Chromosome-level assembly reveals a putative Y-autosomal fusion in the sex determination system of the Greenland Halibut (Reinhardtius hippoglossoides)

Author:

Ferchaud Anne-Laure1ORCID,Mérot Claire1,Normandeau Eric1,Ragoussis Jiannis2,Babin Charles1,Djambazian Haig2,Bérubé Pierre2,Audet Céline3ORCID,Treble Margaret4ORCID,Walkusz Wojciech4,Bernatchez Louis1ORCID

Affiliation:

1. Département de Biologie, Institut de Biologie Intégrative et des Systèmes (IBIS), Université Laval, Québec, QC G1V 0A6, Canada

2. McGill Genome Centre and Department for Human Genetics, McGill University, Montreal, Quebec, QC H3A 0G1, Canada

3. Département de l'Institut des Sciences de la Mer de Rimouski, Université du Québec à Rimouski, Rimouski, QC G5L 3A1, Canada

4. Fisheries and Oceans Canada, Arctic Aquatic Research Division, Winnipeg Department, Freshwater Institute Winnipeg, Manitoba, MB R3T2N6, Canada

Abstract

Abstract Despite the commercial importance of Greenland Halibut (Reinhardtius hippoglossoides), important gaps still persist in our knowledge of this species, including its reproductive biology and sex determination mechanism. Here, we combined single-molecule sequencing of long reads (Pacific Sciences) with chromatin conformation capture sequencing (Hi-C) data to assemble the first chromosome-level reference genome for this species. The high-quality assembly encompassed more than 598 Megabases (Mb) assigned to 1594 scaffolds (scaffold N50 = 25 Mb) with 96% of its total length distributed among 24 chromosomes. Investigation of the syntenic relationship with other economically important flatfish species revealed a high conservation of synteny blocks among members of this phylogenetic clade. Sex determination analysis revealed that similar to other teleost fishes, flatfishes also exhibit a high level of plasticity and turnover in sex determination mechanisms. A low-coverage whole-genome sequence analysis of 198 individuals revealed that Greenland Halibut possesses a male heterogametic XY system and several putative candidate genes implied in the sex determination of this species. Our study also suggests for the first time in flatfishes that a putative Y-autosomal fusion could be associated with a reduction of recombination typical of the early steps of sex chromosome evolution.

Funder

Canada 150 Sequencing Initiative

Genome Canada Technology Platform grants to Jiannis Ragoussis

National Sciences and Engineering Research Council of Canada (NSERC

Louis Bernatchez, Céline Audet

Pascal Sirois

Réjean Tremblay

Canadian Research Chair in Genomics and Conservation of Aquatic Resources

Ressources Aquatiques Québec

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

Reference100 articles.

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