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一种用于渐进式精细定位的优化DNA池策略。

An optimal DNA pooling strategy for progressive fine mapping.

作者信息

Chi Xiao-Fei, Lou Xiang-Yang, Yang Mark C K, Shu Qing-Yao

机构信息

IAEA-Zhejiang University Collaborating Center and National Key Laboratory of Rice Biology, Institute of Nuclear Agricultural Sciences, Zhejiang University, 268 Kaixuan Road, Huajia Pool Campus, Hangzhou, 310029, People's Republic of China.

出版信息

Genetica. 2009 Apr;135(3):267-81. doi: 10.1007/s10709-008-9275-5. Epub 2008 May 28.

Abstract

We present a cost-effective DNA pooling strategy for fine mapping of a single Mendelian gene in controlled crosses. The theoretical argument suggests that it is potentially possible for a single-stage pooling approach to reduce the overall experimental expense considerably by balancing costs for genotyping and sample collection. Further, the genotyping burden can be reduced through multi-stage pooling. Numerical results are provided for practical guidelines. For example, the genotyping effort can be reduced to only a small fraction of that needed for individual genotyping at a small loss of estimation accuracy or at a cost of increasing sample sizes slightly when recombination rates are 0.5% or less. An optimal two-stage pooling scheme can reduce the amount of genotyping to 19.5%, 14.5% and 6.4% of individual genotyping efforts for identifying a gene within 1, 0.5, and 0.1 cM, respectively. Finally, we use a genetic data set for mapping the rice xl(t) gene to demonstrate the feasibility and efficiency of the DNA pooling strategy. Taken together, the results demonstrate that this DNA pooling strategy can greatly reduce the genotyping burden and the overall cost in fine mapping experiments.

摘要

我们提出了一种具有成本效益的DNA混合策略,用于在受控杂交中对单个孟德尔基因进行精细定位。理论论证表明,单阶段混合方法有可能通过平衡基因分型和样本收集成本,大幅降低总体实验费用。此外,通过多阶段混合可以减轻基因分型负担。提供了数值结果作为实用指南。例如,当重组率为0.5%或更低时,基因分型工作可以减少到个体基因分型所需工作量的一小部分,估计准确性会有小幅损失,或者以稍微增加样本量为代价。一种最优的两阶段混合方案可以将基因分型量分别减少到在1、0.5和0.1厘摩内鉴定一个基因时个体基因分型工作量的19.5%、14.5%和6.4%。最后,我们使用一个遗传数据集来定位水稻xl(t)基因,以证明DNA混合策略的可行性和效率。综上所述,结果表明这种DNA混合策略可以大大减轻精细定位实验中的基因分型负担和总体成本。

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