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Phenotypic, genetic and environmental parameters for traits related to femur bone integrity and body weight at 42 days of age in a broiler population

机译:与肉鸡群体中42天龄股骨骨完整性和体重有关的性状的表型,遗传和环境参数

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摘要

Intense selection among broilers, especially for performance and carcass traits, currently favors locomotion problems and bone resistance. Conducting studies relating to development and growth of bone tissue in broilers is necessary to minimize losses. Thus, genetic parameters were estimated for a broiler population's phenotypic traits such as BW at 42 d of age (BW42), chilled femur weight (CFW) and its yield (CFY), and femur measurements: calcium, DM, magnesium, phosphorus, and zinc content; breaking strength; rigidity; length; and thickness. Variance components were estimated through multitrait analyses using the restricted maximum likelihood method. The model included a fixed group effect (sex and hatch) and additive and residual genetic random effects. The heritability estimates we obtained ranged from 0.10 +/- 0.05 to 0.50 +/- 0.08 for chilled femur yield and BW42, respectively, and indicated that the traits can respond to the selection process, except for CFY, which presented low-magnitude heritability coefficients. Genetic correlation estimates between breaking strength, rigidity, and traits related to mineral content indicated that selection that aims to improve the breaking strength resistance of the femur is highly correlated with mineral content. Given the genetic correlation estimates between BW42 and minerals, it is suggested that in this population, selection for BW42 can be performed with greater intensity without affecting femoral integrity.
机译:在肉鸡中进行强烈的选择,特别是对于肉鸡的性能和car体性状,目前更倾向于运动问题和骨骼抵抗力。必须进行有关肉鸡骨骼组织发育和生长的研究,以最大程度地减少损失。因此,估计了肉鸡群体的表型性状的遗传参数,例如42 d龄时的体重(BW42),股骨冷重(CFW)及其产量(CFY)以及股骨测量值:钙,DM,镁,磷锌含量断裂强度;刚性;长度;和厚度。方差成分是使用受限最大似然法通过多性状分析估算的。该模型包括固定的群体效应(性别和孵化)以及累加性和残留遗传随机效应。对于股骨冷量和BW42,我们获得的遗传力估计值分别在0.10 +/- 0.05至0.50 +/- 0.08范围内,表明除CFY外,这些性状可以响应选择过程,CFY表现出低幅度的遗传力系数。断裂强度,刚度和与矿物质含量相关的性状之间的遗传相关性估计表明,旨在提高股骨抗断裂强度的选择与矿物质含量高度相关。考虑到BW42与矿物质之间的遗传相关性估计,建议在该人群中,可以以更高的强度选择BW42,而不会影响股骨完整性。

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