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首页> 外文期刊>African Journal of Biotechnology >Genetic diversity evaluation of rapeseed genotypes (Brassica napus L.) based on phenotypic traits and random amplified polymorphic DNA (RAPD) markers
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Genetic diversity evaluation of rapeseed genotypes (Brassica napus L.) based on phenotypic traits and random amplified polymorphic DNA (RAPD) markers

机译:基于表型性状和随机扩增多态性DNA(RAPD)标记的油菜基因型(Brassica napus L.)遗传多样性评估

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摘要

Oilseed is the most important source of vegetable oil and the basis of breeding strategies is genetic diversity assessment. Genetic diversity of 19 rapeseed genotypes as well as their ancient ancestors?Brassica rapa?L. and?Brassica oleraceaL. were assessed using random amplified polymorphic DNA?(RAPD)?primers and morpho-phenological traits. Path analysis showed that number of pods per main branch had the highest direct effect on seed yield. Stepwise regressing showed numbers of pods per main branch was entered as the first variable in the model and explained 79% of seed yield variation. Phenotypic cluster showed that genotypes were divided into 4 groups. Polymorphic RAPD primers produced 74 bands. The range of PIC value for the used primer was 0.35 to 2.78. Result indicates primer D as the best primer for genetic diversity analysis. Molecular similarity matrix showed that Magnum and Hyola308 had the highest similarity. Molecular cluster had divided the genotypes into 3 groups; early maturing and high yielding cultivars were located in the first group, genotypes with high number of seed per pod and seed yield were located in the second group, while genotypes at third group had lowest number of pods per main branch and number of seed per pod. Obtained biplot from two first?principal component analysis (PCA)?showed that number of pod per main branch has an important role on seed yield, and this can be mentioned as an important trait for breeding programs.
机译:油籽是植物油最重要的来源,育种策略的基础是遗传多样性评估。 19个油菜基因型及其远古祖先芸苔的遗传多样性和甘蓝。用随机扩增的多态性DNA?(RAPD)?引物和形态-物候特性评估。通径分析表明,每个主要分支的荚果数量对种子产量具有最高的直接影响。逐步回归表明,每个主枝的荚数被输入模型中的第一个变量,并解释了79%的种子产量变化。表型簇显示基因型分为4组。 RAPD多态性引物产生74条带。所用底漆的PIC值范围为0.35至2.78。结果表明引物D是进行遗传多样性分析的最佳引物。分子相似性矩阵显示,Magnum和Hyola308具有最高的相似性。分子簇将基因型分为3类。第一组为早熟高产品种,第二组为每荚种子数高和产量高的基因型,第二组为第三组基因型,每主枝荚数和每荚种子数最少的基因型。从两个第一主成分分析(PCA)中获得的双线图显示,每个主要分支的豆荚数量对种子产量具有重要作用,这可以说是育种计划的重要特征。

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