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首页> 外文期刊>Theoretical and Applied Genetics >QTL mapping of ten agronomic traits on the soybean (Glycine max L. Merr.) genetic map and their association with EST markers
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QTL mapping of ten agronomic traits on the soybean (Glycine max L. Merr.) genetic map and their association with EST markers

机译:大豆(Glycine max L. Merr。)遗传图谱上十个农艺性状的QTL定位及其与EST标记的关联

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摘要

A set of 184 recombinant inbred lines (RILs) derived from soybean vars. Kefeng No.1 × Nannong 1138-2 was used to construct a genetic linkage map. The two parents exhibit contrasting characteristics for most of the traits that were mapped. Using restricted fragment length polymorphisms (RFLPs), simple sequence repeats (SSRs) and expressed sequence tags (ESTs), we mapped 452 markers onto 21 linkage groups and covered 3,595.9 cM of the soybean genome. All of the linkage groups except linkage group F were consistent with those of the consensus map of Cregan et al. (1999). Linkage group F was divided into two linkage groups, F1 and F2. The map consisted of 189 RFLPs, 219 SSRs, 40 ESTs, three R gene loci and one phenotype marker. Ten agronomic traits—days to flowering, days to maturity, plant height, number of nodes on main stem, lodging, number of pods per node, protein content, oil content, 100-seed weight, and plot yield—were studied. Using winqtlcart, we detected 63 quantitative trait loci (QTLs) that had LOD>3 for nine of the agronomic traits (only exception being seed oil content) and mapped these on 12 linkage groups. Most of the QTLs were clustered, especially on groups B1 and C2. Some QTLs were mapped to the same loci. This pleiotropism was common for most of the QTLs, and one QTL could influence at most five traits. Seven EST markers were found to be linked closely with or located at the same loci as the QTLs. EST marker GmKF059a, encoding a repressor protein and mapped on group C2, accounted for about 20% of the total variation of days to flowering, plant height, lodging and nodes on the main stem, respectively.
机译:一组来自大豆变种的184个重组自交系(RIL)。用1号科峰×南农1138-2构建了一个遗传连锁图谱。这两个亲本对大多数作图的性状表现出鲜明的特征。使用限制性片段长度多态性(RFLP),简单序列重复(SSR)和表达序列标签(EST),我们将452个标记映射到21个连接基团上,并覆盖了大豆基因组的35.95.9 cM。除连锁组F外,所有连锁组均与Cregan等人的共识图一致。 (1999)。链接组F分为两个链接组F1和F2。该图谱由189个RFLP,219个SSR,40个EST,3个R基因位点和1个表型标记组成。研究了十个农艺性状-到开花的天数,到成熟的天数,植物高度,主茎上的节数,倒伏,每个节的豆荚数,蛋白质含量,油含量,100粒重和地块产量。使用winqtlcart,我们检测到63个定量性状位点(QTL),其中9个农艺性状的LOD> 3(仅种子油含量除外),并将其定位在12个连锁组上。大多数QTL都是群集的,尤其是在B1和C2组上。一些QTL映射到相同的基因座。这种多效性在大多数QTL中很常见,并且一个QTL最多可以影响五个特征。发现七个EST标记与QTL紧密相连或位于相同的基因座。 EST标记GmKF059a编码阻遏蛋白并定位在C2组上,分别占开花天数,植物高度,倒伏和主茎节的总变化的约20%。

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  • 来源
    《Theoretical and Applied Genetics》 |2004年第6期|1131-1139|共9页
  • 作者单位

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

    Soybean Research Institute of Nanjing Agricultural University National Center for Soybean Improvement National Key Laboratory for Crop Genetics and Germplasm Enhancement;

    Plant Biotechnology Laboratory Institute of Genetics and Developmental Biology The Chinese Academy of Sciences;

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