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Bhendarkar, M.

Publications and source records attributed to Bhendarkar, M..

2 recordsLinked to original sources

Advancing ecological assessment: The integration of eDNA metabarcoding into an estuarine fish index

In the face of increasing anthropogenic pressures on estuarine ecosystems, methods to efficiently and reliably assess their ecological status are essential. This study explores the integration of environmental DNA analysis into the AZTIs Fish Index (AFI) to assess ecological status of estuarine ecosystems. Surface water eDNA sampling and bottom trawl surveys were performed across multiple estuaries in the Basque Country, Spain, and resulting species data were used to calculate AFI scores. eDNA metabarcoding consistently detected higher fish species richness than bottom trawling, while the latter remained more effective at capturing demersal species. In general, ecological classifications from eDNA- and bottom trawl derived data displayed low concordance, largely due to differing species assemblages and metric contributions. These results emphasize the respective strengths and weaknesses of each methodology and the necessity for method-specific calibration. Considering that the AFI is calibrated using bottom trawl data, its direct application to eDNA-derived species lists may lead to some inconsistencies. This study underscores the critical necessity to establish eDNA-specific reference conditions and to recalibrate index thresholds accordingly. While eDNA approach may not entirely replace traditional methods, its scalability, sensitivity, and minimal ecological disturbances establish it as an essential complementary application within estuarine assessment programs. This research strongly supports the urgent advancement of eDNA-based indices and the critical enhancement of reference conditions for their effective incorporation into ecological assessment frameworks under the Water Framework Directive.

ecology↗

Lessons learned from applying eDNA surveying to diadromous fish detection across the north-east Atlantic region

Regular monitoring of diadromous fishes is critical to inform their management and conservation. Yet, the in-situ data collection these species is challenging due to their complex life cycle and low abundance. Focusing on the sea lamprey (Petromyzon marinus, Petromyzontidae) and the European shads (Alosa alosa and A. fallax, Clupeidae), emblematic diadromous fishes in the Northeast Atlantic region, this study leverages the use of water environmental DNA (eDNA) samples to monitor their distribution range. For that aim, we developed quantitative PCR (qPCR) and digital PCR (dPCR) assays and applied them to detect sea lamprey and European shad DNA in a network of 44 river basins across Spain, France, Ireland, and the UK. We found that qPCR efficiently detected presence/absence of shads, while the higher sensitivity of dPCR was essential for detecting the lower abundant and partly sessile behaving sea lamprey in the amount of water collected. Moreover, sea lamprey showed significantly lower eDNA copies per litre of water compared to shads, probably due to their larvae spending several years burrowed within soft sediments, reducing eDNA shedding into the water column. The integration of historical datasets with this snapshot wide-ranging study enhances our understanding of the distribution of sea lamprey and European shad in Atlantic rivers. Importantly, the lessons learned within this international collaboration are critical towards a prevailing framework for conservation of migratory fishes, highlighting the need of well-designed sampling strategies coupled with species-specific assays applied to eDNA samples to bust long-term monitoring efforts of diadromous species.

ecology↗