One Sea, Different Whales: Genomics Sheds Light on a Small Population of Fin Whales
Biello, R.; Iannucci, A.; Fuselli, S.; Desiato, E.; Urban R., J.; Fossi, M. C.; Panti, C.; Mancia, A.
Show abstract
Whales play a crucial role in marine ecosystems, yet many populations face growing environmental pressures. Among them, the fin whale, Balaenoptera physalus, from the Mediterranean Sea remains poorly characterized at the genomic level despite its classification as Endangered and decreasing in population size due to habitat degradation, climate change, and human-induced disturbances. Previous studies based on bioacoustics and telemetry data suggest the presence of resident and migratory subgroups, but the genetic isolation of this population remains uncertain. Here, we sequenced and analysed for the first time whole genomes of the Mediterranean fin whale to provide a comprehensive genomic characterization of this population, assessing its genomic variability, genetic load, population structure and potential for adaptation to environmental stressors. By comparing genomic data from Mediterranean fin whales with populations from the North Atlantic, North Pacific, and the Sea of Cortez (also sequenced in the present study), we aim to determine the degree of genetic isolation and contextualize the Mediterranean population within a broader evolutionary and conservation framework. Our results showed that while Mediterranean fin whales form a distinct genetic cluster, they are not entirely isolated from North Atlantic populations, with gene flow persisting at low levels. Furthermore, we identified a complex substructure within the Mediterranean, supporting the existence of a resident subpopulation. Although this population preserves moderate levels of genomic diversity and adaptive potential, it remains vulnerable to genomic erosion due to continued demographic decline, limited connectivity, and increasing environmental stressors. These findings underscore the urgency of targeted conservation actions and long-term genetic monitoring, especially as climate change accelerates and introduces increasingly unpredictable selective pressures that may exacerbate the risk of genomic erosion and threaten population viability.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A paleogenomic investigation of overharvest implications in an endemic wild reindeer subspecies 98%
- Chromosome-level genomics and historical museum collections reveal new insights into the population structure and chromosome evolution of waterbuck 97%
- An introgression breakthrough left by an anthropogenic contact between two ascidians 97%
Similar papers in this journal
- Chromosomal-level genome assembly of the scimitar-horned oryx: insights into diversity and demography of a species extinct in the wild 97%
- Origin Matters: Using a Local Reference Genome Improves Measures in Population Genomics 97%
- An ancient truncated duplication of the anti-Mullerian hormone receptor type 2 gene is a potential conserved master sex determinant in the Pangasiidae catfish family 96%
Similar papers in this journal
- Limited parallelism in genetic adaptation to brackish water bodies in European sprat and Atlantic herring 97%
- A beary good genome: Haplotype-resolved, chromosome-level assembly of the brown bear (Ursus arctos) 97%
- Hybridization dynamics and extensive introgression in the Daphnia longispina species complex: new insights from a high-quality Daphnia galeata reference genome 97%
Similar papers in this journal
- Chromosomal Fusions and Evolutionary Forces: Exploring theNeo-Sex Chromosome System of Anolis distichus 96%
- Genomic Resources for Asian (Elephas maximus) and African Savannah Elephant (Loxodonta africana) Conservation and Health Research 96%
- High-quality genome assembly of the endemic threatened White-bellied Sholakili Sholicola albiventris (Muscicapidae: Blanford, 1868) from the Shola Sky Islands, India. 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.