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首页> 外文期刊>Australian Journal of Crop Science >Genetic diversity in sorghum (Sorghum bicolor?L. Moench) accessions using SNP based Kompetitive allele-specific (KASP) markers
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Genetic diversity in sorghum (Sorghum bicolor?L. Moench) accessions using SNP based Kompetitive allele-specific (KASP) markers

机译:高粱遗传多样性(高粱双子→烟雾)使用SNP基于基于SNP的基因类等级(KASP)标记

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摘要

Genetic diversity analysis is an important component in conventional and marker-assisted breeding. The of this study was to assess the level of genetic diversity among 100 sorghum accessions, which were selected randomly from the Sorghum National Germplasm Bank maintained at Agricultural Research Council, South Africa. A total of 136 Kompetitive Allele-Specific PCR (KASP) markers were used in this study. The KASP markers were previously derived from single-nucleotide polymorphic (SNP) analysis of the world-wide sorghum accessions by other research groups. A total of 110 KASP markers were polymorphic and recorded an average polymorphic information content (PIC) value of 0.3, which indicated high level of discrimination of the markers. The markers had an average gene diversity and observed heterozygosity of 0.3 and 0.10, respectively. Analysis of molecular variance revealed a significantly high variation among accessions (83% and 89%) than within accessions (10% and 11%) based on breeding status and geographic origin, respectively. Genetic distance varied from 0.0 between SA0672 and SA0673, SA1282 and SA0670 to 0.57 between Hakika and SA1442 with an average mean of 0.30. The dendrogram and model-based population analysis identified three and four distinct groups in 95 sorghum accessions, respectively. These results imply the presence of genetic diversity and lack of genetic bottleneck within the Sorghum National Germplasm Bank, which could be highly relevant for sorghum breeding and germplasm maintenance.
机译:遗传多样性分析是常规和标记辅助育种中的重要组成部分。本研究的研究是评估100升高粱遗传多样性的水平,该遗传多样性在南非农业研究委员会维持的高粱国家种质银行随机选择。在本研究中使用了总共​​136个独立的等位基因特异性PCR(KASP)标记。 Kasp标记以前来自其他研究组的全球核苷酸多态性(SNP)分析。总共110个Kasp标记物是多态的,并且记录平均多态信息含量(PIC)值为0.3,表明标记物的高水平辨别。标记物的平均基因多样性和观察到0.3和0.10的杂合子。分子方差分析显着涉及基于育种地位和地理来源的牧区的牧区(83%和89%)的显着高的变化。遗传距离在Hakika和SA1442之间的SA0672和SA0673,SA1282和SA0670之间的0.57之间变化。平均平均值为0.30。树木图和基于模型的人口分析分别鉴定了95高粱加入中的三个和四个不同的群体。这些结果暗示了高粱国家种质银行内遗传多样性和缺乏遗传瓶颈,这可能对高粱育种和种质维护具有高度相关性。

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