Bayesian QTL analyses using pedigreed families of an outcrossing species, with application to fruit firmness in apple

Zugehörigkeit
Biometris, Wageningen University and Research Centre, Wageningen, The Netherlands
Bink, M. C. A. M.;
Zugehörigkeit
Biometris, Wageningen University and Research Centre, Wageningen, The Netherlands
Jansen, J.;
Zugehörigkeit
Plant Breeding, Wageningen UR, Wageningen, The Netherlands
Madduri, M.;
Zugehörigkeit
Plant Breeding, Wageningen UR, Wageningen, The Netherlands
Voorrips, R. E.;
Zugehörigkeit
Institut de Recherche en Horticulture et Semences, Université d’Angers, France
Durel, C.-E.;
Zugehörigkeit
Institut de Recherche en Horticulture et Semences, Université d’Angers, France
Kouassi, A. B.;
Zugehörigkeit
Institut de Recherche en Horticulture et Semences, Université d’Angers, France
Laurens, F.;
Zugehörigkeit
Institut de Recherche en Horticulture et Semences, Université d’Angers, France
Mathis, F.;
Zugehörigkeit
Plant Pathology, Institute of Integrative Biology (IBZ), ETH Zurich, Switzerland
Gessler, C.;
Zugehörigkeit
Plant Pathology, Institute of Integrative Biology (IBZ), ETH Zurich, Switzerland
Gobbin, D.;
Zugehörigkeit
Plant Pathology, Institute of Integrative Biology (IBZ), ETH Zurich, Switzerland
Rezzonico, F.;
Zugehörigkeit
Plant Pathology, Institute of Integrative Biology (IBZ), ETH Zurich, Switzerland; Research Station Agroscope, Wädenswil, Switzerland
Patocchi, A.;
Zugehörigkeit
Research Station Agroscope, Wädenswil, Switzerland
Kellerhals, M.;
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Breeding Research on Horticultural and Fruit Crops, Germany
Boudichevskaia, A.;
GND
1059150336
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Breeding Research on Horticultural and Fruit Crops, Germany
Dunemann, Frank;
GND
172861896
Zugehörigkeit
Julius Kühn-Institute (JKI), Institute for Breeding Research on Horticultural and Fruit Crops, Germany
Peil, Andreas;
Zugehörigkeit
Department of Experimental Design and Bioinformatics, Warsaw University of Life Sciences, Poland
Novicka, A.;
Zugehörigkeit
Laboratory of Basic Research in Horticulture, Faculty of Horticulture, Biotechnology, and Landscape Architecture, Warsaw University of Life Sciences, Poland
Lata, B.;
Zugehörigkeit
Laboratory of Basic Research in Horticulture, Faculty of Horticulture, Biotechnology, and Landscape Architecture, Warsaw University of Life Sciences, Poland
Stankiewicz-Kosyl, M.;
Zugehörigkeit
Department of Pomology, Faculty of Horticulture, Biotechnology and Landscape Architecture, Warsaw University of Life Sciences, Poland
Jeziorek, K.;
Zugehörigkeit
Department of Pomology, Faculty of Horticulture, Biotechnology and Landscape Architecture, Warsaw University of Life Sciences, Poland
Pitera, E.;
Zugehörigkeit
Department of Pomology, Faculty of Horticulture, Biotechnology and Landscape Architecture, Warsaw University of Life Sciences, Poland
Soska, A.;
Zugehörigkeit
Department of Pomology, Faculty of Horticulture, Biotechnology and Landscape Architecture, Warsaw University of Life Sciences, Poland
Tomala, K.;
Zugehörigkeit
East Malling Research, New Road, East Malling, Kent , UK
Evans, K. M.;
Zugehörigkeit
East Malling Research, New Road, East Malling, Kent , UK
Fernández-Fernández, F.;
Zugehörigkeit
Research Centre for Agriculture and Forestry Laimburg, Vadena, BZ, Italy
Guerra, W.;
Zugehörigkeit
Research Institute of Horticulture, Skierniewice, Poland
Korbin, M.;
Zugehörigkeit
Research Institute of Horticulture, Skierniewice, Poland
Keller, S.;
Zugehörigkeit
Research Institute of Horticulture, Skierniewice, Poland
Lewandowski, M.;
Zugehörigkeit
Research Institute of Horticulture, Skierniewice, Poland
Plocharski, W.;
Zugehörigkeit
Research Institute of Horticulture, Skierniewice, Poland
Rutkowski, K.;
Zugehörigkeit
Research Institute of Horticulture, Skierniewice, Poland
Zurawicz, E.;
Zugehörigkeit
Department of Fruit and Woody Plant Science, Current Department of Agricultural Sciences, University of Bologna, Bologna, Italy
Costa, F.;
Zugehörigkeit
Department of Fruit and Woody Plant Science, Current Department of Agricultural Sciences, University of Bologna, Bologna, Italy
Sansavini, S.;
Zugehörigkeit
Department of Fruit and Woody Plant Science, Current Department of Agricultural Sciences, University of Bologna, Bologna, Italy
Tartarini, S.;
Zugehörigkeit
Department of Genetics and Biology of Fruit Crops, Research and Innovation Centre, Foundation Edmund Mach, Trento, Italy
Komjanc, M.;
Zugehörigkeit
Department of Genetics and Biology of Fruit Crops, Research and Innovation Centre, Foundation Edmund Mach, Trento, Italy
Mott, D.;
Zugehörigkeit
Walloon Agricultural Research Centre (CRA-W), Gembloux, Belgium
Antofie, A.;
Zugehörigkeit
Walloon Agricultural Research Centre (CRA-W), Gembloux, Belgium
Lateur, M.;
Zugehörigkeit
Walloon Agricultural Research Centre (CRA-W), Gembloux, Belgium
Rondia, A.;
Zugehörigkeit
Department of Biosciences, University of Milan, Milan, Italy
Gianfranceschi, L.;
Zugehörigkeit
Plant Breeding, Wageningen UR, Wageningen, The Netherlands
van de Weg, W. E.

Bayesian QTL linkage mapping approaches offer the flexibility to study multiple full sib families with known pedigrees simultaneously. Such a joint analysis increases the probability of detecting these quantitative trait loci (QTL) and provide insight of the magnitude of QTL across different genetic backgrounds. Here, we present an improved Bayesian multi-QTL pedigree-based approach on an outcrossing species using progenies with different (complex) genetic relationships. Different modeling assumptions were studied in the QTL analyses, i.e., the a priori expected number of QTL varied and polygenic effects were considered. The inferences include number of QTL, additive QTL effect sizes and supporting credible intervals, posterior probabilities of QTL genotypes for all individuals in the dataset, and QTL-based as well as genome-wide breeding values. All these features have been implemented in the FlexQTL™ software. We analyzed fruit firmness in a large apple dataset that comprised 1,347 individuals forming 27 full sib families and their known ancestral pedigrees, with genotypes for 87 SSR markers on 17 chromosomes. We report strong or positive evidence for 14 QTL for fruit firmness on eight chromosomes, validating our approach as several of these QTL were reported previously, though dispersed over a series of studies based on single mapping populations. Interpretation of linked QTL was possible via individuals’ QTL genotypes. The correlation between the genomic breeding values and phenotypes was on average 90 %, but varied with the number of detected QTL in a family. The detailed posterior knowledge on QTL of potential parents is critical for the efficiency of marker-assisted breeding.

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