首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >REML approach for adjusting the Fusarium head blight rating to a phenological date in inoculated selection experiments of wheat
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REML approach for adjusting the Fusarium head blight rating to a phenological date in inoculated selection experiments of wheat

机译:在小麦接种选择实验中,REML方法将镰刀菌枯萎病等级调整至物候日期

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Fusarium head blight is one of the most important wheat diseases causing grain yield and quality losses as well as mycotoxin contamination all over the world. Since Fusarium cannot be reliably controlled with fungicides, breeding has become a favorable tool to decrease the infection severity. In most cases, selection for Fusarium resistance is done by artificial infection in the field. However, there is a risk in preferring late heading genotypes, because heading of wheat is negatively correlated tohead blight severity. Because an indirect selection for late maturity is not intended, we considered a statistical approach to avoid this problem. In this paper, we propose a mixed model to analyze extensive Fusarium head blight rating in resistance breeding experiments of wheat. The objective of the analysis was to select for Fusarium resistance, while at the same time ensuring that late heading genotypes, which show less head blight over the shorter vegetation period, are not preferred. Thus, selection was to be done such that genetic variability for heading date was retained. Therefore, the statistical model contained a covariate to adjust for differences in the heading date. The use of covariate adjustment is an easily handled alternative to a bivariate analysis. Covariate adjustment will in practice often work almost equally well as bivariate analysis. Any statistical software with powerful mixed model analysis tools can be used for this type of analysis. We propose an ad hoc method to obtain heritability estimates and a form of LSD (least significance difference) as a measure of accuracy on the basis of the proposed m6del and under special consideration of the experimental design. The ad hoc LSD was used as a rough measure to judge rankings ofgenotypic means (BLUPs). Friedman's super smoother was used to compare smoothed rank estimates for adjusted and unadjusted genotypes against increasing smoothed heading dates. Traits were transformed to meet the model assumptions, especially homogeneityof errors and normality, and back-transformation of means and standard errors was conducted by using the delta method.
机译:镰刀菌枯萎病是最重要的小麦疾病之一,在世界范围内引起谷物产量和质量下降以及霉菌毒素污染。由于不能使用杀真菌剂可靠地控制镰刀菌,育种已成为降低感染严重程度的有利工具。在大多数情况下,镰刀菌抗性的选择是通过现场的人工感染完成的。但是,存在偏向晚穗抽穗基因型的风险,因为小麦的穗抽穗与穗枯病严重程度呈负相关。因为不打算对后期到期进行间接选择,所以我们考虑了一种统计方法来避免此问题。在本文中,我们提出了一个混合模型来分析小麦抗性育种实验中广泛的镰刀菌枯萎病等级。分析的目的是选择对镰刀菌的抗性,同时确保不要选择较晚的抽穗期基因型,后者在较短的植被期内显示较少的枯萎病。因此,应进行选择,以保留抽穗期的遗传变异性。因此,统计模型包含一个协变量,以调整前进方向的差异。使用协变量调整是双变量分析的一种易于处理的替代方法。实际上,协变量调整通常与双变量分析的效果几乎相同。具有强大的混合模型分析工具的任何统计软件都可以用于这种类型的分析。我们提出了一种临时方法来获取遗传力估计值,并在建议的m6del的基础上并在实验设计的特殊考虑下,采用LSD(最小有效差)形式作为准确性的度量。临时LSD被用作判断基因型均值(BLUP)等级的粗略方法。弗里德曼(Friedman)的超级平滑器用于比较调整后和未调整基因型的平滑秩估计与增加的平滑航向日期。对特征进行转换以满足模型假设,尤其是误差和正态性的均一性,并使用delta方法对均值和标准误差进行反变换。

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