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SSR- Based Genetic Diversity Assessment inTetraploid and Hexaploid Wheat Populations

机译:四倍体和六倍体小麦群体中基于SSR的遗传多样性评估

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Molecular analysis for a set of hexaploid (Triticum aestvium) and tetraploid (Triticum durum) wheat cultivars was investigated by applying 11 SSR primers set. The plant materials consisted of 45 genotypes 15 of which were Triticum aestivum and 30 of T. durum obtained from four different regions Egypt, Greece, Cyprus and Italy. PCR products were separated on a 6% denaturing polyacrylamide gel electrophoresis and produced a total of 3840 DNA fragments which were used for the molecular analysis. The estimated parameters computed by POPGENE (Version 1.32) within the two population indicated that the Nei’s genetic diversity (H) was 0.2827, and the Shannon's Information index (I) was 0.4533 with standard deviation ± 0.0699 and ± 0.0852 respectively. The analysis of population structure revealed that genetic diversity within populations (Hs=0.2761) represented 97.7% of the total genetic diversity (HT=0.2827). The proportion of the total genetic diversity that was attributed to the population differentiation was low (Gst=0.0233) within population. ANOSIM (ANalysis Of Similarities), results showed that R was equal to 0.9048 (P indicated that all the most similar samples of genotypes are within the same population. The wheat varieties from the four distinct regions were clustered according to SSR data into two main clusters, durum wheat varieties and bread wheat varieties, the principal coordinate analysis (PCOORDA) validated the results of the dendrogram. This study showed that the two populations still had moderate considerable level of genetic diversity and show little genetic differentiation among them. Understanding genetic variation within and between populations is essential for the establishment of an effective breeding program concerning the intraspecific and interspecific hybridization.
机译:通过应用11套SSR引物对一组六倍体(Triticum aestvium)和四倍体(Triticum durum)小麦品种进行分子分析。植物材料由45种基因型组成,其中15种是普通小麦,30种是来自四个不同地区的埃及硬粒小麦,分别来自埃及,希腊,塞浦路斯和意大利。将PCR产物在6%变性聚丙烯酰胺凝胶电泳上分离,并产生总共3840个DNA片段,用于分子分析。由POPGENE(1.32版)在这两个种群中计算的估计参数表明,Nei的遗传多样性(H)为0.2827,香农信息指数(I)为0.4533,标准差分别为±0.0699和±0.0852。种群结构分析表明,种群内的遗传多样性(Hs = 0.2761)占总遗传多样性的97.7%(HT = 0.2827)。归因于种群分化的总遗传多样性的比例在种群内较低(Gst = 0.0233)。 ANOSIM(相似性分析)结果表明,R等于0.9048(P表示所有最相似的基因型样本都在同一种群内,根据SSR数据,将四个不同地区的小麦品种聚类为两个主要聚类在硬粒小麦,面包小麦和面包小麦两个品种中,主坐标分析(PCOORDA)验证了树状图的结果,该研究表明两个种群的遗传多样性水平仍然中等,且遗传差异很小。对于建立有效的种内和种间杂交育种计划,至关重要的是在种群之间进行杂交。

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