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Development and characterization of microsatellite primers in Geranium carolinianum (Geraniaceae) with 454 sequencing

机译:用454测序技术开发和鉴定天竺葵(天竺葵科)微卫星引物

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摘要

• Premise of the study: Microsatellite primers were developed for Geranium carolinanum, a North American winter annual herb, for use in population genetic analyses.• Methods and Results: Genomic DNA enriched for repeat-containing fragments was sequenced on the Roche 454 Titanium platform, resulting in 470 primer pairs developed from 1115 microsatellite-containing sequences. A subset of 37 primer pairs was screened for polymorphism across three native and three invasive populations. We identified four monomorphic and eight polymorphic loci. Polymorphic loci contained between two and seven alleles per locus, and mean within-population expected heterozygosity ranged from 0.100 to 0.290. Within populations, observed heterozygosity for individual loci ranged from zero to 0.857, and expected heterozygosity ranged from 0.046 to 0.559.• Conclusions: These microsatellite markers will be useful for future studies of genetic diversity, structure, and mating systems across the geographic range of G. carolinianum, and may be transferable to other closely related species.
机译:•研究前提:针对北美冬季一年生草本植物天竺葵(Carolananum)的微卫星引物进行了开发,用于群体遗传分析。•方法与结果:在Roche 454 Titanium平台上对富含重复序列片段的基因组DNA进行了测序,产生了从1115个含微卫星的序列形成的470对引物。筛选了37个引物对中的一个子集,用于三个自然种群和三个入侵种群的多态性。我们确定了四个单态位点和八个多态位点。每个基因座的多态性位点包含2至7个等位基因,平均群体内预期杂合度范围为0.100至0.290。在种群中,观察到的每个基因座的杂合度范围从零到0.857,预期的杂合度范围从0.046到0.559。•结论:这些微卫星标记物可用于未来研究G地理范围内的遗传多样性,结构和交配系统Carolinianum,并且可以转移到其他密切相关的物种。

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