首页> 外文期刊>Australian Journal of Experimental Agriculture >Designing complex research projects to estimate genetic parameters plus treatment and other effects - optimising the experimental design.
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Designing complex research projects to estimate genetic parameters plus treatment and other effects - optimising the experimental design.

机译:设计复杂的研究项目以估算遗传参数以及治疗和其他效果-优化实验设计。

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摘要

There is an increasing trend towards integrated research, in which several individuals or institutions pool their expertise and make use of common resources, collaborating towards a common set of scientific goals. Integrated research enables a larger number of factors to be investigated, and the most influential or important ones identified, providing information on how the different factors interact or fit together. Good experimental design is, however, required to ensure the aims can be achieved and resources spent wisely. Issues involved in the experimental design of the Australian Beef Cattle Cooperative Research Centre for Meat Quality are discussed. Theoretical results and simulation studies were used to determine optimal numbers of progeny per sire for estimating genetic parameters. For heritabilities of 0.2 and 0.5, the optima are respectively 21 and 9 progeny with recorded measurements. The curves surrounding the optima are quite flat, so aiming for 10-15 progeny with measurements per trait should provide reasonable accuracy in many situations. Estimates of heritabilities, genetic correlations and phenotypic variances have lower sampling correlations than genetic variances and covariances, suggesting that when results are pooled over different breeds or trials, it is better to pool estimates of heritabilities and genetic correlations than (co)variances. Using sires in more than one year increases the robustness of estimated sire effects and increases the accuracy of genetic parameter estimates for hard-to-measure traits (e.g. feed efficiency) that are not recorded on all animals. Unless sires can be chosen as a true random sample of the population, arrangements of link sires (and other effects such as treatments) should be chosen to provide accurate estimates when all terms in the model are fitted as fixed.
机译:集成研究的趋势正在增长,其中几个个人或机构汇集了他们的专业知识并利用共同的资源,为实现共同的科学目标而合作。集成研究可以调查大量因素,并确定最有影响力或最重要的因素,从而提供有关不同因素如何相互作用或组合在一起的信息。但是,需要良好的实验设计来确保可以实现目标并明智地使用资源。讨论了澳大利亚牛肉牛合作组织肉质研究中心实验设计中涉及的问题。理论结果和模拟研究被用于确定每个父本的最佳后代数,以估计遗传参数。对于0.2和0.5的遗传力,最佳记录分别为21和9个子代。最优值周围的曲线相当平坦,因此针对10-15个子代并进行每个性状测量应在许多情况下提供合理的准确性。遗传性,遗传相关性和表型方差的估计值与遗传方差和协方差值相比具有较低的抽样相关性,这表明当将结果汇总到不同的品种或试验中时,与(协)方差值相比,对遗传力和遗传相关性值的估计值更好。在超过一年的时间内使用公母会提高公母效应的估计的鲁棒性,并会提高并非所有动物都记录的难以测量的性状(例如饲料效率)的遗传参数估算的准确性。除非可以将父亲选择为种群的真实​​随机样本,否则当模型中的所有术语均固定时,应选择链接父亲的安排(以及其他影响,例如治疗)以提供准确的估计。

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