- Baghchehmaryam, M. B., Moradi shahrebabak, M., Miraei-Ashtiani, S. R., Rashidi, A. & Sheykh Ahmadi, M. (2010). Estimation of Genetic and Phenotypic Parameters for Some Economic Traits in Markhoz Goat. AnimalProductionResearch, 1, 15-11. (in Farsi)
- Barazandeh, A., Moghbeli, S. M., Hossein-Zadeh, N. G. & Vatankhah, M. (2012). Genetic evaluation of growth in Raini goat using random regression models. Livestock Science, 145(1), 1-6.
- Bell, B. R., McDaniel, B. T. & Robison, O. W. (1985). Effects of Cytoplasmic Inheritance on Production Traits of Dairy Cattle. Journal of Dairy Science, 68, 2038-2051.
- Berg, A., Mayer, R. & Yu, J. (2004). Deviance Information Criterion for Comparing Stochastic Volatility Models. Journal of Business & Economic Statistics, 22(1), 107-120.
- Brown, W. M., George M. & Wilson, A. C. (1979). Rapid evolution of animal mitochondrial DNA. Proceeding of National Academic Science, 76, 1967-1971.
- Deimi Ghias Abadi, P., Alijani, S., Shodja Ghias, J. & Pirani, N. (2012). Comparison of tow restricted maximum likelihood (REML) and bayesian statistical methods for estimating genetic parameter of some economically important traits in Fars native chickens. Research on Animal Production, 3 (5), 1-13.
- Dixit, S. P., Dhillon, J. S. & Singh, G. (2001). Genetic and non-genetic parameters for growth traits of Bharat Merino lambs. Small Ruminant Research, 42, 101-104.
- Fathi, M. H. & Farhang Far, H. (2009). The nutrition of goats. National Conference on Animal fibers, 1, 205-207. (in Farsi)
- Gibson, J. P., Freeman, A. E. & Boettcher, P. J. (1997). Cytoplasmic and mitochondrial inheritance of economic traits in cattle. Livestock Production Science, 47,115-124.
- Hanford, K. J., Snowder, G. D. & Van Vleck, L. D. (2003). Models with nuclear, cytoplasmic, and environmental effects for production traits of Columbia sheep. Journal of Animal Science, 81, 1926-1932.
- Hohenboken W. D. (1985). Maternal effect. In: World Animal Science. General and quantitative genetics (AB Chapman, ed), Elsevier, Amsterdam, 135-149.
- Kheirabadi, K., Alijani, S., Rafat, S. A. & Moghaddam, Gh. (2014). Comparison of two different statistical methods in estimation of (co)variance components of milk production traits of Iranian Holstein cows. Journal of Ruminant Research, 1 (4), 127-142. (in Farsi)
- Klvndy, A. S., Qazykhanyshad, A. S. & Shokrollahi, B. (2011). Estimation of genetic parameters for growth traits and fleece weight one year of the goat Markhoz. Journalof Veterinary Medicine, Islamic Azad University. 5(2), 52-47. (in Farsi)
- Meyer, A. (1994). DNA technology and phylogeny of fish. In: A.R. Beaumont (Ed), Genetics and evolution of aquatic organisms. Chapman and Hall, London.UK.
- Misztal, I. (2008). BLUPF90: a flexible mixed model program in Fortran 90. Available at. <http://nce.ads.uga.edu/~ignacy/numpub/blupf90/docs/>. Accessed on: 08 Oct. 2014.
- Pun, A., Goyache, F., Cervantes, I. & Gutiérrez, J.P. (2012). Cytoplasmic line effects for birth weight and preweaning growth traits in the Asturiana de los Valles beef cattle breed. Livestock Science, 143, 177-183.
- Rashidi, A., Kashan, N., Miraei-Ashtiani, S. R., Rahimi, Sh. & Vaeztrshyzy, R. (2000). Variance-covariance estimate of components and genetic parameters for body weight at Goats Markhoz. Journal of Agricultural SciencesIran, 3, 262-255. (in Farsi)
- Rashidi, A., Ramezanian, M. & Vaztrshyzy, R. (2005). Estimation of genetic and environmental economics Markhoz goats. IranianJournal of Agricultural Science, 36(5), 1130-1120. (in Farsi)
- Rostami, E. (2015). Estimation of genetic parameters for growth traits and mohair yield of Markhoz goat by Bayesian method. Thesis for Master of Science genetic and animal breeding. Ramin University. (in Farsi)
- Roughsedge, T., Brotherstone, S. & Visscher, P. M. (2001). Bias and power in the estimation of a maternal family variance component in the presence of incomplete and incorrect pedigree information. Journal of Dairy Science, 84, 944-950.
- Salehi, A., Gharahvaisi, S. & VaezTorshizi R. (2005). Cytoplasmic inheritance of production traits of Baluchi sheep. Researchanddevelopmentin animal breedingandaquaculture.73, 195-188. (in Farsi)
- Salehi, A. & James, J. W. (1997). Detection of cytoplasmic effects on production: the influence of number of years of data. Genetic Selection Evolution, 29, 269-277.
- Sargolzaei, M., Iwaisaki, H., & Colleau, J. (2006). CFC, contribution, inbreeding (F), coancestry. Release1. http://agrews.agr.niigata-u.ac.jp/~iwsk/cfc.html.
- Sataei Mokhtari, M., Rashidi, A., Barazandeh, A., Domari, H. & Molaei, S. (2009). Genetic analysis of wool weight in Kermani sheep. Proceedings of the National Conference on Textile Fiber. Tabriz. Iran. 13-15. (in Farsi)
- Schenkel, F. S., Schaeffer, L. R. & Boettcher, P. J. (2002). Comparison between estimation of breeding values and fixed effects using Bayesian and empirical BLUP estimation under selection on parents and missing pedigree information. Genetic Selection Evolution, 34, 41-59.
- Snowder, G. D., Hanford, K. J. & Van Vleck, L. D. (2004). Comparison of models including cytoplasmic effects for traits of Rambouillet sheep. Livestock Production Science, 90, 159-166.
- Southwood, O. L, Kennedy, B. W., Meyer, K. & Gibson, J. P. (1989). Estimation of additive maternal and cytoplasmic genetic variances in animal models. Journal of Dairy Science, 72, 3006-3012.
- Spiegelhalter, D. J., Best, N. G., Carlin, B. P. & van der Linde, A. (2014). The deviance information criterion: 12 years on (with discussion). Journal of the Royal Statistical Society, 76 (3), 485-493.
- Van Vleck, L. D., Hanford, K. J. & Snowder, G. D. (2004). Lack of evidence for cytoplasmic effects for four traits of Polypay sheep. Faculty Papers and Publications in Animal Science. Paper 213.
- Willham, R. L. (1972). The role of maternal effects in animal breeding. IIIBiometrical aspects of maternal effects in animals. Journal of Animal Science, 35, 1288-1293.
|