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REVISITING MOLECULAR CLONING TO SOLVE GENOME SEQUENCING PROJECT CONFLICTS

机译:修改分子克隆以解决基因组测序项目冲突

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In our laboratory, DNA sequencing by Sanger method is used as the “gold standard” for clinical diagnostics, microbe identification (bacteria and yeast, mainly) and genome characterization. In this research, we used it to characterize a conflicting locus in a Saccharomyces cerevisiae sequencing project. When sequenced, the resulting electropherogram of the analyzed locus showed a pattern indicating either sample contamination or allele variation. Molecular cloning was chosen as the most straight-forward strategy to solve the dilemma. The initial characterization of recombinant plasmids by restriction enzyme digestion confirmed the presence of two genomic sequences. Their Sanger sequencing revealed two alleles distinguishable by a total of 29 nucleotide differences (25 of which were SNPs). NCBI BLAST revealed that the conflicting locus covered an intergenic region and a coding sequence for a putative permease protein. The present study shows the utility of the classical molecular cloning technique to solve problems of modern genome projects.
机译:在我们的实验室中,通过Sanger方法进行的DNA测序被用作临床诊断,微生物鉴定(主要是细菌和酵母)和基因组表征的“金标准”。在这项研究中,我们用它来表征酿酒酵母测序项目中的一个冲突基因座。测序后,所分析基因座的电泳图谱显示了指示样品污染或等位基因变异的模式。选择分子克隆作为解决难题的最直接方法。通过限制酶消化对重组质粒的初步鉴定证实了两个基因组序列的存在。他们的Sanger测序揭示了两个等位基因,可通过总共29个核苷酸差异(其中25个为SNP)区分。 NCBI BLAST揭示了冲突的基因座覆盖了一个基因间区域和一个假定的通透酶蛋白的编码序列。本研究显示了经典分子克隆技术在解决现代基因组计划问题中的实用性。

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