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首页> 外文期刊>Plant Genetic Resources Characterization and Utilization >Genetic diversity among potato species as revealed by phenotypic resistances and SSR markers.
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Genetic diversity among potato species as revealed by phenotypic resistances and SSR markers.

机译:表型抗性和SSR标记揭示了马铃薯物种之间的遗传多样性。

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摘要

The evolutionary diversity of wild potato species makes them excellent materials for improving the narrow genetic basis of the cultivated potato Solanum tuberosum. Understanding their genetic diversity is important not only to choose the best parents for breeding, but also to design proper crossing schemes and selection strategies. The objectives of this study were to determine the resistance response to Ralstonia solanacearum, Potato virus Y and low temperatures of 21 clones of 12 potato species, and to determine their genetic diversity through simple sequence repeat (SSR) markers. Sources of resistance have been found for all the investigated traits, with high resistance variability not only between but also within species. Combined resistances were also identified, with positive implications for efficient breeding. SSR analysis allowed the detection of 12 loci and 46 alleles across all genotypes, with an average value of 3.8 alleles per locus. Both unique and rare alleles useful for marker-assisted selection were found. SSR-based cluster analysis revealed that resistant genotypes were distributed among all clusters, suggesting that genetically different resistant genotypes were identified. The information obtained in this study is discussed from a breeding perspective.
机译:野生马铃薯物种的进化多样性使其成为改善栽培马铃薯马铃薯的狭窄遗传基础的极佳材料。了解它们的遗传多样性不仅对于选择育种的最佳亲本很重要,而且对于设计适当的杂交方案和选择策略也很重要。这项研究的目的是确定对青枯雷尔氏菌,马铃薯病毒Y和12种马铃薯的21个克隆的低温的抗性反应,并通过简单序列重复(SSR)标记确定其遗传多样性。已发现所有调查性状的抗性来源,不仅在物种之间而且在物种内部具有很高的抗性变异性。还确定了综合抗性,对有效育种具有积极意义。 SSR分析允许检测所有基因型中的12个基因座和46个等位基因,每个基因座平均3.8个等位基因。发现了可用于标记辅助选择的独特和稀有等位基因。基于SSR的聚类分析表明,抗性基因型分布在所有聚类中,这表明已鉴定出遗传上不同的抗性基因型。从育种角度讨论了本研究中获得的信息。

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