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Piffady, J.

Publications and source records attributed to Piffady, J..

2 recordsLinked to original sources

Uncovering aquatic toxicity as a specific stressor among multiple environmental drivers affecting the functional structure of French stream macroinvertebrate communities

O_LISince recent years, freshwater ecosystems such as rivers are subjected to increasing pressures from human-induced drivers of changes, including chemical contamination, warming and nutrient enrichment. Among those, toxic chemicals are particularly concerning, as aquatic contamination is strongly increasing but their effects on ecosystem structure and functioning remain poorly understood and difficult to predict. Yet, those are expected to impact freshwater ecological communities, notably through selecting species exhibiting particular biological traits. A growing literature tested predictions on the effects of multiple environmental drivers, including chemicals, on the functional structure of macroinvertebrate communities, but disentangling the respective influences of the different drivers on the observed patterns usually remains challenging. C_LIO_LIHere, we used multivariate analyses with variation partitioning to estimate the independent and combined effects of toxic contamination, water temperature and nutrient load on the species abundances and biological traits of macroinvertebrate communities in 76 French streams. Toxic contamination was quantified based on the Gammarus feeding inhibition indicator recorded during repeated in situ biotests. We then compared trait responses with expectations from a priori predictions derived from the literature, and looked at the link between taxon turnover and taxonomic and functional diversity metrics using linear models. C_LIO_LIOur results suggest that, when considered independently, each driver had specific impact on invertebrate taxa and biological traits, with different consequences on community composition and diversity. Notably, we showed significant changes in taxonomic composition linked to toxicity, associated with the reduction of both taxonomical and functional richness, but no significant effect on biological trait composition. In contrast, temperature and moreover nutrient load strongly effected traits, but with variables associations with diversity metrics depending on driver. Finally, when all three drivers were considered in combination, patterns were similar to those observed for temperature, suggesting dominance rather than additive effects between drivers. C_LIO_LIOur study reveals particular negative impacts of toxicity on macroinvertebrate communities in contrast with other drivers, which highlights the potential risk posed by contaminants for freshwater biodiversity. C_LI

ecology↗

Towards a multi-metric assessment of river restoration ecological outcomes across projects and contexts

The assessment of the ecological outcomes of river restoration projects remains a complex undertaking due to the high variability of responses observed. This variability is dependent on a number of factors, including the location of the site under study, the indicators and taxa utilised in the analysis. In this study, a multi-metric and multi-contextual approach was applied to analyse 62 river restoration projects located in France, Germany and the Netherlands. This methodological approach facilitated the characterisation of the responses exhibited by macroinvertebrate communities in response to restoration initiatives, and the subsequent identification of the environmental contexts and the categories of restoration measures that exerted influence on these responses. Utilising log-response ratios based on both taxonomic and functional ecological metrics, a k-means clustering analysis was performed. This analysis yielded two distinct groups of sites: the first exhibiting predominantly positive responses to restoration, and the second demonstrating neutral or marginally negative responses. Positive responses have been shown to be associated with ambitious restoration projects, which are characterised by measures targeting regional-scale processes. These measures include the implementation of projects designed to improve river longitudinal continuity in degraded catchment areas, where the density of obstacles and the intensity of agricultural use are particularly high. Conversely, restoration initiatives targeting local-scale issues within more natural contexts or at high altitude exhibited minimal to no ecological response. This study emphasises the significance of an integrated approach that incorporates various facets (taxonomic and functional) of biodiversity, along with a meticulous examination of the environmental context and project construction, to enhance the evaluation of the ecological benefits of river restoration. The findings of this study may also be applicable in the context of fieldwork, providing practitioners with a framework to inform the design of restoration projects.

ecology↗