Diversity of alleles of locuses of spare proteins of wheat varieties IFRG NAS of Ukraine

N. V. Sandetska, O. M. Radchenko
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Abstract

Aim. Investigation of allele frequencies by locus of reserve proteins in groups of wheat varieties created during different selection periods at the leading breeding center of the Institute of Plant Physiology and Genetics of the National Academy of Sciences of Ukraine. Methods. The material for the study were 57 varieties of wheat of the Institute of Plant Physiology and Genetics of the National Academy of Sciences of Ukraine. Separation of gliadins was performed according to the ISTA method in the Poperel modification. High molecular weight glutenin subunits were analyzed by electrophoresis in the presence of sodium dodecyl sulfate (SDS) by the Lemmley method. Results. The allelic composition of loci of spare proteins Glu-A1, Glu-B1, Glu-D1, Gli-1A, Gli-B1, Gli-1D was determined. At the gliad-encoding loci Gli-A1, Gli-B1 6 alleles were detected, at the locus Gli-D1 - 5 alleles. By gluten-encoding loci, the most polymorphic was the Glu-B1 locus, which is represented by 5 alleles. Loci Glu-A1 and Glu-D1 are represented by 3 and 2 allelic variants. Conclusions. The frequency of the Glu-B1al allele, increased from 0% to 18%, this allele is one of the strongest in terms of positive impact on the quality of flour among the identified alleles of loci of high molecular weight glutenins of wheat. It was found that almost 50% of varieties created in the last decade in IFRG NAS of Ukraine have wheat-rye translocations 1AL.1RS, 1BL.1RS.
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乌克兰小麦品种IFRG NAS备用蛋白位点等位基因多样性研究
的目标。乌克兰国家科学院植物生理与遗传研究所主要育种中心不同选择时期小麦品种群体中储备蛋白位点等位基因频率的调查。方法。该研究的材料是乌克兰国家科学院植物生理学和遗传学研究所的57个小麦品种。在Poperel修饰中,采用ISTA法分离麦胶蛋白。在十二烷基硫酸钠(SDS)存在下,用Lemmley法对高分子量谷蛋白亚基进行电泳分析。结果。测定备用蛋白gli - a1、Gli-B1、gli - d1、Gli-1A、Gli-B1、Gli-1D位点的等位基因组成。在gliad编码位点Gli-A1、Gli-B1检测到6个等位基因,在Gli-D1 - 5位点检测到6个等位基因。在谷蛋白编码位点中,多态性最高的是Glu-B1位点,共有5个等位基因。基因座Glu-A1和Glu-D1分别由3个和2个等位变异代表。结论。glu - bal等位基因的频率从0%增加到18%,是小麦高分子量谷蛋白基因座中对面粉品质影响最大的等位基因之一。研究发现,近50%的品种在过去十年中在乌克兰的IFRG NAS中产生了小麦-黑麦易位。1 rs, 1 bl.1rs。
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