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Genomic flank-sequencing of plasposon insertion sites for rapid identification of functional genes

机译:等离子插入位点的基因组侧翼测序可快速鉴定功能基因

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摘要

Plasposons are modified mini-Tn5 transposons for random mutagenesis of Gram-negative bacteria. Their unique design allows for the rescue cloning and sequencing of DNA that flanks insertion sites in plasposon mutants. However, this process can be laborious and time-consuming, as it involves genomic DNA isolation, restriction endonuclease treatment, subsequent religation, transformation of religated DNA into an Escherichia coli host, and re-isolation as a plasmid, which is then used as a template in sequencing reactions with primers that read from the plasposon ends into the flanking DNA regions. We describe here a method that produces flanking DNA sequences directly from genomic DNA that is isolated from plasposon mutants. By eliminating the need for rescue cloning, our protocol dramatically reduces time and effort, typically by 2 to 3 working days, as well as costs associated with digestion, ligation, transformation, and plasmid isolation. Furthermore, it allows for a high-throughput automated approach to analysis of the plasposome, i.e. the collective set of plasposon insertion sites in a plasposon mutant library. We have tested the utility of genomic flank-sequencing on three plasposon mutants of the soil bacterium Collimonas fungivorans with abolished ability to degrade chitin.
机译:等离子体是修饰的mini-Tn5转座子,用于革兰氏阴性细菌的随机诱变。其独特的设计允许对等位基因突变体中插入位点两侧的DNA进行抢救克隆和测序。但是,此过程可能很费力且耗时,因为它涉及基因组DNA分离,限制性核酸内切酶处理,随后的连接,将连接的DNA转化为大肠杆菌宿主,以及作为质粒的重新分离,然后用作质粒。测序反应中使用的模板中含有从等离子中读取的引物,然后进入侧翼DNA区域。我们在这里描述了一种直接从等离子突变体分离的基因组DNA中产生侧翼DNA序列的方法。通过消除对急救克隆的需求,我们的协议大大减少了时间和精力,通常减少了2至3个工作日,以及与消化,连接,转化和质粒分离相关的成本。此外,它允许高通量自动化方法来分析质体,即质子突变体文库中的质子插入位点的集合。我们已经测试了土壤侧实真菌科利莫纳菌的三个等位基因突变体的基因组侧翼测序的效用,该突变体具有降解甲壳质的能力。

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