Multipoint genetic mapping with uniparental disomy data
- PMID: 10958760
- PMCID: PMC1287890
- DOI: 10.1086/303072
Multipoint genetic mapping with uniparental disomy data
Abstract
Uniparental disomy (UPD) refers to the presence of two copies of a chromosome from one parent and none from the other parent. In genetic studies of UPDs, many genetic markers are usually used to identify the stage of nondisjunction that leads to UPD and to uncover the associated unusual patterns of recombinations. However, genetic information in such data has not been fully utilized because of the limitations of the existing statistical methods for UPD data. In the present article, we develop a multilocus statistical approach that has the advantages of being able to simultaneously consider all genetic markers for all individuals in the same analysis and to allow general models for the crossover process to incorporate crossover interference. In particular, for a general crossover-process model that assumes only that there exists in each interval at most one crossover, we describe how to use the expectation-maximization algorithm to examine the probability distribution of the recombination events underlying meioses leading to UPD. We can also use this flexible approach to create genetic maps based on UPD data and to inspect recombination differences between meioses exhibiting UPD and normal meioses. The proposed method has been implemented in a computer program, and we illustrate the proposed approach through its application to a set of UPD15 data.
References
Electronic-Database Information
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- Genetic Location Database, The, http://cedar.genetics.soton.ac.uk/public_html/ldb.html
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- Hongyu Zhao's Lab of Statistical Genetics, http://zhao.med.yale.edu
References
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- Chakravarti A, Majumder PP, Slaugenhaupt SA, Deka R, Warren AC, Surti U, Ferrell RE, Antonarakis SE (1989) Gene-centromere mapping and the study of nondisjunction in autosomal trisomies and ovarian teratomas. In: Hassold TJ, Epstein CJ (eds) Molecular and cytogenetic studies of nondisjunction. Alan R Liss, New York, pp 35–42
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- Chakravarti A, Slaugenhaupt SA (1987) Methods for studying recombination on chromosomes that undergo nondisjunction. Genomics 1:35–42 - PubMed
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- Dempster AP, Laird NM, Rubin DB (1977) Maximum likelihood from incomplete data via the EM algorithm (with discussion). J R Stat Soc B 39:1–38
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