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Assessing genetic diversity in Gossypium arboreum L. cultivars using genomic and EST-derived microsatellites

机译:使用基因组和EST衍生的微卫星评估陆地棉栽培种的遗传多样性

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摘要

The cultivated diploid, Gossypium arboreum L., (A genome) is an invaluable genetic resource for improving modern tetraploid cotton (G. hirsutum L. and G. barbadense L.) cultivars. The objective of this research is to select a set of informative and robust microsatellites for studying genetic relationships among accessions of geographically diverse G. arboreum cultivars. From more than 1,500 previously developed simple sequence repeat (SSR) markers, 115 genomic (BNL) and EST-derived (MUCS and MUSS) markers were used to evaluate the allelic diversity of a core panel of G. arboreum accessions. These SSR data enabled advanced genome analyses. A set of 25 SSRs were selected based both upon their high level of informativeness (PIC ≥ 0.50) and the production of clear PCR bands on agarose gels. Subsequently, 96 accessions representing a wide spectrum of diversity of G. arboreum cultivars were analyzed with these markers. The 25 SSR loci revealed 75 allelic variants (polymorphisms) ranging from 2 to 4 alleles per locus. The Neighborjoining (NJ) method, based on genetic dissimilarities, revealed that cultivars from geographically adjacent countries tend to cluster together. Outcomes of this research should be useful in decreasing redundancy of effort and in constructing a core collection of G. arboreum, important for efficient use of this genetic resource in cotton breeding. Keywords Cotton - Diversity - EST-SSRs - Genomic-SSR - Gossypium arboreum
机译:栽培的二倍体棉(Gossypium arboreum L。)(一个基因组)是改善现代四倍体棉花(G. hirsutum L.和G. barbadense L.)品种的宝贵遗传资源。这项研究的目的是选择一组信息丰富且健壮的微卫星,以研究地理上不同的G. arboreum栽培种的种质之间的遗传关系。从1,500多个以前开发的简单序列重复(SSR)标记中,使用115个基因组(BNL)和EST衍生的(MUCS和MUSS)标记评估了G. arboreum核心种质的等位基因多样性。这些SSR数据可进行高级基因组分析。基于高信息量(PIC≥0.50)和在琼脂糖凝胶上产生清晰的PCR条带,选择了25个SSR。随后,用这些标记分析了代表广谱种的广谱多样性的96种材料。 25个SSR基因座揭示了75个等位基因变体(多态性),每个位点的范围为2-4个等位基因。基于遗传差异的Neighborjoining(NJ)方法显示,来自地理上相邻国家的栽培品种趋于聚集在一起。这项研究的结果应有助于减少工作量的重复,并有助于构建一个植物学核心资源库,这对于在棉花育种中有效利用这一遗传资源很重要。棉花-多样性-EST-SSRs-基因组SSR-棉

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