Genotype x environment interaction via models of reaction norms for growth traits in Nelore cattle

被引:4
作者
Ambrosini, Diego Pagung [1 ]
Mendes Malhado, Carlos Henrique [2 ]
Martins Filho, Raimundo [3 ]
Souza Carneiro, Paulo Luiz [2 ]
机构
[1] Uesb, Campus Juvino de Oliveira,Praca Primavera 40, BR-45700000 Itapetinga, BA, Brazil
[2] Uesb, Dept Ciencias Biol, Rua Jose Moreira Sobrinho,Bairro Jequiezinho S-N, BR-45206190 Jequie, BA, Brazil
[3] Univ Fed Ceara, Campus Cariri,Ave Tenente Raimundo Rocha S-N, BR-63040360 Juazeiro Do Norte, CE, Brazil
关键词
genetic evaluation; genetic correlation; genetic parameters; phenotypic plasticity; reproducers; environmental sensitivity; NELLORE CATTLE; YEARLING WEIGHT; GENETIC TRENDS; DAIRY-CATTLE; SENSITIVITY; SELECTION; EVOLUTION; AGE;
D O I
10.1590/S0100-204X2016000200010
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The objective of this work was to evaluate the sensitivity of Nelore cattle to the environment by different models of reaction norms and to estimate the genetic progress in environmental gradient. The parameters weight gain from weaning to yearling (WG345) and adjusted weight at 205 days of age (W205) were determined. A standard animal model (AM), two reaction norm hierarchical models with residual variance homoscedasticity, and two with heterogeneity were used. The homoscedastic reaction norm hierarchical model with one step showed the best fit. The direct heritability coefficients from the low environment to the high one, in environmental gradient, were 0.03 to 0.63 and 0.13 to 0.62, respectively, for WG345 and W205. The correlations between the intercept and the slope of the reaction norm were: 0.93, for WG345 (direct); 0.95, for WG345 (maternal); 0.92, for W205 (direct); and 0.82, for W205 (maternal). The correlations indicate that animals with high genetic value tend to positively respond to better environments. The genetic trends showed gains for the direct effects, mainly in the best environments. There is genetic variation for sensitivity of animals, in different environments, a fact that allows of the selection of animals of more appropriate genotypes for the production in a particular environment.
引用
收藏
页码:177 / 186
页数:10
相关论文
共 34 条
[11]   Genotype x environment interaction for age at first calving, scrotal circumference, and yearling weight in Nellore cattle using reaction norms in multitrait random regression models [J].
Chiaia, H. L. J. ;
de Lemos, M. V. A. ;
Venturini, G. C. ;
Aboujaoude, C. ;
Berton, M. P. ;
Feitosa, F. B. ;
Carvalheiro, R. ;
Albuquerque, L. G. ;
de Oliveira, H. N. ;
Baldi, F. .
JOURNAL OF ANIMAL SCIENCE, 2015, 93 (04) :1503-1510
[12]   Genetic analysis of Holstein cattle populations in Brazil and the United States [J].
Costa, CN ;
Blake, RW ;
Pollak, EJ ;
Oltenacu, PA ;
Quaas, RL ;
Searle, SR .
JOURNAL OF DAIRY SCIENCE, 2000, 83 (12) :2963-2974
[13]   Evidences of genotype x environment interaction for growth traits in beef cattle [J].
de Alencar, MM ;
Mascioli, AD ;
de Freitas, AR .
REVISTA BRASILEIRA DE ZOOTECNIA-BRAZILIAN JOURNAL OF ANIMAL SCIENCE, 2005, 34 (02) :489-495
[14]  
Lira Thaymisson Santos de, 2013, Ciênc. anim. bras., V14, P23, DOI 10.5216/cab.v14i1.16785
[15]  
de Mattos D, 2000, J ANIM SCI, V78, P2121
[16]  
Falconer D. S., 1996, Introduction to quantitative genetics.
[17]   SELECTION IN DIFFERENT ENVIRONMENTS - EFFECTS ON ENVIRONMENTAL SENSITIVITY (REACTION NORM) AND ON MEAN PERFORMANCE [J].
FALCONER, DS .
GENETICAL RESEARCH, 1990, 56 (01) :57-70
[18]  
GOMULKIEWICZ R, 1992, EVOLUTION, V46, P390, DOI 10.1111/j.1558-5646.1992.tb02047.x
[19]  
Holanda M. C. R., 2004, Archivos de Zootecnia, V53, P185
[20]  
KIRKPATRICK M, 1990, GENETICS, V124, P979