• Title/Summary/Keyword: Breeds of Origin

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Maternal Origin of Turkish and Iranian Native Chickens Inferred from Mitochondrial DNA D-loop Sequences

  • Meydan, Hasan;Jang, Cafer Pish;Yildiz, Mehmet Ali;Weigend, Steffen
    • Asian-Australasian Journal of Animal Sciences
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    • v.29 no.11
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    • pp.1547-1554
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    • 2016
  • To assess genetic diversity and maternal origin of Turkish and Iranian native chicken breeds, we analyzed the mtDNA D-loop sequences of 222 chickens from 2 Turkish (Denizli and Gerze) and 7 Iranian (White Marandi, Black Marandi, Naked Neck, Common Breed, Lari, West Azarbaijan, and New Hampshire) native chicken breeds, together with the available reference sequences of G. gallus gallus in GenBank. The haplotype diversity was estimated as $0.24{\pm}0.01$ and $0.36{\pm}0.02$ for Turkish and Iranian populations, respectively. In total, 19 haplotypes were observed from 24 polymorphic sites in Turkish and Iranian native chicken populations. Two different clades or haplogroups (A and E) were found in Turkish and Iranian chickens. Clade A haplotypes were found only in White Marandi, Common Breed and New Hampshire populations. Clade E haplotypes, which are quite common, were observed in Turkish and Iranian populations with 18 different haplotypes, of which Turkish and Iranian chickens, Clade E, haplotype 1 (TRIRE1) was a major haplotype with the frequency of 81.5% (181/222) across all breeds. Compared to red jungle fowl, Turkish and Iranian chicken breeds are closely related to each other. These results suggest that Turkish and Iranian chickens originated from the same region, the Indian subcontinent. Our results will provide reliable basic information for mtDNA haplotypes of Turkish and Iranian chickens and for studying the origin of domestic chickens.

Genetic Diversity of mtDNA D-loop and Maternal Origin of Three Chinese Native Horse Breeds

  • Zhang, Tao;Lu, Hongzhao;Chen, Chen;Jiang, Hai;Wu, Sanqiao
    • Asian-Australasian Journal of Animal Sciences
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    • v.25 no.7
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    • pp.921-926
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    • 2012
  • In order to protect the genetic resource of native horse breeds, the genetic diversity of mitochondrial DNA (mtDNA) D-loop of three native horse breeds in western China were investigated. Forty-three 600 bp mtDNA D-loop sequences were analyzed by PCR and sequencing techniques, 33 unique haplotypes with 70 polymorphic sites were detected in these horses, which account for 11.67% of 600 bp sequence analyzed, showing the abundant genetic diversity of the three native horse breeds in western China. The Neighbour-Joining (NJ) phylogenetic tree based on 247 bp of 43 D-loop sequences demonstrated the presence of seven major lineages (A to G), indicating that the three native horse breeds in western China originated from multiple maternal origins. Consistent with the front, the NJ phylogenetic tree based on 600 bp of mtDNA D-loop sequences of 43 Chinese western native horses and 81 sequences of six horse breeds from GenBank indicated that the three horse breeds had distributed into the seven major lineages (A to G). The structure of the phylogenic tree is often blurred because the variation in a short segment of the mitochondrial genome is often accompanied by high levels of recurrent mutations. Consequently, longer D-loop sequences are helpful in achieving a higher level of molecular resolution in horses.

Analysis of genetic diversity and distances in Asian cattle breeds using microsatellite markers

  • Shi, Zheng;Lee, Ji-Hong;Lee, Yoon-Seok;Oh, Dong-Yeub;Yeo, Jung-Sou
    • Journal of the Korean Data and Information Science Society
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    • v.21 no.4
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    • pp.795-802
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    • 2010
  • This study defined the genetic diversity of five breeds of cattle in Asia by analyzing 6 microsatellite markers in 270 animals. Based on expected mean heterozygosity, the lowest genetic diversity was exhibited in Japanese black cattle (HE=0.5849), and the highest in Chinese yellow cattle (HE=0.8073). Average proportion of genetic variation due to interpopulation subdivision among these five cattle breeds varied between 11.7 and 12.5%. The genetic distances were roughly divided into three groups: Japanese black cattle, Holstein, and the three remaining breeds. This clustering agrees with the origin and geographical distributions of these five cattle breeds.

Allele Frequency of the Bovine Y-chromosomal Microsatellite Locus in the Cattle Breeds (소 Y 염색체 특이 Microsatellite를 이용한 품종별 대립유전자 빈도 분석)

  • Yoon, D.;Park, E.W.;Cho, Y.M.;Cheong, I.C.;Im, S.K.
    • Journal of Animal Science and Technology
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    • v.49 no.4
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    • pp.429-436
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    • 2007
  • The INRA124 is a bovine Y-chromosomal specific microsatellite locus that has been revealed a polymorphism. This locus has two alleles. The 132 bp allele is specific to cattle (humpless) of taurine origin and the 130 bp allele is specific to cattle (humped) of indicine origin. A total 822 males of 20 breeds or populations; North Eastern Asian breeds (Hanwoo, Korean Black cattle, Chik-so, CBK, Japanese Black cattle, Japanese Brown cattle, Yanbian cattle), Chinese yellow cattle (Luxi cattle, Nanyang cattle), European origin (Angus, Hereford, Charolais, Simmental, Brown swiss, Holstein, Limousin), African origin (Kavirondo zebu, White Fulani, crossbreed of N'Dama and Boran), Indian origin (Sahiwal) were characterized the distribution of alleles using INRA124 locus. Any individuals of European, Japanese origins and Hanwoo were not detected 130 bp allele, Bos indicus specific allele. Bos indicus breeds of Indian and African origins were not detected 132 bp allele, Bos taurus specific allele. CBK population that the crossbreed of Hanwoo, Brahman and Charolais showed the frequency of 0.19 in indicine specific allele. The breeds of Chinese mainland, Luxi and Nanyang cattle were detected 0.46 and 0.29 frequencies in indicine specific allele, respectively. These results suggest that Korean cattle, Hanwoo, had not been originated from a crossbred between Bos primigenius in Europe and Bos indicus in India.

Length polymorphism in OGT between Korean native pig, Chinese Meishan, and the Western pig breeds

  • Nam, Yoon Seok;Kim, Doo-Wan;Kim, Myoung-Jik;Cho, Kyu-Ho;Kim, Jong Gug
    • Journal of Animal Science and Technology
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    • v.57 no.3
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    • pp.12.1-12.5
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    • 2015
  • Background: The Korean native pig (KNP) is generally thought to have come from northern China to the Korean peninsula approximately 2000 years ago. KNP pigs were at the brink of extinction in the 1980s, since then efforts have been made to restore the breed by bringing together the remaining stocks in South Korea. As a result, KNP was registered as a breed in 2006. To find additional breed-specific markers that are distinct among pig breeds, variations in O-linked N-acetylglucosamine transferase (OGT) were investigated. OGT is located on chromosome X and catalyzes the post-translational addition of a single O-linked-${\beta}$-N-acetylglucosamine to target proteins. Findings: Length polymorphism in the intron 20 of OGT was identified. The intron 20 of OGT from Duroc, Landrace, and Yorkshire breeds was 281-bp longer than that from either KNP or Chinese Meishan pigs. The difference between the Western pig breeds (BB genotype) and KNP or Meishan pigs (AA genotype) was due to an inserted 276-bp element and the 5-bp ACTTG. Conclusions: The polymorphism in OGT identified in this study may be used as an additional marker for determining the breed of origin among Meishan and the Western pig breeds. The length polymorphism suggests that the locus near OGT is not fixed in KNP. This marker would be relevant in determining the breed of origin in crossbred pigs between KNP pigs with known genotypes and the Western pig breeds with BB genotypes, thus confirming the contribution of the X chromosome from each breed.

Analysis of Microsatellite DNA Polymorphisms in Five China Native Cattle Breeds and Application to Population Genetics Studies

  • Jin, Hai-Guo;Zhao, Yu-Min;Zhou, Guo-li
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.12
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    • pp.1696-1700
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    • 2005
  • Five China native cattle breeds have been characterized by using 10 microsatellite DNA markers. The studied populations can be divided into five groups: Luxi cattle, Nanyang cattle, Jinnan cattle, Qinchuan cattle and Yanbian cattle. Allele frequencies were calculated and used for the characterization of the breeds and the study of their genetic relationships. Heterozygosity, polymorphism information content, the effective number of alleles was calculated. Nei' standard genetic distance (1978) was calculated and used for a neighbor-joining tree construction. NJ tree showed that Luxi cattle, Nanyang cattle, Jinnan cattle and Qinchuan cattle are closely related, whereas Yanbian cattle are clearly distinct from other four populations. The genetic relationship of five breeds corresponds to their history and geographic origins. This work analyzes the recent origin of these populations and contributes to the knowledge and genetic characterization of China native breeds.

Genetic Relationships among Different Breeds of Chinese Gamecocks Revealed by mtDNA Variation

  • Qu, L.J.;Li, X.Y.;Yang, N.
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.8
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    • pp.1085-1090
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    • 2009
  • There are currently five primary breeds of Chinese gamecock, the Henan, Luxi, Tulufan, Xishuangbanna andZhangzhou. Though there is historical evidence of cockfighting in China dating as far back as 2,800 years, the origin and genetic relationships of these breeds are not well understood. We used sequence variation from the mtDNA cytb gene and control region (1,697 bp) to examine the domestication history and genetic relationship of the Chinese gamecock. From 75 samples (14-16 per breed) we found 34 haplotypes, and 45 variable nucleotides. Phylogenetic reconstruction indicated multiple origins of the gamecock breeds. The breeds in the north and center of China, Tulufan, Luxi and Henan, clustered together in a haplogroup and may have the same ancestor. However the southern breeds, Zhangzhou and Xishuangbanna clustered into two isolated haplogroups, suggesting another two origins of Chinese gamecock. Meanwhile, extensive admixture was also found because samples from different breeds, more or less, were always grouped together in the same clades. Based on these results, we discuss the possibilities of multiple origins of gamecock breeds, from both ancestral gamecocks as well as other domestic chickens and red jungle fowl.

Genetic Diversity Measures of 8 Local Sheep Breeds in Northwest of China for Genetic Resource Conservation

  • Zeng, X.C.;Chen, H.Y.;Hui, W.Q.;Jia, B.;Du, Y.C.;Tian, Y.Z.
    • Asian-Australasian Journal of Animal Sciences
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    • v.23 no.12
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    • pp.1552-1556
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    • 2010
  • The aim of this study was to evaluate, through the use of microsatellite markers, the current genetic diversity and the relationships of 375 individuals from 8 local sheep breeds reared in typical breeding farms in the northwest of China, and moreover, to offer a contribution towards genetic conservation decisions for the studied breeds. The expected heterozygosities and allelic richness for the 8 breeds varied from 0.474 to 0.623 and from 3.8 to 5.4, respectively. All the populations showed a significant deficit in heterozygosity and a relatively low level of genetic diversity. Furthermore, the high positive FIS value (ranging from 0.255 to 0.556) indicated inbreeding to be one of the main causes for high genetic homogeneity and lack of heterozygosity in all breeds. The clustering analysis performed with the DISPAN package showed that Aletai, Kazak, Bashibai and Bayinbuluke were grouped together, and Hetian, Qira black and Duolang were grouped together, which indicated that the relationship among breeds displayed some degree of consistency with their geographical distribution, production and origin. These findings indicate that improved conservation measures must be undertaken to avoid further losses of genetic diversity and minimize inbreeding represented by these breeds.

African Maternal Origin and Genetic Diversity of Chinese Domestic Donkeys

  • Lei, Chu-Zhao;Ge, Qing-Lan;Zhang, Hu-Cai;Liu, Ruo-Yu;Zhang, Wei;Jiang, Yong-Qing;Dang, Rui-Hua;Zheng, Hui-Ling;Hou, Wen-Tong;Chen, Hong
    • Asian-Australasian Journal of Animal Sciences
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    • v.20 no.5
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    • pp.645-652
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    • 2007
  • The origin of domestic donkeys in China has been controversial. To clarify the origin of Chinese domestic donkeys, we investigated the partial mitochondrial D-loop sequences of 126 samples from 12 native breeds. The results revealed two mitochondrial origins, lineage Somali and lineage Nubian of African wild ass detected in Chinese domestic donkeys. Lineage Somali was predominant in Chinese domestic donkey breeds. The pattern of genetic variation in ass mtDNA D-loop sequences indicated that the two lineages Somali and Nubian from China had undergone population expansion events. In a combined analysis of lineages Somali and Nubian between previously published sequences from other countries/regions and sequences of Chinese domestic donkeys, the results indicated that the two lineages of Chinese domestic donkeys were from Africa and supported the African maternal origins of Chinese domestic donkeys. There was no obvious geographical structure in Chinese domestic donkey breeds, but the population showed abundant mtDNA diversity. The spread routes of Chinese domestic donkeys were also discussed.

Genetic Diversity and Origin of Chinese Domestic Goats Revealed by Complete mtDNA D-loop Sequence Variation

  • Liu, R.Y.;Lei, C.Z.;Liu, S.H.;Yang, G.S.
    • Asian-Australasian Journal of Animal Sciences
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    • v.20 no.2
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    • pp.178-183
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    • 2007
  • China has numerous native domestic goat breeds, but so far there has been no extensive study on genetic diversity, population demographic history, and origin of Chinese goats. To determine the origin and genetic diversity of Chinese goats, we analyzed the complete mtDNA D-loop sequences of 183 goats from 13 breeds. The haplotype diversity value found in each breed ranged from 0.9333 to 1.0000. The nucleotide diversity value ranged from 0.006337 to 0.025194. Our results showed that there were four mtDNA lineages (A, B, C and D), in which lineage A was predominant, lineage B was moderate, and lineages C and D were at low frequencies. Lineages C and D were observed only in the Tibetan breed. The results revealed multiple maternal origins of Chinese domestic goats. There was weaker geographical structuring in the 13 Chinese goat populations, which suggested that there existed high gene flow among goat populations caused by the extensive transportation of goats in the course of history.