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选择基因型以确定标记基因座与数量性状基因座之间的连锁关系。

Selective genotyping for determination of linkage between a marker locus and a quantitative trait locus.

机构信息

Department of Genetics, The Alexander Silberman Life Sciences Institute, The Hebrew University of Jerusalem, 91904, Jerusalem, Israel.

出版信息

Theor Appl Genet. 1992 Nov;85(2-3):353-9. doi: 10.1007/BF00222881.

Abstract

"Selective genotyping" is the term used when the determination of linkage between marker loci and quantitative trait loci (QTL) affecting some particular trait is carried out by genotyping only individuals from the high and low phenotypic tails of the entire sample population. Selective genotyping can markedly decrease the number of individuals genotyped for a given power at the expense of an increase in the number of individuals phenotyped. The optimum proportion of individuals genotyped from the point of view of minimizing costs for a given experimental power depends strongly on the cost of completely genotyping an individual for all of the markers included in the experiment (including the costs of obtaining a DNA sample) relative to the cost of rearing and trait evaluation of an individual. However, in single trait studies, it will almost never be useful to genotype more than the upper and lower 25% of a population. It is shown that the observed difference in quantitative trait values associated with alternative marker genotypes in the selected population can be much greater than the actual gene effect at the quantitative trait locus when the entire population is considered. An expression and a figure is provided for converting observed differences under selective genotyping to actual gene effects.

摘要

“选择性基因分型”是指当确定影响某些特定性状的标记基因座与数量性状基因座(QTL)之间的连锁关系时,仅对整个样本群体中表型高尾和表型低尾的个体进行基因分型的情况。选择性基因分型可以显著减少给定功率下需要基因分型的个体数量,而增加需要表型分析的个体数量。从最小化给定实验功率成本的角度来看,最佳的个体基因分型比例强烈依赖于对实验中包含的所有标记物进行个体完全基因分型的成本(包括获取 DNA 样本的成本)相对于个体饲养和性状评估的成本。然而,在单一性状研究中,对群体的上 25%和下 25%之外的个体进行基因分型几乎没有用处。结果表明,当考虑整个群体时,与选定群体中替代标记基因型相关的数量性状值的观察差异可能远大于数量性状基因座上的实际基因效应。提供了一个表达式和一个图表,用于将选择性基因分型下的观察到的差异转换为实际的基因效应。

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