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Phenotypic Screening of Escherichia coli K-12 Tn5 Insertion Libraries Using Whole-Genome Oligonucleotide Microarrays

机译:使用全基因组寡核苷酸微阵列的大肠杆菌K-12 Tn5插入文库的表型筛选。

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摘要

Complete genome sequences in combination with global screening methods allow parallel analysis of multiple mutant loci to determine the requirement for specific genes in different environments. In this paper we describe a high-definition microarray approach for investigating the growth effects of Tn5 insertions in Escherichia coli K-12. Libraries of insertion mutants generated by a unique Tn5 mutagenesis system were grown competitively in defined media. Biotin-labeled runoff RNA transcripts were generated in vitro from transposon insertions in each population of mutants. These transcripts were then hybridized to custom-designed oligonucleotide microarrays to detect the presence of each mutant in the population. By using this approach, the signal associated with 25 auxotrophic insertions in a 50-mutant pool was not detectable following nine generations of growth in glucose M9 minimal medium. It was found that individual insertion sites could be mapped to within 50 bp of their genomic locations, and 340 dispensable regions in the E. coli chromosome were identified. Tn5 insertions were detected in 15 genes for which no previous insertions have been reported. Other applications of this method are discussed.
机译:完整的基因组序列与全局筛选方法相结合,可以对多个突变基因座进行并行分析,以确定在不同环境中对特定基因的需求。在本文中,我们描述了一种高清微阵列方法,用于研究Tn5插入在大肠杆菌K-12中的生长效应。由独特的Tn5诱变系统生成的插入突变体文库在限定的培养基中竞争性生长。从每个突变体群体中的转座子插入物中,体外产生生物素标记的径流RNA转录物。然后将这些转录本与定制设计的寡核苷酸微阵列杂交,以检测群体中每种突变体的存在。通过使用这种方法,在葡萄糖M9基本培养基中生长了9代后,在50个突变体池中无法检测到与25个营养缺陷型插入相关的信号。结果发现,单个插入位点可定位在其基因组位置的50 bp之内,并在大肠杆菌染色体中鉴定出340个可有可无的区域。在15个基因中检测到Tn5插入,之前没有报道。讨论了该方法的其他应用。

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