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Diversity of sex chromosomes in Sulawesian medaka fishes
Author(s) -
Ansai Satoshi,
Montenegro Javier,
Masengi Kawilarang W. A.,
Nagano Atsushi J.,
Yamahira Kazunori,
Kitano Jun
Publication year - 2022
Publication title -
journal of evolutionary biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.289
H-Index - 128
eISSN - 1420-9101
pISSN - 1010-061X
DOI - 10.1111/jeb.14076
Subject(s) - biology , chromosome , sex linkage , y chromosome , genetics , evolutionary biology , karyotype , x chromosome , evolution of sexual reproduction , oryzias , zoology , gene
Recent genetic and genomic studies have revealed tremendous diversity in sex chromosomes across diverse taxa. Closely related species with different sex chromosomes provide us excellent opportunities to investigate the driving forces and the consequences of sex chromosome turnover. In the present study, we investigated the diversity of sex chromosomes of 13 Oryzias species from Sulawesi, Indonesia, which diversified during the last 4.86 million years. Using pooled sequencing, we found sex chromosomes in nine species that all had XY systems, with a species being possibly modified by multiple loci. Seven species ( O. woworae , O. asinua , O. wolasi , O. matanensis , O. celebensis , O. hadiatyae , and O. dopingdopingensis ) share linkage group (LG) 24 as sex chromosomes; however, they differed in the length and magnitude of sequence divergence between the X and Y chromosomes. The sex chromosome of O. eversi was LG4, which has not been reported as a sex chromosome in any other medaka species. In O. sarasinorum , LG16 and LG22 are associated with sex. Although LG16 was found to be sex‐linked in another medaka species previously examined, the sex‐determining regions did not overlap. No significant signatures for sex chromosomes were identified in the other four species ( O. marmoratus , O. nigrimas , O. nebulosus , and O. orthognathus ). Frequent turnovers and the great diversity of the sex chromosomes will make Sulawesian medaka species a model system for investigating the driving forces and consequences of sex chromosome turnover.

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