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      Polypatex: an R package for paternity exclusion in autopolyploids.

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          Abstract

          Microsatellite markers have demonstrated their value for performing paternity exclusion and hence exploring mating patterns in plants and animals. Methodology is well established for diploid species, and several software packages exist for elucidating paternity in diploids; however, these issues are not so readily addressed in polyploids due to the increased complexity of the exclusion problem and a lack of available software. We introduce polypatex, an r package for paternity exclusion analysis using microsatellite data in autopolyploid, monoecious or dioecious/bisexual species with a ploidy of 4n, 6n or 8n. Given marker data for a set of offspring, their mothers and a set of candidate fathers, polypatex uses allele matching to exclude candidates whose marker alleles are incompatible with the alleles in each offspring-mother pair. polypatex can analyse marker data sets in which allele copy numbers are known (genotype data) or unknown (allelic phenotype data) - for data sets in which allele copy numbers are unknown, comparisons are made taking into account all possible genotypes that could arise from the compared allele sets. polypatex is a software tool that provides population geneticists with the ability to investigate the mating patterns of autopolyploids using paternity exclusion analysis on data from codominant markers having multiple alleles per locus.

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          Author and article information

          Journal
          Mol Ecol Resour
          Molecular ecology resources
          Wiley
          1755-0998
          1755-098X
          May 2016
          : 16
          : 3
          Affiliations
          [1 ] CSIRO Data61, GPO Box 664, Canberra, ACT, 2601, Australia.
          [2 ] CSIRO National Facilities and Collections, GPO Box 1600, Canberra, ACT, 2601, Australia.
          [3 ] Queensland University of Technology (QUT), GPO Box 2434, Brisbane, QLD, 4001, Australia.
          Article
          10.1111/1755-0998.12496
          26613799
          ba635b0d-b7f8-434b-a104-e285d6e1e697
          © 2015 John Wiley & Sons Ltd.
          History

          allele matching,microsatellite,pollen dispersal,polyploid

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