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Supplementary material from 'The influence of QTL allelic diversity on QTL detection in multi-parent populations: a simulation study in sugar beet'

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Figshare2020-12-13 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Supplementary_material_from_The_influence_of_QTL_allelic_diversity_on_QTL_detection_in_multi-parent_populations_a_simulation_study_in_sugar_beet_/13370549
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Datasets, R package software and script allowing to reproduce the simulation scheme proposed in the article.The file EUNAM_Dent_parents_subset_genotypes.txt contains a selection of parent genotype data from maize the EU-NAM Dent population (Bauer et al., 2013) obtained at http://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE50558.The file EUNAM_Dent_parents_markers_subset_genetic_map.txt contains the genetic map information (marker name, chromosome, position in cM) of the marker calculated by Giraud et al. (2014) subset obtained at: http://maizegdb.org/data_center/reference?id=9024747The file mppSim_0.1.0.zip is the R package used for the simulation.The file add_file_4_simulation_reproduction.R is the R script enabling the reproduction of the simulation.ReferencesBauer, E., Falque, M., Walter, H., Bauland, C., Camisan, C., Campo, L., ... & Altmann, T. (2013). Intraspecific variation of recombination rate in maize. Genome biology, 14(9), R103.Giraud, H., Lehermeier, C., Bauer, E., Falque, M., Segura, V., Bauland, C., ... & Schipprack, W. (2014). Linkage disequilibrium with linkage analysis of multiline crosses reveals different multiallelic QTL for hybrid performance in the flint and dent heterotic groups of maize. Genetics, 198(4), 1717-1734.
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2020-12-13
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