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首页> 外文期刊>Mycological Research >An optimized microsatellite marker set for detection of Metarhizium anisopliae genotype diversity on field and regional scales
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An optimized microsatellite marker set for detection of Metarhizium anisopliae genotype diversity on field and regional scales

机译:一种优化的微卫星标记集,可用于在田间和区域尺度上检测异an异位菌的基因型多样性

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Thirty-three Metarhizium anisopliae isolates sampled across Switzerland as well as 35 and 36 M. anisopliae isolates sampled from two field sites were assembled in three isolate collections. All isolates were analyzed using 27 newly developed and 14 previously published microsatellite markers. The 41 markers allowed for detection of 25 genotypes in the Swiss collection while 30 and 11 genotypes were detected in the two field collections. This indicated high genetic diversity on a regional as well as on a field scale. In order to improve genotyping efficiency, an optimized marker set, which allows discrimination of a large number of genotypes with as few markers as possible was developed. The optimized marker set consisted of 16 common markers, which provided resolution close to maximal resolution in all three collections (91-93 %). The results demonstrated that optimized marker sets have to be validated before large scale application to previously unassessed collections in order to avoid suboptimal resolution. This genetic tool will be valuable for analyses of genetic population structure of M. anisopliae in different habitats on a regional as well as on a field scale.
机译:在瑞士采样的33个金属异化菌分离株以及在两个田间采样的35和36 M的异化菌分离株被组装成三个分离株。使用27个新开发的和14个先前发布的微卫星标记对所有分离物进行了分析。 41个标记允许在Swiss集合中检测25个基因型,而在两个田间集合中分别检测到30和11个基因型。这表明区域和实地的遗传多样性很高。为了提高基因分型效率,开发了一种优化的标记组,该标记组可以用尽可能少的标记来区分大量的基因型。优化的标记集由16个常用标记组成,在所有三个集合中提供的分辨率均接近最大分辨率(91-93%)。结果表明优化的标记集必须在大规模应用到以前未评估的集合之前进行验证,以避免次优的分辨率。该遗传工具对于分析区域和田间不同生境中沙棘分枝杆菌的遗传种群结构将是有价值的。

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