首页> 外文期刊>Czech Journal of Animal Science >Bayesian inference of genetic parameters for reproductive and performance traits in White Leghorn hens
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Bayesian inference of genetic parameters for reproductive and performance traits in White Leghorn hens

机译:白来克霍恩母鸡繁殖和生产性状遗传参数的贝叶斯推断

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This study estimated the genetic parameters for reproductive and performance traits and determined which ones can be used as selection criteria for egg production in laying hens using the Bayesian inference. The data of 1894 animals from three generations of White Leghorn laying hens were analyzed for fertility (FERT), hatchability (HATC), and birth rate measurements at 60 weeks of age (BIRTH), body weight at 16 and 60 weeks of age (BW16?and BW60), age at sexual maturity (ASM), egg height/width ratio, weight, and density at 28, 36, and 40 weeks of age (RHW28, RHW36, RHW40, WEGG28, WEGG36, WEGG40, DENS28, DENS36, and DENS40, respectively) traits. The genetic parameters were estimated by the Bayesian inference method of multi-trait animal model. The model included the additive and residual genetic random effects and the fixed effects of generation. The a posteriori mean distributions of the heritability estimates for reproductive traits ranged from 0.14 ± 0.003 (HATC) to 0.22?± 0.005?(FERT) and performance from 0.07 ± 0.001 (RHW28) to 0.42 ± 0.001 (WEGG40). The a posteriori mean distributions of the genetic correlation between reproductive traits ranged from 0.18 ± 0.026 (FERT and HACT) to 0.79?± 0.007 (FERT?and BIRTH) and those related to performance ranged from –0.49 ± 0.001 (WEGG36 and DENS36) to 0.75?± 0.003 (DENS28 and DENS36). Reproductive and performance traits showed enough additive genetic variability to respond to selection, except for RHW28. This trait alone would have little impact on the genetic gain because environmental factors would have a higher impact compared to those from the additive genetic factors. Based on the results of this study, the selection applied on the BIRTH trait can be indicated to improve FERT and HATC of eggs. Furthermore, the use of the WEGG40 could improve egg quality in this population.
机译:这项研究估计了生殖和生产性状的遗传参数,并使用贝叶斯推论确定了哪些可以用作蛋鸡产蛋的选择标准。对来自三代白来亨鸡的1894只动物的数据进行了生育力(FERT),孵化率(HATC)和60周龄(BIRTH)出生率测量,16周龄和60周龄体重(BW16)的分析?和BW60),性成熟年龄(ASM),蛋高/宽比,体重和在28、36和40周龄时的密度(RHW28,RHW36,RHW40,WEGG28,WEGG36,WEGG40,DENS28,DENS36,和DENS40)特性。遗传参数通过多性状动物模型的贝叶斯推断方法估算。该模型包括加性和残余遗传随机效应以及世代的固定效应。生殖性状的遗传力估计值的后验平均分布范围从0.14±0.003(HATC)到0.22?±0.005?(FERT),性能从0.07±0.001(RHW28)到0.42±0.001(WEGG40)。生殖性状之间遗传相关性的后验平均分布范围为0.18±0.026(FERT和HACT)至0.79?±0.007(FERT和BIRTH),而与性能相关的分布范围为–0.49±0.001(WEGG36和DENS36)至0.75±0.003(DENS28和DENS36)。生殖和性状表现出足够的加性遗传变异性,以响应选择,RHW28除外。由于与其他遗传因素相比,环境因素的影响更大,仅此特性对遗传增益的影响就很小。根据这项研究的结果,可以选择对出生性状进行选择以改善鸡蛋的FERT和HATC。此外,使用WEGG40可以改善该人群的鸡蛋质量。

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