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Haplotype Analysis of the Pre-harvest Sprouting Resistance Locus Phs-A1 Reveals a Causal Role of TaMKK3-A in Global Germplasm.
Shorinola, Oluwaseyi; Balcárková, Barbara; Hyles, Jessica; Tibbits, Josquin F G; Hayden, Matthew J; Holusova, Katarina; Valárik, Miroslav; Distelfeld, Assaf; Torada, Atsushi; Barrero, Jose M; Uauy, Cristobal.
Affiliation
  • Shorinola O; John Innes CentreNorwich, United Kingdom.
  • Balcárková B; Institute of Experimental Botany, Centre of the Region Haná for Biotechnological and Agricultural ResearchOlomouc, Czechia.
  • Hyles J; Commonwealth Scientific and Industrial Research Organisation (CSIRO), Agriculture and Food, CanberraACT, Australia.
  • Tibbits JFG; Department of Economic Development, Jobs, Transport and Resources, Centre for AgriBioscience, BundooraVIC, Australia.
  • Hayden MJ; Department of Economic Development, Jobs, Transport and Resources, Centre for AgriBioscience, BundooraVIC, Australia.
  • Holusova K; Institute of Experimental Botany, Centre of the Region Haná for Biotechnological and Agricultural ResearchOlomouc, Czechia.
  • Valárik M; Institute of Experimental Botany, Centre of the Region Haná for Biotechnological and Agricultural ResearchOlomouc, Czechia.
  • Distelfeld A; The Institute for Cereal Crop Improvement, Tel Aviv UniversityTel Aviv, Israel.
  • Torada A; HOKUREN Agricultural Research InstituteNaganuma, Japan.
  • Barrero JM; Commonwealth Scientific and Industrial Research Organisation (CSIRO), Agriculture and Food, CanberraACT, Australia.
  • Uauy C; John Innes CentreNorwich, United Kingdom.
Front Plant Sci ; 8: 1555, 2017.
Article in En | MEDLINE | ID: mdl-28955352
ABSTRACT
Pre-harvest sprouting (PHS) is an important cause of quality loss in many cereal crops and is particularly prevalent and damaging in wheat. Resistance to PHS is therefore a valuable target trait in many breeding programs. The Phs-A1 locus on wheat chromosome arm 4AL has been consistently shown to account for a significant proportion of natural variation to PHS in diverse mapping populations. However, the deployment of sprouting resistance is confounded by the fact that different candidate genes, including the tandem duplicated Plasma Membrane 19 (PM19) genes and the mitogen-activated protein kinase kinase 3 (TaMKK3-A) gene, have been proposed to underlie Phs-A1. To further define the Phs-A1 locus, we constructed a physical map across this interval in hexaploid and tetraploid wheat. We established close proximity of the proposed candidate genes which are located within a 1.2 Mb interval. Genetic characterization of diverse germplasm used in previous genetic mapping studies suggests that TaMKK3-A, and not PM19, is the major gene underlying the Phs-A1 effect in European, North American, Australian and Asian germplasm. We identified the non-dormant TaMKK3-A allele at low frequencies within the A-genome diploid progenitor Triticum urartu genepool, and show an increase in the allele frequency in modern varieties. In United Kingdom varieties, the frequency of the dormant TaMKK3-A allele was significantly higher in bread-making quality varieties compared to feed and biscuit-making cultivars. Analysis of exome capture data from 58 diverse hexaploid wheat accessions identified fourteen haplotypes across the extended Phs-A1 locus and four haplotypes for TaMKK3-A. Analysis of these haplotypes in a collection of United Kingdom and Australian cultivars revealed distinct major dormant and non-dormant Phs-A1 haplotypes in each country, which were either rare or absent in the opposing germplasm set. The diagnostic markers and haplotype information reported in the study will help inform the choice of germplasm and breeding strategies for the deployment of Phs-A1 resistance into breeding germplasm.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Front Plant Sci Year: 2017 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Front Plant Sci Year: 2017 Document type: Article Affiliation country: