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Genetic Characterisation and Diversity Assessment of Potato Genotypes Using SSR Markers

机译:利用SSR标记对马铃薯基因型进行遗传表征和多样性评估

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Information on diversity of genetic materials is vital for choosing parents in a breeding program. The objective of the study was to determine the pattern and level of genetic diversity among the selected 20 tetraploid potato genotypes using 16 SSR markers to identify suitable parents for breeding purposes. The microsatellites showed considerable variation among genotypes and sixty four alleles were amplified by the 16 primer pairs. The number of polymorphic alleles per locus ranged from 2 to 8 with an average of 3.9. The highest number of null alleles was observed was six for genotype Nakpot1. The overall size of the amplified product varied from 48 bp (marker STI0023) to 309 bp (marker STM5121). PIC values ranged from 0.0948 to 0.7832, with an average of 0.4307 per locus. Heterozygosity values ranged from 0.0997 to 0.805 with an average of 0.466919. Significant positive linear correlations were observed between PIC values and number of alleles (r = 0.905); and heterozygosity and number of alleles (r = 0.8659) at p < 0.001. Cluster analysis separated the genotypes into three different groups. The genetic distance between clones ranged from 1 to 5.7. Cruza had the highest genetic distance while the shortest genetic distance was observed between 396026.103 and 396034.104. The microsatellites used in this study provided useful information regarding the variability of the tested genotypes and their selection for breeding purposes.
机译:有关遗传材料多样性的信息对于在育种计划中选择亲本至关重要。该研究的目的是使用16个SSR标记来确定所选20种四倍体马铃薯基因型之间的遗传多样性模式和水平,以鉴定适合育种目的的亲本。微卫星在基因型之间显示出相当大的变异,并且通过16个引物对扩增了64个等位基因。每个基因座的多态性等位基因数量为2至8,平均为3.9。对于基因型Nakpot1,观察到的无效等位基因数量最多,为六个。扩增产物的总大小从48 bp(标记STI0023)到309 bp(标记STM5121)不等。 PIC值范围从0.0948到0.7832,平均每个位点0.4307。杂合度值范围为0.0997至0.805,平均值为0.466919。在PIC值和等位基因数量之间观察到显着的线性正相关(r = 0.905); p <0.001时的杂合性和等位基因数目(r = 0.8659)。聚类分析将基因型分为三个不同的组。克隆之间的遗传距离范围为1到5.7。在396026.103和396034.104之间,Cruza的遗传距离最高,而遗传距离最短。这项研究中使用的微卫星为测试基因型的变异性及其用于育种目的的选择提供了有用的信息。

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