I. S. Carvalho, S. F. Lázaro, G. Stefani, A. A. Silva, K. R. Silveira, D. C. B. Scalez, H. Tonhati
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引用次数: 0
摘要
-本工作的目的是利用bitrait动物模型和单步GBLUP方法估计性状寿命(LG)和305天累积产奶量(MY305)的遗传参数,并通过直接和间接选择MY305估计LG的遗传增益。我们使用了1987年至2020年间收集的4057头Murrah乳水牛的首次泌乳记录,这些记录属于位于巴西塞埃尔州、巴西北部大州和圣保罗州的6个牛群,并使用90K Axiom水牛基因分型(Thermo Fisher Scientific, Santa Clara, CA)对960头动物进行了基因分型,以估计遗传参数。MY305和LG的遗传力分别为0.25和0.13。直接选择下LG的遗传增益为0.13个月,间接选择下LG的遗传增益为0.14个月,与直接选择相比,MY305选择下的相对选择效率为11%。这两个性状的遗传相关为0.77,表明MY305基因高的动物寿命更长。MY305和LG的遗传趋势分别为0.22 kg/年和5.20天/年,表现为正响应,再次证实了其与两个性状的高遗传相关关系。
Genetic parameters and association between longevity and milk production in buffaloes using the ssGBLUP method
- The objectives of this work were to estimate the genetic parameters for the traits longevity (LG) and accumulated milk yield at 305 days (MY305) using a bitrait animal model and the single-step GBLUP method and estimate the genetic gain for LG through direct and indirect selection for MY305. We used 4,057 records of first lactations of Murrah dairy buffaloes, collected between 1987 and 2020, belonging to six Brazilian herds located in the states Ceará, Rio Grande do Norte, and São Paulo and 960 animals genotyped using the 90K Axiom Buffalo Genotyping (Thermo Fisher Scientific, Santa Clara, CA) to estimate the genetic parameters. The heritability estimate was 0.25 for MY305 and 0.13 for LG. The genetic gain for LG was 0.13 months under direct selection, and 0.14 months under indirect selection, which results in a relative selection efficiency of 11% under selection for MY305 compared with the direct selection. The genetic correlation between the two traits was 0.77, indicating that animals with genetic potential for high MY305 tend to live longer. The genetic trends for MY305 and LG were 0.22 kg/year and 5.20 days/year, respectively, indicating a positive response, which reaffirms its relationship with the high genetic correlation between the two traits.
期刊介绍:
The Revista Brasileira de Zootecnia (RBZ; Brazilian Journal of Animal Science) encompasses all fields of Animal Science Research. The RBZ publishes original scientific articles in the areas of Aquaculture, Biometeorology and Animal Welfare, Forage Crops and Grasslands, Animal and Forage Plants Breeding and Genetics, Animal Reproduction, Ruminant and Non-Ruminant Nutrition, and Animal Production Systems and Agribusiness.