4.4 Article

Selection mapping of loci for quantitative disease resistance in a diverse maize population

Journal

GENETICS
Volume 180, Issue 1, Pages 583-599

Publisher

GENETICS SOCIETY AMERICA
DOI: 10.1534/genetics.108.090118

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Funding

  1. The Rockefeller Foundation
  2. The Generation Challenge Program

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The selection response of a complex maize population improved primarily for quantitative disease resistance to northern leaf blight (NLB) and secondarily for common rust resistance and agronomic phenotypes was investigated at the molecular genetic leve. A tiered marker analysis with 151 simple sequence repeat (SSR) markers in 90 individuals of the population indicated that on average six alleles per locus were avaliable for selection . An improved test statistic for selection mapping was developed, in which quantitative trait loci (QTL) are identified through the analysis of allele-frequency shifts at mapped multiallelic loci over generations of selection. After correcting for the multiple tests performed, 25 SSR loci showed evidence of selection. Many of the putatively selected loci were unlinked and dispersed across the genome, which was consistent with the diffuse distribution of previously published QTL for NLB resistance. Compelling evidence fo selection was found on maize chromosome 8, where several putatively selected loci colocalized with published NLB QTL and a race-specific resistance gene. Analysis of F-2 populations derived from the selection mapping population suggested that multiple lilnked loci in this chromosomal segment were, in part, responsible for the selection response for quantitative resistance to NLB.

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