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Martinez-Cedeira, J.

Publications and source records attributed to Martinez-Cedeira, J..

2 recordsLinked to original sources

Body condition as an indicator of long-term ecosystem change: evidence from common dolphins

As climate change continues to disrupt marine ecosystems, reliable body condition indices (BCIs) for sentinel megafauna species such as dolphins will become increasingly important tools for long-term ecosystem monitoring. We developed novel BCIs from routinely collected morphometric measurements and applied them to a 22-year dataset (1998-2019) of 597 stranded common dolphins (Delphinus delphis) from Northwest Spain. BCIs were calculated as residuals from Generalized Additive Models relating body length to girth and blubber thickness measurements, thereby controlling for body size effects. The indices were first validated against visually assessed nutritional status and then used to investigate long-term trends and potential environmental and trophic drivers of body condition. The girth-based BCI outperformed the blubber thickness-based index in predicting nutritional status. The indices differed in their sensitivity to confounding variables. Both indices revealed an increase in male body condition until 2009-2010 followed by a sustained decline through 2019, whereas no long-term trend was detected in females. By integrating data on climate variability (North Atlantic Oscillation), oceanographic conditions (upwelling intensity, sea surface temperature, chlorophyll-a), prey availability, and prey quality, we found evidence that changes in body condition was associated with climate- and oceanography-driven changes in prey communities and reductions in the quality of prey available to dolphins. Our findings suggest that body condition in common dolphins integrates signals across multiple components of marine ecosystems and can serve as a sensitive indicator of ecosystem change. Given growing reports of declining body condition in marine predators worldwide, the approach presented here provides a practical and transferable framework for long-term ecosystem monitoring using existing stranding network datasets.

ecology↗

Historic Overexploitation, Genetic Erosion and Local extinction: Palaeogenomic Insights into the Decline of Eubalaena glacialis in the Northeast Atlantic

The North Atlantic right whale (Eubalaena glacialis) was the primary target for early industrial whalers, particularly the Basques. Once widespread across temperate and subpolar waters on both sides of the North Atlantic, the species is now functionally extinct in the Northeast Atlantic and listed as critically endangered by the IUCN. Despite their fragmentary remains, bones are abundant in the archaeological and historical records and reveal a long history and extensive tradition connected to the exploitation of these marine resources. Using state-of-the-art ancient DNA techniques, here we aimed at genetically characterizing the lost Northeast Atlantic population. We sequenced 17 genomes from historical specimens collected in the Cantabrian Sea, dating from the 13th-18th century, and compared them with available genomes for 12 individuals from the surviving Northwest Atlantic population. Our analyses reveal a historically panmictic population and document a dramatic decline in genetic diversity from the Middle Ages to the present. These findings illuminate the profound impact of centuries of whaling, which eradicated the Northeast Atlantic population and severely depleted genetic diversity in the remnant population.

evolutionary biology↗