TY - JOUR
T1 - Variance component and breeding value estimation for genetic heterogeneity of residual variance in Swedish Holstein dairy cattle
AU - Rönnegård, Lars
AU - Felleki, Majbritt
AU - Fikse, Freddy
AU - Mulder, Herman A.
AU - Strandberg, Erling
PY - 2013
Y1 - 2013
N2 - Trait uniformity, or micro-environmental sensitivity, may be studied through individual differences in residual variance. These differences appear to be heritable, and the need exists, therefore, to fit models to predict breeding values explaining differences in residual variance. The aim of this paper is to estimate breeding values for micro-environmental sensitivity (vEBV) in milk yield and somatic cell score, and their associated variance components, on a large dairy cattle data set having more than 1.6 million records. Estimation of variance components, ordinary breeding values, and vEBV was performed using standard variance component estimation software (ASReml), applying the methodology for double hierarchical generalized linear models. Estimation using ASReml took less than 7 d on a Linux server. The genetic standard deviations for residual variance were 0.21 and 0.22 for somatic cell score and milk yield, respectively, which indicate moderate genetic variance for residual variance and imply that a standard deviation change in vEBV for one of these traits would alter the residual variance by 20%. This study shows that estimation of variance components, estimated breeding values and vEBV, is feasible for large dairy cattle data sets using standard variance component estimation software. The possibility to select for uniformity in Holstein dairy cattle based on these estimates is discussed.
AB - Trait uniformity, or micro-environmental sensitivity, may be studied through individual differences in residual variance. These differences appear to be heritable, and the need exists, therefore, to fit models to predict breeding values explaining differences in residual variance. The aim of this paper is to estimate breeding values for micro-environmental sensitivity (vEBV) in milk yield and somatic cell score, and their associated variance components, on a large dairy cattle data set having more than 1.6 million records. Estimation of variance components, ordinary breeding values, and vEBV was performed using standard variance component estimation software (ASReml), applying the methodology for double hierarchical generalized linear models. Estimation using ASReml took less than 7 d on a Linux server. The genetic standard deviations for residual variance were 0.21 and 0.22 for somatic cell score and milk yield, respectively, which indicate moderate genetic variance for residual variance and imply that a standard deviation change in vEBV for one of these traits would alter the residual variance by 20%. This study shows that estimation of variance components, estimated breeding values and vEBV, is feasible for large dairy cattle data sets using standard variance component estimation software. The possibility to select for uniformity in Holstein dairy cattle based on these estimates is discussed.
KW - dairy cattle
KW - genetic heterogeneity
KW - milk yield
KW - somatic cell score
KW - dairy cattle
KW - genetic heterogeneity
KW - milk yield
KW - somatic cell score
UR - https://res.slu.se/id/publ/44070
U2 - 10.3168/jds.2012-6198
DO - 10.3168/jds.2012-6198
M3 - Journal article
C2 - 23415533
SN - 0022-0302
VL - 96
SP - 2627
EP - 2636
JO - Journal of Dairy Science
JF - Journal of Dairy Science
IS - 4
ER -