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SPAR profiles and genetic diversity amongst pomegranate (Punica granatum L.) genotypes

机译:石榴(石榴)基因型的SPAR谱和遗传多样性

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摘要

We are interested in studying the distribution and range of diversity amongst the pomegranates in India. Single Primer Amplification Reaction (SPAR) profiling using Random Amplified Polymorphic DNA (RAPD) and Directed Amplification of Minisatellite DNA (DAMD) methods enabled the determination of the genetic diversity amongst a total of 64 Indian pomegranate genotypes including 15 wild, 34 semi-wild and 14 cultivated types. SPAR profile data were scored for the computation of pairwise distances as well as a Neighbour Joining (NJ) tree of all the genotypes. Eight RAPD and four DAMD primers showed discrete polymorphic patterns amongst these genotypes. From the profiles obtained with all the 12 primers considered together, 259 bands were scored. The NJ tree generated after a 1000 bootstrap test using Jaccard coefficient showed separation of Lagerstroemia speciosa used as the out-group taxon, while the pomegranate genotypes were resolved into distinct genetic lineages such that all the cultivated (except CBd70), and wild genotypes (except W101) clearly separated from other genotypes in distinct sub clusters while the semi-wild genotypes were resolved into three sub-clusters. The greatest and least distances detected between genotypes were 0.94 and 0.12, 0.97 and 0.24 and 0.95 and 0.38, amongst the cultivated, semi-wild and the wild genotypes respectively. The results indicate the high levels of genetic diversity present amongst the genotypes. Significantly, the wild genotypes also have a reasonably good range of diversity. A good germplasm collection, especially including the wild genotypes will enable a better pomegranate improvement program. Both SPAR methods, RAPD and DAMD, are found to be useful for studying the genetic diversity of pomegranate.
机译:我们对研究印度石榴之间的分布和范围感兴趣。使用随机扩增多态性DNA(RAPD)和小卫星DNA定向扩增(DAMD)方法进行的单引物扩增反应(SPAR)谱分析能够确定总共64种印度石榴基因型中的遗传多样性,其中包括15种野生,34种半野生和3种野生型。 14种耕种。对SPAR配置文件数据进行评分,以计算所有基因型的成对距离以及NJ(Neighbor Joining)树。八个RAPD和四个DAMD引物在这些基因型中表现出离散的多态性模式。从一起考虑所有12种引物获得的谱图中,打出259条带。使用Jaccard系数进行1000次引导测试后生成的NJ树表明,紫薇属植物作为分类群被分离,而石榴的基因型被分解为不同的遗传谱系,从而所有栽培种(CBd70除外)和野生基因型(除外W101)与其他基因型在明显不同的亚簇中明显分离,而半野生基因型被分解为三个亚簇。基因型之间的最大和最小距离分别为栽培基因型,半野生基因型和野生基因型,分别为0.94和0.12、0.97和0.24和0.95和0.38。结果表明基因型之间存在高水平的遗传多样性。值得注意的是,野生基因型还具有相当好的多样性范围。良好的种质资源收集,尤其是包括野生基因型在内的种质收集,将能够实现更好的石榴改良计划。发现两种SPAR方法RAPD和DAMD均可用于研究石榴的遗传多样性。

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