• Title/Summary/Keyword: mtDNA control region

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Genetic Distinctness of the Korean Red-backed Vole (Myodes regulus) from Korea, Revealed by the Mitochondrial DNA Control Region

  • Koh, Hung-Sun;Yang, Beong-Kug;Lee, Bae-Keun;Jang, Kyung-Hee;Bazarsad, Davaa;Park, Nam-Jeong
    • Animal Systematics, Evolution and Diversity
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    • v.26 no.3
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    • pp.183-186
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    • 2010
  • To identify Korean red-backed voles (Myodes regulus) from Korea by mitochondrial DNA (mtDNA) sequencing, we obtained mtDNA control region sequences of 17 red-backed voles from Korea and northeast China, and these sequences were compared with the corresponding haplotypes of Myodes obtained from GenBank. We identified five red-backed voles from Mt. Changbai and Harbin as M. rufocanus and another three redbacked voles from Harbin as M. rutilus, respectively. Moreover, nine red-backed voles from Korea, showing the average nucleotide distance of 0.66% among nine haplotypes, were different from other species of Myodes, and the average distance between nine haplotypes of red-backed voles from Korea and seven haplotypes of M. rufocanus was 6.41%, whereas the average distance between nine haplotypes of red-backed voles from Korea and five haplotypes of M. rutilus was 14.8%. We identified the red-backed voles from Korea as M. regulus, and found that M. regulus is distinct in its mtDNA control region sequences as well, although we propose further analyses with additional specimens from East Asia using nuclear and mtDNA markers to confirm the distinctness of M. regulus.

Animal species identification by co-amplification of hypervariable region 1 (HV1) and cytochrome b in mitochondrial DNA

  • Lim, Si Keun;Park, Ki Won
    • Analytical Science and Technology
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    • v.18 no.3
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    • pp.257-262
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    • 2005
  • Mitochondrial DNA (mt DNA) sequence analysis has been a useful tool for species identification of animals and human individuals. Two hypervariable regions (HV1 and HV2) in control region of mitochondrial genome were analyzed for human individual identification. In case of animal species identification, several genes on mt DNA such as cytochrome b (cytb), RNAs, cytochrome oxidases (CO) were used. In this study, co-amplification of HV1 and cytb was carried out in order to check the contamination of animal DNA and to verify the human DNA. The primer sets used in PCR were H15997/L16236 for HV1 and H14724/L15149 for cytb. PCR products for HV1 and cytb were 239 bp and 425 bp, respectively. The appearance of two bands on agarose gel implied the DNA came from human, however the single band of cytb gene represented the non-human animal DNA.

First Record of the Omura's Whale (Balaenoptera omurai) in Korean Waters

  • Kim, Ji Hye;Kim, Hyun Woo;Kim, Eun-Mi;Sohn, Hawsun
    • Animal Systematics, Evolution and Diversity
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    • v.34 no.3
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    • pp.162-167
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    • 2018
  • To confirm the genetic identification and phylogenetic relationships of unidentified 6 baleen whales by-caught from 2002 to 2016, a partial sequence of approximately 500 base pair (bp) of the mitochondrial DNA (mtDNA) control region was analyzed and compared to published sequence from Genbank. Our results indicated that the two individuals among 6 specimens are clustered with Omura's whale clade through phylogenetic analysis, which had only a single haplotype. Omura's whale was reclassified as a new species in 2003 and they had not been previously reported in Korean waters. This study firstly revealed existence of Omura's whale in Korean waters by molecular analysis based on mtDNA control region.

Maternal lineage of Okinawa indigenous Agu pig inferred from mitochondrial DNA control region

  • Touma, Shihei;Shimabukuro, Hirotoshi;Arakawa, Aisaku;Oikawa, Takuro
    • Asian-Australasian Journal of Animal Sciences
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    • v.32 no.4
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    • pp.501-507
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    • 2019
  • Objective: The Agu is the only native pig breed in Japan, which is reared in Okinawa prefecture, the southernmost region in Japan. Its origins are considered to be of Asian lineage; however, the genetic background of the Agu is still unclear. The objective of this study was to elucidate the maternal lineage of the Okinawa indigenous Agu pig with the use of the mitochondrial DNA (mtDNA) control region. Methods: The mtDNA control regions of Agu pigs were sequenced and the phylogenetic relationship among Agu, East Asian and European pigs was investigated with the use of 78 Agu individuals. Results: Twenty-seven polymorphic sites and five different haplotypes (type 1 to type 5) were identified within the Agu population. Phylogenetic analysis indicated that types 1 and 2 were included in East Asian lineages; however, the remaining types 3, 4, and 5 were of European lineages, which showed a gene flow from European pigs in the 20th century. Sixty-seven out of 78 Agu individuals (85.9%) possessed mtDNA haplotypes 1 and 2 of the East Asian lineage, which were identical to two haplotypes of ancient mtDNA (7,200 to 1,700 years before the present) excavated at archaeological sites in Okinawa. Conclusion: This study confirmed that the East Asian lineage is dominant in the maternal genetic background of the Agu population, supporting the hypothesis that the ancestors of the Agu pig were introduced from the Asian continent.

Genetic Analysis of Ancient Human Bones Excavated in Sacheon Nuk-do and Gyeongsan Yimdang-dong, Korea (경산 임당동 및 사천 늑도 출토 인골의 유전자 분석)

  • Seo, Min-Seok;Lee, Kyu-Shik
    • 보존과학연구
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    • s.25
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    • pp.47-74
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    • 2004
  • We investigated the nucleotide substitution and insertion polymorphism of the hypervariable region Ⅰ and Ⅱ in mt DNA by sequencing ancient DNA from 51 ancient bones and teeth excavated at Nuk-do and Yimdang-dong in Korea. It revealed 35 sequence types from the ancient Korean. Of these, different sequences were 34 sequences. There were 19 and 38 base substitutions in HVI and HVⅡ, respectively. Some substitutions were characteristic of East Asian populations as compared with data reported on Caucacianpopulations,16051, 16150, 16172, 16223 in region I and 73, 263 in region II were noted as polymorphic sites, respectively. These were distributed evenly along the control region, though the frequency of each site was variable. Nucleotide substitution rather than insertion and deletion was the prevalent pattern of variation. Insertion of cytosine between312 and 315 in region HVⅡ were detected up to 98% in 51 ancient bone samples. This sequence data represents a phylogenetic tree using NTI DNA Suite computer program. The phylogenetic tree showed that mt DNA sequences of Nuk-do bones were relative to west Siberian and Indonesian. The usefulness of mt DNA sequencing in ancient Korean population excavated atarchaeological sites is based on biological and historical evidence for origin and migration of ancient Korean.

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Genetic Study of the Subfamily Salmoninae Based upon Mitochondrial DNA Control Region Sequences (미토콘드리아 DNA control region의 염기분석에 의한 연어아과 어류의 유전학적 연구)

  • Lee, Heui-Jung;Park, Jung-Youn;Kim, Woo-Jin;Min, Kwang-Sik;Kim, Yoon;Yoo, Mi-Ae;Lee, Won-Ho
    • Korean Journal of Ichthyology
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    • v.11 no.2
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    • pp.163-171
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    • 1999
  • The complete sequences of mtDNA control regions of six salmonines were determined: 1089 bp in lenok (Brachymystax lenok); 999 bp in cherry salmon (Oncorhynchus masou masou) and Ishikawa's cherry salmon (O. masou ishikauiae); 1002 bp in chum salmon (O. keta), and 1003 bp in rainbow trout (O. mykiss) and an albino mutant of rainbow trout. The estimated interspecific sequence divergences from PCR/direct sequencing data ranged from 5.42% to 16.49%. The organization of this region is similar to that of other vertebrates. A 81 bp tandemly repeated sequence, associated with length variation was observed in the 3' end of the salmonids control region in this study. In addition, The phylogenetic tree based on the control region sequences supported that cherry salmon was closer to chum salmon than to rainbow trout, while lenok was most distantly related species among six salmonines.

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Effect of Population Reduction on mtDNA Diversity and Demographic History of Korean Cattle Populations

  • Dadi, Hailu;Lee, Seung-Hwan;Jung, Kyoung-Sup;Choi, Jae-Won;Ko, Moon-Suck;Han, Young-Joon;Kim, Jong-Joo;Kim, Kwan-Suk
    • Asian-Australasian Journal of Animal Sciences
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    • v.25 no.9
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    • pp.1223-1228
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    • 2012
  • The population sizes of three Korean indigenous cattle populations have been drastically reduced over the past decades. In this study, we examined the extent to which reduction in populations influenced genetic diversity, population structure and demographic history using complete mitochondrial DNA (mtDNA) control region sequences. The complete mtDNA control region was sequenced in 56 individuals from Korean Black (KB), Jeju Black (JEB) and Korean Brindle (BRI) cattle populations. We included 27 mtDNA sequences of Korean Brown (BRO) from the GenBank database. Haplotype diversity estimate for the total population was high (0.870) while nucleotide diversity was low (0.004). The KB showed considerably low nucleotide (${\pi}$ = 0.001) and haplotype (h = 0.368) diversities. Analysis of molecular variance revealed a low level of genetic differentiation but this was highly significant (p<0.001) among the cattle populations. Of the total genetic diversity, 7.6% was attributable to among cattle populations diversity and the rest (92.4%) to differences within populations. The mismatch distribution analysis and neutrality tests revealed that KB population was in genetic equilibrium or decline. Indeed, unless an appropriate breeding management practice is developed, inbreeding and genetic drift will further impoverish genetic diversity of these cattle populations. Rational breed development and conservation strategy is needed to safeguard these cattle population.

Taxonomic Status of Siberian Flying Squirrel from Korea (Pteromys volans aluco Thomas 1907)

  • Koh, Hung-Sun;Jin, Yi;Yang, Beong-Guk;Lee, Bae-Keun;Heo, Seon-Wook;Jang, Kyung-Hee
    • Animal Systematics, Evolution and Diversity
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    • v.24 no.2
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    • pp.169-172
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    • 2008
  • Sequences of mitochondrial DNA (mtDNA) cytochrome b gene (1,140 bp) and control region (803 bp) of Siberian flying squirrels from Korea (Pteromys volans aluco) and Mt. Changbai of northeast China (P. v. arsenjevi) were obtained to reexamine the taxonomic status of the Korean subspecies. In the cytochrome b gene, six haplotypes of P. v. aluco formed a clade with six haplotypes of P. v. arsenjevi, and in control region, seven haplotypes of P. v. aluco formed a clade with six haplotypes of P. v. arsenjevi. Furthermore, six haplotypes of cytochrome b gene of P. v. aluco from this study formed a clade with four haplotypes of P. v. arsenjevi in far-east Russia obtained from GenBank. We also investigated the research papers previously published that reported the length of tail vertebrae of P. volans, and found that the length was not sufficiently large as to be a key character of P. v. aluco. This result is not consistent with morphological description for its haplotype. Therefore, we conclude that P. v. aluco from Korea might possibly be a synonym of P. v. arsenjevi from northeast China and nearby Russia.

Genetic Diversity and Phylogenetic Analysis of the mtDNA D-loop Region in Tibetan Sheep

  • Wang, X.;Chen, H.;Lei, C. Z.
    • Asian-Australasian Journal of Animal Sciences
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    • v.20 no.3
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    • pp.313-315
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    • 2007
  • Seventeen haplotypes were detected from the complete mitochondrial DNA control region sequences analyzed from eighty individuals of two Tibetan domestic sheep breeds. The nucleotide composition of all the sequences was 33.0% A, 29.7%T, 22.9%C and 14.4%G; G+C was 37.3%. The length of the sequences ranged from 1,107 bp to 1,259 bp. The difference between them was primarily due to 3-5 copy numbers of a 75 bp tandem repeat sequence. The NJ phylogenetic tree (the number of replications of bootstrap test is 1,000) presented three major domestic sheep lineages, which suggested that modern Tibetan sheep breeds are derived from three maternal sources.

Haplogroup Classification of Korean Cattle Breeds Based on Sequence Variations of mtDNA Control Region

  • Kim, Jae-Hwan;Lee, Seong-Su;Kim, Seung Chang;Choi, Seong-Bok;Kim, Su-Hyun;Lee, Chang Woo;Jung, Kyoung-Sub;Kim, Eun Sung;Choi, Young-Sun;Kim, Sung-Bok;Kim, Woo Hyun;Cho, Chang-Yeon
    • Asian-Australasian Journal of Animal Sciences
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    • v.29 no.5
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    • pp.624-630
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    • 2016
  • Many studies have reported the frequency and distribution of haplogroups among various cattle breeds for verification of their origins and genetic diversity. In this study, 318 complete sequences of the mtDNA control region from four Korean cattle breeds were used for haplogroup classification. 71 polymorphic sites and 66 haplotypes were found in these sequences. Consistent with the genetic patterns in previous reports, four haplogroups (T1, T2, T3, and T4) were identified in Korean cattle breeds. In addition, T1a, T3a, and T3b sub-haplogroups were classified. In the phylogenetic tree, each haplogroup formed an independent cluster. The frequencies of T3, T4, T1 (containing T1a), and T2 were 66%, 16%, 10%, and 8%, respectively. Especially, the T1 haplogroup contained only one haplotype and a sample. All four haplogroups were found in Chikso, Jeju black and Hanwoo. However, only the T3 and T4 haplogroups appeared in Heugu, and most Chikso populations showed a partial of four haplogroups. These results will be useful for stable conservation and efficient management of Korean cattle breeds.