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Electrophoretic analysis of the high-molecular-weight glutenin subunits of Triticum monococcum,T. urartu,and the A genome of bread wheat (T. aestivum)
Authors:J G Waines  P I Payne
Institution:(1) Plant Breeding Institute, Maris Lane, CB2 2LQ Trumpington, Cambridge, UK;(2) Present address: Department of Botany and Plant Sciences, University of California, 92521 Riverside, CA, USA
Abstract:Summary The high molecular weight (HMW) subunit composition of glutenin was analysed by sodium dodecyl sulphate, polyacrylamide gel electrophoresis (SDS-PAGE) in the A genome of 497 diploid wheats and in 851 landraces of bread wheat. The material comprised 209 accessions of wild Triticum monococcum ssp. boeoticum from Greece, Turkey, Lebanon, Armenia, Iraq, and Iran; 132 accessions of the primitive domesticate T. monococcum ssp. monococcum from many different germplasm collections; one accession of free-threshing T. monococcum ssp. sinskajae; 155 accessions of wild T. urartu from Lebanon, Turkey, Armenia, Iraq, and Iran; and landraces of T. aestivum, mainly from the Mediterranean area and countries bordering on the Himalayan Mountains. Four novel HMW glutenin sub-units were discovered in the landraces of bread wheat, and the alleles that control them were designated Glu-Ald through Glu-Alg, respectively. The HMW subunits of T. monococcum ssp. boeoticum have a major, ldquoxrdquo subunit of slow mobility and several, less prominent, ldquoyrdquo subunits of greater mobility, all of which fall within the mobility range of HMW subunits reported for bread wheat. In T. monococcum ssp. monococcum the range of the banding patterns for HMW subunits was similar to that of ssp. boeoticum. However, two accessions, while containing ldquoyrdquo subunits were null for ldquoxrdquo subunits. The single accession of Triticum monococcum ssp. sinskajae had a banding pattern similar to that of most ssp. boeoticum and ssp. monococcum accessions. The HMW subunit banding patterns of T. urartu accessions were distinct from those of T. monococcum. All of them contained one major ldquoxrdquo and most contained one major ldquoyrdquo subunit. In the other accessions a ldquoyrdquo subunit was not expressed. The active genes for ldquoyrdquo subunits, if transferred to bread wheat, may be useful in improving bread-making quality.
Keywords:Glutenin  Triticum  Breadmaking  SDS-PAGE
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