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Genetic diversity among cultivars, landraces and wild relatives of rice as revealed by microsatellite markers

机译:微卫星标记揭示的水稻品种,地方品种和野生近缘种之间的遗传多样性

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摘要

Genetic diversity among 35 rice accessions, which included 19 landraces, 9 cultivars and 7 wild relatives, was investigated by using microsatellite (SSR) markers distributed across the rice genome. The mean number of alleles per locus was 4.86, showing 95.2% polymorphism and an average polymorphism information content of 0.707. Cluster analysis based on microsatellite allelic diversity clearly demarcated the landraces, cultivars and wild relatives into different groups. The allelic richness computed for the clusters indicated that genetic diversity was the highest among wild relatives (0.436), followed by landraces (0.356), and the lowest for cultivars. Allelic variability among the SSR markers was high enough to categorize cultivars, landraces and wild relatives of the rice germplasm, and to catalogue the genetic variability observed for future use. The results also suggested the necessity to introgress genes from landraces and wild relatives into cultivars, for cultivar improvement.
机译:利用分布在水稻基因组上的微卫星(SSR)标记,研究了35个水稻种质的遗传多样性,其中包括19个地方品种,9个品种和7个野生近缘种。每个基因座的平均等位基因数目为4.86,表现出95.2%的多态性和0.707的平均多态性信息含量。基于微卫星等位基因多样性的聚类分析清楚地将地方品种,栽培品种和野生近缘种划分为不同的组。计算出的簇的等位基因丰富度表明,遗传多样性在野生亲缘种中最高(0.436),其次是地方品种(0.356),而品种最低。 SSR标记之间的等位基因变异性足够高,可以对水稻种质的栽培品种,地方品种和野生近缘种进行分类,并且可以对观察到的遗传变异性进行分类以便将来使用。研究结果还表明,有必要将地方品种和野生近缘种的基因导入品种,以改良品种。

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