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Kiyatake, I.

Publications and source records attributed to Kiyatake, I..

2 recordsLinked to original sources

Sharks and rays have the oldest vertebrate sex chromosome with unique sex determination mechanisms

Sex determination has been investigated across vertebrate lineages to reveal stepwise evolution of sex chromosomes and diversity of responsible molecular mechanisms. However, these studies hardly encompass cartilaginous fishes deeply isolated from the rest of vertebrates, which hinders the comprehensive view of vertebrate sex determination. Here, we produced chromosome-scale genome assemblies of egg-laying shark species and comparatively investigated genome sequences and transcriptome profiles across diverse cartilaginous fishes. Sex chromosome identification, supported by cytogenetic experiments, elucidated the homology of X chromosomes between sharks and rays as well as an extensively degenerating Y chromosome harboring no male-specific genes. These sex chromosomes scarcely included orthologs of previously documented sex determining genes. Transcriptomic analyses combined with histology of embryonic gonads revealed female-biased expressions of X-linked genes including those implicated in TGF-{beta} and IGF signaling pathways, which are attributed to their incomplete dosage compensation. Our findings indicate that sharks and rays share the oldest vertebrate sex chromosomes that originated around 300 million years ago and the dosage-dependent sex determination mechanism comprised of distinct molecules from other vertebrates. This study highlights the antiquity of sex chromosomes and uniqueness of sex determination mechanisms in sharks and rays, which advance our understanding on evolutionary plasticity of vertebrate sex determination.

evolutionary biology↗

Cell culture-based shark karyotyping as a resource for chromosome-scale genome analysis

Karyotyping is indispensable for validating genome assemblies whose sequence lengths can be scaled up to chromosome sizes using modern methods and is traditionally performed using cytogenetic techniques. Karyotype reports of chondrichthyans are scarce, mainly because of their unique osmoregulatory mechanism, which hinders cell culture. Here, we focused on carpet shark species and the culture conditions for fibroblasts and lymphocytes. Using this method, we performed high-fidelity characterization of their karyotypes, namely 2n = 102 for the whale shark (Rhincodon typus) and zebra shark (Stegostoma fasciatum), and 2n = 106 for the brownbanded bamboo shark (Chiloscyllium punctatum) and whitespotted bamboo shark (C. plagiosum). We identified heteromorphic XX/XY sex chromosomes for the two latter species and demonstrated the first-ever fluorescence in situ hybridization of shark chromosomes prepared from cultured cells. Our technical solution is applicable to diverse chondrichthyan species and will deepen the understanding of early vertebrate evolution at the molecular level.

genomics↗