Cytogenetics Meets Genomics: Cytotaxonomy and Genomic Relationships among Color Variants of the Asian Arowana Scleropages formosus

Author:

Toma Gustavo A.1ORCID,dos Santos Natália2ORCID,dos Santos Rodrigo2,Rab Petr3,Kretschmer Rafael4ORCID,Ezaz Tariq5ORCID,Bertollo Luiz A. C.1,Liehr Thomas6ORCID,Porto-Foresti Fábio2,Hatanaka Terumi1,Tanomtong Alongklod7,Utsunomia Ricardo2,Cioffi Marcelo B.1ORCID

Affiliation:

1. Departamento de Genética e Evolução, Universidade Federal de São Carlos, São Carlos 13565-905, SP, Brazil

2. Faculdade de Ciências, UNESP, Bauru 17033-36, SP, Brazil

3. Laboratory of Fish Genetics, Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Rumburská 89, 27721 Liběchov, Czech Republic

4. Departamento de Ecologia, Zoologia e Genética, Universidade Federal de Pelotas, Pelotas 96010-900, RS, Brazil

5. Institute for Aplied Ecology, University of Canberra, Canberra 2617, Australia

6. Institute of Human Genetics, University Hospital Jena, 07747 Jena, Germany

7. Department of Biology, Faculty of Science, Khon Kaen University, Muang, Khon Kaen 40002, Thailand

Abstract

Scleropages formosus (Osteoglossiformes, Teleostei) represents one of the most valued ornamental fishes, yet it is critically endangered due to overexploitation and habitat destruction. This species encompasses three major color groups that naturally occur in allopatric populations, but the evolutionary and taxonomic relationships of S. formosus color varieties remain uncertain. Here, we utilized a range of molecular cytogenetic techniques to characterize the karyotypes of five S. formosus color phenotypes, which correspond to naturally occurring variants: the red ones (Super Red); the golden ones (Golden Crossback and Highback Golden); the green ones (Asian Green and Yellow Tail Silver). Additionally, we describe the satellitome of S. formosus (Highback Golden) by applying a high-throughput sequencing technology. All color phenotypes possessed the same karyotype structure 2n = 50 (8m/sm + 42st/a) and distribution of SatDNAs, but different chromosomal locations of rDNAs, which were involved in a chromosome size polymorphism. Our results show indications of population genetic structure and microstructure differences in karyotypes of the color phenotypes. However, the findings do not clearly back up the hypothesis that there are discrete lineages or evolutionary units among the color phenotypes of S. formosus, but another case of interspecific chromosome stasis cannot be excluded.

Funder

São Paulo Research Foundation

Brazilian National Council for Scientific and Technological Development

German Research Foundation

Open Access Publication Fund of the Thueringer Universitaets- und Landesbibliothek Jena

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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