A Bayesian approach to the inference of diploid genotypes using haploid genotypes

被引:6
作者
Alexander, HM
Slade, NA
Gomulkiewicz, R
机构
[1] UNIV KANSAS,DEPT SYSTEMAT & ECOL,LAWRENCE,KS 66045
[2] UNIV KANSAS,MUSEUM NAT HIST,LAWRENCE,KS 66045
关键词
Bayes's rule; haploid; experimental design; genetic structure;
D O I
10.1007/BF00220942
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Morris and Spieth (1978) described a method of calculating unbiased estimates of diploid genotype frequencies given information on the genotypes of haploid cells derived from diploid individuals. They concluded that three haploids per diploid would minimize sampling variance of genotype frequencies, given a fixed total number of haploids examined. If the identity of individual diploid genotypes is needed, Morris and Spieth (1978) stated that more haploids should be collected per diploid. We extend this work by showing from a Bayesian perspective that the probability of misclassification of individuals depends not only on the number of haploids sampled, but also on the genetic structure of the population since misclassification error will increase as the frequency of heterozygotes increases. Since information on the genetic structure (allele frequencies, inbreeding coefficient) of a population is rarely known prior to the initiation of an empirical study, the usefulness of our Bayesian approach is in experimental design, by revealing the magnitude of possible misclassification errors given a particular choice of number of haploids.
引用
收藏
页码:1284 / 1287
页数:4
相关论文
共 20 条
[1]   SEGREGATION OF ALLOZYMES IN MEGAGAMETOPHYTES OF VIABLE SEED FROM A NATURAL-POPULATION OF JACK PINE, PINUS-BANKSIANA LAMB [J].
CHELIAK, WM ;
MORGAN, K ;
DANCIK, BP ;
STROBECK, C ;
YEH, FCH .
THEORETICAL AND APPLIED GENETICS, 1984, 69 (02) :145-151
[2]   ESTIMATION OF MATING SYSTEM PARAMETERS IN PLANT-POPULATIONS USING THE EM ALGORITHM [J].
CHELIAK, WM ;
MORGAN, K ;
STROBECK, C ;
YEH, FCH ;
DANCIK, BP .
THEORETICAL AND APPLIED GENETICS, 1983, 65 (02) :157-161
[3]  
Ennos R. A., 1990, Plant population genetics, breeding, and genetic resources., P200
[4]  
Hartl DL, 1989, PRINCIPLES POPULATIO
[5]   SPATIAL-ANALYSIS OF GENETIC-VARIATION IN PLANT-POPULATIONS [J].
HEYWOOD, JS .
ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 1991, 22 :335-355
[6]   VARIATION IN OUTCROSSING RATE AND POPULATION GENETIC-STRUCTURE OF CLARKIA-TEMBLORIENSIS (ONAGRACEAE) [J].
HOLTSFORD, TP ;
ELLSTRAND, NC .
THEORETICAL AND APPLIED GENETICS, 1989, 78 (04) :480-488
[7]   Deterministic paternity exclusion using RAPD markers [J].
Lewis, P. O. ;
Snow, A. A. .
MOLECULAR ECOLOGY, 1992, 1 (03) :155-160
[8]   MAXIMUM-LIKELIHOOD-ESTIMATES OF GENE-FREQUENCIES AND RACIAL ADMIXTURE IN APIS-MELLIFERA L (AFRICANIZED HONEYBEES) [J].
LOBO, JA ;
KRIEGER, H .
HEREDITY, 1992, 68 :441-448
[9]   ANALYSIS OF POPULATION GENETIC-STRUCTURE WITH RAPD MARKERS [J].
LYNCH, M ;
MILLIGAN, BG .
MOLECULAR ECOLOGY, 1994, 3 (02) :91-99
[10]   ANALYSIS OF PARENTAGE FOR NATURALLY ESTABLISHED SEEDLINGS OF CHAMAELIRIUM-LUTEUM (LILIACEAE) [J].
MEAGHER, TR ;
THOMPSON, E .
ECOLOGY, 1987, 68 (04) :803-812