• Title/Summary/Keyword: Yellow Korean Native Chicken

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Genetic Variation and Relationships of Korean Native Chickens and Foreign Breeds Using 15 Microsatellite Markers

  • Kong, H.S.;Oh, J.D.;Lee, J.H.;Jo, K.J.;Sang, B.D.;Choi, C.H.;Kim, S.D.;Lee, S.J.;Yeon, S.H.;Jeon, G.J.;Lee, H.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.19 no.11
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    • pp.1546-1550
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    • 2006
  • The purpose of this study was to assess the genetic variation and establish the relationship amongst breeds and strains using 15 chicken specific microsatellite markers. A total of 285 unrelated DNA samples from four Korean native chicken strains (Black strain of Korean native chicken; KL, Red Brown strain of Korean native chicken; KR, Ogol strain of Korean native chicken; KS and Yellow Brown strain of Korean native chicken; KY) and three introduced chicken breeds (F strain of White Leghorn; LF, K strain of White Leghorn; LK, Rhode Island Red; RC and Cornish; CN) were genotyped to estimate within and between breed genetic diversity indices. All the loci analyzed in 15 microsatellite markers showed a polymorphic pattern and the number of alleles ranged from 5 to 14. The polymorphism information content (PIC) of UMA1019 was the highest (0.872) and that of ADL0234 was the lowest (0.562). The expected total heterozygosity (He) within breed and mean number of observed alleles ranged from 0.540 (LF) to 0.689 (KY), and from 3.47 (LK) to 6.07 (KR), respectively. The genetic variation of KR and KY were the highest and the lowest within Korean native strains, respectively. The genetic distance results showed that Korean native chicken strains were separated with the three introduced chicken breeds clustered into another group. The lowest distance (0.149) was observed between the KR and KL breeds and the highest distance (0.855) between the KR and LK breeds. The microsatellite polymorphism data were shown to be useful for assessing the genetic relationship between Korean native strains and other foreign breeds.

Runs of homozygosity analysis for selection signatures in the Yellow Korean native chicken

  • Jaewon Kim;John Kariuki Macharia;Minjun Kim;Jung Min Heo;Myunghwan Yu;Hyo Jun Choo;Jun Heon Lee
    • Animal Bioscience
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    • v.37 no.10
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    • pp.1683-1691
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    • 2024
  • Objective: Yellow Korean native chicken (KNC-Y) is one of the five pure Korean indigenous chicken breeds that were restored through a government project in 1992. KNC-Y is recognized for its superior egg production performance compared to other KNC lines. In this study, we performed runs of homozygosity (ROH) analysis to discover selection signatures associated with egg production traits in the KNC-Y population. Methods: A total of 675 DNA samples from KNC-Y were genotyped to generate single nucleotide polymorphism (SNP) data using custom 60K Affymetrix SNP chips. ROH analysis was performed using PLINK software, with predefined parameters set for the analysis. The threshold of ROH island was defined as the top 1% frequency of SNPs withing the ROH among the population. Results: In the KNC-Y population, a total of 29,958 runs of homozygosity (ROH) fragments were identified. The average total length of ROH was 120.84 Mb, with each ROH fragment having an average length of 2.71 Mb. The calculated ROH-based inbreeding coefficient (FROH) was 0.13. Furthermore, we revealed the presence of ROH islands on chromosomes 1, 2, 4, 5, 7, 8, and 11. Within the identified regions, a total of 111 genes were annotated, and among them were genes related to economic traits, including PRMT3, ANO5, HDAC4, LSS, PLA2G4A, and PTGS2. Most of the overlapping quantitative trait locus regions with ROH islands were found to be associated with production traits. Conclusion: This study conducted a comprehensive analysis of ROH in the KNC-Y population. Notably, among the findings, the PTGS2 gene is believed to play a crucial role in influencing the laying performance of KNC-Y.

Analysis of Genetic Characteristics of Korean Native Chicken Using DNA Marker (DNA Marker를 이용한 한국 재래닭의 유전특성 분석)

  • 이학교;이성진;황규춘;정일정;박용호;손시환;신영수;오봉국;한재용
    • Korean Journal of Poultry Science
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    • v.23 no.4
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    • pp.177-183
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    • 1996
  • This study was conducted to analyze genetic characteristics of Korean Native Chicken three lines classified on the basis of the feather color and appearance (Red, Yellow, and Black) using DNA fingerprinting method. To estimate the genetic relatedness among breeds and similarities within breeds, we collected blood samples from Korean Native Chicken (KNC), Rhode Island Red (RIR), White Leghorn (WL), and Cornish(CN) and obtained genomic DNA from the blood of 10 individuals randomly selected within the breeds and lines. The genomic DNA samples were digested with restriction enzymes (Hinf J, Hae Ill) and hybridized with various probes (Jeffreys' probes 33.15, 33.6 and M13) after Southern transfer. Genetic similarities within breeds were characterized by band sharing (BS) value, estimated by the DFP band pattern between the pair of lanes. BS values within WL, RIR, and KNC were 0.82, 0.70 and 0.56, respectively. Relative genetic diversity (BS value) of KNC was higher than those two breeds (WL, RIR). Estimation of genetic similarity between KNC lines and control breed (RIR) was 0.32, whereas similarity within KNC lines (6 groups) was 0.50. In this analysis, KNC was showed to have a highly genetic diver-sity at the DNA level, and to be closer in genetic distance to RIR (0.67) than any other breeds.

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Identification of Chromosomal Band Markers of the Korean Native Chicken (한국재래계의 염색체 분염 표지 분석)

  • Baik, K. H.;Lee, C. Y.;Sang, B. D.;Choi, C. H.;Kim, H. K.;Sohn, S. H.
    • Journal of Animal Science and Technology
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    • v.45 no.1
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    • pp.1-12
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    • 2003
  • The present study was carried out to establish the standard karyotype of the Korean Native Chicken and to find their chromosomal band markers using high-resolution banding technique. Chromosome analysis was performed on early chick embryos following in vitro culture of fertilized eggs of the yellow-brown and the red-brown lines of the Korean Native Chicken which had been established at National Livestock Research Institute. The high-resolution banding of the chromosome was achieved by treating the embryos with ethidium bromide and colchicine during culture. On GTG-banding, the Korean Native Chicken exhibited a typical chick banding pattern in all the macrochromosomes. Overall chromosomal morphology and positions of typical landmarks of the Korean Native Chicken were virtually identical to those of White Leghorn and International System for Standardized Avian Karyotypes(ISSAK). However, the lengths and G-band numbers of the Korean Native Chicken macrochromosomes were greater than those of White Leghorn and ISSAK. Especially in chromosomes 1 and Z, the Korean Native Chicken exhibited more separated bands in compared with ISSAK. In C-banding patterns, although a lot of observed cells had C-band polymorphic patterns, almost the Korean Native Chicken macrochromosomes had heterochromatic C-band on centromeres and/or near terminal part. However, the heterochromatic C-band was constantly observed at the end of q-arm of Z chromosomes and on the whole W chromosome. In addition, the Korean Native Chicken exhibited distinctive heteromorphic patterns of C-bands on the centromere of chromosome 3 and at the end of q-arm of Z chromosome between homologous chromosomes.

Investigation of TYR and MC1R polymorphisms in Korean native chickens and the commercial chickens (토종닭과 실용계에서 TYR 및 MC1R 유전자의 변이 분석)

  • Heo, Kang-Nyeong;Choo, Hyo-Jun;Seo, Bo-Young;Park, Mi-Na;Jung, Kie-Chul;Hwang, Bo-Jong;Kim, Hak-Kyu;Hong, Eui-Chul;Seo, Ok-Suk;Kang, Bo-Seok
    • Korean Journal of Agricultural Science
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    • v.38 no.3
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    • pp.465-471
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    • 2011
  • The commercial Korean native chickens (WR_CC) was developed by crossing a few native chicken breeds in Korea. In order to investigate the breed identification markers, SNPs from TYR gene and MC1R gene, which are associated with skin and feather colors respectively, were initially identified. In case of 3 identified SNPs in the TYR gene, yellow shank color was identified in Loss, Harvard, AA, RIR and CC, which have the fixed SNPs in most of the animals. On the other hand, SNP variations were observed in KNC_RB, C_B, WR_CC and HH_CC, which have the black, yellow and mixed color with black and yellow shank colors. Also, the investigation of 3 SNPs in the MC1R gene indicated that there were associations between shank and feather colors in RIR, SF, KNC_B, C_B and RIR. However, these results are not consistent among breeds. These SNP type inconsistencies within breeds suggested that the selection was performed based on the phenotypes, which is not include the genotype information. Thus, selection based on genetic information is required in the future.

Estimation of Genetic Characteristic and Cumulative Power of Discrimination using the Microsatellite Markers in Korean Native Chicken (Microsatellite Marker를 사용한 재래 닭 품종 유전적 특성 및 개체 식별력 분석)

  • Lee, Kun-Woo;Oh, Jae-Don;Lee, Jin-Ah;Cho, Kyu-Ho;Nam, In-Sik;Lee, Jun-Heon;Seo, Ok-Suk;Jeon, Gwang-Joo;Lee, Hak-Kyo;Kong, Hong-Sik
    • Korean Journal of Poultry Science
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    • v.37 no.1
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    • pp.81-87
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    • 2010
  • To estimate the genetic characteristics and cumulative power of discrimination (CPD) Korean Native Chicken. We used a total of 195 genomic DNAs from four breeds population (Korean Native Red chicken: R, Korean Native Yellow chicken: Y, Korean Native Black chicken: L, Ogal chicken: S). Frequencies of microsatellites markers were used to estimate heterozygosities and genetic distances. The lowest distance (0.05) was observed between the R and L strains and the highest distance (0.158) between the L and S strains. Korean native chicken strains (R, Y, K) have each other comparatively near genetic distance. Cumulative power of discriminate (CPD) was 99.999% by including the 10 microsatellites loci individual identification system. And then matching probability in that two different individuals incidentally have same genotype was estimated to $0.36{\times}10^{-7}$. The system employing the 10 markers therefore provided to be applicable to individual identification in Korea native chicken.

Estimation of Genetic Characteristics and Cumulative Power of Discrimination in Korean Native Chicken and Korean Native Commercial Chicken (토종닭 순계와 실용계의 유전적 특성 및 품종식별력 분석)

  • Oh, Jae-Don;Lee, Kun-Woo;Seo, Ok-Suk;Cho, Byung-Wook;Jeon, Gwang-Joo;Lee, Hak-Kyo;Kong, Hong-Sik
    • Journal of Life Science
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    • v.20 no.7
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    • pp.1086-1092
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    • 2010
  • To estimate the genetic characteristics and cumulative power of discrimination (CPD) within Korean native commercial chicken, we used a total of 395 genomic DNAs from six breeds population (Korean Native Red chicken: R, Korean Native Yellow chicken: Y, Korean native Commercial Chicken: C, Ogal chicken: S, Hy-Line Brown: H, White Leghorn: W). Genetic diversity indices including mean allele number among loci, unbiased heterozygosity ($h_i$) within locus, effective number of alleles ($N_e$) and polymorphism information content (PIC) as well as the unbiased average heterozygosity (H) among loci in the populations were calculated using the generated allele frequencies by each marker. Frequencies of microsatellites markers were used to estimate heterozygosities and genetic distances. The nearest distance (0.119) was observed between the C and Y strains. The generated unbiased average heterozygosity among loci in each population was integrated to the global formula of CPD and the result demonstrated that the CPD within the six chicken populations was 99.461%.

Genetic Parameters for Growth-Related Traits in Korean Native Chicken

  • Cahyadi, Muhammad;Park, Hee-Bok;Seo, Dong-Won;Jin, Shil;Choi, Nuri;Heo, Kang-Nyeong;Kang, Bo-Seok;Jo, Cheorun;Lee, Jun-Heon
    • Korean Journal of Poultry Science
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    • v.42 no.4
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    • pp.285-289
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    • 2015
  • Body and carcass weights are always being main focus in poultry industry. The aim of current study was to estimate the heritability, genetic and phenotypic correlations of growth-related traits in Korean native chicken. A total of 596 chickens representing five lines of Korean native chicken (Black, Gray-Brown, Red-Brown, White, and Yellow-Brown) were reared under the standard breeding procedures in the National Institute of Animal Science (NIAS), Korea. Their body weights were observed every two weeks from hatched to 20 weeks of age. In addition, shank length and carcass weight were also measured before and after slaughter, respectively. The ASReml-R program was used to compute genetic parameters. The body weight traits were moderate to high heritability values (ranged 0.29~0.63). The heritablilites of carcass weight ($h^2=0.20$) and shank length ($h^2=0.20$) were categorized as moderate. Moreover, both genetic and phenotypic correlations were ranged form 0.62 to 0.99 and ranged from 0.42 to 0.98, respectively. These findings can be useful information for quantitative genetic studies and breeding plan of Korean native chicken.

Investigation of MC1R SNPs and Their Relationships with Plumage Colors in Korean Native Chicken

  • Hoque, M.R.;Jin, S.;Heo, K.N.;Kang, B.S.;Jo, C.;Lee, J.H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.26 no.5
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    • pp.625-629
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    • 2013
  • The melanocortin 1 receptor (MC1R) gene is related to the plumage color variations in chicken. Initially, the MC1R gene from 30 individuals was sequenced and nine polymorphisms were obtained. Of these, three and six single nucleotide polymorphisms (SNPs) were confirmed as synonymous and nonsynonymous mutations, respectively. Among these, three selected SNPs were genotyped using the restriction fragment length polymorphism (RFLP) method in 150 individuals from five chicken breeds, which identified the plumage color responding alleles. The neighbor-joining phylogenetic tree using MC1R gene sequences indicated three well-differentiated different plumage pigmentations (eumelanin, pheomelanin and albino). Also, the genotype analyses indicated that the TT, AA and GG genotypes corresponded to the eumelanin, pheomelanin and albino plumage pigmentations at nucleotide positions 69, 376 and 427, respectively. In contrast, high allele frequencies with T, A and G alleles corresponded to black, red/yellow and white plumage color in 69, 376 and 427 nucleotide positions, respectively. Also, amino acids changes at position Asn23Asn, Val126Ile and Thr143Ala were observed in melanin synthesis with identified possible alleles, respectively. In addition, high haplotype frequencies in TGA, CGG and CAA haplotypes were well discriminated based on the plumage pigmentation in chicken breeds. The results obtained in this study can be used for designing proper breeding and conservation strategies for the Korean native chicken breeds, as well as for the developing breed identification markers in chicken.

Relationship between Egg Productivity and IGF-I Genotypes in Korean Native Ogol Chicken

  • Kim, M. H.;W. J. Kang;D. S. Seo;Y. Ko
    • Proceedings of the KSAR Conference
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    • 2003.06a
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    • pp.95-95
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    • 2003
  • Endocrine factors, such as steroid hormones and growth factors, regulate egg productivity including the number of egg production, egg weight, sexual maturity, and the number of small yellow follicles. Especially, insulin-like growth factor-I (IGF-I) is involved in the regulation of ovulation rate and ovarian follicular development in chickens, and the relationship between IGF-I genotype and egg weight was reported. However, the effect of grwoth factors on egg productivity in Korean Native Ogol Chicken (KNOC) has not been studied. Therefore this study was conducted to identify the relationship among endocrine factors, IGF-I genotypes, and egg productivity. IGF-I genotypes (AA, AB, BB) were represented to 12.6%, 34%, and 53.4%, respectively. AB genotype stimulates the secretion of estradiol and progesterone in serum (30 and 40 week), regulates growth and proliferation of follicles at 60 weeks, and is positively associated with the number of small yellow follicles. Therefore, these results suggest that there are possibility to IGF-I genotypes for a genetic marker in egg productivity of KNOC.

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