Heterochiasmy and the establishment of gsdf as a novel sex determining gene in Atlantic halibut

Author:

Edvardsen Rolf BrudvikORCID,Wallerman OlaORCID,Furmanek TomaszORCID,Kleppe Lene,Jern PatricORCID,Wallberg AndreasORCID,Kjærner-Semb ErikORCID,Mæhle Stig,Olausson Sara Karolina,Sundström ElisabethORCID,Harboe Torstein,Mangor-Jensen Ragnfrid,Møgster Margareth,Perrichon PrescillaORCID,Norberg BirgittaORCID,Rubin Carl-JohanORCID

Abstract

Atlantic Halibut (Hippoglossus hippoglossus) has a X/Y genetic sex determination system, but the sex determining factor is not known. We produced a high-quality genome assembly from a male and identified parts of chromosome 13 as the Y chromosome due to sequence divergence between sexes and segregation of sex genotypes in pedigrees. Linkage analysis revealed that all chromosomes exhibit heterochiasmy, i.e. male-only and female-only meiotic recombination regions (MRR/FRR). We show that FRR/MRR intervals differ in nucleotide diversity and repeat class content and that this is true also for other Pleuronectidae species. We further show that remnants of a Gypsy-like transposable element insertion on chr13 promotes early male specific expression ofgonadal somatic cell derived factor(gsdf). Less than 4.5 MYA, this male-determining element evolved on an autosomal FRR segment featuring pre-existing male meiotic recombination barriers, thereby creating a Y chromosome. Our findings indicate that heterochiasmy may facilitate the evolution of genetic sex determination systems relying on linkage of sexually antagonistic loci to a sex-determining factor.

Funder

Sterling White Halibut

Norwegian Institute of Marine Research

svenska forskningsrådet formas

vetenskapsrådet

Publisher

Public Library of Science (PLoS)

Subject

Cancer Research,Genetics (clinical),Genetics,Molecular Biology,Ecology, Evolution, Behavior and Systematics

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