转座因子
转座酶
换位(逻辑)
转座子突变
生物
支原体
遗传学
质粒
突变
大肠杆菌
插入顺序
基因
微生物学
突变体
结核分枝杆菌
病理
哲学
医学
语言学
肺结核
作者
Eric J. Rubin,Brian J. Akerley,Veronica Novik,David J. Lampe,Robert N. Husson,John J. Mekalanos
标识
DOI:10.1073/pnas.96.4.1645
摘要
mariner family transposons are widespread among eukaryotic organisms. These transposons are apparently horizontally transmitted among diverse eukaryotes and can also transpose in vitro in the absence of added cofactors. Here we show that transposons derived from the mariner element Himar1 can efficiently transpose in bacteria in vivo . We have developed simple transposition systems by using minitransposons, made up of short inverted repeats flanking antibiotic resistance markers. These elements can efficiently transpose after expression of transposase from an appropriate bacterial promoter. We found that transposition of mariner -based elements in Escherichia coli produces diverse insertion mutations in either a targeted plasmid or a chromosomal gene. With Himar1 -derived transposons we were able to isolate phage-resistant mutants of both E. coli and Mycobacterium smegmatis . mariner- based transposons will provide valuable tools for mutagenesis and genetic manipulation of bacteria that currently lack well developed genetic systems.
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