Structural variant-based pangenome construction has low sensitivity to variability of haplotype-resolved bovine assemblies

Author:

Leonard Alexander S.ORCID,Crysnanto DanangORCID,Fang Zih-HuaORCID,Heaton Michael P.ORCID,Vander Ley Brian L.ORCID,Herrera Carolina,Bollwein Heinrich,Bickhart Derek M.,Kuhn Kristen L.,Smith Timothy P. L.ORCID,Rosen Benjamin D.ORCID,Pausch HubertORCID

Abstract

AbstractAdvantages of pangenomes over linear reference assemblies for genome research have recently been established. However, potential effects of sequence platform and assembly approach, or of combining assemblies created by different approaches, on pangenome construction have not been investigated. Here we generate haplotype-resolved assemblies from the offspring of three bovine trios representing increasing levels of heterozygosity that each demonstrate a substantial improvement in contiguity, completeness, and accuracy over the currentBos taurusreference genome. Diploid coverage as low as 20x for HiFi or 60x for ONT is sufficient to produce two haplotype-resolved assemblies meeting standards set by the Vertebrate Genomes Project. Structural variant-based pangenomes created from the haplotype-resolved assemblies demonstrate significant consensus regardless of sequence platform, assembler algorithm, or coverage. Inspecting pangenome topologies identifies 90 thousand structural variants including 931 overlapping with coding sequences; this approach reveals variants affectingQRICH2,PRDM9,HSPA1A,TAS2R46, andGCthat have potential to affect phenotype.

Funder

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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