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数量性状基因座的精确图谱绘制。

Precision mapping of quantitative trait loci.

作者信息

Zeng Z B

机构信息

Department of Statistics, North Carolina State University, Raleigh 27695-8203.

出版信息

Genetics. 1994 Apr;136(4):1457-68. doi: 10.1093/genetics/136.4.1457.

Abstract

Adequate separation of effects of possible multiple linked quantitative trait loci (QTLs) on mapping QTLs is the key to increasing the precision of QTL mapping. A new method of QTL mapping is proposed and analyzed in this paper by combining interval mapping with multiple regression. The basis of the proposed method is an interval test in which the test statistic on a marker interval is made to be unaffected by QTLs located outside a defined interval. This is achieved by fitting other genetic markers in the statistical model as a control when performing interval mapping. Compared with the current QTL mapping method (i.e., the interval mapping method which uses a pair or two pairs of markers for mapping QTLs), this method has several advantages. (1) By confining the test to one region at a time, it reduces a multiple dimensional search problem (for multiple QTLs) to a one dimensional search problem. (2) By conditioning linked markers in the test, the sensitivity of the test statistic to the position of individual QTLs is increased, and the precision of QTL mapping can be improved. (3) By selectively and simultaneously using other markers in the analysis, the efficiency of QTL mapping can be also improved. The behavior of the test statistic under the null hypothesis and appropriate critical value of the test statistic for an overall test in a genome are discussed and analyzed. A simulation study of QTL mapping is also presented which illustrates the utility, properties, advantages and disadvantages of the method.

摘要

在定位数量性状基因座(QTL)时,充分分离可能多个连锁QTL的效应是提高QTL定位精度的关键。本文提出并分析了一种将区间定位与多元回归相结合的新的QTL定位方法。该方法的基础是一种区间检验,其中标记区间上的检验统计量不受定义区间外QTL的影响。这是通过在进行区间定位时,在统计模型中拟合其他遗传标记作为对照来实现的。与当前的QTL定位方法(即使用一对或两对标记进行QTL定位的区间定位方法)相比,该方法具有几个优点。(1)通过一次将检验限制在一个区域,它将多维搜索问题(针对多个QTL)简化为一维搜索问题。(2)通过在检验中对连锁标记进行条件设定,检验统计量对单个QTL位置的敏感性增加,并且可以提高QTL定位的精度。(3)通过在分析中选择性地同时使用其他标记,QTL定位的效率也可以提高。讨论并分析了原假设下检验统计量的行为以及基因组整体检验中检验统计量的适当临界值。还给出了一个QTL定位的模拟研究,说明了该方法的实用性、特性、优点和缺点。

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