• 제목/요약/키워드: Polymorphic Information Content

검색결과 99건 처리시간 0.026초

RAPD와 SSR 마커를 이용한 사과 품종의 유전적 다양성 분석 (Analysis of Genetic Diversity of Apple Cultivars Using RAPD and SSR Markers)

  • 조강희;허성;김정희;신일섭;한상은;김세희;김대현;김현란
    • 한국육종학회지
    • /
    • 제42권5호
    • /
    • pp.525-533
    • /
    • 2010
  • 본 연구는 사과 품종의 유전적 다양성을 분석하여 육종의 기초 자료로 활용하기 위하여 최근에 국내에서 육성된 품종 및 도입품종을 포함한 34품종을 대상으로 RAPD와 SSR 분석을 수행하였다. RAPD분석에서 총 37종의 선발된 임의 primer를 분석하여 193개의 다형성 밴드(36.2%)를 얻었으며, 평균 다형성 밴드 수는 5.6개였다. SSR 마커 26종을 이용하여 분석한 결과 총 112개의 대립인자가 확인되었고, 마커 당 대립인자 수는 평균 4.3개였다. 유전적 다양성(PIC 값)은 평균 0.843이었고 범위는 0.536(CH03d12)-0.952(CH04c06)였다. RAPD와 SSR분석에서 획득된 305개의 다형성 밴드를 이용하여 UPGMA(비가중 평균결합) 방식으로 유사도 및 집괴분석을 수행한 결과 유전적 유사도 0.640를 기준으로 4개의 그룹으로 분류되었다. 제1그룹에는 '서광'이 단독으로 분류되었고, 제2그룹에는 12품종이 속하였는데 'Spur Earliblaze'와 'Jonathan'을 제외하고 대부분 'Golden delicious'를 교배친으로 이용하여 육성된 품종이 분포하는 것으로 나타났다. 제3그룹에는 'Fuji'와 'Fuji'를 교배친으로 이용되여 선발된 품종 및 그의 아조변이 품종 등 13개 품종이 속하였고 제4그룹에는 '홍로', '감홍', '새나라' 등 8품종이 포함되었다. 품종간 유전적 유사도는 0.529-0.987의 범위로 평균 유전적 유사도는 0.647이었다. 가장 높은 유사도 값(0.987)을 나타낸 품종은 '화랑'과 '단홍' 품종 간이었고 가장 낮은 유사도 지수(0.529)를 나타낸 품종은 '서광'과 '화랑' 품종 간이었다. 본 실험을 통해 사과 34품종 간의 유연관계는 알려진 pedigree와 일치하는 것을 알 수 있었다.

Estimation of Genetic Variation in Holstein Young Bulls of Iran AI Station Using Molecular Markers

  • Rahimi, G.;Nejati-Javaremi, A.;Saneei, D.;Olek, K.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제19권4호
    • /
    • pp.463-467
    • /
    • 2006
  • Genetic profiles of Iranian Holstein young bulls at the national artificial insemination station were determined on the basis of individual genotypes at 13 ISAG's recommended microsatellites, the most useful markers of choice for parentage identification. In the present study a total of 119 individuals were genotyped at 13 microsatellite loci and for possible parent-offspring combinations. A high level of genetic variation was evident within the investigated individuals as assessed from various genetic diversity measures. The mean number of observed alleles per microsatellite marker was 9.15 and the number of effective alleles as usual was less than the observed values (4.03). The average observed and expected heterozygosity values were 0.612 and 0.898, respectively. The mean polymorphic information content (PIC) value (0.694) further reflected a high level of genetic variability. The average exclusion of probability (PE) of the 13 markers was 0.520, ranging from 0.389 to 0.788. The combined exclusion of probability was 0.999, when 13 microsatellite loci were used for analysis in the individual identification system. Inbreeding was calculated as the difference between observed and expected heterozygosity. Observed homozygosity was less than expected which reflects inbreeding of -3.7% indicating that there are genetic differences between bull-sires and bull-dams used to produce young bulls. The results obtained from this study demonstrate that the microsatellite DNA markers used in the present DNA typing are useful and sufficient for individual identification and parentage verification without accurate pedigree information.

Genetic Diversity and Population Structure of Korean Soybean Collection Using 75 Microsatellite Markers

  • Lee, Gi-An;Choi, Yu-Mi;Yi, Jung-Yoon;Chung, Jong-Wook;Lee, Myung-Chul;Ma, Kyung-Ho;Lee, Sok-Young;Cho, Jin-Woong;Lee, Jung-Ro
    • 한국작물학회지
    • /
    • 제59권4호
    • /
    • pp.492-497
    • /
    • 2014
  • Soybean (Glycine max L.) is crucial legume crop as source of high quality vegetable protein and oil, and Korea is regarded as a part of center of soybean origin. To expand the information of conserved genetic diversity, we analyzed the genetic variability of soybean collection mainly introduced Korean accessions using 75 microsatellite markers. A total of 1,503 alleles with an average value of 20.0 alleles were detected among 644 accessions. Korean collection revealed average allele number of 13.4 while Chinese, Japanese and Southeast Asian accessions showed 9.0, 5.4 and 6.5 mean alleles, respectively. Especially, Korean accessions showed more number of private allele per locus as 3.4 contrary to other geographical groups. The mean expected heterozygosity and polymorphic information content was 0.654 and 0.616, respectively, and expected heterozygosity values were not significantly distinguished according to the geographical groups. The phylogenetic dendrogram and deduced population structure based on DNA profiles of 75 SSR loci showed Korean accessions formed distinct gene pool against Chinese accessions, and could be divided into five subpopulations. Korean soybean accessions have specific genetic diversity and might be serve the valuable alleles for bio-industry as a part of the center of soybean origin.

Genetic Relationship among the Korean Native and Alien Horses Estimated by Microsatellite Polymorphism

  • Cho, G.J.
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제19권6호
    • /
    • pp.784-788
    • /
    • 2006
  • Microsatellite polymorphism and the genetic relationship were estimated using genotype information of 305 horses from 11 microsatellite loci. The breeds include the indigenous Korean breeds, Korean native horse (102) and Jeju racing horse (56) together with Japan Hokkaido horse (5), Mongolian horse (19), Thoroughbred horse (108), Quarter horse (11) and Przewalskii horse (4). Allelic frequencies, the number of alleles per locus were estimated by direct counting from observed genotype, and genetic variability was computed using the CERVUX software and DISPAN. The number of alleles per locus varied from 6 (HMS6) to 18 (ASB17) with an average value of 10.45 in horse breeds. The expected total heterozygosity ($H_T$) and coefficient of gene differentiation ($G_{ST}$) ranged 0.764-0.921 (the average value was 0.830) and 0.102-0.266 (the average value was 0.180) in horse breeds, respectively. Four populations (Przewalskii horse, Japan Hokkaido horse, Quarter horse, Thoroughbred horse) showed lower heterozygosity than the average value (the average value was 0.710). The expected heterozygosity within breed ($H_S$) and mean no. of observed alleles ranged from $0.636{\pm}0.064$ (Japan Hokkaido horse) to $0.809{\pm}0.019$ (Mongolian horse), and from 2.73 (Przewalskii horse) to 8.27 (Korean native horse), respectively. The polymorphic information content (PIC) ranged from 0.490 (Przewalskii horse) to 0.761 (Mongolian horse) with an average value of 0.637 in horse breeds. The results showed three distinct clusters with high bootstrap support: the Korean native horse cluster (Korean native horse, Mongolian horse), the European cluster (Przewalskii horse, Thoroughbred horse), and other horse cluster (Jeju racing horse, Japan Hokkaido horse, and Quarter horse). A relatively high bootstrap value was observed for the Korean native horse cluster and European cluster (87%), and the Korean native horse and Mongolian horse (82%). Microsatellite polymorphism data were shown to be useful for estimating the genetic relationship between Korean native horse and other horse breeds, and also be applied for parentage testing in those horse breeds.

EST-SSR Based Genetic Diversity and Population Structure among Korean Landraces of Foxtail Millet (Setaria italica L.)

  • Ali, Asjad;Choi, Yu-Mi;Do, Yoon-Hyun;Lee, Sukyeung;Oh, Sejong;Park, Hong-Jae;Cho, Yang-Hee;Lee, Myung Chul
    • 한국자원식물학회지
    • /
    • 제29권3호
    • /
    • pp.322-330
    • /
    • 2016
  • Understanding the genetic variation among landrace collections is important for crop improvement and utilization of valuable genetic resources. The present study was carried out to analyse the genetic diversity and associated population structure of 621 foxtail millet accessions of Korean landraces using 22 EST-SSR markers. A total of 121 alleles were detected from all accessions with an average of 5.5 alleles per microsatellite locus. The average values of gene diversity, polymorphism information content, and expected heterozygosity were 0.518, 0.594, and 0.034, respectively. Following the unweighted neighbor-joining method with arithmetic mean based clustering using binary data of polymorphic markers, the genotypes were grouped into 3 clusters, and population structure analysis also separated into 3 populations. Principal coordinate analysis (PCoA) explained a variation of 13.88% and 10.99% by first and second coordinates, respectively. However, in PCoA analysis, clear population-level clusters could not be found. This pattern of distribution might be the result of gene flow via germplasm exchanges in nearby regions. The results indicate that these Korean landraces of foxtail millet exhibit a moderate level of diversity. This study demonstrated that molecular marker strategies could contribute to a better understanding of the genetic structure in foxtail millet germplasm, and provides potentially useful information for developing conservation and breeding strategies.

Development of EST-SSRs and Assessment of Genetic Diversity in Little Millet (Panicum sumatrense) Germplasm

  • Ali, Asjad;Choi, Yu-Mi;Hyun, Do-Yoon;Lee, Sukyeung;Kim, Jin-Hee;Oh, Sejong;Lee, Myung Chul
    • 한국자원식물학회지
    • /
    • 제30권3호
    • /
    • pp.287-297
    • /
    • 2017
  • Little millet (Panicum sumatrense) is well known for its salt and drought stress tolerance and high nutritional value, but very limited knowledge of genetic variation and genomic information is available. In this study, a total of 779 primer pairs were designed from the 22,961 EST sequences of switchgrass (Pancium virgatum), of which 48 EST-SSR markers were developed based on the trials of transferability of these primers in little millet. The EST-SSR amplicons showed reproducible single band polymorphism and produced a total of 160 alleles with an average of 3.3 alleles per locus in 37 accessions of little millet. The average values of expected and observed heterozygosities were 0.266 and 0.123, respectively. The polymorphic information content (PIC) values were observed in range of 0.026 to 0.549 with an average of 0.240. The genetic relatedness among the little millet accessions was evaluated by neighbor-joining dendrogram, which grouped all accessions into two distinct groups. The validation thus demonstrated the utility of the switchgrass EST-SSR markers in assessing genomic relationships in little millet. The findings from this study could be useful for designing strategies for the identification of diverse germplasm for conservation and future molecular breeding programs for little millet.

Genetic diversity and relationship of Korean chicken breeds using 12 microsatellite markers

  • Kim, Yesong;Yun, Ji Hye;Moon, Seon Jeong;Seong, Jiyeon;Kong, Hong Sik
    • 한국동물생명공학회지
    • /
    • 제36권3호
    • /
    • pp.154-161
    • /
    • 2021
  • A number of Korean Chicken breeds were registered in Domestic Animal Diversity Information System (DAD-IS, http://dad.fao.org/) of the Food and Agriculture Organization (FAO). Evaluation of genetic diversity and relationship of local breeds is an important factor towards the identification of unique and valuable genetic resources. Therefore, this study aimed to analysis the genetic diversity and relationship of 22 Korean Chicken breeds using 12 microsatellite (MS) markers. The mean number of alleles for each variety was 5.52, ranging from a 3.75 (Leghorn F; NF) to a 7.0 (Ross). The most diverse breed was the Hanhyup3 (HCC), which had the highest expected heterozygosity (HExp) (0.754) and polymorphic information content (PIC) (0.711). The NF was the least diverse population, having the lowest HExp (0.467) and PIC (0.413). As a result of the principal coordinates analysis (PCoA) and factorial correspondence analysis (FCA) confirmed that Hy-line Brown (HL) and Lohmann Brown (LO) are very close to each other and that Leghorn and Rhode Island Red (RIR) are clearly distinguished from other groups. Thus, the reliability and power of identification using 12 types of MS markers were improved, and the genetic diversity and probability of individual discrimination were confirmed through statistical analysis. This study is expected to be used as basic data for the identification of Korean chicken breeds, and our results indicated that these multiplex PCR marker sets will have considerable applications in population genetic structure analysis.

Genetic diversity analysis of Thai indigenous pig population using microsatellite markers

  • Charoensook, Rangsun;Gatphayak, Kesinee;Brenig, Bertram;Knorr, Christoph
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제32권10호
    • /
    • pp.1491-1500
    • /
    • 2019
  • Objective: European pigs have been imported to improve the economically important traits of Thai pigs by crossbreeding and was finally completely replaced. Currently Thai indigenous pigs are particularly kept in a small population. Therefore, indigenous pigs risk losing their genetic diversity and identity. Thus, this study was conducted to perform large-scale genetic diversity and phylogenetic analyses on the many pig breeds available in Thailand. Methods: Genetic diversity and phylogenetics analyses of 222 pigs belonging to Thai native pigs (TNP), Thai wild boars (TWB), European commercial pigs, commercial crossbred pigs, and Chinese indigenous pigs were investigated by genotyping using 26 microsatellite markers. Results: The results showed that Thai pig populations had a high genetic diversity with mean total and effective ($N_e$) number of alleles of 14.59 and 3.71, respectively, and expected heterozygosity ($H_e$) across loci (0.710). The polymorphic information content per locus ranged between 0.651 and 0.914 leading to an average value above all loci of 0.789, and private alleles were found in six populations. The higher $H_e$ compared to observed heterozygosity ($H_o$) in TNP, TWB, and the commercial pigs indicated some inbreeding within a population. The Nei's genetic distance, mean $F_{ST}$ estimates, neighbour-joining tree of populations and individual, as well as multidimensional analysis indicated close genetic relationship between Thai indigenous pigs and some Chinese pigs, and they are distinctly different from European pigs. Conclusion: Our study reveals a close genetic relationship between TNP and Chinese pigs. The genetic introgression from European breeds is found in some TNP populations, and signs of genetic erosion are shown. Private alleles found in this study should be taken into consideration for the breeding program. The genetic information from this study will be a benefit for both conservation and utilization of Thai pig genetic resources.

팽이버섯 (Flammulina velutipes) 계통의 분류를 위한 SSR 마커개발 (Development of SSR markers for classification of Flammulina velutipes strains)

  • 우성이;서경인;장갑열;공원식
    • 한국버섯학회지
    • /
    • 제15권2호
    • /
    • pp.78-83
    • /
    • 2017
  • 버섯과에서 한국, 중국, 일본에서 재배 또는 수집하여 농촌진흥청에 보관 중인 32개의 팽이버섯 계통에 대하여 조사하였다. 팽이버섯의 미소반복서열(microsatellite)을 포함하고 있는 490개의 DNA 단편을 얻었다. 다양한 팽이버섯 균들의 PCR을 통한 DNA 프로파일링을 수행함으로써 다형성 변이가 많이 검출되었다. 총 34개의 대립 유전자가 12개의 다형성 SSR 마커 중에서 검출되었고, 평균 3.42개의 대립 유전자와 대립 유전자의 수는 유전자좌당 2개에서 7개까지 분포하였다. 대립 형질 빈도는 0.42(GB-FV-127)에서 0.98(GB-FV-166)이었으며 이형접합체 관측치($H_O$)와 기대치($H_E$)는 각각 0.00에서 0.94(평균 = 0.18)와 0.03에서 0.67(평균 = 0.32)이었다. 다형성 지수는 (PIC) GB-FV-127 마커에서 가장 높은 0.61, 평균대립 유전자 수는 5를 나타내었고, GB-FV-166마커에서 0.03과 2로 가장 낮았다. 본 연구에서 평균 PIC 값(0.29)은 대립 유전자의 평균 수(3.42)로 관찰되었다. 결론적으로 우리는 풍부한 SSR 라이브러리에서 12 개의 다형성 SSR 마커를 개발하는데 성공했다. 이러한 SSR은 계통 발생 분석, 유전적 변이 평가에 중요하게 사용될 것이다.

Genetic diversity and population structure of indigenous chicken of Bangladesh using microsatellite markers

  • Rashid, Muhammad Abdur;Manjula, Prabuddha;Faruque, Shakila;Bhuiyan, A.K. Fazlul Haque;Seo, Dongwon;Alam, Jahangir;Lee, Jun Heon;Bhuiyan, Mohammad Shamsul Alam
    • Asian-Australasian Journal of Animal Sciences
    • /
    • 제33권11호
    • /
    • pp.1732-1740
    • /
    • 2020
  • Objective: The objectives of this study were to investigate the genetic diversity, population structure and relatedness among the five chicken populations of Bangladesh using microsatellite markers. Methods: A total of 161 individuals representing 5 chicken populations (non-descript Deshi [ND], naked neck [NN], hilly [HI], Aseel [AS], and red jungle fowl [JF]) were included in this study to investigate genetic diversity measures, population structure, genetic distance and phylogenetic relationships. Genotyping was performed using 16 selected polymorphic microsatellite markers distributed across 10 chromosomes. Results: The average observed and expected heterozygosity, mean number of alleles and polymorphic information content were found to be 0.67±0.01, 0.70±0.01, 10.7 and 0.748, respectively in the studied populations. The estimated overall fixation index across the loci (F), heterozygote deficiency within (FIS) and among (FIT) chicken populations were 0.04±0.02, 0.05 and 0.16, respectively. Analysis of molecular variance analysis revealed 88.07% of the total genetic diversity was accounted for within population variation and the rest 11.93% was incurred with population differentiation (FST). The highest pairwise genetic distance (0.154) was found between ND and AS while the lowest distance was between JF and AS (0.084). Structure analysis depicted that the studied samples can be categorized into four distinct types or varieties (ΔK = 3.74) such as ND, NN, and HI where AS and JF clustered together as an admixed population. The Neighbor-Joining phylogenetic tree and discriminant analysis of principal component also showed close relatedness among three chicken varieties namely AS, HI, and JF. Conclusion: The results reflected that indigenous chicken of Bangladesh still possess rich genetic diversity but weak differentiation among the studied populations. This finding provides some important insight on genetic diversity measures that could support the designing and implementing of future breeding plans for indigenous chickens of Bangladesh.