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Analysis of Genetic Polymorphism by Bloodtyping in Jeju Horse

혈액형에 의한 제주말의 유전적 다형성 분석

  • Cho Gil-Jae (College of Veterinary Medicine, Kyungpook National University)
  • Published : 2005.12.01

Abstract

The present study was carried out to investigate the blood markers of Jeju horses. The redcell cypes (blood groups) and blood protein types (biochemical polymorphisms) were tested from 102 Jeju horses by serological and electrophoretc procedure, and their phenotypes and gene frequencies were estimated. The blood group and biochemical polymorphism phenotypes observed with high frequency were $A^{af}\;(27.45\%$), $C^{a}\;(99.02\%$), $K^{-}\;(97.06\%$), $U^{a}\;(62.75\%$), $P^{b}\;(36.27\%$), $Q^{c}\;(47.06\%$), $D^{cgm/dghm}\;(13.73\%$), $D^{adn/cgm}\;(9.80\%$), $D^{ad/cgm}$\;(8.82\%$), $D^{dghm/dghm}(7.84\%$), $D^{cgm/cgm}(7.84\%$), $AL^{B}\;(48.04\%$), $GC^{F}\;(99.02\%$), $AlB^{K}\;(97.06\%$), $ES^{FI}\;(36.27\%$), $TF^{F2}\;(25.49\%$), $HB^{B1}\;(45.10\%$), and $PGD^{F}\;(86.27\%$) in Jeju horses, respectively. Alleles observed with high gene frequency were $A^{af}$ (0.3726), $A^{C}$ (0.2647), $C^{-}$ (0.5050), $K^{-}$ (0.9853), $U^{-}$ (0.6863), $P^{b}$ (0.4657), $Q^{c}$ (0.5294), $D^{cgm}$ (0.3039), $HB^{B1}$(0.6863), $PGD^{F}$ (0.9265), $AL^{B}$ (0.6912), $ALB^{K}$ (0.9852), $GC^{F}$ (0.9950), $ES^{I}$ (0.5000) and $TF^{F2}$ (0.4950) in Jeju horses, and sfecific alleles, $D^{cgm(f)}$ (0.0196), $HB^{A}$ (0.0147), $HB^{A2}$ (0.0196), $ES^{G}$ (0.0441), $ES^{H}$ (0.0098), $TF^{E}$TF'(0.0246), $TF^{H2}$ (0.0049) and $PGD^{D}$ (0.0098) were detected in Jeju horses. These preliminary results present basic information for detecting the genetic markers in Jeju horse. and developing a system for parentage verification and individuals identification in jeju horses.

제주말의 혈통보존을 위한 기초자료를 마련할 목적으로 국내에서 사육중인 제주말 102두를 대상으로 적혈구항원형 및 혈액단백질형의 유전적 다형성을 조사한 결과는 다음과 같다. 적혈구항원형의 표현형 빈도는 $A^{af}$28두($27.45\%),\;C^{a}$ 101두 ($99.02\%),\;K^{-}$ 99두 ($97.06\%),\;U^{a}$ 64두 ($62.75\%),\;P^{b}$ 37두 ($36.27\%),\;Q^{c}$ 48두 ($47.06\%$)에서 높은 빈도를 나타냈으며, D시스템의 31개의 대립유전자 중 $D^{cgm/dghm}$ 14두($13.73\%),\;D^{adn/cgm}$ 10두($9.80\%),\;D^{ad/cgm}$ 9두($8.82\%),\;D^{dghm/dghm}$ 8두($7.84\%),\;D^{cgm/cgm}$ 8두($7.84\%$)에서 높은 빈도의 유전자형이 관찰되었다. 또한 null allele로 추정되는 $D^{ad/c(e)fgm}\;D^{adn/c(e)fgm}\;D^{c(d)fgm/dghm}$대립유전자가 4두에서 관찰되었다. 혈액단백질형은 $AL^{B}$ 49두($48.04\%),\;GC^{F}$ 101두($99.02\%),\;AlB^{K}$ 99두($97.06\%),\;ES^{FI}$ 37두($36.27\%),\;TF^{F2}$ 26두($25.49\%),\;HB^{B1}$ 46두($45.10\%$), and $PGD^{F}$ 88두($86.27\%$)로 높은 빈도를 보였으며, $HB^{A2B1}$ 4두($3.92\%),\;HB^{AB1}$ 2두($1.96\%),\;HB^{AB2}$ 1두($0.98\%),\;PGD^{D}$ 1두($0.98\%$가 특이하게 관찰되었다. 유전자 빈도는 $A^{af}$ (0.3726), $A^{C}$ (0.2647), $C^{-}$ (0.5050), $K^{-}$ (0.9853), $U^{-}$ (0.6863), $P^{b}$ (0.4657), $Q^{c}$ (0.5294), $D^{cgm}$ (0.3039), $HB^{B1}$(0.6863), $PGD^{F}$ (0.9265), $AL^{B}$ (0.6912), $ALB^{K}$ (0.9852), $GC^{F}$ (0.9950), $ES^{I}$ (0.5000) and $TF^{F2}$ (0.4950) 대립유전자가 가장 높은 빈도를 나타내었고 $D^{cgm(f)}$ (0.0196), $HB^{A}$ (0.0147), $HB^{A2}$ (0.0196), $ES^{G}$ (0.0441), $ES^{H}$ (0.0098), $TF^{E}$TF'(0.0246), $TF^{H2}$ (0.0049) and $PGD^{D}$ (0.0098)의 대립유전자가 제주말 에서 특이하게 관찰되었다. 결론적으로 혈액형에 의한 제주말의 유전적 다형은 $A^{af},\;A^{c},\;C^{-},\;K^{-},\;U^{-},\;P^{b},\;Q^{c},\;D^{cgm},\;D^{dghm},\;D^{adn},\;HB^{B1}$, $PGD^{F},\;AL^{B},\;A1B^{K},\;GC^{F},\;ES^{I},\;TF^{F2},\;AL^{B}$, 대립유전자의 빈도가 비교적 높은 것으로 관찰되었고 $A^{ab},\;A^{abf},\;D^{cgm(f)},\;(D^{cfg(k)m}$ 혹은$D^{c(e)fgm}),\;HB^{A},\;HB^{A2},\;ES^{H},\;TF^{E},\;TF^{H2},\;PGD^{D},\;AL^{B}$의 대립유전자가 제주말에서 특이하게 관찰되었다.

Keywords

References

  1. Andersson, L. 1985. The estimation of blood group gene frequencies: a note on the allocation method. Anim. Blood Grps. Biochem. Genet. 16, 1-7
  2. Cho, G. J., T. S. Kim., Y. H. Um., B. H. Kim and J. S. You. 1999. Genetic studies of blood markers in Cheju horses. I. Red blood cell types. Korean J. Vet. Res. 39, 1066-1072
  3. Cho, G. J. and B. H. Kim. 2000a. Studies on blood types in Thoroughbred horses. Korean J. Vet. Res. 40, 683-689
  4. Cho, G. J. 2004a. Parentage testing for Thoroughbred horse by microsatellite DNA typing. J. Anim. Sci. & Technol, (Kor.) 46, 129-136 https://doi.org/10.5187/JAST.2004.46.2.129
  5. Cho, G. J. and B. W. Cho. 2004b. Analysis of redcell and blood protein typing in Mongolian horse. J. Anim. Sci. & Technol. (Kor.) 46, 887-896 https://doi.org/10.5187/JAST.2004.46.6.887
  6. Cho, G. J., B. H. Kim., D. S. Lee and K. K. Lee. 2000b. Genetic studies of blood markers in Cheju horses. II. Blood protein types. Korean J. Vet. Res. 40, 283-290
  7. Cho, G. J. and B. W. Cho. 2004. Microsatellite DNA Typing using 16 markers for parentage verification of the Korean native horse. Asian-Aust. J. Anim. Sci. 17, 750-754 https://doi.org/10.5713/ajas.2004.750
  8. Chung, E. Y., S. K Han and Y. C. Shin. 1990a. Studies on the biochemical polymorphism of blood protein and enzyme in Cheju native horses. I. Genetic polymorphism of serum protein. Korean J. Anim. Sci. 32, 298-308
  9. Chung, E. Y., S. K. Han and Y. C. Shin. 1990b. Studies on the biochemical polymorphism of blood protein and enzyme in Cheju native horses. II. Genetic polymorphism of blood enzyme. Korean J. Anim. Sci. 32, 581-587
  10. Han, S. K, E. Y. Chung and Y. C. Shin. 1992. Studies on genetic polymorphism of Hb in Cheju native horse by isoelectric focusing.the biochemical Korean J. Anim. Sci. 34, 338-342
  11. Ishida, N., T. Oyunsuren., S. Mashima., H. Mukoyama and N. Saitou. 1995. Mitochondrial DNA sequence of various species of the genus Equus with special reference to the phylogenetic relationship between Przewalskii's wild horse and domestic horse. J. Mol. Evol. 41, 180-188
  12. Kakoi, H., H. Gawahara and N. Miura. 1995. Unusual D system inheritance in Anglo-Arab horse. Anim. Genet. 26, 53-54 https://doi.org/10.1111/j.1365-2052.1995.tb02622.x
  13. Kang, M. H. 1969. Historical and morphological studies on the Korean native horse. Korean J. Anim. Sci. 11, 351-379
  14. Miura, N. 1994. Blood typing service in light-breed horses. Jpn. J. Equine Sci. 4, 187-190
  15. Nozawa, K. 1992. Origin and ancestry of Native horse in eastern Asia and Japan. Jpn. J. Equine Sci. 3, 1-18 https://doi.org/10.1294/jes1990.3.1
  16. Oh, M. U., M. H. Ko and G. O. Kim. 1992. Genetic variations of the blood protein in Cheju native horses. Korean J. Genet. 14, 39-50
  17. Pirchner, F. 1983. Population genetics in animal breeding. Freeman Company, San Fransisco
  18. Shubitowski, D. M., P. J. Yenta., C. L. Douglass, R. X. Zhou and S. L. Ewart. 2001. Polymorphism identification within 50 equine gene-specific sequence tagged sites. Ainm. Genet, 32, 78-88 https://doi.org/10.1046/j.1365-2052.2001.00738.x
  19. Sandberg, K. 1973. Phosphohexose isomerase polymorphism in horse erythrocytes. Anim. Blood Grps. Biochem. Genet. 4, 79-82
  20. Stormont, C., Y. Suzuki and E. A. Rhode. 1964. Serology of horse blood groups. Cornell Vet. 54, 439-452
  21. Tozaki, T., N. Takezaki., T. Hasegawa, N. Ishida, M. Kurosawa., M. Tomita., N. Saitou and H. Mukoyama. 2003. Microsatellite variation in Japanese and Asian horses and their phylogenetic relationship using a European horse out group. J. Heredity 94, 374-380 https://doi.org/10.1093/jhered/esg079
  22. Yokohama, M., Y. Watanabe and H. Gawahara. 1987. Horizontal polyacrylamide gel electrophoresis for equnine serum protein types. J. Anim. Genet. 15, 22-27
  23. Yokohama, M. and K. Mogi. 1983. Polymorphism of equine hemoglubin by the isoelectic focusing method. Jpn, J. Zootech. Sci. 54, 794-797