Vargas C A, Elzo M A, Chase C C, Olson T A
University of Florida, Gainesville 32611-0910, USA.
J Anim Sci. 2000 Dec;78(12):3045-52. doi: 10.2527/2000.78123045x.
Genetic parameters for weaning hip height (WHH), weaning weight (WWT), postweaning hip height growth (PHG), and hip height at 18 mo of age (HH18) and their relationships were estimated for Brahman cattle born from 1984 to 1994 at the Subtropical Agricultural Research Station, Brooksville, FL. Records per trait were 889 WHH, 892 WWT, and 684 HH18. (Co)variances were estimated using REML with a derivative-free algorithm and fitting three two-trait animal models (i.e., WHH-WWT, WHH-PHG, and WWT-HH18). Heritability estimates of WHH direct effects were 0.73 and 0.65 for models WHH-WWT and WHH-PHG and were 0.29 and 0.33 for WWT direct for models WHH-WWT and WWT-HH18, respectively. Estimates of heritability for PHG and HH18 direct were 0.13 and 0.87, respectively. Heritability estimates for maternal effects were 0.10 and 0.09 for WHH for models WHH-WWT and WHH-PHG and 0.18 and 0.18 for WWT for models WHH-WWT and WWT-HH18, respectively. Heritability estimates for PHG and HH18 maternal were 0.00 and 0.03. Estimates of the genetic correlation between direct effects for the different traits were moderate and positive; they were also positive between WHH and WWT maternal and WWT and HH18 maternal but negative (-0.19) between WHH and PHG maternal, which may indicate the existence of compensatory growth. Negative genetic correlations existed between direct and maternal effects for WHH, WWT, PHG, and HH18. The correlation between direct and WWT maternal effects was low and negative, moderate and negative between WHH direct and PHG maternal, and high and negative (-0.80) between WWT direct and HH18 maternal. There is a strong genetic relationship between hip height and weight at weaning that also affects hip height at 18 mo of age. Both product-moment and rank correlations between estimated breeding values (EBV) for direct values indicate that almost all of the same animals would be selected for PHG EBV if the selection criterion used was WHH EBV, and that it is possible to accomplish a preliminary selection for HH18 EBV using WHH EBV. Correlations between breeding values for WHH, WWT, and HH18 indicate that it will be possible to identify animals that will reduce, maintain, or increase hip height while weaning weight is increased. Thus, if the breeding objective is to manipulate growth to 18 mo of age, implementation of multiple-trait breeding programs considering hip height and weight at weaning will help to predict hip height at 18 mo of age.
对1984年至1994年出生于佛罗里达州布鲁克斯维尔亚热带农业研究站的婆罗门牛,估计了断奶时髋高(WHH)、断奶体重(WWT)、断奶后髋高生长(PHG)以及18月龄时髋高(HH18)的遗传参数及其相互关系。每个性状的记录分别为889个WHH、892个WWT和684个HH18。使用无导数算法的REML估计(协)方差,并拟合三个双性状动物模型(即WHH-WWT、WHH-PHG和WWT-HH18)。对于模型WHH-WWT和WHH-PHG,WHH直接效应的遗传力估计值分别为0.73和0.65;对于模型WHH-WWT和WWT-HH18,WWT直接效应的遗传力估计值分别为0.29和0.33。PHG和HH18直接效应的遗传力估计值分别为0.13和0.87。对于模型WHH-WWT和WHH-PHG,WHH母体效应的遗传力估计值分别为0.10和0.09;对于模型WHH-WWT和WWT-HH18,WWT母体效应的遗传力估计值分别为0.18和0.18。PHG和HH18母体效应的遗传力估计值分别为0.00和0.03。不同性状直接效应之间的遗传相关性估计为中等且呈正相关;WHH和WWT母体效应之间以及WWT和HH18母体效应之间也呈正相关,但WHH和PHG母体效应之间为负相关(-0.19),这可能表明存在补偿性生长。WHH、WWT、PHG和HH18的直接效应与母体效应之间存在负遗传相关性。直接效应与WWT母体效应之间的相关性较低且为负,WHH直接效应与PHG母体效应之间为中等且为负,WWT直接效应与HH18母体效应之间为高且为负(-0.80)。断奶时髋高与体重之间存在很强的遗传关系,这也会影响18月龄时的髋高。直接值估计育种值(EBV)之间的乘积矩相关和等级相关均表明,如果选择标准为WHH EBV,几乎所有相同的动物都将被选作PHG EBV,并且使用WHH EBV有可能对HH18 EBV进行初步选择。WHH、WWT和HH18育种值之间的相关性表明,在增加断奶体重的同时,可以识别出会降低、维持或增加髋高的动物。因此,如果育种目标是控制到18月龄的生长,实施考虑断奶时髋高和体重的多性状育种计划将有助于预测18月龄时的髋高。