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Molecular Ecology|October 15, 2013
Features governing symbiont persistence in the squid-vibrio associationEric J Koch, Tim Miyashiro, Margaret J McFall-Ngai, et al.
Molecular Microbiology|October 14, 2011
The N-acetyl-D-glucosamine repressor NagC of Vibrio fischeri facilitates colonization of Euprymna scolopesTim Miyashiro, Will Klein, Dane Oehlert, et al.
Microbiologyopen|September 27, 2014
The putative oligosaccharide translocase SypK connects biofilm formation with quorum signaling in Vibrio fischeriTim Miyashiro, Dane Oehlert, Valerie A Ray, et al.
Microbiology Resource Announcements|May 18, 2019
Draft Genome Sequences of Type VI Secretion System-Encoding Vibrio fischeri Strains FQ-A001 and ES401Katherine M Bultman, Andrew G Cecere, Tim Miyashiro, et al.
Journal of Bacteriology|January 23, 2020
The Bacterial Enhancer Binding Protein VasH Promotes Expression of a Type VI Secretion System in Vibrio fischeri during SymbiosisKirsten R Guckes, Andrew G Cecere, Amanda L Williams, et al.
Molecular Microbiology|December 4, 2018
Sulfur availability for Vibrio fischeri growth during symbiosis establishment depends on biogeography within the squid light organNathan P Wasilko, Jessie Larios-Valencia, Caroline H Steingard, et al.
Applied and Environmental Microbiology|March 27, 2016
Intraspecific Competition Impacts Vibrio fischeri Strain Diversity during Initial Colonization of the Squid Light OrganYan Sun, Elijah D LaSota, Andrew G Cecere, et al.
Journal of Bacteriology|July 24, 2019
Incompatibility of Vibrio fischeri Strains during Symbiosis Establishment Depends on Two Functionally Redundant <i>hcp</i> GenesKirsten R Guckes, Andrew G Cecere, Nathan P Wasilko, et al.
Proceedings of the National Academy of Sciences of the United States of America|August 22, 2018
Bacterial symbionts use a type VI secretion system to eliminate competitors in their natural hostLauren Speare, Andrew G Cecere, Kirsten R Guckes, et al.
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