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In Silico Modeling Method for Computational Aquatic Toxicology of Endocrine Disruptors: A Software-Based Approach Using QSAR Toolbox
Published on: August 28, 2019
Modeling the chemical and toxic water status of the Scheldt basin (Belgium), using aquatic invertebrate assemblages
Muriel Gevrey1, Lise Comte, Dick de Zwart
1CNRS, Lab Evolution et Diversité Biologique (EDB), UMR 5174 CNRS-UPS, 118 route de Narbonne, 31062 Toulouse cedex 4, France. gevrey@cict.fr
Abstract:
Self-Organizing Maps have been used on monitoring sites in several Scheldt sub-basins to identify the main aquatic invertebrate assemblages and relate them to the physico-chemical and toxic water status. 12 physico-chemical variables and 2 estimates of toxic risk were available for a dataset made up of a total of 489 records. Two of the five defining clusters reflecting a relatively clean environment were composed by very well diversified functional feeding groups and sensitive taxa. The cleanest assemblage was mainly linked to the sites from the Nete sub-basin. The three other clusters were inversely described with a dominance of oligochaetes and deposit feeders as well as a bad water quality. Such an analysis can be used to support ecological status assessment of rivers and thus might be useful for decision-makers in the evaluation of chemical and toxic water status, as required by the EU Water Framework Directive.
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