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Theoretical and Applied Genetics, ISSN 0040-5752, 09/2019, pp. 1 - 13
Key message Wheat–barley group-7 recombinant chromosomes were selected using molecular cytogenetics and SNP markers; increased grain β-glucan content was... 
Barley | Recombination | Nutrient deficiency | Diabetes mellitus | Gene pool | Genomes | Single-nucleotide polymorphism | Calories | Chromosome translocations | Cellulose synthase | Hypocaloric diet | Cytogenetics | Recombinants | Dietary fiber | Heart diseases | Chromosomes | Low protein diet
Journal Article
Plant Genome, ISSN 1940-3372, 2012, Volume 5, Issue 3, pp. 92 - 102
Rapid advances in "next-generation" DNA sequencing technology have brought the US$1000 human (Homo sapiens) genome within reach while providing the raw... 
SNP DISCOVERY | RAD MARKERS | GENETICS & HEREDITY | REDUCED REPRESENTATION | MAIZE | ARABIDOPSIS | IDENTIFICATION | MAP | NEXT-GENERATION | POLYMORPHISM DISCOVERY | GENOME-WIDE ASSOCIATION | PLANT SCIENCES
Journal Article
Scientific Reports, ISSN 2045-2322, 12/2019, Volume 9, Issue 1, pp. 1793 - 15
Wheat (Triticum aestivum) genetic maps are a key enabling tool for genetic studies. We used genotyping-by-sequencing-(GBS) derived markers to map recombinant... 
Quantitative trait loci | Recombination | Genotyping | Inbreeding | Epistasis | Genomes | Gene mapping
Journal Article
Theoretical and Applied Genetics, ISSN 0040-5752, 6/2019, Volume 132, Issue 6, pp. 1705 - 1720
Genomic selection (GS) models have been validated for many quantitative traits in wheat (Triticum aestivum L.) breeding. However, those models are mostly... 
Life Sciences | Biochemistry, general | Biotechnology | Plant Biochemistry | Plant Breeding/Biotechnology | Plant Genetics and Genomics | Agriculture | REGRESSION | AGRONOMY | GENOTYPE | MODEL | PREDICTION | ACCURACY | PLANT SCIENCES | HEAD BLIGHT RESISTANCE | HORTICULTURE | GENETICS & HEREDITY | TRAITS | PEDIGREE | INDEXES | Wheat | Natural selection | Accuracy | Plant breeding | Grain | Phenotyping
Journal Article
Molecular Breeding, ISSN 1380-3743, 3/2019, Volume 39, Issue 3, pp. 1 - 21
Fusarium head blight (FHB) reduces grain yield and accumulates mycotoxins in wheat kernels and flour and thus compromise the end-use quality. In this study,... 
Life Sciences | Plant Pathology | FHB resistance | Biotechnology | Plant Genetics and Genomics | Genotyping-by-sequencing | Plant Physiology | Deoxynivalenol | Plant Sciences | Fusarium head blight | QTL mapping | Near-infrared spectroscopy | Quantitative genetics | Wheat | Analysis
Journal Article
Crop Science, ISSN 0011-183X, 05/2019, Volume 59, Issue 3, pp. 905 - 910
Progress in plant breeding programs is the result of creating and selecting new lines with novel allele combinations that perform better than their parents.... 
AGRONOMY | TRENDS | CROP PRODUCTION | GREAT-PLAINS
Journal Article
FRONTIERS IN PLANT SCIENCE, ISSN 1664-462X, 02/2019, Volume 10, p. 54
Bread wheat is an important and the most consumed cereal worldwide. However, people with predominantly cereal-based diets are increasingly affected by... 
GWAS | PROTEIN | biofortification | WILD EMMER WHEAT | Aegilops tauschii | IRON CONCENTRATION | ZINC | PLANT SCIENCES | GENETIC DIVERSITY | DENSITY | MAGNESIUM | ELEMENTS | micronutrients | wild progenitors | EXPRESSION | Genome-wide association studies | Genetic aspects | Grasses
Journal Article
FRONTIERS IN PLANT SCIENCE, ISSN 1664-462X, 04/2019, Volume 10, p. 394
Novel high-throughput phenotyping (HTP) approaches are needed to advance the understanding of genotype-to-phenotype and accelerate plant breeding. The first... 
lodging | genomic selection | STEM STRENGTH | TRANSLOCATION | POPULATION | GWAS | PHENOMICS | UAV/UAS | unmanned aerial systems | CONFERS RESISTANCE | PREDICTION | PLANT SCIENCES | wheat breeding | QUANTITATIVE TRAIT LOCI | ARCHITECTURE | R PACKAGE | high-throughput phenotyping | Triticum aestivum | Physiological aspects | Phenotype | Genetic aspects | Wheat | Analysis | Surgery
Journal Article
by Mascher, Martin and Gundlach, Heidrun and Himmelbach, Axel and Beier, Sebastian and Twardziok, Sven O and Wicker, Thomas and Radchuk, Volodymyr and Dockter, Christoph and Hedley, Pete E and Russell, Joanne and Bayer, Micha and Ramsay, Luke and Liu, Hui and Haberer, Georg and Zhang, Xiao-Qi and Zhang, Qisen and Barrero, Roberto A and Li, Lin and Taudien, Stefan and Groth, Marco and Felder, Marius and Hastie, Alex and Šimková, Hana and Stanková, Helena and Vrána, Jan and Chan, Saki and Munõz-Amatriaín, Mariá and Ounit, Rachid and Wanamaker, Steve and Bolser, Daniel and Colmsee, Christian and Schmutzer, Thomas and Aliyeva-Schnorr, Lala and Grasso, Stefano and Tanskanen, Jaakko and Chailyan, Anna and Sampath, Dharanya and Heavens, Darren and Clissold, Leah and Cao, Sujie and Chapman, Brett and Dai, Fei and Han, Yong and Li, Hua and Li, Xuan and Lin, Chongyun and McCooke, John K and Tan, Cong and Wang, Penghao and Wang, Songbo and Yin, Shuya and Zhou, Gaofeng and Poland, Jesse A and Bellgard, Matthew I and Borisjuk, Ljudmilla and Houben, Andreas and Doleael, Jaroslav and Ayling, Sarah and Lonardi, Stefano and Kersey, Paul and Langridge, Peter and Muehlbauer, Gary J and Clark, Matthew D and Caccamo, Mario and Schulman, Alan H and Mayer, Klaus F. X and Platzer, Matthias and Close, Timothy J and Scholz, Uwe and Hansson, Mats and Zhang, Guoping and Braumann, Ilka and Spannagl, Manuel and Li, Chengdao and Waugh, Robbie and Stein, Nils and Molekylär cellbiologi and Lund University and Molecular Cell Biology and Department of Biology and Lunds universitet and Biologiska institutionen
Nature, ISSN 0028-0836, 04/2017, Volume 544, Issue 7651, pp. 427 - 433
Journal Article