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Genetic diversity and discrimination of mango accessions using RAPD and ISSR markers

机译:利用RAPD和ISSR标记进行芒果种质的遗传多样性和鉴别。

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Forty six mango cultivars were screened using RAPD and SSSR markers. Nine decamer oligonucleotides and 11 inter simple sequence repeats yielded 110 and 160 discrete fragments, respectively. RAPD primers yielded 14 monomorphic bands and 96 displayed polymorphism. Percent polymorphism generated by these primers was 87.3 %. OPA 19, OPA 20 and OPC 6 were highly polymorphic primers. Overall polymorphism detected by ISSR was 79.38%, 14.5 bands per primer. ISSR 5 yielded 14 polymorphic bands and 7 monomorphic bands. UPGMA tree constructed on RAPD data on the basis of Jaccard's coefficient clustered the accessions into 3 groups, one comprising majority of north Indian varieties and other having eastern Indian and third cluster comprising from both the regions. UPGMA clustering of ISSR data could not arrange the cultivars as per geographic separation. Cumulatively band data from these two methods precisely arranged accessions from two ecogeographical regions in such a way that interrcuftivar affinities werecongruent with our understanding of the group. Since geographic distance between East Indian and North Indian genotypes is very less, it is logical to have overlapping. No clear cut separation among varieties from two regions supports the common gene pool origin as well as operation of similar selection pressure as the cuftivar preferences in these areas are largely same.
机译:使用RAPD和SSSR标记筛选了46个芒果品种。九个十聚体寡核苷酸和11个内部简单序列重复序列分别产生110个和160个离散片段。 RAPD引物产生14个单态条带,并显示96个多态性。这些引物产生的多态性百分比为87.3%。 OPA 19,OPA 20和OPC 6是高度多态的引物。 ISSR检测到的总多态性为79.38%,每个引物14.5条带。 ISSR 5产生14个多态带和7个单态带。在基于Jaccard系数的RAPD数据上构建的UPGMA树将这些种分为3组,一组包括北印度品种的大部分,另一组包括东印度种,而这两个地区的第三组。 UPGMA ISSR数据的聚类无法按照地理分隔排列品种。来自这两种方法的累积带数据以这样的方式精确地排列了两个生态地理区域的入藏物,即子间亲和力与我们对该小组的理解一致。由于东印度人和北印度人基因型之间的地理距离很小,因此重叠是合乎逻辑的。来自两个区域的品种之间没有明确的分界支持共同的基因库起源以及类似选择压力的操作,因为在这些区域中的棺材偏好在很大程度上是相同的。

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