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首页> 外文期刊>BMC Plant Biology >Assessment of genetic diversity in Trigonella foenum-graecum and Trigonella caerulea using ISSR and RAPD markers
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Assessment of genetic diversity in Trigonella foenum-graecum and Trigonella caerulea using ISSR and RAPD markers

机译:利用ISSR和RAPD标记评估三角藻和三角藻的遗传多样性。

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Background Various species of genus Trigonella are important from medical and culinary aspect. Among these, Trigonella foenum-graecum is commonly grown as a vegetable. This anti-diabetic herb can lower blood glucose and cholesterol levels. Another species, Trigonella caerulea is used as food in the form of young seedlings. This herb is also used in cheese making. However, little is known about the genetic variation present in these species. In this report we describe the use of ISSR and RAPD markers to study genetic diversity in both, Trigonella foenum-graecum and Trigonella caerulea . Results Seventeen accessions of Trigonella foenum-graecum and nine accessions of Trigonella caerulea representing various countries were analyzed using ISSR and RAPD markers. Genetic diversity parameters (average number of alleles per polymorphic locus, percent polymorphism, average heterozygosity and marker index) were calculated for ISSR, RAPD and ISSR+RAPD approaches in both the species. Dendrograms were constructed using UPGMA algorithm based on the similarity index values for both Trigonella foenum-graecum and Trigonella caerulea. The UPGMA analysis showed that plants from different geographical regions were distributed in different groups in both the species. In Trigonella foenum-graecum accessions from Pakistan and Afghanistan were grouped together in one cluster but accessions from India and Nepal were grouped together in another cluster. However, in both the species accessions from Turkey did not group together and fell in different clusters. Conclusions Based on genetic similarity indices, higher diversity was observed in Trigonella caerulea as compared to Trigonella foenum-graecum . The genetic similarity matrices generated by ISSR and RAPD markers in both species were highly correlated (r = 0.78 at p = 0.001 for Trigonella foenum-graecum and r = 0.98 at p = 0.001 for Trigonella caerulea ) indicating congruence between these two systems. Implications of these observations in the analysis of genetic diversity and in supporting the possible Center of Origin and/or Diversity for Trigonella are discussed.
机译:背景技术从医学和烹饪的角度来看,Trigonella属的各种物种都很重要。其中,胡芦巴(Trigonella foenum-graecum)通常作为蔬菜种植。这种抗糖尿病药可以降低血糖和胆固醇水平。另一个物种,Trierella caerulea被用作幼苗形式的食物。这种草药也用于奶酪制作。但是,对于这些物种中存在的遗传变异知之甚少。在本报告中,我们描述了使用ISSR和RAPD标记来研究黑粉菌和小黑藻中的遗传多样性。结果用ISSR和RAPD标记分析了代表不同国家的17个不同产地的小麦和黑麦的9个种。计算了两个物种的ISSR,RAPD和ISSR + RAPD方法的遗传多样性参数(每个多态性位点的等位基因平均数,多态性百分比,平均杂合度和标记指数)。使用UPGMA算法,根据禾本科Trigonella foenum-graecum和Trigonella caerulea的相似性指数值构建树状图。 UPGMA分析表明,来自不同地理区域的植物在两个物种中的分布不同。在Trigonella中,来自巴基斯坦和阿富汗的香茅-禾本科植物的种质被归为一类,而来自印度和尼泊尔的种质则被归为另一类。但是,在这两个物种中,土耳其的种质并没有聚在一起,而是分布在不同的簇中。结论基于遗传相似性指标,与小叶Trigonella graecum相比,Trigonella caerulea的多样性更高。这两个物种中由ISSR和RAPD标记产生的遗传相似性矩阵高度相关(Trigonella foenum-graecum在p = 0.001时r = 0.78,在Trigonella caerulea在p = 0.001时r = 0.98)表明这两个系统之间的一致性。讨论了这些观察结果在遗传多样性分析中的意义,以及对可能的三角茎起源和/或多样性中心的支持。

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