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Molecular marker analysis of seed size in soybean.

机译:大豆种子大小的分子标记分析。

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摘要

Seed size is an important attribute of soybean [Glycine max (L.) Merr.] for some food uses. The objectives of this study were to identify markers associated with quantitative trait loci for seed size (SSQTL), determine the influence of the environment on expression of the marker-SSQTL associations, and compare the efficiency of phenotypic selection and marker-assisted selection for the trait. Three small-seeded lines were crossed to a line or cultivar with normal seed size to form three two-parent populations. The parents of the populations were screened with 178 simple sequence repeat (SSR) markers to identify polymorphism. Population 1 (Pop 1) had 75 polymorphic SSR markers covering 1306 cM, population 2 (Pop 2) had 70 covering 1143 cM, and population 3 (Pop 3) had 82 covering 1237 cM. Seed size of each population was determined with 100 F2 plants grown at Ames, IA, and their F2-derived lines grown in two replications at three environments. Single-factor analysis of variance and multiple regression were used to determine significant marker-SSQTL associations. Pop 1 had 12 markers that individually accounted for 8 to 17% of the variation for seed size, Pop 2 had 16 markers that individually accounted for 8 to 38% of the variation, and Pop 3 had 22 markers that individually accounted for 8 to 29% of the variation. Four of the 12 markers in Pop 1, four in Pop 2, and one in Pop 3 had significant associations with SSQTL across four environments, while five loci in Pop 1, seven in Pop 2, and eight in Pop 3 had significant associations in more than one environment. Three marker loci that had significant SSQTL associations in this study also were significant in previous research and 13 markers had unique SSQTL associations. The relative effectiveness of phenotypic and marker-assisted selection among F2 plants varied for the three populations. On the average, phenotypic selection for seed size was as effective and less expensive than marker-assisted selection.
机译:对于某些食品用途,种子大小是大豆[Glycine max(L.)Merr。]的重要属性。这项研究的目的是确定与种子大小数量性状基因座相关的标记,确定环境对标记-SSQTL关联表达的影响,并比较表型选择和标记辅助选择的效率。特征。将三个小种子系与具有正常种子大小的系或品种杂交,以形成三个双亲种群。使用178个简单序列重复(SSR)标记筛选人群的父母,以鉴定多态性。群体1(种群1)具有75个多态SSR标记,覆盖1306 cM,群体2(种群2)具有70个覆盖1143 cM,群体3(种群3)具有82覆盖1237 cM。用在爱荷华州埃姆斯市生长的100株F2植株及其在两个环境中两次复制生长的F2品系确定每个种群的种子大小。使用单因素方差分析和多元回归来确定显着的标记物-SSQTL关联。 Pop 1具有12个标记,分别占种子大小变异的8至17%; Pop 2具有16个标记,分别占变异的8至38%; Pop 3具有22个标记,分别占种子大小的变异。变化的百分比。在流行4中,流行1中的12个标记中有4个在流行2中有4个,在流行3中有1个与SSQTL有显着关联,而流行1中有5个基因座在流行2中有7个,流行3中有8个标记在更多环境中具有显着关联。一个环境。在这项研究中,三个具有显着SSQTL关联的标记基因座在先前的研究中也很重要,而13个标记具有独特的SSQTL关联。表型和标记辅助选择在F2植物之间的相对有效性因三个种群而异。平均而言,种子大小的表型选择与标记辅助选择一样有效且便宜。

著录项

  • 作者

    Hoeck, Joseph Andrew.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agronomy.;Molecular biology.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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