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:: Volume 1, Issue 2 (2015) ::
pgr 2015, 1(2): 33-42 Back to browse issues page
Investigation the Heritability and Gene Effects on Yield and Some Agronomic Traits of Maize (Zea mays L.)
Pariya Dorri , Saeed Khavari Khorasani * , Mahmood Vali Zadeh , Parisa Taheri
Assistant Professor, Agricultural and Natural Resources Research Center, Seed and Plant Improvement Division (SPII), Khorasan Razavi, Mashhad, Iran , s.khavari@areo.ir
Abstract:   (30570 Views)
Selection of breeding methods for plant genetic improvement largely depends on the genetic basis of selected traits. This research was carried out in order to study the genetic parameters of phenological and morphological traits , yield and yield components of maize using generation mean analysis of inbred lines derived from crosses KE72012 (P1) × K1263 / 1 (P2) inbred lines. This study was conducted at Torough Station of Khorasan Razavi Agriculture and Natural Resources Research Center, Mashhad, Iran, during 2012. Six maize generations include BC2, BC1, F2, F1, P2 and P1 was evaluated in a randomized complete block design (RCBD) with three replications. Analysis of variance showed higher dominance gene effects than additive effects. Average dominance gene effects (H / D) ½ in all measured traits, showed complete and over dominance gene effects indicating the importance of dominance effect in studied traits. A simple additive-dominance model performed using weighted least square analysis. Results showed not it’s adequacy for traits, indicating the importance of epistatic effects in controlling genetic variations. Broad sense heritability for all measured traits in crosses KE72012 (P1) × KE1263 / 1 (P2) ranged between 0.10 to 0.88 and the range of narrow sense heritability in this cross was between 0.02 to 0.59. Estimation of number of genes controlling grain yield showed that the one to five genes are involved in KE72012 (P1) × K1263 / 1 (P2).
Keywords: Additive effect, Dominance effect, Weighted least square, Broad sense heritability, Narrow sense heritability
Full-Text [PDF 700 kb]   (2990 Downloads)    
Type of Study: Research | Subject: Plant improvement
Accepted: 2015/04/9
References
1. Ahmadi, J.S., Orang, F.A., Zali, A., Yazdi-Samadi, B., Ghannadha, M. and Taleei, A.R. (2007). Study of yield and its components inheritance in wheat under drought and irrigated conditions. Journal of Science and Technology of Agriculture and Natural Resources, 11:201-214 (In Persian). Downloaded from journals.lu.ac.ir at 11:04 IRDT on Tuesday September 19th.
2. Akhtar, N., and Chowdhry, M.A. (2006). Genetic analysis of yield and some other quantitative traits in bread wheat. International Journal of Agriculture and Biology, 4:523-527.
3. Allard, R. W. (1960). Principles of Plant Breeding, 2ndedn, John Wily and Sons, Inc. New York, USA.
4. Azizi, F., Rezai, A.M. and Saeidi, G. (2006). Generation mean analysis to estimate genetic parameters for different traits in two crosses of corn inbred lines at three planting densities. Journal of Agricultural Science and Technology, 8: 153-169 (In Persian).
5. Baghizadeh, A., Taleei, A.R., Naghavi, M.R. and Zeinali Khanghah, H. (2004). An evaluation of inheritance for some quantitative traits in barley using generation mean analysis. Iranian Journal of Agricultural Sciences, 35: 851-857 (In Persian).
6. Bartual, R., Lacasa, A,. Marsal, J.I. and Tello, J.C. (1994). Epistasis in the resistance of pepper to phytophtora stem blight (Phytophtora capsici L.) and its significance in the prediction of double cross performances. Euphytica, 72:149-152.
7. Chen, X.M. and Line, R.F. (1995). Gene number and heritability of wheat cultivars with durable hightemperature, adult plant (HTAP) resistance interaction of HTAP and race specific seedling resistance to Puccinia striiformis. Phytopathology, 85: 573-78.
8. Choukan, R. (2002). Genetic analysis of grain yield and yield components in maize. Seed and Plant Journal, 18: 170-178 (In Persian).
9. Choukan, R. (1999). Investigating on combining ability, additive variance and dominancy in maize lines applying Line × Tester method. Seed and plant Journal, 15: 47-55 (In Persian).
10. Fazel Najafabadi, M., Ghannadha, M.R., Zali, A.A. and Yazdi Samadi, B. (2004). Genetic analysis of seedling characters in bread wheat. Proceedings of the 4th International Crop Science Congress, Brisbane, Australia.
11. Ghannadha, M.R. (1998). Gene action for latent period of stripe rust in five cultivars of wheat. Iranian Journal of Crop Sciences, 1: 53-71 (In Persian).
12. Hassan, S., Iqbal, M., Khn, K., Yasir, M. and Rahman, H.U. (2011). Genetic analysis of maturity and flowering characteristic in maize. Asian Pacific Journal of Tropical Biomedicine, 2: 621-626.
13. Jinks, J.L. and Pooni, H.S. (1979). Predicting the properties of recombinant inbred lines derived by single seed descent. Heredity, 36: 253-266.
14. Kearsey, M.J. and Pooni, H.S. (1998). Genetical Analysis of Quantitative Traits, Chapman and Hall Press, Michigan, USA.
15. Mather, K. and Jinks, J.L. (1982). Biometrical Genetics. Methuen, London, UK.
16. Melchinger, A.E., Lee, M., Lamkey, K.R., Hallauer, A.R. and Woodman, W.L. (1990). Genetic diversity for restriction fragment length polymorphisms and heterosis for two diallel sets of maize inbreds. Theoretical and Applied Genetics, 80: 488-496.
17. Mihaljevic, R., Friedrich Utz, H. and Melchinger, E. (2005). No evidence for epistasis in hybrid and per se performance of elite European flint maize inbreds from generation means and QTL analyses. Crop Science, 45: 2605-2613.
18. Ovoselovic, D., Baric, M., Drezner, G., Gunjaca, J. and Lalic, A. (2004). Quantitative inheritance of some wheat plant traits. Genetic and Molecular Biology, 27:92-98.
19. Oching, J.A.W. and Compton, W.A. (1994). Genetic effects from full-sib selection in Krug maize. Journal of Genetics and Breeding, 48:191-196.
20. Paul, K.K. and Debnath, S.C. (1999). Combining ability analysis in maize (Zea mays L.). Pakistan Journal of Scientific and Industrial Research, 42: 141-144.
21. Petrovic, Z. (1998). Combining abilities and mode of inheritance of yield and yield components in maize. Novi Sad. 85 P.
22. Rezaei, A.H. and Roohi, V. (2004). Estimate of genetic parameters in corn (Zea mays L.) based on diallel crossing system. New directions for a diverse planet: Proceedings of the 4th International Crop Science Congress Brisbane, Australia.
23. Rezaie, A. and Houshmand, S. (1997). Gene action and heritability of some agronomic traits in 17 grain sorghum crosses. Iranian Journal of Agricultural Sciences, 28: 69- 78 (In Persian).
24. Singh, R.P. and Singh, S. (1992). Estimation of genetic parameters through generation mean analysis in bread wheat. Indian Journal of Genetics, 52: 369-375.
25. Vaezi, S.h., Abdmishani, S., Yazdi Samadi, B., Ghanadha, M.R. (1999). Genetic analysis of some quantitative characteristics of maize. Iranian Journal of agricultural Science, 30: 839-50 (In Persian).
26. Vidal-Martinez, V.A., Clegg, M., Johnson, B. and Valdivia-Bernal, R. (2001). Phenotypic and genotypic relationships between pollen and grain yield components in maize. Agrociencia, 35: 503-511.
27. Wolf, D.P. and Peternelli, L.A. (2000). Estimate of genetic variance in F2 maize population. Journal of Heredity, 95: 384-391.
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Dorri P, Khavari Khorasani S, Vali Zadeh M, Taheri P. Investigation the Heritability and Gene Effects on Yield and Some Agronomic Traits of Maize (Zea mays L.). pgr 2015; 1 (2) :33-42
URL: http://pgr.lu.ac.ir/article-1-34-en.html


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Volume 1, Issue 2 (2015) Back to browse issues page
پژوهش های ژنتیک گیاهی Plant Genetic Researches
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