Genetics, Vol. 165, 331-342, September 2003, Copyright © 2003

Assessing Probability of Ancestry Using Simple Sequence Repeat Profiles: Applications to Maize Inbred Lines and Soybean Varieties

Donald A. Berrya, Jon D. Seltzerb, Chongqing Xiec, Deanne L. Wrightc, Elizabeth S. Jonesc, Scott Sebastianc, and J. Stephen C. Smithc
a Department of Biostatistics, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030,
b Medtronic, Minneapolis, Minnesota 55432
c Pioneer Hi-Bred International, Johnston, Iowa 50131

Corresponding author: Donald A. Berry, The University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Blvd., Unit 447, Houston, TX 77030-4009., dberry{at}mdanderson.org (E-mail)

Communicating editor: G. CHURCHILL

Determining parentage is a fundamental problem in biology and in applications such as identifying pedigrees. Difficulties inferring parentage derive from extensive inbreeding within the population, whether natural or planned; using an insufficient number of hypervariable loci; and from allele mismatches caused by mutation or by laboratory errors that generate false exclusions. Many studies of parentage have been limited to comparisons of small numbers of specific parent-progeny triplets. There have been few large-scale surveys of candidates in which there is no prior knowledge of parentage. We present an algorithm that determines the probability of parentage in circumstances where there is no prior knowledge of pedigree and that is robust in the face of missing data and mistyped data. The focus is parentage of an inbred line having uncertain ancestry. The algorithm is a variation of a previously published hybrid-focused algorithm. We describe the algorithm and demonstrate its performance in determining parentage of 43 inbred varieties of soybean that have been profiled using 236 SSR loci and from seven inbred varieties of maize that were profiled using 70 SSR loci. We include simulations of additional levels of missing and mistyped data to show the algorithm's utility and flexibility.





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D. A. Berry, D. Wright, C. Xie, J. D. Seltzer, and J. S. C. Smith
Using Molecular Sizes of Simple Sequence Repeats vs. Discrete Binned Data in Assessing Probability of Ancestry: Application to Maize Hybrids
Genetics, May 1, 2005; 170(1): 365 - 374.
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