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Construction and evaluation of multisite recombinatorial (Gateway) cloning vectors for Gram-positive bacteria

机译:革兰氏阳性菌多位重组(网关)克隆载体的构建和评价

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Background The Gateway recombinatorial cloning system allows easy and rapid joining of DNA fragments. Here we report the construction and evaluation of three different Gram-positive vectors that can be used with the Multisite Gateway cloning system to rapidly produce new gene arrangements in plasmid constructs for use in a variety of Gram-positive bacteria. Results Comparison of patterns of reporter gene expression with conventionally constructed clones show that the presence of residual recombination (att) sites does not have an effect on patterns of gene expression, although overall levels of gene expression may vary. Rapid construction of these new vectors allowed vector/gene combinations to be optimized following evaluation of plasmid constructs in different bacterial cells and demonstrates the benefits of plasmid construction using Gateway cloning. Conclusion The residual att sites present after Gateway cloning did not affect patterns of promoter induction in Gram-positive bacteria and there was no evidence of differences in mRNA stability of transcripts. However overall levels of gene expression may be reduced, possibly due to some post-transcriptional event. The new vectors described here allow faster, more efficient cloning in range of Gram-positive bacteria.
机译:背景技术Gateway重组克隆系统允许简单快速地连接DNA片段。在这里,我们报告了三种不同的革兰氏阳性载体的构建和评估,这些载体可与Multisite Gateway克隆系统一起使用,以在用于多种革兰氏阳性细菌的质粒构建物中快速产生新的基因排列。结果报告基因基因表达模式与常规构建的克隆的比较显示,尽管基因表达的总体水平可能会有所不同,但残留重组(att)位点的存在对基因表达模式没有影响。这些新载体的快速构建使得可以在评估不同细菌细胞中的质粒构建体后优化载体/基因组合,并证明了使用Gateway克隆构建质粒的好处。结论Gateway克隆后存在的att残留位点不会影响革兰氏阳性细菌中启动子的诱导方式,也没有转录本mRNA稳定性差异的证据。但是,可能由于某些转录后事件,基因表达的总体水平可能降低。此处描述的新载体可以更快,更有效地克隆革兰氏阳性细菌。

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