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Phenotypic Selection in Ornamental Breeding: Its Better to Have the BLUPs Than to Have the BLUEs

机译:观赏育种中的表型选择:拥有BLUP比拥有BLUE更好

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摘要

Plant breeders always face the challenge to select the best individuals. Selection methods are required that maximize selection gain based on available data. When several crosses have been made, the BLUP procedure achieves this by combining phenotypic data with information on pedigree relationships via an index, known as family-index selection. The index, estimated based on the intra-class correlation coefficient, exploits the relationship among individuals within a family relative to other families in the population. An intra-class correlation coefficient of one indicates that the individual performance can be fully explained based on the family background, whereas an intra-class correlation coefficient of zero indicates the performance of individuals is independent of the family background. In the case the intra-class correlation coefficient is one, family-index selection is considered. In the case the intra-class correlation coefficient is zero, individual selection is considered. The main difference between individual and family-index selection lies in the adjustment in estimating the individual's effect depending on the intra-class correlation coefficient afforded by the latter. Two examples serve to illustrate the application of the BLUP method. The efficiency of individual and family-index selection was evaluated in terms of the heritability obtained from linear mixed models implementing the selection methods by suitably defining the treatment factor as the sum of individual and family effect. Family-index selection was found to be at least as efficient as individual selection in Dianthus caryophyllus L., except for flower size in standard carnation and vase life in mini carnation for which traits family-index selection outperformed individual selection. Family-index selection was superior to individual selection in Pelargonium zonale in cases when the heritability was low. Hence, the pedigree-based BLUP procedure can enhance selection efficiency in production-related traits in P. zonale or shelf-life related in D. caryophyllus L.
机译:植物育种者总是面临选择最佳个体的挑战。需要选择方法,以根据可用数据最大化选择增益。当进行了几次杂交后,BLUP程序通过将表型数据与有关血统关系的信息通过一个索引(称为家庭索引选择)相结合来实现此目的。基于类内相关系数估算的指数利用了一个家庭中的个体与人口中其他家庭之间的关系。类别内相关系数为1表示可以根据家庭背景充分解释个人的表现,而类别内相关系数为0则表示个体的表现与家庭背景无关。在类内相关系数为1的情况下,应考虑选择家庭指数。在类内相关系数为零的情况下,考虑个体选择。个体和家庭指数选择之间的主要区别在于调整,以根据个体提供的类内相关系数估计个体的影响。两个示例用于说明BLUP方法的应用。通过适当地将治疗因子定义为个体和家庭效应的总和,从实施选择方法的线性混合模型中获得的遗传力来评估个体和家庭指数选择的效率。发现石竹石竹的家庭指数选择至少与个体选择一样有效,除了标准康乃馨的花朵大小和小型康乃馨的花瓶寿命外,其家庭成员指数的选择性能优于个体选择。在遗传力较低的情况下,天竺葵的家庭指数选择优于个人选择。因此,基于谱系的BLUP程序可以提高对拟青假单胞菌生产相关性状或对石竹D.货架期相关的选择效率。

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