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1 e same plasmid lacking BLIP had no effect on ampicillin resistance.
2 vector into an identical vector, except with ampicillin resistance.
3 r cefotaxime resistance, but they compromise ampicillin resistance.
4 while maintaining the other copy to preserve ampicillin resistance.
5 utility as a surrogate screening reagent for ampicillin resistance.
6 ase was deleted such that it does not confer ampicillin resistance.
7 eplicon was used to transform C. burnetii to ampicillin resistance.
8 cherichiacoli, and mutants were selected for ampicillin resistance.
9 Negative predictive values were 92.8% for ampicillin resistance (100% for Escherichia coli), 93.4%
12 sposon was constructed containing an ori, an ampicillin resistance (Ampr) gene, a multi-cloning site
15 synergistically stimulated the selection of ampicillin resistance and the cross-resistance to other
16 under selection for the wild-type function (ampicillin resistance) and for a new function (cefotaxim
17 erial polylinker vectors derived from pUC21 (ampicillin resistance) and pUK21 (kanamycin resistance).
19 cal plasmid carrying bla(TEM) (which encodes ampicillin resistance), aphA1-Iab (which encodes kanamyc
20 rs conferring lactose utilization (Lac+) and ampicillin resistance (ApR); recombination generates Lac
21 /ml), 7/77 isolates tested were resistant to ampicillin (resistance breakpoint >/= 2 mug/ml), 4/242 i
23 the river water; synthetic DNA containing an ampicillin resistance gene (bla) from cloning vectors wa
24 ss this, we corrected the orientation of the ampicillin resistance gene and its promoter in a new pla
25 We treated plasmid pWH1266, which contains ampicillin resistance gene blaTEM-1 and tetracycline res
26 a coli about 2-fold over controls, where the ampicillin resistance gene is expressed in the bacteria.
27 oli with derivatives of pUC19 (harboring the ampicillin resistance gene) and pACYC184 (harboring the
28 ositioned nucleosomes (in the vicinity of an ampicillin resistance gene) cytidine deaminations occur
30 charge and polarity effects on the level of ampicillin resistance imparted on Escherichia coli (E. c
31 sal association of vancomycin and high-level ampicillin resistance in clinical E. faecium strains.
33 media with D-serine, and frdD V111D confers ampicillin resistance in the presence of ampC by modifyi
35 th high-level aminoglycoside (gentamicin) or ampicillin resistance included prior hospitalization and
36 n distant from the active site that enhanced ampicillin resistance levels and increased protein expre
37 The L201P substitution also increases the ampicillin resistance levels and restores expression lev
38 second site mutations that partially restore ampicillin resistance levels conferred by an R244A activ
42 the BACTEC method, accurately predicted the ampicillin resistance of the N. nova isolates tested, al
46 y of the common plasmid vectors that provide ampicillin resistance through constitutive expression an
50 d the gene for beta-lactamase, which confers ampicillin resistance to the host bacterium and provides
51 xime-resistant plasmid maintained sufficient ampicillin resistance to tolerate the concentration of a
52 quencing of resistant isolates revealed that ampicillin resistance was acquired via a combination of
53 ants were tested in the strain, the level of ampicillin resistance was proportional to the K(i) of th
54 this strain resulted in a large decrease in ampicillin resistance, while introduction of the same pl
56 lacZ) and plasmid-encoded genes (mCherry and ampicillin resistance) without perturbation of the surro
57 sted were identified in the library, namely, ampicillin resistance, zwittermicin A resistance, esculi