Analyzing Runs of Homozygosity Reveals Patterns of Selection in German Brown Cattle

Author:

Wirth Anna1,Duda Jürgen2,Emmerling Reiner3ORCID,Götz Kay-Uwe3,Birkenmaier Franz4,Distl Ottmar1ORCID

Affiliation:

1. Institute of Animal Breeding and Genetics, University of Veterinary Medicine Hannover (Foundation), 30559 Hannover, Germany

2. Landeskuratorium der Erzeugerringe für Tierische Veredelung in Bayern e.V. (LKV), 80687 München, Germany

3. Bavarian State Research Center for Agriculture, Institute of Animal Breeding, 85586 Poing-Grub, Germany

4. Amt für Ernährung, Landwirtschaft und Forsten, 87439 Kempten, Germany

Abstract

An increasing trend in ancestral and classical inbreeding coefficients as well as inbreeding depression for longevity were found in the German Brown population. In addition, the proportion of US Brown Swiss genes is steadily increasing in German Browns. Therefore, the aim of the present study was to analyze the presence and genomic localization of runs of homozygosity (ROH) in order to evaluate their associations with the proportion of US Brown Swiss genes and survival rates of cows to higher lactations. Genotype data were sampled in 2364 German Browns from 258 herds. The final data set included 49,693 autosomal SNPs. We identified on average 35.996 ± 7.498 ROH per individual with a mean length of 8.323 ± 1.181 Mb. The genomic inbreeding coefficient FROH was 0.122 ± 0.032 and it decreased to 0.074, 0.031 and 0.006, when genomic homozygous segments > 8 Mb (FROH>8), >16 Mb (FROH>16) and >32 Mb (FROH>32) were considered. New inbreeding showed the highest correlation with FROH>32, whereas ancestral inbreeding coefficients had the lowest correlations with FROH>32. The correlation between the classical inbreeding coefficient and FROH was 0.572. We found significantly lower FROH, FROH>4, FROH>8 and FIS for US Brown Swiss proportions <60% compared to >80%. Cows surviving to the 2nd, 4th, 6th, 8th, and 10th lactation had lower genomic inbreeding for FROH and up to FROH>32, which was due to a lower number of ROH and a shorter average length of ROH. The strongest ROH island and consensus ROH shared by 50% of the animals was found on BTA 6 at 85–88 Mb. The genes located in this genomic region were associated with longevity (NPFFR2 and ADAMTS3), udder health and morphology (SLC4A4, NPFFR2, GC and RASSF6), milk production, milk protein percentage, coagulation properties of milk and milking speed (CSN3). On BTA 2, a ROH island was detected only in animals with <60% US Brown Swiss genes. Genes within this region are predominantly important for dual-purpose cattle breeds including Original Browns. For cows reaching more than 9 lactations, an exclusive ROH island was identified on BTA 7 with genes assumed to be associated with longevity. The analysis indicated that genomic homozygous regions important for Original Browns are still present and also ROH containing genes affecting longevity may have been identified. The breeding of German Browns should prevent any further increase in genomic inbreeding and run a breeding program with balanced weights on production, robustness and longevity.

Funder

Deutsche Forschungsgemeinschaft

“Open Access Publication Funding”

University of Veterinary Medicine Hannover, Foundation

Publisher

MDPI AG

Reference84 articles.

1. German Livestock Association (BRS) (2024, March 06). German Brown Swiss. Available online: https://www.rind-schwein.de/brs-rind/braunvieh.htmlwww.rind-schwein.de/brs-rind/braunvieh.html.

2. Möglichkeiten der Kreuzungszucht beim Zweinutzungsrind: Brown-Swiss x Braunvieh in Bayern-eine Zwischenbilanz;Averdunk;Züchtungskunde,1975

3. Longevity, length of productive life and lifetime performance of German Brown. Part 1: Systematic effects on longevity and length of productive life of German Brown cows;Punsmann;Züchtungskunde,2018

4. Longevity, length of productive life and lifetime performance of German Brown. Part 2: Systematic effects on lifetime performance and lifetime efficiency;Punsmann;Züchtungskunde,2018

5. Wirth, A., Duda, J., and Distl, O. (2021). Genetic Diversity and the Impact of the Breed Proportions of US Brown Swiss in German Brown Cattle. Animals, 11.

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