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Cellular and Molecular Life Sciences : CMLS
|
February 6, 2003
The clostridial mobilisable transposons
V Adams, D Lyras, K A Farrow, et al.
Plasmid
|
November 1, 1994
The surface exclusion system of RP1: investigation of the roles of trbJ and trbK in the surface exclusion, transfer, and slow-growth phenotypes
D Lyras, A W Chan, J McFarlane, et al.
Journal of Bacteriology
|
November 22, 2001
Transcriptional analysis of the tet(P) operon from Clostridium perfringens
P A Johanesen, D Lyras, T L Bannam, et al.
Molecular Microbiology
|
January 1, 1994
The Clostridium perfringens Tet P determinant comprises two overlapping genes: tetA(P), which mediates active tetracycline efflux, and tetB(P), which is related to the ribosomal protection family of tetracycline-resistance determinants
J Sloan, L M McMurry, D Lyras, et al.
Journal of Bacteriology
|
June 13, 2000
Characterization of the ends and target sites of the novel conjugative transposon Tn5397 from Clostridium difficile: excision and circularization is mediated by the large resolvase, TndX
H Wang, A P Roberts, D Lyras, et al.
Antimicrobial Agents and Chemotherapy
|
July 14, 1998
Chloramphenicol resistance in Clostridium difficile is encoded on Tn4453 transposons that are closely related to Tn4451 from Clostridium perfringens
D Lyras, C Storie, A S Huggins, et al.
Molecular Ecology Resources
|
March 3, 2015
The Quantification of Representative Sequences pipeline for amplicon sequencing: case study on within-population ITS1 sequence variation in a microparasite infecting Daphnia
E González-Tortuero, J Rusek, A Petrusek, et al.
Infection and Immunity
|
May 1, 2013
Epsilon toxin is essential for the virulence of Clostridium perfringens type D infection in sheep, goats, and mice
J P Garcia, V Adams, J Beingesser, et al.
Anaerobe
|
August 5, 2019
In silico, in vitro and in vivo analysis of putative virulence factors identified in large clostridial toxin-negative, binary toxin- producing C. difficile strains
G O Androga, D R Knight, M L Hutton, et al.
The New England Journal of Medicine
|
November 26, 1999
Epidemics of diarrhea caused by a clindamycin-resistant strain of Clostridium difficile in four hospitals
S Johnson, M H Samore, K A Farrow, et al.
Page
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Search research articles
Search
Showing results (11-20 of 20) with videos related to
Sort By:
Page
of 2
You have reached the last page of results.
This site can display upto 20 results.
Cellular and Molecular Life Sciences : CMLS
|
February 6, 2003
The clostridial mobilisable transposons
V Adams, D Lyras, K A Farrow, et al.
Plasmid
|
November 1, 1994
The surface exclusion system of RP1: investigation of the roles of trbJ and trbK in the surface exclusion, transfer, and slow-growth phenotypes
D Lyras, A W Chan, J McFarlane, et al.
Journal of Bacteriology
|
November 22, 2001
Transcriptional analysis of the tet(P) operon from Clostridium perfringens
P A Johanesen, D Lyras, T L Bannam, et al.
Molecular Microbiology
|
January 1, 1994
The Clostridium perfringens Tet P determinant comprises two overlapping genes: tetA(P), which mediates active tetracycline efflux, and tetB(P), which is related to the ribosomal protection family of tetracycline-resistance determinants
J Sloan, L M McMurry, D Lyras, et al.
Journal of Bacteriology
|
June 13, 2000
Characterization of the ends and target sites of the novel conjugative transposon Tn5397 from Clostridium difficile: excision and circularization is mediated by the large resolvase, TndX
H Wang, A P Roberts, D Lyras, et al.
Antimicrobial Agents and Chemotherapy
|
July 14, 1998
Chloramphenicol resistance in Clostridium difficile is encoded on Tn4453 transposons that are closely related to Tn4451 from Clostridium perfringens
D Lyras, C Storie, A S Huggins, et al.
Molecular Ecology Resources
|
March 3, 2015
The Quantification of Representative Sequences pipeline for amplicon sequencing: case study on within-population ITS1 sequence variation in a microparasite infecting Daphnia
E González-Tortuero, J Rusek, A Petrusek, et al.
Infection and Immunity
|
May 1, 2013
Epsilon toxin is essential for the virulence of Clostridium perfringens type D infection in sheep, goats, and mice
J P Garcia, V Adams, J Beingesser, et al.
Anaerobe
|
August 5, 2019
In silico, in vitro and in vivo analysis of putative virulence factors identified in large clostridial toxin-negative, binary toxin- producing C. difficile strains
G O Androga, D R Knight, M L Hutton, et al.
The New England Journal of Medicine
|
November 26, 1999
Epidemics of diarrhea caused by a clindamycin-resistant strain of Clostridium difficile in four hospitals
S Johnson, M H Samore, K A Farrow, et al.
Page
of 2