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Genome Editing in Model Strain Myxococcus xanthus DK1622 by a Site-Specific Cre/loxP Recombination System

机译:通过特定地点的Cre / loxP重组系统编辑模型菌株Myxococcus xanthus DK1622中的基因组

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摘要

Myxococcus xanthus DK1622 is a rich source of novel secondary metabolites, and it is often used as an expression host of exogenous biosynthetic gene clusters. However, the frequency of obtaining large genome-deletion variants by using traditional strategies is low, and progenies generated by homologous recombination contain irregular deletions. The present study aims to develop an efficient genome-engineering system for this bacterium based on the Cre/loxP system. We first verified the functionality of the native cre system that was integrated into the chromosome with an inducible promoter PcuoA. Then we assayed the deletion frequency of 8-bp-spacer-sequence mutants in loxP by Cre recombinase which was expressed by suicide vector pBJ113 or self-replicative vector pZJY41. It was found that higher guanine content in a spacer sequence had higher deletion frequency, and the self-replicative vector was more suitable for the Cre/loxP system, probably due to the leaky expression of inducible promoter PcuoA. We also inspected the effects of different antibiotics and the native or synthetic cre gene. Polymerase chain reaction (PCR) and sequencing of new genome joints confirmed that the Cre/loxP system was able to delete a 466 kb fragment in M. xanthus. This Cre/loxP-mediated recombination could serve as an alternative genetic manipulation method.
机译:Xanthus DK1622粘球菌是新型次级代谢产物的丰富来源,通常用作外源生物合成基因簇的表达宿主。然而,通过使用传统策略获得大的基因组缺失变体的频率很低,并且通过同源重组产生的后代包含不规则的缺失。本研究旨在基于Cre / loxP系统,为该细菌开发有效的基因组工程系统。我们首先验证了天然cre系统的功能,该系统与可诱导启动子PcuoA整合到染色体中。然后我们通过自杀重组载体pBJ113或自复制载体pZJY41表达的Cre重组酶测定了loxP中8bp间隔区突变体的缺失频率。发现间隔区序列中更高的鸟嘌呤含量具有更高的缺失频率,并且自复制载体更适合于Cre / loxP系统,这可能是由于诱导型启动子PcuoA的泄漏表达。我们还检查了不同抗生素以及天然或合成cre基因的作用。聚合酶链反应(PCR)和新基因组接头的测序证实,Cre / loxP系统能够删除X.hu. xanthus中的466 kb片段。这种Cre / loxP介导的重组可以用作替代的基因操作方法。

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