Effect of In Vivo Embryo Production and Embryo Transfer Following Superovulation in Hanwoo

다배란 처리에 따른 한우 체내 수정란 생산 효율과 수정란이식

  • Cho, Sang-Rae (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Choi, Sun-Ho (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Choe, Chang-Yong (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Son, Jun-Kyu (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Choi, Soo-Ho (Gyeongsangbuk-do Livestock Research Institute) ;
  • Kim, Young-Joo (Yeongju Agricultural Technology Extension Center) ;
  • Lee, Poong-Yeon (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Yeon, Sung-Heum (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Kim, Hyun-Jong (Animal Genetic Resources Station, National Institute of Animal Science, RDA) ;
  • Son, Dong-Soo (Animal Genetic Resources Station, National Institute of Animal Science, RDA)
  • 조상래 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 최선호 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 최창용 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 손준규 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 최수호 (경상북도 축산기술연구소) ;
  • 김영주 (영주시 농업기술센터) ;
  • 이풍연 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 연성흠 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 김현종 (농촌진흥청 국립축산과학원 가축유전자원시험장) ;
  • 손동수 (농촌진흥청 국립축산과학원 가축유전자원시험장)
  • Received : 2010.08.19
  • Accepted : 2010.08.27
  • Published : 2010.09.30

Abstract

In vivo embryo produced from Hanwoo donor cows were collected and transferred to Hanwoo recipients. Cows, at random stages of the estrous cycle, received Progesterone Releasing Intravaginal Device (CIDR-plus, InterAg, New Zealand) together with injection of 1 mg estradiol benzoate and 50 mg progesterone, and gonadotropin treatment began 4 day later. For superovulation, a total of 28 mg FSH was intramuscularly injected twice a day in the way of decreasing doses 4 day (5, 5, 4, 4, 3, 3, 2 and 2 mg). Twenty one Hanwoo donor cows were flushed on day 7 of estrus cycle with same FSH and artificial insemination by the same technicians. Embryos were recovered 7 days after the second insemination by flushing the uterus with Embryo Collection Medium. The results obtained were as follows: The rates of transferable embryos were 50.3%, and 78 fresh embryos at morulae and blastocysts stage were transferred into Hanwoo recipients on day 7 of estrus cycle. The pregnancy rates were first embryo transfer 55.6%, 2nd 62.9% and 3rd 57.9%, respectively. In conclusion, These results suggest that CIDR-based superovulation protocol may be effectively used for production of superior Hanwoo embryos. Also, since it seems the condition of recipient cows greatly affect pregnancy rate, it is very important to evaluate recipient for effective cattle production.

Keywords

References

  1. 김용준, 송재웅, 서세현, 정구남, 김용수, 이해리, 손동수, 조성우, 김수희. 2004. 한우 및 젖소에서 과배란처리를 이용한 체내수정란 생산과 신선 및 동결 수정란이식결과. 한국수정란이식학회지 18:209-218.
  2. Bellows RA, Staigmiller RB, Wilson JM, Phelps DA and Darling A. 1991. Use of bovine FSH for superovulation and embryo production in beef heifers. Theriogenology 35(6):1069-1082. https://doi.org/10.1016/0093-691X(91)90355-H
  3. Boland MP, Goulding D and Roche JF. 1991. Alternative gonadotrophins for superovulation in cattle. Theriogenology 35(1):5-17. https://doi.org/10.1016/0093-691X(91)90143-2
  4. Callesen H, Bak A and Greve T. 1994. Embryo recipients:Dairy cows or heifers. In: Proceedings 10th Meeting European Embryo Transfer Association. Lyon, pp. 125-135.
  5. Callesen H, Liboriussen T and Greve T. 1996. Practical aspects of multiple of ovulation-embryo transfer in cattle. Anim. Reprod. Sci. 42:215-226. https://doi.org/10.1016/0378-4320(96)01513-8
  6. Chagas e Silva J, Lopesda Costa L and Robalo Silva J. 2002. Plasma progesterone profiles and factors affecting embryofetal mortality following embryos transfer in dairy cattle. Theriogenology 58:51-59. https://doi.org/10.1016/S0093-691X(02)00906-8
  7. Christensen LG. 1991. Use of embryo transfer in future cattle breeding schemes. Theriogenology 35:141-149. https://doi.org/10.1016/0093-691X(91)90153-5
  8. Son DS, Han MH, Choe CY, Choi SH, Cho SR, Kim HJ, Ruyl IS, Choi SB, Lee SS, Kim YK, Kim SK, Kim SH, Shin KH and Kim IH. 2006. Embryo production in superior Hanwoo donors and embryos transfer. Korean. J. Emb. Trans. 21(2):147-156.
  9. Donaldson LE. 1984. Dose of FSH-P as a source of variation in embryo production from superovulated cows. Theriogenology 22(2):205-212. https://doi.org/10.1016/0093-691X(84)90433-3
  10. Gordon I. 2003. Laboratory Production of Cattle Embryos. Second Edition. 303-304.
  11. Lerner SP, Thayne WV, Baker RD, Henschen T, Meredith S, Inskeep EK, Dailey RA, Lewis PE and Butcher RL. 1986. Age, dose of FSH and other factors affecting superovulation in Holstein cows. J. Anim. Sci. 63(1):176-183.
  12. Lindner GM and Wright RW. 1983. Bovine embryo morphology and evaluation. Theriogenology 20:407-416. https://doi.org/10.1016/0093-691X(83)90201-7
  13. Mapletoft RJ, Steward KB and Adams GP. 2002. Superovulation in perspective. In: Proceedings 18th Meeting European Embryo Transfer Association. Rolduc. 119-127.
  14. 淺田正嗣, 橋谷田豊, 福田淳郞, 千葉治男, 佐タ木章彦, 木村博也, 鳥谷部浩康, 山口光明, 水尻貴裕, 久保光章, 西野智廣, 小西-之. 2004. 黑毛和種ドナ一牛のFSH投与量および父方の系統が過剩排卵成績におようばす影響. 北海道牛受精卵移植硏究會 會報 22:20-24.