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首页> 外文期刊>Molecular Genetics and Genomics >Identification of QTLs for seed and pod traits in soybean and analysis for additive effects and epistatic effects of QTLs among multiple environments
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Identification of QTLs for seed and pod traits in soybean and analysis for additive effects and epistatic effects of QTLs among multiple environments

机译:鉴定大豆种子和荚果性状的QTL,并分析其在多种环境中的加性效应和上位性效应

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摘要

Soybean seed and pod traits are important yield components. Selection for high yield style in seed and pod along with agronomic traits is a goal of many soybean breeders. The intention of this study was to identify quantitative trait loci (QTL) underlying seed and pod traits in soybean among eleven environments in China. 147 recombinant inbred lines were advanced through single-seed-descent method. The population was derived from a cross between Charleston (an American high yield soybean cultivar) and DongNong594 (a Chinese high yield soybean cultivar). A total of 157 polymorphic simple sequence repeat markers were used to construct a genetic linkage map. The phenotypic data of seed and pod traits [number of one-seed pod, number of two-seed pod, number of three-seed pod, number of four-seed pod, number of (two plus three)-seed pod, number of (three plus four)-seed pod, seed weight per plant, number of pod per plant] were recorded in eleven environments. In the analysis of single environment, fourteen main effect QTLs were identified. In the conjoint analysis of multiple environments, twenty-four additive QTLs were identified, and additive QTLs by environments interactions (AE) were evaluated and analyzed at the same time among eleven environments; twenty-three pairs of epistatic QTLs were identified, and epistasis (additive by additive) by environments interactions (AAE) were also analyzed and evaluated among eleven environments. Comparing the results of identification between single environment mapping and multiple environments conjoint mapping, three main effect QTLs with positive additive values and another three main effect QTLs with negative additive values, had no interactions with all environments, supported that these QTLs could be used in molecular assistant breeding in the future. These different effect QTLs could supply a good foundation to the gene clone and molecular asisstant breeding of soybean seed and pod traits.
机译:大豆种子和豆荚性状是重要的产量组成部分。许多大豆育种者的目标是在种子和豆荚中选择高产类型以及农艺性状。本研究旨在确定中国11个环境中大豆种子和荚果性状的数量性状位点(QTL)。通过单种子后代法扩增了147个重组自交系。该种群来自查尔斯顿(美国高产大豆品种)和东农594(中国高产大豆品种)之间的杂交。总共157个多态性简单序列重复标记被用于构建遗传连锁图。种子和荚果性状的表型数据[一粒荚的数量,两粒荚的数量,三粒荚的数量,四粒荚的数量,(二粒加三粒)种子的荚数, (三加四)种子荚,在11种环境中记录了每株植物的种子重量,每株植物的荚数]。在单一环境分析中,确定了14个主要效应QTL。在多个环境的联合分析中,识别了二十四个附加QTL,并在11个环境中同时评估和分析了通过环境相互作用(AE)产生的附加QTL。鉴定了23对上位QTL,并在11种环境中分析和评估了由环境相互作用(AAE)引起的上位性(逐加成)。比较单个环境映射和多个环境联合映射之间的识别结果,三个具有加法值的主效应QTL和具有负加法值的另外三个主效应QTL与所有环境都没有相互作用,支持将这些QTL用于分子中未来的辅助繁殖。这些不同的效应QTL可以为大豆种子和荚果性状的基因克隆和分子辅助育种提供良好的基础。

著录项

  • 来源
    《Molecular Genetics and Genomics》 |2013年第12期|651-667|共17页
  • 作者单位

    Key Laboratory of Soybean Biology in Chinese Ministry of Education (Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry) Northeast Agricultural University">(1);

    Agronomy College Northeast Agriculture University">(2);

    Soybean Research Institute Heilongjiang Academy of Agricultural Sciences">(3);

    Key Laboratory of Soybean Biology in Chinese Ministry of Education (Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry) Northeast Agricultural University">(1);

    The Crop Research and Breeding Center of Land-Reclamation">(4);

    Agronomy College Northeast Agriculture University">(2);

    Agronomy College Northeast Agriculture University">(2);

    Key Laboratory of Soybean Biology in Chinese Ministry of Education (Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry) Northeast Agricultural University">(1);

    Key Laboratory of Soybean Biology in Chinese Ministry of Education (Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry) Northeast Agricultural University">(1);

    The Crop Research and Breeding Center of Land-Reclamation">(4);

    Key Laboratory of Soybean Biology in Chinese Ministry of Education (Key Laboratory of Soybean Biology and Breeding/Genetics of Chinese Agriculture Ministry) Northeast Agricultural University">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soybean; QTLs; Seed and pod traits; Multiple environments; AE interactions; AAE interactions;

    机译:大豆QTL;种子和豆荚性状;多种环境;AE相互作用;AAE互动;

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