Quadram Institute Bioscience, Norwich Research Park, Norwich, Norfolk, NR4 7UQ, UK.
Medical School, University of East Anglia, Norwich Research Park, Norwich, Norfolk, NR4 7TJ, UK.
Microbiology (Reading). 2020 Dec;166(12):1115-1120. doi: 10.1099/mic.0.000994.
Recombineering using bacteriophage lambda Red recombinase (λ-Red) uses homologous recombination to manipulate bacterial genomes and is commonly applied to disrupt genes to elucidate their function. This is often followed by the introduction of a wild-type copy of the gene on a plasmid to complement its function. This is often not, however, at a native copy number and the introduction of a chromosomal version of a gene can be a desirable solution to provide wild-type copy expression levels of an allele . Here, we present a simple methodology based on the λ-Red-based 'gene doctoring' technique, where we developed tools used for chromosomal tagging in a conserved locus downstream of and found no impact on a variety of important phenotypes. The tools described provide an easy, quick and inexpensive method of chromosomal modification for the creation of a library of insertion mutants to study gene function.
利用噬菌体 λ Red 重组酶(λ-Red)进行重组采用同源重组来操作细菌基因组,常用于破坏基因以阐明其功能。这通常伴随着在质粒上引入该基因的野生型拷贝以补充其功能。然而,这通常不是在天然拷贝数下,并且引入基因的染色体版本可以是提供等位基因的野生型拷贝表达水平的理想解决方案。在这里,我们提出了一种基于 λ-Red 的“基因治疗”技术的简单方法,我们在和下游的保守基因座中开发了用于染色体标记的工具,并且发现对各种重要表型没有影响。所描述的工具提供了一种简单、快速和廉价的染色体修饰方法,用于创建插入突变体文库以研究基因功能。