Insights from a chum salmon (Oncorhynchus keta) genome assembly regarding whole-genome duplication and nucleotide variation influencing gene function

Author:

Rondeau Eric B123,Christensen Kris A12ORCID,Johnson Hollie A2,Sakhrani Dionne1,Biagi Carlo A1,Wetklo Mike3,Despins Cody A2,Leggatt Rosalind A1,Minkley David R2,Withler Ruth E3,Beacham Terry D3,Koop Ben F2,Devlin Robert H1

Affiliation:

1. Fisheries and Oceans Canada , 4160 Marine Drive, West Vancouver, BC V7V 1N6 , Canada

2. Department of Biology, University of Victoria , 3800 Finnerty Road, Victoria, BC V8W 2Y2 , Canada

3. Fisheries and Oceans Canada , Pacific Biological Station, 3190 Hammond Bay Road, Nanaimo, BC V9T 6N7 , Canada

Abstract

Abstract Chum salmon are ecologically important to Pacific Ocean ecosystems and commercially important to fisheries. To improve the genetic resources available for this species, we sequenced and assembled the genome of a male chum salmon using Oxford Nanopore read technology and the Flye genome assembly software (contig N50: ∼2 Mbp, complete BUSCOs: ∼98.1%). We also resequenced the genomes of 59 chum salmon from hatchery sources to better characterize the genome assembly and the diversity of nucleotide variants impacting phenotype variation. With genomic sequences from a doubled haploid individual, we were able to identify regions of the genome assembly that have been collapsed due to high sequence similarity between homeologous (duplicated) chromosomes. The homeologous chromosomes are relics of an ancient salmonid-specific genome duplication. These regions were enriched with genes whose functions are related to the immune system and responses to toxins. From analyzing nucleotide variant annotations of the resequenced genomes, we were also able to identify genes that have increased levels of variants thought to moderately impact gene function. Genes related to the immune system and the detection of chemical stimuli (olfaction) had increased levels of these variants based on a gene ontology enrichment analysis. The tandem organization of many of the enriched genes raises the question of why they have this organization.

Funder

Fisheries and Oceans Canada’s Biotechnology Program

Salmonid Enhancement Program

Natural Sciences and Engineering Research Council of Canada

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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