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首页> 外文期刊>Theoretical and Applied Genetics >Molecular detection of QTLs for agronomic and quality traits in a doubled haploid population derived from two Canadian wheats (Triticum aestivum L.)
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Molecular detection of QTLs for agronomic and quality traits in a doubled haploid population derived from two Canadian wheats (Triticum aestivum L.)

机译:两种加拿大小麦(Triticum aestivum L.)的双倍单倍体群体中农艺和品质性状QTL的分子检测

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摘要

Development of high-yielding wheat varieties with good end-use quality has always been a major concern for wheat breeders. To genetically dissect quantitative trait loci (QTLs) for yield-related traits such as grain yield, plant height, maturity, lodging, test weight and thousand-grain weight, and for quality traits such as grain and flour protein content, gluten strength as evaluated by mixograph and SDS sedimentation volume, an F1-derived doubled haploid (DH) population of 185 individuals was developed from a cross between a Canadian wheat variety “AC Karma” and a breeding line 87E03-S2B1. A genetic map was constructed based on 167 marker loci, consisting of 160 microsatellite loci, three HMW glutenin subunit loci: Glu-A1, Glu-B1 and Glu-D1, and four STS-PCR markers. Data for investigated traits were collected from three to four environments in Manitoba, Canada. QTL analyses were performed using composite interval mapping. A total of 50 QTLs were detected, 24 for agronomic traits and 26 for quality-related traits. Many QTLs for correlated traits were mapped in the same genomic regions forming QTL clusters. The largest QTL clusters, consisting of up to nine QTLs, were found on chromosomes 1D and 4D. HMW glutenin subunits at Glu-1 loci had the largest effect on breadmaking quality; however, other genomic regions also contributed genetically to breadmaking quality. QTLs detected in the present study are compared with other QTL analyses in wheat.
机译:开发具有良好最终用途质量的高产小麦品种一直是小麦育种者的主要关切。遗传分析数量性状位点(QTL),以分析与产量相关的性状,例如谷物产量,株高,成熟度,倒伏,容重,千粒重,以及质量性状,例如谷物和面粉蛋白含量,面筋强度通过混合图谱仪和SDS沉降量,从加拿大小麦品种“ AC Karma”和育种系87E03-S2B1的杂交中获得了185个个体的F1衍生双倍单倍体(DH)种群。基于167个标记基因座构建了遗传图谱,该标记基因座由160个微卫星基因座,三个HMW谷蛋白亚基基因座:Glu-A1,Glu-B1和Glu-D1和四个STS-PCR标记组成。在加拿大曼尼托巴省的三到四个环境中收集了调查性状的数据。使用复合区间映射进行QTL分析。总共检测到50个QTL,其中农艺性状为24个,品质相关性状为26个。许多相关性状的QTL被定位在形成QTL簇的相同基因组区域中。在1D和4D染色体上发现了最大的QTL簇,最多包含9个QTL。 Glu-1基因座上的HMW谷蛋白亚基对面包制作质量的影响最大。但是,其他基因组区域也从基因上提高了面包制作的质量。将本研究中检测到的QTL与其他小麦的QTL分析进行比较。

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  • 来源
    《Theoretical and Applied Genetics》 |2006年第4期|753-766|共14页
  • 作者单位

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

    Cereal Research Centre Agriculture and Agri-Food Canada;

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