Aethina tumida

There in increasing evidence for recent global insect declines. This is of major concern as insects play a critical role in ecosystem functionality and human food security. Even though environmental pollutants are known to reduce insect fertility, their potential effects on insect fitness remain poo...

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Published inChemosphere (Oxford) Vol. 339; p. 139648
Main Authors Sheridan, Audrey B., Johnson, Elijah J., Vallat-Michel, Armelle Jeannine, Glauser, Gaëtan, Harris, Jeffrey W., Neumann, Peter, Straub, Lars
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.10.2023
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Abstract There in increasing evidence for recent global insect declines. This is of major concern as insects play a critical role in ecosystem functionality and human food security. Even though environmental pollutants are known to reduce insect fertility, their potential effects on insect fitness remain poorly understood - especially for soil-dwelling species. Here, we show that fertility of soil-dwelling beetles, Aethina tumida, is reduced, on average, by half due to field-realistic neonicotinoid soil contaminations. In the laboratory, pupating beetles were exposed via soil to concentrations of the neonicotinoid thiamethoxam that reflect global pollution of agricultural and natural habitats. Emerged adult phenotypes and reproduction were measured, and even the lowest concentration reported from natural habitats reduced subsequent reproduction by 50%. The data are most likely a conservative estimate as the beetles were only exposed during pupation. Since the tested concentrations reflect ubiquitous soil pollution, the data reveal a plausible mechanism for ongoing insect declines. An immediate reduction in environmental pollutants is urgently required if our aim is to mitigate the prevailing loss of species biodiversity. [Display omitted] •Field relevant soil contaminations of thiamethoxam impair beetle fertility.•Female adult egg laying rates were reduced by 50% even at the lowest concentration.•The data reveal a mechanistic explanation for recent declines in insect populations.•Reductions in soil pollution are urgently required to safeguard insect biodiversity.
AbstractList There in increasing evidence for recent global insect declines. This is of major concern as insects play a critical role in ecosystem functionality and human food security. Even though environmental pollutants are known to reduce insect fertility, their potential effects on insect fitness remain poorly understood - especially for soil-dwelling species. Here, we show that fertility of soil-dwelling beetles, Aethina tumida, is reduced, on average, by half due to field-realistic neonicotinoid soil contaminations. In the laboratory, pupating beetles were exposed via soil to concentrations of the neonicotinoid thiamethoxam that reflect global pollution of agricultural and natural habitats. Emerged adult phenotypes and reproduction were measured, and even the lowest concentration reported from natural habitats reduced subsequent reproduction by 50%. The data are most likely a conservative estimate as the beetles were only exposed during pupation. Since the tested concentrations reflect ubiquitous soil pollution, the data reveal a plausible mechanism for ongoing insect declines. An immediate reduction in environmental pollutants is urgently required if our aim is to mitigate the prevailing loss of species biodiversity. [Display omitted] •Field relevant soil contaminations of thiamethoxam impair beetle fertility.•Female adult egg laying rates were reduced by 50% even at the lowest concentration.•The data reveal a mechanistic explanation for recent declines in insect populations.•Reductions in soil pollution are urgently required to safeguard insect biodiversity.
There in increasing evidence for recent global insect declines. This is of major concern as insects play a critical role in ecosystem functionality and human food security. Even though environmental pollutants are known to reduce insect fertility, their potential effects on insect fitness remain poorly understood - especially for soil-dwelling species. Here, we show that fertility of soil-dwelling beetles, Aethina tumida, is reduced, on average, by half due to field-realistic neonicotinoid soil contaminations. In the laboratory, pupating beetles were exposed via soil to concentrations of the neonicotinoid thiamethoxam that reflect global pollution of agricultural and natural habitats. Emerged adult phenotypes and reproduction were measured, and even the lowest concentration reported from natural habitats reduced subsequent reproduction by 50%. The data are most likely a conservative estimate as the beetles were only exposed during pupation. Since the tested concentrations reflect ubiquitous soil pollution, the data reveal a plausible mechanism for ongoing insect declines. An immediate reduction in environmental pollutants is urgently required if our aim is to mitigate the prevailing loss of species biodiversity.
ArticleNumber 139648
Author Neumann, Peter
Sheridan, Audrey B.
Straub, Lars
Vallat-Michel, Armelle Jeannine
Glauser, Gaëtan
Johnson, Elijah J.
Harris, Jeffrey W.
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Keywords Neonicotinoids
Reproduction
Biodiversity
Soil pollution
Sublethal effects
Language English
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Copyright © 2023. Published by Elsevier Ltd.
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Snippet There in increasing evidence for recent global insect declines. This is of major concern as insects play a critical role in ecosystem functionality and human...
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SubjectTerms Biodiversity
Neonicotinoids
Reproduction
Soil pollution
Sublethal effects
Title Thiamethoxam soil contaminations reduce fertility of soil-dwelling beetles, Aethina tumida
URI https://dx.doi.org/10.1016/j.chemosphere.2023.139648
https://www.ncbi.nlm.nih.gov/pubmed/37506888
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