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1.
J Fish Biol ; 98(2): 354-366, 2021 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-31644817

RESUMEN

Most of the present EU Water Framework Directive (WFD) compliant fish-based assessment methods of European rivers are multi-metric indices computed from traditional electrofishing (TEF) samples, but this method has known shortcomings, especially in large rivers. The probability of detecting rare species remains limited, which can alter the sensitivity of the indices. In recent years, environmental (e)DNA metabarcoding techniques have progressed sufficiently to allow applications in various ecological domains as well as eDNA-based ecological assessment methods. A review of the 25 current WFD-compliant methods for river fish shows that 81% of the metrics used in these methods are expressed in richness or relative abundance and thus compatible with eDNA samples. However, more than half of the member states' methods include at least one metric related to age or size structure and would have to adapt their current fish index if reliant solely on eDNA-derived information. Most trait-based metrics expressed in richness are higher when computed from eDNA than when computed from TEF samples. Comparable values are obtained only when the TEF sampling effort increases. Depending on the species trait considered, most trait-based metrics expressed in relative abundance are significantly higher for eDNA than for TEF samples or vice versa due to over-estimation of sub-surface species or under-estimation of benthic and rare species by TEF sampling, respectively. An existing predictive fish index, adapted to make it compatible with eDNA data, delivers an ecological assessment comparable with the current approved method for 22 of the 25 sites tested. Its associated uncertainty is lower than that of current fish indices. Recommendations for the development of future fish eDNA-based indices and the associated eDNA water sampling strategy are discussed.


Asunto(s)
Código de Barras del ADN Taxonómico/métodos , ADN Ambiental/genética , Peces/genética , Ríos/química , Animales , Biodiversidad , Código de Barras del ADN Taxonómico/normas , Código de Barras del ADN Taxonómico/tendencias , Ecosistema , Monitoreo del Ambiente/métodos , Unión Europea
2.
Sci Rep ; 8(1): 10361, 2018 07 10.
Artículo en Inglés | MEDLINE | ID: mdl-29991759

RESUMEN

Despite the ecological and societal importance of large rivers, fish sampling remains costly and limited to specific habitats (e.g., river banks). Using an eDNA metabarcoding approach, we regularly sampled 500 km of a large river (Rhône River). Comparisons with long-term electrofishing surveys demonstrated the ability of eDNA metabarcoding to qualitatively and quantitatively reveal fish assemblage structures (relative species abundance) but eDNA integrated a larger space than the classical sampling location. Combination of a literature review and field data showed that eDNA behaves in the water column like fine particulate organic matter. Its detection distance varied from a few km in a small stream to more than 100 km in a large river. To our knowledge, our results are the first demonstration of the capacity of eDNA metabarcoding to describe longitudinal fish assemblage patterns in a large river, and metabarcoding appears to be a reliable, cost-effective method for future monitoring.


Asunto(s)
Biodiversidad , Código de Barras del ADN Taxonómico/métodos , ADN/análisis , Peces/genética , Ríos/química , Animales , Código de Barras del ADN Taxonómico/economía , Ecosistema , Monitoreo del Ambiente/economía , Monitoreo del Ambiente/métodos , Europa (Continente)
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