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Transferability and utility of white oat (Avena sativa) microsatellite markers for genetic studies in black oat (Avena strigosa)

机译:白燕麦(Avena sativa)微卫星标记的可转移性和实用性,用于黑燕麦(Avena strigosa)的遗传研究

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Preservation and use of wild oat species germplasm are essential for further improvement of cultivated oats. We analyzed the transferability and utility of cultivated (white) oat Avena sativa (AACCDD genome) microsatellite markers for genetic studies of black oat A. strigosa (AsAs genome) genotypes. The DNA of each black oat genotype was extracted from young leaves and amplified by PCR using 24 microsatellite primers developed from white oat. The PCR products were separated on 3% agarose gel. Eighteen microsatellite primer pairs amplified consistent products and 15 of these were polymorphic in A. strigosa, demonstrating a high degree of transferability. Microsatellite primer pairs AM3, AM4, AM21, AM23, AM30, and AM35 consistently amplified alleles only in A. sativa, which indicates that they are putative loci for either the C or D genomes of Avena. Using the data generated by the 15 polymorphic primer pairs, it was possible to separate 40 genotypes of the 44 that we studied. The four genotypes that could not be separated are probably replicates. We conclude that A. sativa microsatellites have a high transferability index and are a valuable resource for genetic studies and characterization of A. strigosa genotypes.
机译:保存和使用野生燕麦种质对于进一步改良栽培燕麦至关重要。我们分析了栽培的(白色)燕麦燕麦(AACCDD基因组)微卫星标记的可移植性和效用,用于黑燕麦曲霉(AsAs基因组)基因型的遗传研究。从幼叶中提取每种黑燕麦基因型的DNA,并使用24种从白燕麦发育的微卫星引物通过PCR进行扩增。 PCR产物在3%琼脂糖凝胶上分离。 18个微卫星引物对扩增出一致的产物,其中15个在条状线虫中具有多态性,证明了高度的可转移性。微卫星引物对AM3,AM4,AM21,AM23,AM30和AM35仅在苜蓿中连续扩增等位基因,这表明它们是Avena C或D基因组的推定基因座。使用由15个多态性引物对生成的数据,可以分离出我们研究的44个基因型中的40个基因型。无法分离的四种基因型可能是重复的。我们得出的结论是,紫花苜蓿微卫星具有很高的可转移性指数,并且是遗传研究和条锈菌基因型鉴定的宝贵资源。

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