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Bridget N J Watson

Showing results (1-10 of 13) with videos related to

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Nature|January 17, 2020
The arms race between bacteria and their phage foesHannah G Hampton, Bridget N J Watson, Peter C Fineran
Mbio|February 15, 2018
CRISPR-Cas-Mediated Phage Resistance Enhances Horizontal Gene Transfer by TransductionBridget N J Watson, Raymond H J Staals, Peter C Fineran
Cell Host & Microbe|May 13, 2021
Coevolution between bacterial CRISPR-Cas systems and their bacteriophagesBridget N J Watson, Jurre A Steens, Raymond H J Staals, et al.
FEBS Letters|December 31, 2013
The succinate dehydrogenase assembly factor, SdhE, is required for the flavinylation and activation of fumarate reductase in bacteriaMatthew B McNeil, Hannah G Hampton, Kiel J Hards, et al.
The ISME Journal|June 19, 2024
Conditions for the spread of CRISPR-Cas immune systems into bacterial populationsJosie F K Elliott, David V McLeod, Tiffany B Taylor, et al.
Nature Communications|December 5, 2019
Type I-F CRISPR-Cas resistance against virulent phages results in abortive infection and provides population-level immunityBridget N J Watson, Reuben B Vercoe, George P C Salmond, et al.
Microbiology (Reading, England)|July 7, 2023
Decolonizing drug-resistant <i>E. coli</i> with phage and probiotics: breaking the frequency-dependent dominance of residentsJessica H Forsyth, Natalie L Barron, Lucy Scott, et al.
Nature Microbiology|August 31, 2016
Inactivation of CRISPR-Cas systems by anti-CRISPR proteins in diverse bacterial speciesApril Pawluk, Raymond H J Staals, Corinda Taylor, et al.
Nature Communications|April 5, 2025
Global structural survey of the flagellotropic myophage φTE infecting agricultural pathogen Pectobacterium atrosepticumJames Hodgkinson-Bean, Rafael Ayala, Nadishka Jayawardena, et al.
Nature|January 24, 2020
Targeting of temperate phages drives loss of type I CRISPR-Cas systemsClare Rollie, Anne Chevallereau, Bridget N J Watson, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Nature|January 17, 2020
The arms race between bacteria and their phage foesHannah G Hampton, Bridget N J Watson, Peter C Fineran
Mbio|February 15, 2018
CRISPR-Cas-Mediated Phage Resistance Enhances Horizontal Gene Transfer by TransductionBridget N J Watson, Raymond H J Staals, Peter C Fineran
Cell Host & Microbe|May 13, 2021
Coevolution between bacterial CRISPR-Cas systems and their bacteriophagesBridget N J Watson, Jurre A Steens, Raymond H J Staals, et al.
FEBS Letters|December 31, 2013
The succinate dehydrogenase assembly factor, SdhE, is required for the flavinylation and activation of fumarate reductase in bacteriaMatthew B McNeil, Hannah G Hampton, Kiel J Hards, et al.
The ISME Journal|June 19, 2024
Conditions for the spread of CRISPR-Cas immune systems into bacterial populationsJosie F K Elliott, David V McLeod, Tiffany B Taylor, et al.
Nature Communications|December 5, 2019
Type I-F CRISPR-Cas resistance against virulent phages results in abortive infection and provides population-level immunityBridget N J Watson, Reuben B Vercoe, George P C Salmond, et al.
Microbiology (Reading, England)|July 7, 2023
Decolonizing drug-resistant <i>E. coli</i> with phage and probiotics: breaking the frequency-dependent dominance of residentsJessica H Forsyth, Natalie L Barron, Lucy Scott, et al.
Nature Microbiology|August 31, 2016
Inactivation of CRISPR-Cas systems by anti-CRISPR proteins in diverse bacterial speciesApril Pawluk, Raymond H J Staals, Corinda Taylor, et al.
Nature Communications|April 5, 2025
Global structural survey of the flagellotropic myophage φTE infecting agricultural pathogen Pectobacterium atrosepticumJames Hodgkinson-Bean, Rafael Ayala, Nadishka Jayawardena, et al.
Nature|January 24, 2020
Targeting of temperate phages drives loss of type I CRISPR-Cas systemsClare Rollie, Anne Chevallereau, Bridget N J Watson, et al.
Pageof 2