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首页> 外文期刊>Cereal Research Communications >The Genetic Potential of a Germplasm of Interspecific Crosses between Durum Wheats (Triticum turgidum L. ssp. durum (Desf.) Husn.) and their Relatives (T. dicoccum Schubl. and T. polonicum L.) in Five Glutenin Loci
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The Genetic Potential of a Germplasm of Interspecific Crosses between Durum Wheats (Triticum turgidum L. ssp. durum (Desf.) Husn.) and their Relatives (T. dicoccum Schubl. and T. polonicum L.) in Five Glutenin Loci

机译:杜兰姆小麦间隙交叉种质的遗传潜力(Triticum Turgidum L. SSP。杜兰姆(DESF。)HESN。)及其亲属(T. dicoccum SCUBL。和T.Polonicum L.)在五个谷蛋白基因座中

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摘要

Wheat endosperm storage proteins are the major components of gluten. They play an important role in dough properties and in bread making quality in various wheat varieties. In the present study, the different alleles encoded at the 5 glutenin loci were identified from a set of 38 tetraploid wheat gerrnplasm obtained from interspecific crosses between durum wheats (Triticum turgidum L. ssp. durum (Desf.) Husn.) and their relatives (T. dicoccum Schubl. and T. polonicum L.) using SDS-PAGE. At Glu-A1 and Glu-B1, encoding high molecular weight glutenin subunits (HMW-GS), 2 and 4 alleles were observed, respectively. Low molecular weight glutenin subunits (LMW-GS) displayed similar polymorphism, as 3, 5 and 3 alleles were identified at loci Glu-A3, Glu-B3 and Glu-B2, respectively. One new allele was detected at Glu-B3 locus and appeared in nine accessions obtained from five crosses. This allele codes for five subunits (2+8+9+13+18), encoded by the Glu-B3b without subunit 16 plus subunits 2 and 18. A total of 38 patterns resulted from the genetic combination of the alleles encoding at the five glutenin loci. This led to a significantly higher Nei coefficient of genetic variation in Glu-1, Glu-3 and Glu-B2 loci (0.54). The gennplasin analyzed exhibited allelic variation in HMW and LMW glutenin subunit composition and the variation differed from that of tetraploid wheats of other countries. The presence of high quality alleles in glutenin loci have led the accessions to be considered as an asset in breeding programs aimed for wheat quality.
机译:小麦胚乳储存蛋白质是麸质的主要成分。他们在各种小麦品种的面团特性和面包质量中发挥着重要作用。在本研究中,从杜兰麦小麦(Triticum Turgidum L. SSP之间的间隙中,从5个谷蛋白基因座中编码的不同等位基因鉴定出从杜兰麦麦(Triticum Turgidum L. SSP。杜兰姆(DES)Husn。)及其亲属( T. Dicoccum Schubl。和T.Polonicum L.)使用SDS-PAGE。在Glu-A1和Glu-B1,分别观察到高分子量谷蛋白亚基(HMW-GS),2和4等位基因。低分子量谷蛋白亚基(LMW-GS)显示出类似的多态性,如图3,5和3的等位基因分别在基因杆菌-A3,Glu-B3和Glu-B2处鉴定出来。在Glu-B3基因座中检测到一种新的等位基因,并出现在从五次十字架获得的九个含义中。这种等位基因代码,用于五个亚基(2 + 8 + 9 + 13 + 18),由Glu-B3b编码而没有亚基16加上亚基2和18.总共38个模式由在五个中编码的等位基因的遗传组合产生谷蛋白基因座。这导致Glu-1,Glu-3和Glu-B2基因座(0.54)中的显着较高的遗传变异系数。分析的GennPlasin显示出HMW和LMW谷蛋白亚基组合物的等位基因变异,并且该变异与其他国家的四倍体麦的变化不同。谷蛋白基因座的高质量等位基因的存在使得养殖计划被视为旨在小麦质量的育种计划中的资产。

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