异速标度定律的遗传作图。

Fei Long, Ying Qing Chen, James M Cheverud, Rongling Wu
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引用次数: 19

摘要

许多生物过程,从细胞代谢到种群动态,都以速率和大小之间的特殊异速尺度关系(幂律)为特征。建立了与异速缩放规律有关的特定数量性状位点(qtl)的统计模型。我们提出了一个改进的基于更一般的异速映射方程的qtl异速映射模型。该改进模型包括两个步骤:(1)利用模型II回归分析估计通用异速尺度规律的参数;(2)将估计的异速参数代入基于混合物的映射模型中,得到QTL位置和效应的估计。该模型已通过一个小鼠F2后代的实际例子得到验证,其中在不同的染色体上检测到两个qtl,这些qtl决定了生长速度和体重之间的异速生长关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic mapping of allometric scaling laws.

Many biological processes, from cellular metabolism to population dynamics, are characterized by particular allometric scaling relationships between rate and size (power laws). A statistical model for mapping specific quantitative trait loci (QTLs) that are responsible for allometric scaling laws has been developed. We present an improved model for allometric mapping of QTLs based on a more general allometry equation. This improved model includes two steps: (1) use model II regression analysis to estimate the parameters underlying universal allometric scaling laws, and (2) substitute the estimated allometric parameters in the mixture-based mapping model to obtain the estimation of QTL position and effects. This model has been validated by a real example for a mouse F2 progeny, in which two QTLs were detected on different chromosomes that determine the allometric relationship between growth rate and body weight.

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