Developing a liquid capture chip to accelerate the genetic progress of cattle

Author:

Chen Yan12,Guo Yingwei12ORCID,Ge Fei12,Gao Han12,Zhou Jinghang3,Wu Xiaonv3,Qian Changsong3,Wang Zhiquan4,Wang Zezhao12,Zhu Bo12,Xu Lingyang12,Gao Xue12,Zhang Lupei12,Gao Huijiang12,Li Junya12

Affiliation:

1. State Key Laboratory of Animal Biotech Breeding Institute of Animal Sciences Chinese Academy of Agricultural Sciences (CAAS) Beijing China

2. Laboratory of Molecular Biology and Bovine Breeding Institute of Animal Sciences Chinese Academy of Agricultural Sciences (CAAS) Beijing China

3. Shijiazhuang Molbreeding Biotechnology Co.,LtD Shijiazhuang Hebei China

4. Department of Agricultural Food and Nutritional Science University of Alberta Edmonton Alberta Canada

Abstract

AbstractLarge‐scale genotyping at a low cost is crucial for molecular breeding of livestock. In this study, the Cattle110K capture chip was developed, based on the genotyping by target sequencing system. The chip panel included 112,180 single necleotide polymorphisms (SNPs), from potential functional regions screened by genome‐wide associated study, BayesB, expression quantitative trait loci‐mapping, ATAC‐seq, and reported functional markers. All the SNPs on the panel were distributed evenly on the cattle genome, with more than 99% of the markers having a minor allele frequency greater than 0.05. Assessment results indicated that a total of 1.2 M high‐quality SNPs were identified in the 110 K regions, averaging approximately 10 SNPs per target sequence. The genotype consistency for the repetitive samples using the Cattle110K liquid chip was 99.21% while the concordance between the Illumina BovineHD BeadChip and this chip averaged 98.17%. A significant association signal for slaughter weight and carcass length was identified on 37.3–41.5 Mb of chromosome 6, pinpointing the NCAPG‐LCORL locus. This locus has previously been associated with meat and carcass traits in cattle. Additionally, novel candidate regions were identified around 3.4 Mb of chromosome 13 and 73.5 Mb of chromosome 8, significantly correlated with hip height and marbling score, respectively. We compared the accuracy of genomic estimated breeding values between the Illumina BovineHD BeadChip and this chip. The results demonstrated that the Cattle110K capture chip had a comparable ability in genomic prediction to the Illumina BovineHD BeadChip. Advances in using the cost‐effective liquid capture chip are expected to accelerate the genetic progress of cattle in the coming years.

Publisher

Wiley

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