The Antarctic Weddell seal genome reveals evidence of selection on cardiovascular phenotype and lipid handling

Author:

Noh Hyun Ji,Turner-Maier Jason,Schulberg S. Anne,Fitzgerald Michael L.,Johnson Jeremy,Allen Kaitlin N.ORCID,Hückstädt Luis A.,Batten Annabelle J.,Alfoldi JessicaORCID,Costa Daniel P.,Karlsson Elinor K.ORCID,Zapol Warren M.,Buys Emmanuel S.,Lindblad-Toh Kerstin,Hindle Allyson G.ORCID

Abstract

AbstractThe Weddell seal (Leptonychotes weddellii) thrives in its extreme Antarctic environment. We generated the Weddell seal genome assembly and a high-quality annotation to investigate genome-wide evolutionary pressures that underlie its phenotype and to study genes implicated in hypoxia tolerance and a lipid-based metabolism. Genome-wide analyses included gene family expansion/contraction, positive selection, and diverged sequence (acceleration) compared to other placental mammals, identifying selection in coding and non-coding sequence in five pathways that may shape cardiovascular phenotype. Lipid metabolism as well as hypoxia genes contained more accelerated regions in the Weddell seal compared to genomic background. Top-significant genes were SUMO2 and EP300; both regulate hypoxia inducible factor signaling. Liver expression of four genes with the strongest acceleration signals differ between Weddell seals and a terrestrial mammal, sheep. We also report a high-density lipoprotein-like particle in Weddell seal serum not present in other mammals, including the shallow-diving harbor seal.

Funder

National Science Foundation

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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