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首页> 外文期刊>Potravinarstvo >Genetic diversity and population structure in tunisian castor genotypes (Ricinus communis L.) Detected using scot markers
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Genetic diversity and population structure in tunisian castor genotypes (Ricinus communis L.) Detected using scot markers

机译:用苏格兰标记检测突尼斯蓖麻基因型(Ricinus communis L.)的遗传多样性和种群结构

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Due to the chemical and physical properties of castor oil ( Ricinus communis L.) that make it a valuable raw material for numerous industrial applications, including the production of biofuel, interest to develop more and better varieties has been increased. In the present study, the representatives of the genus castor collected from 12 different parts of Tunisia were differentiated by the DNA fingerprinting patterns using 37 SCoT primers. PCR amplification of DNA using 37 primers for SCoT analysis produced 268 DNA fragments that could be scored in all 56 genotypes of Tunisian castor. The number of amplified fragments varied from 4 (SCoT 45, SCoT 31 and ScoT 17) to 10 (SCoT 3, SCoT 11, SCoT 14, SCoT 18 and SCoT 12). Of the 268 amplified bands 230 were polymorphic, with an average of 6.22 polymorphic bands per primer. To determine the level of polymorphism in the analysed group of Tunisian castor genotypes polymorphic information content (PIC) was calculated. The lowest values of polymorphic information content were recorded for SCoT 17 (0.411) and the the highest PIC values were detected for SCoT 14 (0.868) with an average of 0.751. A dendrogram was constructed from a genetic distance matrix based on profiles of the 37 SCoT primers using the unweighted pair-group method with the arithmetic average (UPGMA). According to analysis, the collection of 56 Tunisian castor genotypes were clustered into two main clusters (1 and 2). Of the 56 genotypes of Tunisian castor, 2 unique genotypes were separated (BA-5 and K-4). Genetically the closest were two genotypes from Tunisian region Souassi (S-2 and S-5) in subclaster 2bc. Results showed the utility of SCoT markers for estimation of genetic diversity of castor genotypes leading to genotype identification.
机译:由于蓖麻油(Ricinus communis L.)的化学和物理特性使其成为许多工业应用(包括生物燃料的生产)的有价值的原料,因此人们对开发更多更好的品种的兴趣有所增加。在本研究中,使用37种SCoT引物通过DNA指纹图谱区分了从突尼斯12个不同地区收集的蓖麻属代表。使用37种引物进行SCoT分析的DNA PCR扩增产生了268个DNA片段,这些片段可以在突尼斯蓖麻的所有56个基因型中评分。扩增片段的数量从4个(SCoT 45,SCoT 31和ScoT 17)到10个(SCoT 3,SCoT 11,SCoT 14,SCoT 18和SCoT 12)不等。在268条扩增带中,有230条是多态性的,每个引物平均有6.22条多态性条带。为了确定突尼斯蓖麻基因型分析组中的多态水平,计算了多态信息含量(PIC)。 SCoT 17(0.411)记录了最低的多态信息含量,SCoT 14(0.868)记录了最高的PIC值,平均值为0.751。使用非加权对-组方法和算术平均值(UPGMA),基于37个SCoT引物的分布图,根据遗传距离矩阵构建树状图。根据分析,将56个突尼斯蓖麻基因型的集合分为两个主要的集群(1和2)。在突尼斯蓖麻的56个基因型中,有2个独特的基因型被分离(BA-5和K-4)。在遗传上最接近的是亚族2bc中来自突尼斯地区Souassi的两个基因型(S-2和S-5)。结果表明,SCoT标记可用于评估蓖麻基因型的遗传多样性,从而鉴定基因型。

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    《Potravinarstvo》 |2018年第1期|共7页
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