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Santoro, D. F.

Publications and source records attributed to Santoro, D. F..

2 recordsLinked to original sources

A chromosome-level reference genome assembly reveals extreme loss of Y-chromosomal diversity in the Saimaa ringed seal (Pusa saimensis)

Saimaa ringed seals (Pusa saimensis) are a highly endangered freshwater pinniped species. Due to their unique evolutionary history and intense persecution over the last century, their population size and genetic diversity are low. Although mitochondrial and genome-wide variation have been extensively investigated, the paternal evolutionary history and genetic diversity of the Y chromosome remain poorly understood due to the lack of a suitable reference sequence. In this study, we take advantage of a new chromosome-level reference genome containing a curated Y chromosome and whole-genome resequencing data from 80 individuals, and characterize Y-chromosomal diversity, compare paternal and maternal lineages, and validate genomic approaches for sex determination. Read-depth analyses confirmed the accuracy of the assembled sex chromosomes, with male individuals exhibiting the expected two-fold increase in coverage across the pseudoautosomal region of chromosome X and exclusive coverage of the Y chromosome. These coverage patterns enabled reliable molecular sex determination. Phylogenetic analyses showed that both Y chromosome and mitochondrial haplotypes of the Saimaa ringed seal form distinct monophyletic clades relative to Baltic, Lake Ladoga and Arctic ringed seals, consistent with the long evolutionary isolation of the species. Similarly, the extent of genetic diversity in the Y chromosome and the mitochondrion aligned with with this long isolation history, since relative to the diversity observed across non-Saimaa ringed seals, the contemporary Saimaa population was estimated to retain only 5% of mitochondrial diversity and approximately 1% of Y-chromosomal diversity. All together, we show that chromosome-scale reference genome assemblies that include complete sex chromosomes provide a valuable resource for conservation genomics, studies of sex-specific population history, and comparative investigations of Y chromosome evolution across pinnipeds and other mammal species.

genomics↗

Chromosome-level reference genome assembly of the Saimaa ringed seal (Pusa saimensis) - an ancient glacial relict landlocked pinniped

We present a high-quality chromosome-level reference genome for the Saimaa ringed seal (Pusa saimensis), an endangered freshwater pinniped endemic to Lake Saimaa, Finland. The assembly spans 2.353 Gb and comprises 15 autosomes together with the X and Y sex chromosomes. Using Oxford Nanopore Technologies (ONT) long-read sequencing and Hi-C scaffolding, we achieved a telomere-to-telomere assembly for all chromosomes, except the Y chromosome. Genome annotation identified approximately 21,800 protein-coding genes, consistent with other mammalian genomes. Assembly completeness was high, with BUSCO analysis recovering 99.6% of expected complete single-copy genes (98.2% single-copy and 1.3% duplicated). Comparative analyses revealed a highly conserved chromosomal architecture, with only minor syntenic differences relative to other pinniped chromosome-level assemblies. Previously described cytogenetic fusion events in Phocidae were confirmed (chromosomes 2 and 7). A translocation between chromosomes 6 and 7 distinguishes phocids from the otariids. In general, more distantly related taxa exhibit an increasing degree of intrachromosomal rearrangements. Notably, we identified a large intrachromosomal rearrangement on chromosome 2 that appears specific to the Saimaa ringed seal. Phylogenomic analysis based on 9,226 single-copy orthologues placed the Saimaa ringed seal as a sister lineage to the Baltic ringed seal (Pusa hispida botnica), while confirming also other established evolutionary relationships among pinnipeds. Comparative gene family analysis between the Saimaa ringed seal and the closely related grey seal (Halichoerus grypus) revealed lineage-specific differences driven by a limited number of gene families. In the Saimaa ringed seal, expansions were observed in ion transport, cytoskeleton, and regulatory genes, potentially reflecting adaptation to freshwater conditions. In contrast, the grey seal showed expansions in olfaction, immune-and spermatogenesis-associated gene families, including MAGE/MIA genes, consistent with differences in ecology and mating systems. This reference genome provides an important resource for studies of pinniped genome evolution, as well as conservation and population genomics of the Saimaa ringed seal, facilitating future work on genetic diversity, inbreeding, mutational load and adaptive potential in this highly endangered species.

genomics↗