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High-resolution genetic and physical mapping of the cauliflower high-β-carotene gene<Emphasis Type="Italic"> Or</Emphasis> (<Emphasis Type="Italic">Orange</Emphasis>)
Authors:Email author" target="_blank">L?LiEmail author  S?Lu  D?M?O'Halloran  D?F?Garvin  J?Vrebalov
Institution:(1) USDA-ARS, Plant, Soil and Nutrition Laboratory, Cornell University, Ithaca, NY 14853, USA;(2) USDA-ARS, Plant Science Research Unit, University of Minnesota, 411 Borlaug Hall, St. Paul, MN 55108, USA;(3) Boyce Thompson Institute for Plant Research, Cornell University, Ithaca, NY 14853, USA
Abstract:Mutation in the cauliflower gene Or causes high levels of beta-carotene to accumulate in various tissues of the plant that are normally devoid of carotenoids. To decipher the molecular basis by which Or regulates carotenoid accumulation, we have undertaken the isolation of Or by a map-based cloning strategy. Two previously isolated, locus-specific, sequence-characterized amplified region (SCAR) markers that flank Or were employed for the analysis of a large segregating population consisting of 1632 F2 individuals, and a high-resolution genetic linkage map of the Or locus region was developed. To facilitate positional cloning, we constructed a cauliflower genomic library in a bacterial artificial chromosome (BAC) vector, using high molecular weight DNA from Or homozygotes. The BAC library comprises 60,288 clones with an average insert size of 110 kb, and represents an estimated 10-fold coverage of the genome. A BAC contig encompassing the Or locus was established by screening the library with a marker that is closely linked to Or and by identifying overlapping BAC clones by chromosome walking. Physical mapping delimited the Or locus to a 50-kb DNA fragment within a single BAC clone, which corresponds to a genetic interval of 0.3 cM.Communicated by R. Hagemann
Keywords:BAC library  Carotenoids  Cauliflower (Brassica oleracea L  var   botrytis)  Genetic and physical mapping   Or gene
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