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SSR Variation in Important U.S. Maize Inbred Lines

机译:美国重要玉米自交系的SSR变异

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Historically important public inbred lines continue to play an important role in maize (Zea mays L.) improvement in many different breeding programs. Their continued use means they have undergone numerous seed increases in diverse programs since their original release. Our objective was to estimate the level of genetic diversity among and within inbred lines from different sources using SSR markers. We sampled six inbred lines (B73, CM105, Mo17, Oh43, W153R, and Wf9) obtained from 14 sources (breeding programs). The data were analyzed by analysis of molecular variance (AMOVA), genetic diversity statistics, and genetic distance (Dice's coefficient). Of the total variation observed in gene frequency, 87.8% was found among inbred lines, 7.6% among sources within inbred lines, and 4.6% within sources. Genotypes of identically named inbred lines from eight different sources differed slightly on the basis of 44 SSR loci. The mean genetic similarity between sources of the same inbred was greater than 85%. It can be concluded that although more diversity exists among these six inbred lines than within them, a small but significant amount of variation exists among seed sources within inbreds. This variation may have arisen through differences in seed maintenance, since we found no evidence to suggest high mutation rates or extensive outcrossing. The small but statistically significant level of variation raises concerns in germplasm conservation, mapping studies, marker development, and long-term recombinant inbred line development, especially when high resolution is desired.
机译:具有重要历史意义的公共近交系在许多不同的育种计划中继续对玉米(Zea mays L.)的改良起着重要作用。它们的继续使用意味着自最初发布以来,他们已经在各种程序中进行了大量种子增加。我们的目标是使用SSR标记评估不同来源的近交系之间及其内部的遗传多样性水平。我们对从14个来源(育种程序)获得的6个自交系(B73,CM105,Mo17,Oh43,W153R和Wf9)进行了采样。通过分子差异分析(AMOVA),遗传多样性统计数据和遗传距离(骰子系数)分析数据。在观察到的基因频率的总变异中,在近交系中发现了87.8%,在近交系中发现了7.6%,在源中发现了4.6%。来自八个不同来源的同名自交系的基因型在44个SSR基因座的基础上略有不同。同一近交来源之间的平均遗传相似性大于85%。可以得出结论,尽管这六个自交系之间存在的多样性要比它们内部的多样性多,但自交系内种子源之间的变异却很小,但数量却很大。这种差异可能是由于种子维持的差异引起的,因为我们没有发现证据表明突变率高或广泛的异交。微小但具有统计学意义的变异水平引起了种质保存,作图研究,标记物开发和长期重组近交系发展的关注,尤其是在需要高分辨率时。

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