Physical mapping of the wheat genes in low recombination regions: Radiation Hybrid mapping of the C-locus

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Abstract

Abstract Mapping wheat genes, in the centromeric and pericentromeric regions (~2/3rd of a given chromosome), poses a formidable challenge due to highly suppressed recombination. Using an example of compact spike locus (C-locus), this study provides an approach to precisely map wheat genes in the pericentromeric and centromeric regions that house ~30% of wheat genes. In Club-wheat, spike compactness is controlled by the dominant C-locus, but previous efforts have failed to localize it, on a particular arm of chromosome 2D. We integrated radiation hybrid (RH) and high-resolution genetic mapping to locate C-locus on the short arm of chromosome 2D. Flanking markers of the C-locus span a physical distance of 11.0 Mb (231.0-242 Mb interval) and contain only 11 high-confidence annotated genes. This work demonstrates the value of this integrated strategy in mapping dominant genes in the low-recombination regions of the wheat genome. A comparison of the mapping resolutions of the RH and genetic maps using common anchored markers indicated that the RH map provides ~9 times better resolution that the genetic map even with much smaller population size. This study provides a broadly applicable approach to fine-map wheat genes in regions of suppressed recombination.

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last seen: 2026-05-19T01:45:01.086888+00:00