DNA Research · 2009 · 138 citations · 54 references
Dna MarkersPlant GeneticsBotanyGeneticsGenomicsEst-based Snp MarkersPlant GenomicsLinkage MapStatistical GeneticsMolecular BreedingGenetic VariationLeaf Morphological TraitsPopulation GeneticsPlant BreedingBiologyNatural SciencesEvolutionary BiologySsr MarkersMedicinePlant Physiology
For identification of genes responsible for varietal differences in flowering time and leaf morphological traits, we constructed a linkage map of Brassica rapa DNA markers including 170 EST-based markers, 12 SSR markers, and 59 BAC sequence-based markers, of which 151 are single nucleotide polymorphism (SNP) markers. By BLASTN, 223 markers were shown to have homologous regions in Arabidopsis thaliana, and these homologous loci covered nearly the whole genome of A. thaliana. Synteny analysis between B. rapa and A. thaliana revealed 33 large syntenic regions. Three quantitative trait loci (QTLs) for flowering time were detected. BrFLC1 and BrFLC2 were linked to the QTLs for bolting time, budding time, and flowering time. Three SNPs in the promoter, which may be the cause of low expression of BrFLC2 in the early-flowering parental line, were identified. For leaf lobe depth and leaf hairiness, one major QTL corresponding to a syntenic region containing GIBBERELLIN 20 OXIDASE 3 and one major QTL containing BrGL1, respectively, were detected. Analysis of nucleotide sequences and expression of these genes suggested possible involvement of these genes in leaf morphological traits.
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Asymmetric leaves1 mediates leaf patterning and stem cell function in Arabidopsis
Mary E. Byrne, Ross Barley, Mark D. Curtis et al. · Nature · 2000 · 813 citations
Cynthia Lincoln, Jeffrey C. Long, Judy Yamaguchi et al. · The Plant Cell · 1994 · 658 citations · Full text