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A cautionary tale: Lack of consistency in allele sizes between two laboratories for a published multilocus microsatellite typing system

机译:一个警示性故事:两个实验室之间的等位基因大小缺乏一致性,用于已发布的多位点微卫星分型系统

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摘要

For species with low genetic diversity, typing using the differences in PCR fragment length resulting from variations in numbers of short tandem repeats has been shown to provide a high level of discrimination. This technique has been called multilocus microsatellite typing (MLMT) or multiple-locus variable-number tandem repeat analysis, and studies usually employ genetic or sequence analyzers to size PCR fragments to a high degree of precision. We set out to validate one such system that has been developed for Aspergillus fumigatus (H. A. de Valk, J. F. G. M. Meis, I. M. Curfs, K. Muehlethaler, J. W. Mouton, and C. H. W. Klaassen, J. Clin. Microbiol. 43:4112-4120, 2005). The sizes of the alleles were compared both by sequencing and from two genotyping laboratories, where they used capillary electrophoresis (CE) for sizing. Size differences of up to 6 bases were found between the actual sizes reported by sequencing and the sizes reported by CE. In addition, because the two genotyping laboratories used different machines and running conditions, differences of up to 3 bases were identified between them. As the microsatellite markers used differ by repeat units of 3 or 4 bases, it was not possible to assign PCR fragments to the correct alleles without confirming the sizes of a range of alleles by direct sequencing. Lines of best fit were plotted for each CE machine against actual sizes and will therefore enable unsequenced PCR fragments to be assigned to the correct alleles. This study highlights the care required to ensure that an MLMT system undergoes a suitable correction procedure before data can be merged between different laboratories involved in the typing of individual species. Copyright © 2007, American Society for Microbiology. All Rights Reserved.
机译:对于遗传多样性低的物种,使用短串联重复序列数量变化导致的PCR片段长度差异进行分型已显示出很高的区分度。这项技术被称为多基因座微卫星分型(MLMT)或多基因座可变数串联重复分析,并且研究通常使用遗传或序列分析仪对PCR片段进行高精确度测序。我们着手验证为烟曲霉开发的一种这样的系统(HA de Valk,JFGM Meis,IM Curfs,K。Muehlethaler,JW Mouton和CHW Klaassen,J. Clin。Microbiol。43:4112-4120,2005年) )。通过测序和两个基因分型实验室对等位基因的大小进行了比较,他们使用毛细管电泳(CE)进行大小分析。在测序报告的实际大小与CE报告的大小之间发现了最多6个碱基的大小差异。此外,由于两个基因分型实验室使用的机器和运行条件不同,因此在它们之间最多识别出3个碱基的差异。由于所使用的微卫星标记的重复单位为3或4个碱基,因此无法通过直接测序来确定等位基因范围的大小而无法将PCR片段分配给正确的等位基因。为每台CE机器绘制了最合适的谱线,并与实际大小作对,因此可以将未测序的PCR片段分配给正确的等位基因。这项研究强调了确保MLMT系统经过适当的校正程序之前需要采取的谨慎措施,然后才能在涉及单个物种分类的不同实验室之间合并数据。版权所有©2007,美国微生物学会。版权所有。

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