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单倍型频率的惩罚估计

Penalized estimation of haplotype frequencies.

作者信息

Ayers Kristin L, Lange Kenneth

机构信息

Department of Biomathematics, Department of Human Genetics and Department of Statistics, University of California, Los Angeles, CA 90095, USA.

出版信息

Bioinformatics. 2008 Jul 15;24(14):1596-602. doi: 10.1093/bioinformatics/btn236. Epub 2008 May 16.

Abstract

MOTIVATION

Low haplotype diversity and linkage disequilibrium are the rule in short genomic segments. This fact suggests that parsimony should be enforced in estimation of haplotype frequencies. The current article introduces a diversity penalty that automatically discards potential haplotypes with low explanatory power. The standard EM algorithm for haplotype frequency estimation can accommodate the penalty if one passes over to a more general minorize-maximize (MM) scheme for estimation.

RESULTS

Our new MM algorithm converges in fewer iterations, eliminates marginal haplotypes from further consideration and reduces the computational complexity of each iteration. Estimation by the MM algorithm also improves haplotyping and genotype imputation compared to naive application of the EM algorithm. Thus, the MM algorithm is a useful substitute for the EM algorithm. Compared to the most sophisticated current methods of haplotyping and genotype imputation, the MM algorithm is slightly less accurate but at least an order of magnitude faster.

AVAILABILITY

Our software will be made available in the next release the program Mendel at http://www.genetics.ucla.edu/software/.

摘要

动机

低单倍型多样性和连锁不平衡是短基因组片段中的常见现象。这一事实表明,在估计单倍型频率时应采用简约原则。本文介绍了一种多样性惩罚方法,该方法会自动舍弃解释力低的潜在单倍型。如果将用于单倍型频率估计的标准期望最大化(EM)算法转换为更通用的求最小值-最大化(MM)估计方案,那么该算法就能适应这种惩罚。

结果

我们新的MM算法在更少的迭代次数内收敛,不再考虑边缘单倍型,并降低了每次迭代的计算复杂度。与直接应用EM算法相比,使用MM算法进行估计还能改善单倍型分型和基因型填充。因此,MM算法是EM算法的一个有用替代方法。与当前最复杂的单倍型分型和基因型填充方法相比,MM算法的准确性略低,但速度至少快一个数量级。

可用性

我们的软件将在http://www.genetics.ucla.edu/software/网站上的Mendel程序的下一个版本中提供。

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