Repositioning of centromere‐associated repeats during karyotype evolution in Oryzias fishes

Author:

Ansai Satoshi1ORCID,Toyoda Atsushi2,Yoshida Kohta3ORCID,Kitano Jun3ORCID

Affiliation:

1. Laboratory of Genome Editing Breeding, Graduate School of Agriculture Kyoto University Kyoto Japan

2. Comparative Genomics Laboratory National Institute of Genetics Mishima Japan

3. Ecological Genetics Laboratory National Institute of Genetics Mishima Japan

Abstract

AbstractThe karyotype, which is the number and shape of chromosomes, is a fundamental characteristic of all eukaryotes. Karyotypic changes play an important role in many aspects of evolutionary processes, including speciation. In organisms with monocentric chromosomes, it was previously thought that chromosome number changes were mainly caused by centric fusions and fissions, whereas chromosome shape changes, that is, changes in arm numbers, were mainly due to pericentric inversions. However, recent genomic and cytogenetic studies have revealed examples of alternative cases, such as tandem fusions and centromere repositioning, found in the karyotypic changes within and between species. Here, we employed comparative genomic approaches to investigate whether centromere repositioning occurred during karyotype evolution in medaka fishes. In the medaka family (Adrianichthyidae), the three phylogenetic groups differed substantially in their karyotypes. The Oryzias latipes species group has larger numbers of chromosome arms than the other groups, with most chromosomes being metacentric. The O. javanicus species group has similar numbers of chromosomes to the O. latipes species group, but smaller arm numbers, with most chromosomes being acrocentric. The O. celebensis species group has fewer chromosomes than the other two groups and several large metacentric chromosomes that were likely formed by chromosomal fusions. By comparing the genome assemblies of O. latipes, O. javanicus, and O. celebensis, we found that repositioning of centromere‐associated repeats might be more common than simple pericentric inversion. Our results demonstrated that centromere repositioning may play a more important role in karyotype evolution than previously appreciated.

Funder

Core Research for Evolutional Science and Technology

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Genetics,Ecology, Evolution, Behavior and Systematics

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