Plant Breeding · 2009 · 112 citations · 21 references
Plant GeneticsGrowth HabitGeneticsPacific Northwest RegionMolecular GeneticsSpring Wheat GermplasmGenomicsDominant Allele Vrn‐a1Crop ImprovementPlant GenomicsMolecular CharacterizationDominant Allele Vrn‐a1aAgricultural BiotechnologyGenetic VariationPlant BreedingBiologyCrop ProtectionSeed StorageMedicine
Abstract The objective of this study was to determine the Vrn ‐ 1 allelic composition of spring wheat germplasm from the Pacific Northwest region of the USA. Individual plants from 56 spring wheat lines were crossed to near‐isogenic tester lines carrying the dominant allele Vrn‐A1 , Vrn‐B1 or Vrn‐D1 . F 2 progeny were evaluated for growth habit in the field and Vrn‐1 allelic composition was determined through chi‐square analysis. Lines also were analysed with DNA sequence‐based Vrn‐1 allele‐specific markers. A majority of the germplasm carried the dominant allele Vrn‐A1a alone or in combination with Vrn‐B1 , Vrn‐D1 or Vrn‐B3 alleles. Vrn‐B1 and Vrn‐D1 were almost always associated with other dominant Vrn‐1 allele(s). Based on DNA sequence analysis, a novel Vrn‐B1 allele referred to as Vrn‐B1b , which carried a single nucleotide polymorphism (SNP) and a 36 bp deletion, was identified in cultivar ‘Alpowa’. These results will be useful to wheat breeders for choosing parents with different Vrn‐1 alleles for crossing to maximize diversity at the Vrn‐1 loci with an expectation of identifying superior Vrn‐1 allelic combinations for cultivar improvement.
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Positional cloning of the wheat vernalization gene <i>VRN1</i>
Liuling Yan, Artem Loukoianov, G. Tranquilli et al. · Proceedings of the National Academy of Sciences · 2003 · 1.4K citations · Full text