Chromosome-level genome of butterflyfish unveils genomic features of unique colour patterns and morphological traits

Author:

Zhang Suyu123ORCID,Song Yue2,Liu Meiru12,Yuan Zengbao12,Zhang Mengqi2,Zhang He2,Seim Inge45ORCID,Fan Guangyi23,Liu Shanshan2,Liu Xin23ORCID

Affiliation:

1. College of Life Sciences, University of Chinese Academy of Sciences , Beijing 100049 , China

2. BGI-Qingdao, BGI-Shenzhen , Qingdao, 266555 , China

3. BGI-Shenzhen , Shenzhen 518083 , China

4. Integrative Biology Laboratory, College of Life Sciences, Nanjing Normal University , Nanjing 210023 , China

5. Comparative and Endocrine Biology Laboratory, Translational Research Institute-Institute of Health and Biomedical Innovation, School of Biomedical Sciences, Queensland University of Technology , Brisbane 4102, Queensland , Australia

Abstract

Abstract Chaetodontidae, known as butterflyfishes, are typical fish in coral ecosystems, exhibiting remarkable interspecific differences including body colour patterns and feeding ecology. In this study, we report genomes of three butterflyfish species (Chelmon rostratus, Chaetodon trifasciatus and Chaetodon auriga) and a closely related species from the Pomacanthidae family, Centropyge bicolour, with an average genome size of 65,611 Mb. Chelmon rostratus, comprising 24 chromosomes assembled to the chromosome level, could be served as a reference genome for butterflyfish. By conducting a collinearity analysis between butterflyfishes and several fishes, we elucidated the specific and conserved genomic features of butterflyfish, with particular emphasis on novel genes arising from tandem duplications and their potential functions. In addition to the two melanocyte-specific tyr genes commonly found in fish, we found the gene tyrp3, a new tyrosinase-related proteins gene in the reef fish, including butterflyfish and clownfish, implicating their involvement in the pigmentation diversity of fish. Additionally, we observed a tandem duplication expansion of three copies of nell1 gene in C. rostratus genome, which likely contribute to its unique jaw development and distinctive morphology of its sharp mouth. These results provided valuable genomic resources for further investigations into the genetic diversity and evolutionary adaptations of reef fish.

Funder

The General Program (Key Program, Major Research Plan) of National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Genetics,Molecular Biology,General Medicine

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