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The effects of metaldehyde on non-target aquatic macroinvertebrates: Integrating field and laboratory-based evidence. | LitMetric

The effects of metaldehyde on non-target aquatic macroinvertebrates: Integrating field and laboratory-based evidence.

Environ Pollut

Geography and Environment, Centre for Hydrological and Ecosystem Science, Loughborough University, Loughborough, Leicestershire, LE11 3TU, UK.

Published: October 2020

AI Article Synopsis

  • Pesticides like metaldehyde have historically boosted agricultural productivity, but their environmental impact, especially on aquatic life, is often not well understood.
  • This study investigates the effects of metaldehyde on aquatic macroinvertebrate populations by comparing sites with high levels of this pesticide to control sites without it, alongside laboratory tests on mollusc species.
  • Findings reveal that while metaldehyde did not significantly alter macroinvertebrate communities, the greater tolerance of certain gastropods compared to bivalves suggests that other factors, like nutrient loading from fertilizers, might be influencing community differences more than metaldehyde itself; nonetheless, there are still valid concerns about its safety for wildlife and pets.

Article Abstract

The use of pesticides has historically helped improve agricultural productivity, although their continued use may have unforeseen effects upon the natural environment when not applied appropriately. Metaldehyde is a commercial pesticide widely used to reduce crop losses resulting from terrestrial mollusc damage. However, following precipitation and runoff it frequently enters waterbodies with largely unknown consequences for aquatic fauna. This study represents one of the first attempts to examine its potential effects on aquatic macroinvertebrate communities at sites known to have experienced elevated metaldehyde concentrations alongside unaffected control sites. In addition, a series of laboratory exposures specifically examined the effects of metaldehyde on the survivorship of non-target aquatic mollusc species. When the entire aquatic macroinvertebrate community and aquatic mollusc community were considered, limited differences were observed between metaldehyde affected and control sites based on field data. Laboratory exposures highlighted that for the molluscs examined, gastropods (Bithynia tentaculata, Planorbis planorbis, Radix balthica and Potamopyrgus antipodarum) had a greater tolerance to metaldehyde than bivalves (Sphaerium corneum and Corbicula fluminea). However, the concentrations required to reduce survivorship of all species were much greater than those ever recorded historically under field conditions. The results suggest that the differences in the community composition recorded between sites exposed to elevated metaldehyde concentrations and control sites were probably due to nutrient loading (N and P from agricultural fertilizers) rather than metaldehyde. However, these results do not negate wider concerns regarding metaldehyde use, particularly issues caused when ingested by vertebrate wildlife, livestock or children and pets in domestic settings.

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Source
http://dx.doi.org/10.1016/j.envpol.2020.115015DOI Listing

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