首页> 外文期刊>Frontiers in Veterinary Science >Assessing Accuracy of Genomic Predictions for Resistance to Infectious Hematopoietic Necrosis Virus With Progeny Testing of Selection Candidates in a Commercial Rainbow Trout Breeding Population
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Assessing Accuracy of Genomic Predictions for Resistance to Infectious Hematopoietic Necrosis Virus With Progeny Testing of Selection Candidates in a Commercial Rainbow Trout Breeding Population

机译:评估抗传染造血坏死病毒的基因组预测的准确性,在商业彩虹鳟鱼育种人群中的选择候选者后代测试

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Infectious hematopoietic necrosis (IHN) is an economically important disease of salmonid fish caused by the IHN virus (IHNV). Under industrial aquaculture settings, IHNV can cause substantial mortality and losses. Actually, there is no confirmed and cost-effective method for IHNV control. Clear Springs Foods, Inc. has been performing family-based selective breeding to increase genetic resistance to IHNV in their rainbow trout breeding program. In an earlier study, we used siblings cross-validation to estimate the accuracy of genomic prediction (GP) for IHNV resistance in this breeding population. In the present report, we used empirical progeny testing data to evaluate whether genomic selection (GS) can improve the accuracy of breeding value predictions over traditional pedigree-based best linear unbiased predictions (PBLUP). We found that the GP accuracy with single-step GBLUP (ssGBLUP) outperformed PBLUP by 15% (from 0.33 to 0.38). Furthermore, we found that ssGBLUP had higher GP accuracy than weighted ssGBLUP (wssGBLUP) and single-step Bayesian multiple regression (ssBMR) models with BayesB and BayesC priors which supports our previous findings that the underlying liability of genetic resistance against IHNV in this breeding population might be polygenic. Our results show that GS can be more effective than either the traditional pedigree-based PBLUP model or the marker-assisted selection approach for improving genetic resistance against IHNV in this commercial rainbow trout population.
机译:传染造血坏死(IHN)是由IHN病毒(IHNV)引起的鲑鱼鱼的经济上重要疾病。在工业水产养殖环境下,IHNV可能导致大量死亡率和损失。实际上,没有确认和成本效益的IHNV控制方法。 Clear Springs Foods,Inc。一直在进行基于家庭的选择性育种,以提高彩虹鳟鱼育种计划中对IHNV的遗传抵抗力。在早期的研究中,我们使用兄弟姐妹交叉验证来估计这种育种群体中对IHNV抗性的基因组预测(GP)的准确性。在本报告中,我们使用经验后代测试数据来评估基因组选择(GS)是否可以提高传统基于谱系的最佳线性无偏见预测(PBLUP)的育种价值预测的准确性。我们发现,使用单步GBLUP(SSGBLUP)的GP精度优于PBLUP 15%(从0.33到0.38)。此外,我们发现SSGBLUP比加权SSGBLUP(WSSGBLUP)和单步贝叶斯多元回归(SSBMR)模型具有较高的GP精度,以及贝叶斯和贝斯佩的模型,支持我们以前的发现,即遗传性抗性对该育种人群的遗传性抗性的潜在责任可能是多基因。我们的结果表明,GS可以比传统的基于谱系的PBLUP模型或标记辅助选择方法更有效,以改善该商业彩虹鳟鱼群中的对IHNV的遗传抵抗力。

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