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A cattle graph genome incorporating global breed diversity

Andrea Talenti, Jessica Powell, Johanneke D. Hemmink, Elizabeth A. J. Cook, David Wragg, S. Jayaraman, Edith Paxton, Chukwunonso Ezeasor, Emmanuel Obishakin, Ebere Roseann Agusi, Abdulfatai Tijjani, Wilson Amanyire, Dennis Muhanguzi, K. Marshall, Andressa Fisch, Beatriz Rossetti Ferreira, A. Qasim, Umer Chaudhry, P. Wiener, Phil Toye, L. J. Morrison, Timothy Connelley, James Prendergast

2022Nature Communications136 citationsDOIOpen Access PDF

Abstract

Despite only 8% of cattle being found in Europe, European breeds dominate current genetic resources. This adversely impacts cattle research in other important global cattle breeds, especially those from Africa for which genomic resources are particularly limited, despite their disproportionate importance to the continent's economies. To mitigate this issue, we have generated assemblies of African breeds, which have been integrated with genomic data for 294 diverse cattle into a graph genome that incorporates global cattle diversity. We illustrate how this more representative reference assembly contains an extra 116.1 Mb (4.2%) of sequence absent from the current Hereford sequence and consequently inaccessible to current studies. We further demonstrate how using this graph genome increases read mapping rates, reduces allelic biases and improves the agreement of structural variant calling with independent optical mapping data. Consequently, we present an improved, more representative, reference assembly that will improve global cattle research.

Topics & Concepts

GenomeBiologyGenetic diversityReference genomeBreedGraphGenomicsEvolutionary biologyDiversity (politics)Computational biologyGeneticsGeographyComputer scienceGenePolitical scienceTheoretical computer scienceLawSociologyDemographyPopulationGenetic and phenotypic traits in livestockGenomics and Phylogenetic StudiesGenetic Mapping and Diversity in Plants and Animals
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