• 제목/요약/키워드: BovineHD Chip

검색결과 5건 처리시간 0.016초

Genetic diversity and divergence among Korean cattle breeds assessed using a BovineHD single-nucleotide polymorphism chip

  • Kim, Seungchang;Cheong, Hyun Sub;Shin, Hyoung Doo;Lee, Sung-Soo;Roh, Hee-Jong;Jeon, Da-Yeon;Cho, Chang-Yeon
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제31권11호
    • /
    • pp.1691-1699
    • /
    • 2018
  • Objective: In Korea, there are three main cattle breeds, which are distinguished by coat color: Brown Hanwoo (BH), Brindle Hanwoo (BRH), and Jeju Black (JB). In this study, we sought to compare the genetic diversity and divergence among there Korean cattle breeds using a BovineHD chip genotyping array. Methods: Sample data were collected from 168 cattle in three populations of BH (48 cattle), BRH (96 cattle), and JB (24 cattle). The single-nucleotide polymorphism (SNP) genotyping was performed using the Illumina BovineHD SNP 777K Bead chip. Results: Heterozygosity, used as a measure of within-breed genetic diversity, was higher in BH (0.293) and BRH (0.296) than in JB (0.266). Linkage disequilibrium decay was more rapid in BH and BRH than in JB, reaching an average $r^2$ value of 0.2 before 26 kb in BH and BRH, whereas the corresponding value was reached before 32 kb in JB. Intra-population, interpopulation, and Fst analyses were used to identify candidate signatures of positive selection in the genome of a domestic Korean cattle population and 48, 11, and 11 loci were detected in the genomic region of the BRH breed, respectively. A Neighbor-Joining phylogenetic tree showed two main groups: a group comprising BH and BRH on one side and a group containing JB on the other. The runs of homozygosity analysis between Korean breeds indicated that the BRH and JB breeds have high inbreeding within breeds compared with BH. An analysis of differentiation based on a high-density SNP chip showed differences between Korean cattle breeds and the closeness of breeds corresponding to the geographic regions where they are evolving. Conclusion: Our results indicate that although the Korean cattle breeds have common features, they also show reliable breed diversity.

Accuracy of Imputation of Microsatellite Markers from BovineSNP50 and BovineHD BeadChip in Hanwoo Population of Korea

  • Sharma, Aditi;Park, Jong-Eun;Park, Byungho;Park, Mi-Na;Roh, Seung-Hee;Jung, Woo-Young;Lee, Seung-Hwan;Chai, Han-Ha;Chang, Gul-Won;Cho, Yong-Min;Lim, Dajeong
    • Genomics & Informatics
    • /
    • 제16권1호
    • /
    • pp.10-13
    • /
    • 2018
  • Until now microsatellite (MS) have been a popular choice of markers for parentage verification. Recently many countries have moved or are in process of moving from MS markers to single nucleotide polymorphism (SNP) markers for parentage testing. FAO-ISAG has also come up with a panel of 200 SNPs to replace the use of MS markers in parentage verification. However, in many countries most of the animals were genotyped by MS markers till now and the sudden shift to SNP markers will render the data of those animals useless. As National Institute of Animal Science in South Korea plans to move from standard ISAG recommended MS markers to SNPs, it faces the dilemma of exclusion of old animals that were genotyped by MS markers. Thus to facilitate this shift from MS to SNPs, such that the existing animals with MS data could still be used for parentage verification, this study was performed. In the current study we performed imputation of MS markers from the SNPs in the 500-kb region of the MS marker on either side. This method will provide an easy option for the labs to combine the data from the old and the current set of animals. It will be a cost efficient replacement of genotyping with the additional markers. We used 1,480 Hanwoo animals with both the MS data and SNP data to impute in the validation animals. We also compared the imputation accuracy between BovineSNP50 and BovineHD BeadChip. In our study the genotype concordance of 40% and 43% was observed in the BovineSNP50 and BovineHD BeadChip respectively.

단일염기다형성 마커를 이용한 백우 품종 식별 방법 (Identification of White Hanwoo Breed Using Single Nucleotide Polymorphism Markers)

  • 김승창;김관우;노희종;김동교;김성우;김찬란;이상훈;고응규;조창연
    • 한국산학기술학회논문지
    • /
    • 제21권1호
    • /
    • pp.240-246
    • /
    • 2020
  • 본 연구는 백우 품종 육성을 위해 분자생물학적 방법을 이용하여 유전적 특성을 파악하고 백우 품종을 식별하기 위한 백우 품종 특이적인 Single Nucleotide Polymorphism (SNP) 마커를 개발하기 위해 수행되었다. 한우 48두와 백우 22두의 혈액에서 추출된 DNA를 이용하여 Illumina Bovine HD 777K SNP chip으로 SNP genotyping을 실시하였다. 각 SNP의 Minor Allele Frequency (MAF) difference (한우와 백우의 차이 절대값)을 계산하고, Fisher's Exact test (Genotype)을 통해 MAF difference의 통계적 유의성(P-value)을 계산하였다. 품종 별 차이를 나타낼 수 있는 마커를 선발기준으로 MAF difference가 100%의 차이를 나타내는 SNP를 식별하였다. 이러한 유전적 차이를 보이는 9개의 단일염기다형성 마커(rs42125585, rs42125591, rs42125833, rs109461720, rs134735704, rs109447299, rs42164846, rs42160000 및 rs137353829)가 선발되었다. 선발된 마커들은 한우와 백우 특이적인 대립유전자를 가지고 서로 다른 대립유전자를 나타내고 있다. 이들 9개의 SNP 마커들을 이용하여 한우와 백우의 품종을 식별할 수 있음을 확인하였고, 이러한 결과들을 바탕으로 백우 품종 식별 마커 특허를 등록하였다. 백우는 원종인 한우에서 분리되어 한국재래종의 특성을 잘 나타내 주는 계통으로, 이러한 백우가 가지고 있는 유전적 특성 연구는 백우를 식별하고 품종으로서 육종하는데 사용되어 종축으로서의 가치 증진을 위한 기반 연구가 될 것으로 생각된다.

Genomic diversity and admixture patterns among six Chinese indigenous cattle breeds in Yunnan

  • Li, Rong;Li, Chunqing;Chen, Hongyu;Liu, Xuehong;Xiao, Heng;Chen, Shanyuan
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제32권8호
    • /
    • pp.1069-1076
    • /
    • 2019
  • Objective: Yunnan is not only a frontier zone that connects China with South and Southeast Asia, but also represents an admixture zone between taurine (Bos taurus) and zebu (Bos indicus) cattle. The purpose of this study is to understand the level of genomic diversity and the extent of admixture in each Yunnan native cattle breed. Methods: All 120 individuals were genotyped using Illumina BovineHD BeadChip (777,962 single nucleotide polymorphisms [SNPs]). Quality control and genomic diversity indexes were calculated using PLINK software. The principal component analysis (PCA) was assessed using SMARTPCA program implemented in EIGENSOFT software. The ADMIXTURE software was used to reveal admixture patterns among breeds. Results: A total of 604,630 SNPs was obtained after quality control procedures. Among six breeds, the highest level of mean heterozygosity was found in Zhaotong cattle from Northeastern Yunnan, whereas the lowest level of heterozygosity was detected in Dehong humped cattle from Western Yunnan. The PCA based on a pruned dataset of 233,788 SNPs clearly separated Dehong humped cattle (supposed to be a pure zebu breed) from other five breeds. The admixture analysis further revealed two clusters (K = 2 with the lowest cross validation error), corresponding to taurine and zebu cattle lineages. All six breeds except for Dehong humped cattle showed different degrees of admixture between taurine and zebu cattle. As expected, Dehong humped cattle showed no signature of taurine cattle influence. Conclusion: Overall, considerable genomic diversity was found in six Yunnan native cattle breeds except for Dehong humped cattle from Western Yunnan. Dehong humped cattle is a pure zebu breed, while other five breeds had admixed origins with different extents of admixture between taurine and zebu cattle. Such admixture by crossbreeding between zebu and taurine cattle facilitated the spread of zebu cattle from tropical and subtropical regions to other highland regions in Yunnan.

한우의 유전체 육종가의 정확도 추정 (Estimation of the Accuracy of Genomic Breeding Value in Hanwoo (Korean Cattle))

  • 이승수;이승환;최태정;최연호;조광현;최유림;조용민;김내수;이중재
    • Journal of Animal Science and Technology
    • /
    • 제55권1호
    • /
    • pp.13-18
    • /
    • 2013
  • 본 연구는 농협 한우개량사업소 후대검정우 552두의 도체중, 배최장근단면적, 등지방두께 및 근내지방도를 측정한 후 고밀도 SNP 패널(777K)을 사용하여 유전체 혈연 행렬(Genetic Relationship Matrix, GRM)을 추정하고 GBLUP (Genomic Best Linear Unbiased Prediction) 방법으로 GEBV (Genomic Estimated Breeding Value)를 구하여 교차 검증(Cross-validation) 방법으로 그 정확도를 추정함으로써 유전체 선발 기법을 한우 유전평가 체계에 적용하기 위한 기초자료로 이용하고자 수행하였다. 교차 검증 방법으로 각 형질별로 추정된 유전체 육종가의 정확도는 0.915~0.957로 상당히 높게 추정되었다. 대립유전자의 빈도로 계산된 유전체 혈연 행렬을 이용하여 GBLUP 방법으로 추정된 육종가 정확도의 최대 차이는 후대검정우 534두에 대하여 도체중, 배최장근단면적, 등지방 두께 및 근내지방도 순으로 각각 9.56%, 5.78%, 5.78% 및 4.18% 정도의 수준으로 상승했고, 혈통 기록상의 모든 개체 3,674두에 대해서는 형질 별로 최대 13.54%, 6.50%, 6.50% 및 4.31% 정도의 수준으로 증가한 결과가 추정되었다. 이는 한우 보증씨수소의 선발 시스템에서 아직 표현형 자료를 생산할 수 없는 당대검정 후보축 대한 집단을 조성할 때 유전체 정보를 이용한 사전 선발을 활용하면 기존의 상대적으로 낮았던 육종가의 정확도의 상승 효과와 세대 간격의 단축으로 인하여 유전적 개량량을 증대시킬 수 있을 것으로 기대된다. 본 연구에서 genomic breeding value 추정을 위하여 조성된 집단의 경우는 후대 검정우 집단으로서 개체들 간의 혈연관계가 높으며, 이미 전통적인 BLUP 방법으로도 상당히 높은 정확도를 가진 집단을 이용하였다. 그러나, 현재 한우 집단에 대한 유전체 자료 구축 시 이용할 수 있는 정확한 자료는 후대검정우 집단 외에는 참조 집단을 조성할 수 있는 대안이 없으므로, 지속적인 유전체 검정을 위해서는 다양한 유전적 조성이 구축된 참조 집단을 구축해야 할 것으로 사료된다. 또한 유전체 검정을 통한 정확도 상승효과를 기대하기 위해서 지속적으로 참조 집단의 크기를 늘릴 필요성이 있다.