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Allelic variation of low molecular weight glutenin subunits composition and the revealed genetic diversity in durum wheat (Triticum turgidum L. ssp. durum (Desf))

机译:低分子量谷蛋白亚基组成的等位基因变异和硬粒小麦(Triticum turgidum L.ssp.durum(Desf))的遗传多样性

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摘要

Low molecular weight glutenin subunits (LMW-GS) play an important role in determining the bread-making characteristics of dough in the end-use quality of wheat. In this study, A total of 149 worldwide-originated durum wheat were used to analyze the composition of LMW-GS using MALDI-TOF-MS. Based on the allelic variation of glutenin subunits, the genetic diversity was evaluated for the 149 durum wheat. Five types of alleles were identified at the Glu-A3 locus with Glu-A3e, Glu-A3a/c, Glu-A3f, Glu-A3d and Glu-A3b accounting for 43.0%, 16.1%, 12.8%, 10.1% and 7.4 % of the accessions, respectively. Five types of alleles were identified at the Glu-B3 locus: Glu-B3d (60.4%), Glu-B3b (6.0%), Glu-B3c (6.0%), Glu-B3h (2.7%) and Glu-B3f (0.7%). Two novel alleles encoding abnormal subunits 40500 Da and 41260 Da were identified at the Glu-A3 and Glu-B3 loci, respectively. Further studies are needed to match these novel alleles to previously discovered novel alleles. Moreover, the genetic diversity analysis indicated that great genetic variation existed in durum wheat among encoding loci of glutenin subunits, released periods of varieties and different geographical origins. The results provide more important information of potential germplasm for the improvement of durum wheat and common wheat.
机译:低分子量谷蛋白亚基(LMW-GS)在决定面团的面包制作特性中对小麦的最终使用质量起着重要作用。在这项研究中,使用MALDI-TOF-MS,总共使用了149种世界范围内的硬质小麦来分析LMW-GS的组成。基于谷蛋白亚基的等位基因变异,评估了149硬质小麦的遗传多样性。在Glu-A3位点鉴定出五种等位基因,分别为Glu-A3e,Glu-A3a / c,Glu-A3f,Glu-A3d和Glu-A3b,分别占43.0%,16.1%,12.8%,10.1%和7.4%分别。在Glu-B3位点鉴定出五种等位基因:Glu-B3d(60.4%),Glu-B3b(6.0%),Glu-B3c(6.0%),Glu-B3h(2.7%)和Glu-B3f(0.7 %)。在Glu-A3和Glu-B3位点分别鉴定出编码异常亚基40500 Da和41260 Da的两个新等位基因。需要进一步的研究以将这些新颖的等位基因与先前发现的新颖的等位基因进行匹配。此外,遗传多样性分析表明硬粒小麦在谷蛋白亚基的编码基因座,变种的释放时期和不同的地理起源之间存在很大的遗传变异。研究结果为硬粒小麦和普通小麦的改良提供了潜在的种质资源。

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