DOI QR코드

DOI QR Code

Estimation of Combining Ability of Production Traits from Diallel Crosses of Korean Native Chicken Strains

토종 종계 이면교배조합 시험에 따른 생산형질의 결합능력 추정

  • Choi, Eun Sik (Department of Animal Science and Biotechnology, Gyeongnam National University of Science and Technology) ;
  • Bang, Min Hee (Department of Animal Science and Biotechnology, Gyeongnam National University of Science and Technology) ;
  • Kim, Ki Gon (Department of Animal Science and Biotechnology, Gyeongnam National University of Science and Technology) ;
  • Kwon, Jae Hyun (Department of Animal Science and Biotechnology, Gyeongnam National University of Science and Technology) ;
  • Jung, Ok Young (Department of Animal Science and Biotechnology, Gyeongnam National University of Science and Technology) ;
  • Sohn, Sea Hwan (Department of Animal Science and Biotechnology, Gyeongnam National University of Science and Technology)
  • 최은식 (경남과학기술대학교 동물생명과학과) ;
  • 방민희 (경남과학기술대학교 동물생명과학과) ;
  • 김기곤 (경남과학기술대학교 동물생명과학과) ;
  • 권재현 (경남과학기술대학교 동물생명과학과) ;
  • 정옥영 (경남과학기술대학교 동물생명과학과) ;
  • 손시환 (경남과학기술대학교 동물생명과학과)
  • Received : 2017.08.29
  • Accepted : 2017.09.20
  • Published : 2017.09.30

Abstract

This study was conducted to develop a new synthetic breed of Korean native chicken. The combining ability and reciprocal effects for production traits were estimated on 1,157 hens from a $5{\times}5$ diallel cross-mating design using grand parent stock (GPS) lines of Korean native chicken. Body weight, viability, age at first egg laying, egg weight, and hen-day egg production were measured and analyzed. The results showed that the general combining ability (GCA) of the survival rate during laying periods was -9.6 to 11.1, with the highest value obtained in the W strain. Additionally, the GCA of the body weight at 12 weeks was -209.7 to 162.2, with the highest value obtained in the F strain. The GCA for age at fist egg laying was estimated to be -2.8 to 3.7, while the GCA of egg weight was -0.91 to 0.96, and the GCA of hen-day egg production was -4.9 to 6.0. In the estimation of specific combining ability, the YW combination showed the highest survival rate, FW showed the highest body weight at 12 weeks, and GW showed the highest hen-day egg production. The reciprocal effects were significantly different among crosses for almost all productivity traits. In identical breeding combinations, differences in ability were observed when the maternal or paternal breeds were switched. The mean value based on combining ability was higher in WY, WF, and GW combinations for survival rate; GF, HG, and HF combinations for body weight at 12 weeks; and GW, YW, and FW combinations for hen-day egg production. It is concluded that the GF and HF combinations, which have excellent growth performance and moderate survival rate, are the most desirable paternal parent stock (PS) strains, and the GW and FW combinations, which have great laying performance and moderate body weight, are the most desirable maternal PS strains.

본 연구는 국산 신품종 토종닭 개발을 위하여 국내 보유중인 원종계 5계통을 대상으로 $5{\times}5$ 이면교잡을 통해 생산된 교배조합종 암컷 1,157수를 대상으로 조합별 능력을 검정하고, 이를 이용하여 결합능력 및 상반교잡효과를 추정하였다. 생산능력에 대한 검정형질로는 체중, 생존율, 시산일령, 난중 및 산란율을 대상으로 하였다. 분석 결과, 일반결합능력에 있어 생존율은 -9.6~11.1의 범위를 보이며 W계통이 가장 높았고, 12주 체중에서는 F계통이 가장 높은 추정치를 보이며, -209.7~162.2의 범위로 추정되었다. 산란형질에 대한 일반결합능력의 추정치는 시산일령에서 -2.8~3.7, 난중은 -0.91~0.96, 일계산란율은 -4.9~6.0의 범위를 보이며, W계통이 가장 높은 산란율을 나타내었다. 특정결합능력의 추정 결과, 생존율은 Y와 W계통 간의 조합이, 12주 체중은 F와 W계통 간의 조합이 가장 높았으며, 일계산란율은 G와 W간의 조합이 가장 높게 추정되었다. 상반교잡효과의 분석 결과, 거의 모든 형질에서 유의한 차이를 보이며, 동일한 교배조합이라 할지라도 어느 쪽을 부모계로 이용하느냐에 따라 상이한 능력의 차이를 보였다. 결합능력을 근거로 한 조합가의 추정치로 생존율은 WY, WF, GW 순으로 높았고, 12주 체중에서는 GF, HG, HF 순으로 높았으며, 일계 산란율은 GW, YW, FW 순으로 높은 추정치를 나타내었다. 이상의 결과를 바탕으로 우수한 실용계(commercial chicken)를 작출하기 위한 최적의 종계(parents stock) 조합의 선정은 부 계통으로는 체중이 우수하면서 상대적으로 생존율이 양호한 GF나 HF조합이 적합할 것으로 사료되고, 모 계통은 산란능력이 우수하며 적절한 체중을 지닌 GW나 FW조합이 가장 바람직 할 것이라 사료된다.

Keywords

References

  1. Adebambo AO, Adeleke MA, Whetto M, Peters SO, Ikeobi CON, Ozoje MO, Oduguwa OO, Adebambo OA 2010 Combining ability of carcass traits among pure and crossbred meat type chickens. Int J Poult Sci 9(8):777-783. https://doi.org/10.3923/ijps.2010.777.783
  2. Adebambo AO, Ikeobi CON, Ozoje MO, Oduguwa OO, Adebambo OA 2011 Combining abilities of growth traits among pure and crossbreed meat type chickens. Arch Zootec 60 (232):953-963. https://doi.org/10.4321/S0004-05922011000400012
  3. Choi CH 2002 Estimation of heterosis and combining abilities for important traits from strain crosses in Korean native chicken. M. D. Dissertation. Chungnam National University.
  4. Choi ES, Bang MH, Kim KG, Kwon JH, Chung OY, Sohn SH 2017 Production performances and heterosis effects of Korean native chicken breed combinations by diallel crossing test. Korean J Poult Sci 44(2):123-134. https://doi.org/10.5536/KJPS.2017.44.2.123
  5. Cheong IC, Chung SB, Yeon SH 1985 Estimation of heterosis from strain crosses of White Cornish and White Plymouth Rock for certain economic traits. Korean J Poult Sci 12 (2):75-82.
  6. Comstock RE, Robinson HF, Harvey PH 1949 A breeding procedure designed to make maximum use of both general and specific combining ability. J Amer Soc Agron 41:360-367. https://doi.org/10.2134/agronj1949.00021962004100080006x
  7. Falconer DS 1960 Introduction to Quantitative Genetics. The Ronald Press Co. New York.
  8. Goto E, Nordskog AW 1959 Heterosis in poultry: 4. Estimation of combining ability variance from diallel crosses of inbred lines in the fowl. Poult Sci 38:1381-1388. https://doi.org/10.3382/ps.0381381
  9. Griffing B 1956 Concept of general and specific combining ability in relation to diallel crosses. Aust J Biol Sci 9:463-493. https://doi.org/10.1071/BI9560463
  10. Hill JF, Nordskog AW 1958 Predicting combining ability of performance in the crossbred fowl. Poult Sci 37:1159-1169. https://doi.org/10.3382/ps.0371159
  11. Hull FH 1945 Recurrent selection for specific combining ability in corn. J Amer Soc Agron 37:134-145. https://doi.org/10.2134/agronj1945.00021962003700020006x
  12. Jakubek V, Komender P, Nitter G, Fewson D, Soukupova Z 1987 Crossbreeding in farm animals 1. Analysis of complete diallel experiments by means of three models with application to poultry. J Anim Breed Genet 104:283-294. https://doi.org/10.1111/j.1439-0388.1987.tb00135.x
  13. Korea Poultry Association 2012 The data of numbers of imported chicken breeds in Korea. Korean Poultry Journal.
  14. Mohammed MD, Abdalsalam YI, Mohammed AR, Wang JY, Hussein MH 2005 Growth performance of indigenous x exotic crosses of chicken and evaluation of general and specific combining ability under Sudan condition. Int J Poult Sci 4(7):468-471. https://doi.org/10.3923/ijps.2005.468.471
  15. Musa AA, Orunmuyi M, Akpa GN, Olutunmogun Ak, Muhammad H, Adedibu II 2015 Diallel analysis for body weight involving three genotypes of Nigerian indigenous chickens. S Afr J Anim Sci 45(2):188-197. https://doi.org/10.4314/sajas.v45i2.10
  16. Ohh BK, Yeo JS, Lee JK, Lee MY 1980 Study on utilization of heterosis in layer chicken. Korean J Poult Sci 7(2): 28-36.
  17. Ohh BK, Han JY, Sohn SH, Park TJ 1986 Estimation of genetic variations and selection of superior lines from diallel crosses in layer chicken. Korean J Poult Sci 13(1):1-14.
  18. Razuki WM, Al-Shaheen SA 2011 Use of diallel cross to estimate crossbreeding effects in laying chickens. Int J Poult Sci 10(3):197-204. https://doi.org/10.3923/ijps.2011.197.204
  19. Saadey MS, Galal A, Zaky HI, El-Dein AZ 2008 Diallel crossing analysis for body weight and egg production traits of two native Egyptian and two exotic chicken breeds. Int J Poult Sci 7(1):64-71. https://doi.org/10.3923/ijps.2008.64.71
  20. Schmidt J 1922 Diallel crossing with the domestic fowl. J Genetics 12:241-245. https://doi.org/10.1007/BF02983979
  21. Sh R, El-Ghar A, Aly OM, Ghanem HH, Shalan HM 2012 Combining ability estimates for egg production traits from line x tester analysis. Global Journals Inc 12(5):19-28.
  22. Wearden S, Tindell D, Craig JV 1965 Use of a full diallel cross to estimate general and specific combining ability in chickens. Poult Sci 44(4):1043-1053. https://doi.org/10.3382/ps.0441043
  23. Wearden S, Craig JV, Tindell D 1967 Components of specific combining ability estimated from strain and breed cross in chickens. Poult Sci 46(6):1398-1406. https://doi.org/10.3382/ps.0461398