Open Life Sciences · 2013 · 17 citations · 42 references
Plant GeneticsBotanyGeneticsAgricultural EconomicsGenomicsCrop ImprovementApplied GeneticsGermination PercentagePublic HealthPrevious Wheat GenerationQuantitative GeneticsStatistical GeneticsMolecular BreedingGenetic VariationPopulation GeneticsPlant BreedingBiologyQtl MappingDroughtGermination AbilityCrop ScienceEarly Seedling GrowthSeed GerminationPopulation DevelopmentMedicinePlant Physiology
Abstract The QTLs controlling germination and early seedling growth were mapped using seeds acquired from mapping population and parental lines of Chinese Spring and SQ1 grown under water-limited conditions, severe drought (SDr) and well-watered plants (C). Germination ability was determined by performing a standard germination test based on the quantification of the germination percentage (GP24) of seeds incubated for 24 h at 25°C in the dark. Early seedling growth was evaluated on the basis of the length of the root and leaf at the 6th day of the experiment. QTLs were identified by composite interval mapping method using Windows QTLCartographer 2.5 software. For the traits studied, a total of thirty eight additive QTLs were identified. Seventeen QTLs were mapped in C on chromosomes: 1A, 2A, 7A, 1B, 2B, 3B, 4B, 5B, 6B, 7B, 2D, 3D, 4D and 6D, while twenty one QTLs were identified in SDr on chromosomes: 1A, 2A, 5A, 2B, 3B, 4B, 5B, 6B, 7B, 3D, 5D and 6D. Most of the QTLs for GP and early leaf growth parameters were clustered on chromosome 4B (associated with the Rht-B1 marker) both in C and SDr plants. The results indicate the complex and polygenic nature of germination.
42
Seeds: Physiology of Development and Germination.
Ken Thompson, J. Derek Bewley, Michael Black · Journal of Ecology · 1995 · 3.5K citations
Engineering, Fertility, Botany +16
S. A. Quarrie, Andrew Steed, Cristina Calestani et al. · Theoretical and Applied Genetics · 2005 · 501 citations