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Experimental evidence for neonicotinoid driven decline in aquatic emerging insects
by
van Nieuwenhuijzen, André
, van Bodegom, Peter M.
, de Snoo, Geert R.
, Vijver, Martina G.
, Barmentlo, S. Henrik
, Schrama, Maarten
in
Animals
/ Aquatic insects
/ Aquatic Organisms
/ Aquatic populations
/ Biological Sciences
/ Biomass
/ Ecosystem
/ Environmental Sciences
/ Insecta
/ Insecticides
/ Insects
/ Neonicotinoid insecticides
/ Neonicotinoids
/ Pesticides
/ Populations
/ Species diversity
/ Thiacloprid
/ Thiazines
/ Toxicity Tests
2021
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Experimental evidence for neonicotinoid driven decline in aquatic emerging insects
by
van Nieuwenhuijzen, André
, van Bodegom, Peter M.
, de Snoo, Geert R.
, Vijver, Martina G.
, Barmentlo, S. Henrik
, Schrama, Maarten
in
Animals
/ Aquatic insects
/ Aquatic Organisms
/ Aquatic populations
/ Biological Sciences
/ Biomass
/ Ecosystem
/ Environmental Sciences
/ Insecta
/ Insecticides
/ Insects
/ Neonicotinoid insecticides
/ Neonicotinoids
/ Pesticides
/ Populations
/ Species diversity
/ Thiacloprid
/ Thiazines
/ Toxicity Tests
2021
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Experimental evidence for neonicotinoid driven decline in aquatic emerging insects
by
van Nieuwenhuijzen, André
, van Bodegom, Peter M.
, de Snoo, Geert R.
, Vijver, Martina G.
, Barmentlo, S. Henrik
, Schrama, Maarten
in
Animals
/ Aquatic insects
/ Aquatic Organisms
/ Aquatic populations
/ Biological Sciences
/ Biomass
/ Ecosystem
/ Environmental Sciences
/ Insecta
/ Insecticides
/ Insects
/ Neonicotinoid insecticides
/ Neonicotinoids
/ Pesticides
/ Populations
/ Species diversity
/ Thiacloprid
/ Thiazines
/ Toxicity Tests
2021
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Experimental evidence for neonicotinoid driven decline in aquatic emerging insects
Journal Article
Experimental evidence for neonicotinoid driven decline in aquatic emerging insects
2021
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Overview
There is an ongoing unprecedented loss in insects, both in terms of richness and biomass. The usage of pesticides, especially neonicotinoid insecticides, has been widely suggested to be a contributor to this decline. However, the risks of neonicotinoids to natural insect populations have remained largely unknown due to a lack of field-realistic experiments. Here, we used an outdoor experiment to determine effects of field-realistic concentrations of the commonly applied neonicotinoid thiacloprid on the emergence of naturally assembled aquatic insect populations. Following application, all major orders of emerging aquatic insects (Coleoptera, Diptera, Ephemeroptera, Odonata, and Trichoptera) declined strongly in both abundance and biomass. At the highest concentration (10 μg/L), emergence of most orders was nearly absent. Diversity of the most species-rich family, Chironomidae, decreased by 50% at more commonly observed concentrations (1 μg/L) and was generally reduced to a single species at the highest concentration. Our experimental findings thereby showcase a causal link of neonicotinoids and the ongoing insect decline. Given the urgency of the insect decline, our results highlight the need to reconsider the mass usage of neonicotinoids to preserve freshwater insects as well as the life and services depending on them.
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