Whole-Genome Sequencing Data Reveal New Loci Affecting Milk Production in German Black Pied Cattle (DSN)

Author:

Korkuć Paula1ORCID,Neumann Guilherme B.1ORCID,Hesse Deike1ORCID,Arends Danny2,Reißmann Monika1,Rahmatalla Siham1,May Katharina3ORCID,Wolf Manuel J.3ORCID,König Sven3ORCID,Brockmann Gudrun A.1ORCID

Affiliation:

1. Albrecht Daniel Thaer-Institute for Agricultural and Horticultural Sciences, Animal Breeding and Molecular Genetics, Humboldt-Universität zu Berlin, Invalidenstr. 42, 10115 Berlin, Germany

2. Department of Applied Sciences, Northumbria University, Ellison PI, Newcastle upon Tyne NE1 8ST, UK

3. Institute of Animal Breeding and Genetics, Justus-Liebig-Universität Gießen, Ludwigstr. 21, 35390 Gießen, Germany

Abstract

German Black Pied (DSN) is considered an ancestral population of the Holstein breed. The goal of the current study was to fine-map genomic loci for milk production traits and to provide sequence variants for selection. We studied genome-wide associations for milk-production traits in 2160 DSN cows. Using 11.7 million variants from whole-genome sequencing of 304 representative DSN cattle, we identified 1980 associated variants (−log10(p) ≥ 7.1) in 13 genomic loci on 9 chromosomes. The highest significance was found for the MGST1 region affecting milk fat content (−log10(p) = 11.93, MAF = 0.23, substitution effect of the minor allele (ßMA) = −0.151%). Different from Holstein, DGAT1 was fixed (0.97) for the alanine protein variant for high milk and protein yield. A key gene affecting protein content was CSN1S1 (−log10(p) = 8.47, MAF = 049, ßMA = −0.055%) and the GNG2 region (−log10(p) = 10.48, MAF = 0.34, ßMA = 0.054%). Additionally, we suggest the importance of FGF12 for protein and fat yield, HTR3C for milk yield, TLE4 for milk and protein yield, and TNKS for milk and fat yield. Selection for favored alleles can improve milk yield and composition. With respect to maintaining the dual-purpose type of DSN, unfavored linkage to genes affecting muscularity has to be investigated carefully, before the milk-associated variants can be applied for selection in the small population.

Funder

Federal Ministry of Food and Agriculture

Publisher

MDPI AG

Subject

Genetics (clinical),Genetics

Reference58 articles.

1. (2023, February 01). Zentrale Dokumentation Tiergenetischer Ressourcen in Deutschland; B.L.E. Rind: Deutsches Schwarzbuntes Niederungsrind. Available online: https://tgrdeu.genres.de/.

2. Brade, W., and Brade, E. (2013). Breeding History of German Holstein Cattle. Ber. Über Landwirtsch., 91.

3. Grothe, P.O. (1993). Holstein-Friesian: Eine Rasse Geht Um Die Welt, Landwirtschaftsverlag.

4. Genomic Diversity and Relationship Analyses of Endangered German Black Pied Cattle (DSN) to 68 Other Taurine Breeds Based on Whole-Genome Sequencing;Neumann;Front. Genet.,2023

5. Genomic Loci Affecting Milk Production in German Black Pied Cattle (DSN);Arends;Front. Genet.,2021

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