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首页> 外文期刊>Plant Genetic Resources Characterization and Utilization >QTL mapping for the number of branches and pods using wild chromosome segment substitution lines in soybean [Glycine max (L.) Merr.]
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QTL mapping for the number of branches and pods using wild chromosome segment substitution lines in soybean [Glycine max (L.) Merr.]

机译:使用野生染色体片段替换系对大豆中的分支和荚果数量进行QTL定位[Glycine max(L.)Merr。]

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摘要

Annual wild soybean characterized with more number of branches and pods may contain favourable exotic genes/alleles for improving the yield potential of cultivated soybeans. To evaluate the wild alleles/segments, the chromosome segment substitution line population SojaCSSLP3 comprising 158 lines with N24852 (wild) as the donor and NN1138-2 (cultivated) as the recurrent parent was tested under three environments. The phenotypic data along with 198 simple sequence repeat markers were analysed for qualitative trait loci (QTL)/segments associated with the number of branches on the main stem (BN) and number of pods per plant (PN) using the inclusive composite interval mapping procedure (RSTEP-LRT-ADD model) of ICIM version 3.0. The analysis was carried out for individual environments due to a significant G X E interaction. A total of eight QTL/segments associated with BN and eight QTL/segments associated with PN were detected under the three environments, with all the wild segments having positive effects. Among these, two QTL/segments for each of the two traits could be detected under two or three environments and three QTL/segments could be detected for both traits. Four QTL/segments associated with BN and one QTL/segment associated with PN were identified only in SojaCSSLP3, not reported for cultivated crosses in the literature. The detected wild segments may provide materials for further characterization, cloning and pyramiding of the alleles conferring the two traits.
机译:具有更多分支和豆荚特征的一年生野生大豆可能包含有利的外来基因/等位基因,以提高栽培大豆的产量潜力。为了评估野生等位基因/区段,在三种环境下测试了由N24852(野生)作为供体和NN1138-2(培养)作为轮回亲本的158个品系组成的染色体片段替代品系SojaCSSLP3。表型数据与198个简单的序列重复标记一起使用包含性复合区间作图法分析了与主茎上的分支数量(BN)和每株豆荚的数量(PN)相关的定性性状位点(QTL)/片段。 (RSTEP-LRT-ADD模型)ICIM 3.0版。由于显着的G X E相互作用,因此对单个环境进行了分析。在这三种环境下,共检测到8个与BN相关的QTL /片段和8个与PN相关的QTL /片段,所有野生片段均具有积极作用。其中,可以在两个或三个环境下检测到两个性状中每个特征的两个QTL /片段,并且可以检测到两个性状中三个QTL /片段。仅在SojaCSSLP3中鉴定了与BN相关的4个QTL /区段和与PN相关的1个QTL /区段,文献中没有报道栽培的杂交。检测到的野生节段可以提供用于进一步表征,克隆和金字塔化赋予这两个性状的等位基因的材料。

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