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Genetic parameter estimates for plasma oxidative status traits in slaughter pigs

机译:屠宰猪血浆氧化状态性状的遗传参数估计

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摘要

The aim of the present study was to assess the effect of sex and to estimate genetic parameters for several traits related to plasma oxidative status in slaughter pigs, i.e., ferric reducing ability of plasma (FRAP), concentrations of α-tocopherol and malondialdehyde (MDA), and glutathione peroxidase (GPx) activity. Blood samples were collected at slaughter from 477 Piétrain × (Landrace × Large White intercross) pigs of 2 performance test stations. Heritabilities (±SE) of plasma oxidative status traits as well as their phenotypic and additive genetic correlations with animal performance traits were estimated with multiple-trait REML animal models using VCE software. Results displayed no significant difference between barrows and gilts for FRAP and α-tocopherol in plasma. However, gilts had a significantly higher concentration of MDA and lower GPx activity compared with barrows. Heritability estimates were high for GPx (0.55 ± 0.05), and medium to low for α-tocopherol (0.30 ± 0.06), FRAP (0.22 ± 0.05), and MDA (0.15 ± 0.04). Estimated additive genetic and phenotypic correlations between these four traits were generally low, except for a negative additive genetic correlation between FRAP and GPx of −0.45 (±0.23). Additive genetic correlations between plasma oxidative status traits and animal performance traits were also generally absent or low with maximum values of ~0.3. Parameter estimates in this study have to be interpreted with caution because of the small size of the dataset. Nevertheless, it may be concluded that there is considerable additive genetic variance for plasma oxidative status traits in slaughter pigs. More research is warranted on the genetic determination of oxidative stress in farm animals and its relevance in breeding programs.
机译:本研究的目的是评估性别的效果和估计与屠宰猪中血浆氧化地位有关的若干性状的遗传参数,即血浆(FRAP)的常规能力,α-生育酚和丙二醛的浓度(MDA )和谷胱甘肽过氧化物酶(GPX)活性。从477Piétrain×(Landrace×大白Intercross)猪的2个性能测试站的屠宰时收集血样。使用VCE软件的多种特征Reml动物模型估计了血浆氧化状态性状的血浆氧化状态性状及其表型和添加剂遗传相关性的遗产(±SE)。结果显示在等离子体中的FRAP和α-生育酚的鼠垛和胃墨之间没有显着差异。然而,与枪支相比,Gilts具有显着较高的MDA浓度和降低GPX活性。 GPX的遗传性估计为GPX(0.55±0.05),α-生育酚(0.30±0.06),FRAP(0.22±0.05)和MDA(0.15±0.04)。估计这四种性状之间的估计添加剂遗传学和表型相关性通常是低的,除了在-0.45的FRAP和GPX之间的负添加剂遗传相关性之外,除了-0.45(±0.23)。等离子体氧化状态性状和动物性能性状之间的添加剂遗传相关性也通常不存在或低,最大值为0.3。由于数据集的尺寸小,本研究中的参数估计必须谨慎地解释。然而,可以得出结论,屠宰猪中血浆氧化地位性状具有相当大的添加剂遗传方差。在农场动物中氧化应激的遗传测定及其在育种计划中的相关性上有权进行更多研究。

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