Lucigen/EZ-Tn5?
商品编号
TSM99K2
品牌
Lucigen
公司
Lucigen
公司分类
In Vivo Tn5 Transposon Mutagenesis
Size
10 Reactions
商品信息
Generate random gene knockouts in living bacteria
Generate mutants with improved genetics or function across a broad host range of bacterial cell types
Characterize novel genes and gene functions
Identify genes involved in pathogenesis, toxicity, biofilm development
Unravel metabolic pathways
Identify essential genes and regulatory elements
100’s of citations for many different applications
Applications
Rapid generation of knock-out mutants in bacterial cells.
Knock-in of genes for bacterial strain development.
"Tagging" bacteria with vis
IBL
e genetic
Marker
s for environmental localization studies.
Direct sequencing of bacterial chromosomal DNA.
EZ-Tn5? Transposome? complexes are formed between an EZ-Tn5? Transposon and EZ-Tn5? Transposase, and provide a simple and reliable method for generating a library of random gene knockouts
in vivo
.* Just electroporate the EZ-Tn5 Transposome into any of a broad range of living bacterial cells and select for a
Marker
encoded by the EZ-Tn5 Transposon (Fig. 1). Because there is no need for cell conjugation, suicide vectors, or specific host factors, EZ-Tn5 Transposomes are ideal for creating mutants in species that have poorly described genetic systems or lack adequate molecular tools.
Ready-to-use EZ-Tn5 Transposomes* are available containing a kanamycin selectable
Marker
(
Marker
is re
ADI
ly expressed in many Gram-negative bacteria. You can also create your own EZ-Tn5 Transposome using one of the EZ-Tn5 pMOD? Transposon Construction Vectors and EZ-Tn5 Transposase.
Figure 1. The EZ-Tn5? Transposon insertion site
in bacterial DNA can be sequenced directly using genomic DNA isolated using the MasterPure? Complete DNA Purification Kit and primers homologous to the ends of the transposon.
All EZ-Tn5 Transposons contain unique primer-binding sites at each end for bidirectional sequencing. Hence, a gene knockout can be sequenced directly using bacterial genomic DNA as template and the primers provided with each Transposome. Transposon insertions made using an EZ-Tn5
/KAN-2>Tnp Transposome Kit can be rescued and the flanking DNA sequenced.
EZ-Tn5 Transposome-mediated insertions have been made in many different microorganisms, including
Acinetobactor, Campylobacter, Escherichia, Mycobacterium, Proteus, Pseudomonas, Saccharomyces, Salmonella, Trypanosoma, Xylella,
and others. The number of transposition clones obtained is highly dependent on the transformation efficiency of the host cell (Table 1).
Benefits
Rapid mutagenesis procedure is simpler and easier to use than chemical mutagenesis.
More efficient than using mini-transposons with suicide plasmids.
Broad host range: over 60 species of Gram-negative and Gram-positive bacteria transposed so far.
Table 1. Examples of bacterial strains mutagenized using the EZ-Tn5? Tranposomes?
Actinobacillus pleuropneumoniae
Agrobacterium tumefaciens
Bacillus subtilis
Bartonella henselae
BD
ellovibrio bacteriovorus
Campylobacter jejuni
Clavibacter michiganensis
subsp.
sepedonicus
Cory
NEB
acterium diphtheriae
Enterobacter cloacae
Escherichia coli
Francisella tularensis
Haemophilus ducreyi
Moraxella catarrhalis
Mycobacterium avium
Mycobacterium bovis
(BCG)
Mycobacterium tuberculosis
Myxobacterium angiococcus
Neisseria gonorrhoeae
Pseudomonas putida
Pseudomonas syringae
Rhodococcus equi
Rickettsia prowazekii
Salmonella typhimurium
Serratia marcesens
Silicibacter pomeroyi
Spiroplasma citri
Streptococcus pyogenes
Xanthomonas campestris
Xylella fastidiosa
Zymomonas mobilis
Table 2. Number of Kan
R
transposon insertion clones produced from electroporation of 1 ?l of EZ-Tn5?
E. coli
>10
5
Proteus vulgaris
>10
3
Salmonella ty.
>10
4
Mycobacterium smegmatis
>10
2
Pseudomonas sp.
>10
2
*Covered by
issued and/or pending patents, exclusively licensed or assigned to Epicentre? (an
Illumina
? Company).
ORDER INFORMATION
EZ-Tn5?
Tnp Transposome?, KAN-2 FP-1 Forward Primer, KAN-2 RP-1 Reverse Primer, and Sterile Water.
产品货号:5365.6