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A new PCR-based marker on chromosome 4AL for resistance to pre-harvest sprouting in wheat (<Emphasis Type="Italic">Triticum aestivum</Emphasis> L.)
Authors:Xiao-Qi Zhang  Chengdao Li  Amy Tay  Reg Lance  Daryl Mares  Judy Cheong  Mehmet Cakir  Junhong Ma  Rudi Appels
Institution:(1) CRC Molecular Plant Breeding/DAFWA, State Agricultural Biotechnology Center, Murdoch University, Perth, WA, 6150, Australia;(2) Department of Agriculture and Food, Western Australia, 3 Baron-Hay Court, South Perth, WA, 6151, Australia;(3) School of Agriculture, Food and Wine, University of Adelaide, Waite Campus, Glen Osmond, SA, 5064, Australia;(4) SARDI, GPO Box 397, Adelaide, SA, 5001, Australia
Abstract:Pre-harvest sprouting (PHS) is a complex trait controlled by multiple genes with strong interaction between environment and genotype that makes it difficult to select breeding materials by phenotypic assessment. One of the most important genes for pre-harvest sprouting resistance is consistently identified on the long arm of chromosome 4A. The 4AL PHS tolerance gene has therefore been targeted by Australian white-grained wheat breeders. A new robust PCR marker for the PHS QTL on wheat chromosome 4AL based on candidate genes search was developed in this study. The new marker was mapped on 4AL deletion bin 13-0.59-0.66 using 4AL deletion lines derived from Chinese Spring. This marker is located on 4AL between molecular markers Xbarc170 and Xwg622 in the doubled-haploid wheat population Cranbrook × Halberd. It was mapped between molecular markers Xbarc170 and Xgwm269 that have been previously shown to be closely linked to grain dormancy in the doubled haploid wheat population SW95-50213 × Cunningham and was co-located with Xgwm269 in population Janz × AUS1408. This marker offers an additional efficient tool for marker-assisted selection of dormancy for white-grained wheat breeding. Comparative analysis indicated that the wheat chromosome 4AL QTL for seed dormancy and PHS resistance is homologous with the barley QTL on chromosome 5HL controlling seed dormancy and PHS resistance. This marker will facilitate identification of the gene associated with the 4A QTL that controls a major component of grain dormancy and PHS resistance.
Keywords:Mapping  Marker-assisted selection  Pre-harvest sprouting  Quantitative trait loci (QTL)  Seed dormancy  White-grained wheat (Triticum aestivum L  em Thell  )
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