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首页> 外文期刊>Mycologia >Development of sequence characterized amplified genomic regions (SCAR) for fungal systematics: proof of principle using Alternaria, Ascochyta and Tilletia.
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Development of sequence characterized amplified genomic regions (SCAR) for fungal systematics: proof of principle using Alternaria, Ascochyta and Tilletia.

机译:开发用于真菌系统学的序列特征性扩增基因组区域(SCAR):使用链格孢属,Ascochyta和Tilletia的原理证明。

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摘要

SCARs were developed by cloning RAPD-PCR amplicons into commercially available vectors, sequencing them and designing specific primers for PCR, direct sequencing and phylogenetic analysis. Eighteen to seventy percent of cloned RAPD-PCR amplicons were phylogenetically informative among closely related small-spored Alternaria spp., Ascochyta spp. and Tilletia spp., taxa that have been resistant to phylogenetic analysis with universally primed, protein-coding sequence data. Selected SCARs were sequenced for larger, population-scale samples of each taxon and demonstrated to be useful for phylogenetic inference. Variation observed in the cloned SCARs generally was higher than variation in nuclear ribosomal internal transcribed spacer (ITS) and several protein-coding sequences commonly used in lower level fungal systematics. Sequence data derived from SCARs will provide sufficient resolution to address lower level phylogenetic hypotheses in Alternaria, Ascochyta, Tilletia and possibly many other fungal groups and organisms.
机译:通过将RAPD-PCR扩增子克隆到市售载体中,对其进行测序并设计用于PCR,直接测序和系统发育分析的特异性引物来开发SCAR。在密切相关的小孢子链格孢菌,子囊菌属菌种中,有18%至70%的克隆RAPD-PCR扩增子在系统发育上具有信息学意义。和Tilletia spp。(类群)对通用引物的蛋白质编码序列数据进行的系统发育分析具有抗性。选定的SCAR对每个分类单元的更大,人群规模的样本进行了测序,并证明可用于系统发育推断。在克隆的SCAR中观察到的变异通常高于核糖体内部转录间隔区(ITS)和较低水平真菌系统中常用的几种蛋白质编码序列的变异。来自SCAR的序列数据将提供足够的分辨率,以解决链格孢属,Ascochyta,Tilletia以及可能的许多其他真菌类和生物中较低水平的系统发育假说。

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