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Simulation of herbicide impacts on a plant community: comparing model predictions of the plant community model IBC-grass to empirical data.
Reeg, Jette; Heine, Simon; Mihan, Christine; McGee, Sean; Preuss, Thomas G; Jeltsch, Florian.
Afiliación
  • Reeg J; 1Department of Plant Ecology and Nature Conservation, University of Potsdam, Am Mühlenberg 3, 14476 Potsdam, Germany.
  • Heine S; 2Bayer AG, Alfred-Nobel-Str. 50, 40789 Monheim am Rhein, Germany.
  • Mihan C; 2Bayer AG, Alfred-Nobel-Str. 50, 40789 Monheim am Rhein, Germany.
  • McGee S; 3Bayer CropScience LP, Research Triangle Park, NC 27709 USA.
  • Preuss TG; 2Bayer AG, Alfred-Nobel-Str. 50, 40789 Monheim am Rhein, Germany.
  • Jeltsch F; 1Department of Plant Ecology and Nature Conservation, University of Potsdam, Am Mühlenberg 3, 14476 Potsdam, Germany.
Environ Sci Eur ; 30(1): 44, 2018.
Article en En | MEDLINE | ID: mdl-30524918
BACKGROUND: Semi-natural plant communities such as field boundaries play an important ecological role in agricultural landscapes, e.g., provision of refuge for plant and other species, food web support or habitat connectivity. To prevent undesired effects of herbicide applications on these communities and their structure, the registration and application are regulated by risk assessment schemes in many industrialized countries. Standardized individual-level greenhouse experiments are conducted on a selection of crop and wild plant species to characterize the effects of herbicide loads potentially reaching off-field areas on non-target plants. Uncertainties regarding the protectiveness of such approaches to risk assessment might be addressed by assessment factors that are often under discussion. As an alternative approach, plant community models can be used to predict potential effects on plant communities of interest based on extrapolation of the individual-level effects measured in the standardized greenhouse experiments. In this study, we analyzed the reliability and adequacy of the plant community model IBC-grass (individual-based plant community model for grasslands) by comparing model predictions with empirically measured effects at the plant community level. RESULTS: We showed that the effects predicted by the model IBC-grass were in accordance with the empirical data. Based on the species-specific dose responses (calculated from empirical effects in monocultures measured 4 weeks after application), the model was able to realistically predict short-term herbicide impacts on communities when compared to empirical data. CONCLUSION: The results presented in this study demonstrate an approach how the current standard greenhouse experiments-measuring herbicide impacts on individual-level-can be coupled with the model IBC-grass to estimate effects on plant community level. In this way, it can be used as a tool in ecological risk assessment.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Tipo de estudio: Prognostic_studies / Risk_factors_studies Idioma: En Revista: Environ Sci Eur Año: 2018 Tipo del documento: Article País de afiliación: Alemania Pais de publicación: Alemania

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Tipo de estudio: Prognostic_studies / Risk_factors_studies Idioma: En Revista: Environ Sci Eur Año: 2018 Tipo del documento: Article País de afiliación: Alemania Pais de publicación: Alemania