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Category:Strain:BW25113
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Step | Strain | Genotype | Construction | Reference | |
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public |
ii) |
BW21597 |
F- LAM- rpoS396(Am) DEphoR574 rph-1 |
BD792 was made TcR with pAH14 then TcS Pho- derivatives were isolated.[1] |
unpublished |
public |
iii) |
BW21652 |
F- LAM- rpoS396(Am) DEphoR574 DE(creABCD)154 rph-1 |
BW21597 was made TcR with pSK26 and then TcS Cre- derivatives were isolated. [2] |
unpublished |
public |
iv) |
BW23186 |
F- LAM- rpoS396(Am) DEphoR574 DE(creABCD)154 DE(araBAD)567 rph-1 |
BW21652 was made TcR with pAH54 and then TcS Ara- derivatives were isolated. ([3]) |
unpublished |
public |
v) |
BW23599 |
F- LAM- rpoS396(Am) rrnB3 DElacZ4787 proC::Tn5-132 DE(creABCD)154 DE(araBAD)567 rph-1 |
BW23186 was transduced to TcR Pro- Lac- Pho+ with P1kc grown on BW22773[3] |
unpublished |
public |
vi) |
BW23660 |
F- LAM- rpoS396(Am) rrnB3 DElacZ4787 DE(phoBR)580 DE(creABCD)154 DE(araBAD)567 rph-1 |
BW23599 was transduced to Pro+ Pho- with P1kc grown on BW23316. |
Haldimann et al. 1997[1] |
public |
vii) |
BW24200 |
F- LAM- rpoS396(Am) rrnB3 DElacZ4787 DE(phoBR)580 DE(creABCD)154 DE(araBAD)567 metF159(Am) zii-510::Tn10 rph-1 |
BW23660 was transduced to TcR Met- with P1kc grown on JW383 (Haldimann et al., 1997) |
unpublished |
public |
viii) |
BW24201 |
F- LAM- rpoS396(Am) rrnB3 DElacZ4787 DE(phoBR)580 DE(creABCD)154 DE(araBAD)567 DE(rhaBAD)568 rph-1 |
BW24200 was transduced to Met+ TcS Rha- with P1kc grown on BW22875[3] |
unpublished |
public |
ix) |
BW24310 |
F- LAM- rrnB3 DElacZ4787 DE(phoBR)580 DE(creABCD)154 DE(araBAD)567 DE(rhaBAD)568 cysC95::Tn10 rpoS::kan rph-1 |
BW24201 was transduced to TcR KmR with P1kc grown on ZK1001[3] |
Haldimann and Wanner, 2001[4] |
public |
x) |
BW24320a |
F- LAM- rrnB3 DElacZ4787 DE(phoBR)580 DE(creABCD)154 DE(araBAD)567 DE(rhaBAD)568 rph-1 |
BW24310 was transduced to Cys+ KmS with P1kc grown on MG1655 (Wanner and Boline, 1990) aBW24320 and its descendants carry the same pseudorevertant rpoS(Q33) allele as MG1655 (Hayashi et al., 2005) |
Haldimann and Wanner, 2001[4] |
public |
xi) |
BW24353 |
F- LAM- rrnB3 DElacZ4787 DE(phoBR)580 DE(zaa trpR creABCD arcA thr)104::Tn5-132 DE(araBAD)567 DE(rhaBAD)568 rph-1 |
BW24320 was transduced to TcR Thr- with P1kc grown on BW12070 (Fisher et al., 1995) |
unpublished |
public |
xii) |
BW24476 |
F- LAM- rrnB3 DElacZ4787 DE(phoBR)580 hsdR514 DE(araBAD)567 DE(rhaBAD)568 rph-1 |
BW24353 was transduced to Thr+ HsdR- with P1kc grown on BW24447[5] |
Stern et al., 1999[5] |
public |
xiii) |
BW25083 |
F- LAM- rrnB3 DElacZ4787 proC::Tn5-132 hsdR514 DE(araBAD)567 DE(rhaBAD)568 rph-1 |
BW24476 was transduced to TcR Pro- Pho+ with P1kc grown on BW22773[3] |
Haldimann and Wanner, 2001[4] |
public |
xiv) |
BW25113 |
F- LAM- rrnB3 DElacZ4787 hsdR514 DE(araBAD)567 DE(rhaBAD)568 rph-1 |
BW25083 was transduced to Pro+ with P1kc grown on BW24321[4] |
- ↑ 1.0 1.1 Haldimann, A et al. (1997) Transcriptional regulation of the Enterococcus faecium BM4147 vancomycin resistance gene cluster by the VanS-VanR two-component regulatory system in Escherichia coli K-12. J. Bacteriol. 179 5903-13 PubMed
- ↑ Metcalf, WW et al. (1996) Conditionally replicative and conjugative plasmids carrying lacZ alpha for cloning, mutagenesis, and allele replacement in bacteria. Plasmid 35 1-13 PubMed
- ↑ 3.0 3.1 3.2 3.3 3.4 Haldimann, A et al. (1998) Use of new methods for construction of tightly regulated arabinose and rhamnose promoter fusions in studies of the Escherichia coli phosphate regulon. J. Bacteriol. 180 1277-86 PubMed
- ↑ 4.0 4.1 4.2 4.3 Haldimann, A & Wanner, BL (2001) Conditional-replication, integration, excision, and retrieval plasmid-host systems for gene structure-function studies of bacteria. J. Bacteriol. 183 6384-93 PubMed
- ↑ 5.0 5.1 Stern, RJ et al. (1999) Conversion of dTDP-4-keto-6-deoxyglucose to free dTDP-4-keto-rhamnose by the rmIC gene products of Escherichia coli and Mycobacterium tuberculosis. Microbiology (Reading, Engl.) 145 ( Pt 3) 663-71 PubMed
- ↑ Lessard, IA et al. (1998) Homologs of the vancomycin resistance D-Ala-D-Ala dipeptidase VanX in Streptomyces toyocaensis, Escherichia coli and Synechocystis: attributes of catalytic efficiency, stereoselectivity and regulation with implications for function. Chem. Biol. 5 489-504 PubMed
- ↑ Datsenko, KA & Wanner, BL (2000) One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products. Proc. Natl. Acad. Sci. U.S.A. 97 6640-5 PubMed
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