• 제목/요약/키워드: Effective Population Size (Ne)

검색결과 5건 처리시간 0.026초

Extent of linkage disequilibrium and effective population size of the Landrace population in Korea

  • Shin, Donghyun;Kim, Sung-Hoon;Park, Joowan;Lee, Hak-Kyo;Song, Ki-Duk
    • Asian-Australasian Journal of Animal Sciences
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    • 제31권8호
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    • pp.1078-1087
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    • 2018
  • Objective: The genetic diversity of the Landrace population, a representative maternal pig breed in Korea, is important for genetic improvement. Previously, the effective population size (Ne) has been used to infer the genetic diversity of a population of interest. In this study, we aimed to use single nucleotide polymorphism (SNP) data to characterize linkage disequilibrium (LD) and the Ne of the Korean Landrace population. Methods: We genotyped 1,128 Landrace individuals from three representative Korean major grand-grand-parent (GGP) farms using the Illumina PorcineSNP60 version2 BeadChip, which covers >61,565 SNPs located across all autosomes and mitochondrial and sex chromosomes. We estimated the expected LD and current Ne, as well as ancestral Ne. Results: In the Korean Landrace population, the mean LD ($r^2$) of 3.698 million SNP pairs was $0.135{\pm}0.204$. The mean $r^2$ decreased slowly with as the distance between SNPs increased, and remained constant beyond 3 Mb. According to the $r^2$ calculations, 8,085 of 3.698 million SNP pairs were in complete LD. The current Ne (${\pm}$standard deviation) of the Korean Landrace population is approximately 92.27 [79.46; 105.07] individuals. The ancestral Ne exhibited a slow and steady decline from 186.61 to 92.27 over the past 100 generations. Additionally, we observed more a rapid Ne decrease from the past 20 to 10 generations ago, compared with other intervals. Conclusion: We have presented an overview of LD and the current and ancestral Ne values in the Korean Landrace population. The mean LD and current Ne for the Korean Landrace population confirm the genetic diversity and reflect the history of this pig population in Korea.

Demographic Trends in Korean Native Cattle Explained Using Bovine SNP50 Beadchip

  • Sharma, Aditi;Lim, Dajeong;Chai, Han-Ha;Choi, Bong-Hwan;Cho, Yongmin
    • Genomics & Informatics
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    • 제14권4호
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    • pp.230-233
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    • 2016
  • Linkage disequilibrium (LD) is the non-random association between the loci and it could give us a preliminary insight into the genetic history of the population. In the present study LD patterns and effective population size (Ne) of three Korean cattle breeds along with Chinese, Japanese and Mongolian cattle were compared using the bovine Illumina SNP50 panel. The effective population size (Ne) is the number of breeding individuals in a population and is particularly important as it determines the rate at which genetic variation is lost. The genotype data in our study comprised a total of 129 samples, varying from 4 to 39 samples. After quality control there were ~29,000 single nucleotide polymorphisms (SNPs) for which $r^2$ value was calculated. Average distance between SNP pairs was 1.14 Mb across all breeds. Average $r^2$ between adjacent SNP pairs ranged between was 0.1 for Yanbian to 0.3 for Qinchuan. Effective population size of the breeds based on $r^2$ varied from 16 in Hainan to 226 in Yanbian. Amongst the Korean native breeds effective population size of Brindle Hanwoo was the least with Ne = 59 and Brown Hanwoo was the highest with Ne = 83. The effective population size of the Korean cattle breeds has been decreasing alarmingly over the past generations. We suggest appropriate measures to be taken to prevent these local breeds in their native tracts.

Single nucleotide polymorphism-based analysis of the genetic structure of Liangshan pig population

  • Liu, Bin;Shen, Linyuan;Guo, Zhixian;Gan, Mailing;Chen, Ying;Yang, Runling;Niu, Lili;Jiang, Dongmei;Zhong, Zhijun;Li, Xuewei;Zhang, Shunhua;Zhu, Li
    • Animal Bioscience
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    • 제34권7호
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    • pp.1105-1115
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    • 2021
  • Objective: To conserve and utilize the genetic resources of a traditional Chinese indigenous pig breed, Liangshan pig, we assessed the genetic diversity, genetic structure, and genetic distance in this study. Methods: We used 50K single nucleotide polymorphism (SNP) chip for SNP detection of 139 individuals in the Liangshan Pig Conservation Farm. Results: The genetically closed conserved population consisted of five overlapping generations, and the total effective content of the population (Ne) was 15. The whole population was divided into five boar families and one non-boar family. Among them, the effective size of each generation subpopulation continuously decreased. However, the proportion of polymorphic markers (PN) first decreased and then increased. The average genetic distance of these 139 Liangshan pigs was 0.2823±0.0259, and the average genetic distance of the 14 boars was 0.2723±0.0384. Thus, it can be deduced that the genetic distance changed from generation to generation. In the conserved population, 983 runs of homozygosity (ROH) were detected, and the majority of ROH (80%) were within 100 Mb. The inbreeding coefficient calculated based on ROH showed an average value of 0.026 for the whole population. In addition, the inbreeding coefficient of each generation subpopulation initially increased and then decreased. In the pedigree of the whole conserved population, the error rate of paternal information was more than 11.35% while the maternal information was more than 2.13%. Conclusion: This molecular study of the population genetic structure of Liangshan pig showed loss of genetic diversity during the closed cross-generation reproduction process. It is necessary to improve the mating plan or introduce new outside blood to ensure long-term preservation of Liangshan pig.

Microsatellite 마커를 이용한 대왕바리(Epinephelus lanceolatus) 친어 집단의 가계도 분석 효율 (Effectiveness of Microsatellite Markers for Parentage Analysis of Giant Grouper (Epinephelus lanceolatus) Broodstock)

  • 김근식;노충환;;방인철
    • 한국어류학회지
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    • 제27권1호
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    • pp.10-15
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    • 2015
  • 현재 IUCN의 취약 등급인 대왕바리(giant grouper, Epinephelus lanceolatus) 친어의 효율적인 관리 시스템 구축을 위한 기반연구로서 기 개발되어 있는 동종의 microsatellite 마커를 이용한 가계도 분석 효율을 조사하였다. 대왕바리 친어 32마리를 8개의 microsatellite 마커로 분석한 결과 총 52개의 대립유전자가 검출되었으며, 기대치 이형접합율은 0.663, 근친교배계수는 0.011로 조사되어 현재 확보된 대왕바리 친어는 유전 다양성이 비교적 잘 유지되고 있었다. 하지만 유효집단 크기가 35로 추정됨으로써 지속적인 친어 확보의 필요성을 보였다. 해당 마커를 이용한 동일 유전자형 출현 확률은 무작위 집단에서 $6.85{\times}10^{-11}$ 그리고 한쪽 부모의 유전자형 확보 및 양친의 유전자형이 확보된 상태에서의 부권 부정률은 각각 0.00835, 0.00027로 나타났으며, 주좌표 분석 결과 친어의 유전자형은 중복되지 않았다. 따라서 본 연구에 이용한 8개의 microsatellite 마커로도 유전자형 데이터베이스를 기반으로 한 대왕바리 친어 관리 시스템 구축이 가능할 것이며, 이를 활용한 유전 다양성이 높은 자손 생산 및 유전적으로 유사한 개체의 중복 확보를 방지할 수 있어 친어 확보의 효율성을 높일 수 있을 것이다.

우리나라 Holstein 능력검정 젖소 집단의 혈통구조 및 근교계수 분석 (Analysis of Pedigree Structure and Inbreeding Coefficient for Performance Tested Holstein Cows in Korea)

  • 원정일;당창권;임현주;정연섭;임석기;이정구;김종복;조미례;민홍립;윤호백
    • 농업생명과학연구
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    • 제50권2호
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    • pp.107-116
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    • 2016
  • 본 연구는 우리나라의 Holstein 능력검정 암소집단의 혈통자료를 이용하여 근교계수 및 혈통구조를 분석함으로써 Holstein 집단의 유전적 다양성 정도를 알아보고자 실시하였다. 2002년부터 2012년 사이에 태어난 Holstein 400,029두에 대한 능력검정 자료 및 509,740두에 대한 혈통정보를 이용하여 분석하였다. 국내 지역별로 혈통완성도를 분석한 결과, 선조 3대까지의 조상을 알고 있는 개체의 비율은 경기, 강원, 충남, 충북, 경북, 경남, 전남, 전북, 제주 및 우리나라 전체에 대해 각각 55.18, 23.49, 47.83, 53.62, 56.38, 51.35, 26.58, 49.41, 56.90 및 63.20%로 나타났다. 한편, 출생년도 별 평균근교계수는 2002년부터 2012년까지의 년도별 평균 및 전체에 대해 각각 0.43, 0.44, 0.58, 0.64, 0.78, 0.93, 1.08, 1.23, 1.46, 1.77, 2.03 및 0.93%로 추정되었다. 또한 아비에서 딸소까지 평균 세대간격은 8.15년으로 나타났으며, 어미에서 딸소까지 평균 세대간격은 4.20년으로 나타났다. 근교계수 및 세대간격을 이용하여 추정한 국내 능력검정 젖소 집단의 유효집단크기는 2004, 2009 및 2012년에 대해 각각 56.5, 51.3 및 32.2두로 추정되어 시간이 지남에 따라 유효집단의 크기가 감소하는 것으로 추정되었다.