Bacteria form surface-attached communities, known as biofilms, which are central to bacterial biology and how they affect us. Although surface-attached bacteria often experience strong chemical gradients, it remains unclear whether single cells can effectively perform chemotaxis on surfaces. Here we use microfluidic chemical gradients and massively parallel automated tracking to study the behavior of the pathogen Pseudomonas aeruginosa during early biofilm development. We show that individual cells can efficiently move toward chemoattractants using pili-based “twitching” motility and the Chp chemosensory system. Moreover, we discovered the behavioral mechanism underlying this surface chemotaxis: Cells reverse direction more frequently when ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
© 2018 Sheraton et al. Segregation of bacteria based on their metabolic activities in biofilms plays...
Twitching motility is a mode of surface translocation that is mediated by the extension and retracti...
Bacteria form surface-attached communities, known as biofilms, which are central to bacterial biolog...
Bacteria form surface-attached communities, known as biofilms, which are central to bacterial biolog...
AbstractBacterial biofilms are structured multicellular communities that are responsible for a broad...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
© 2020 American Chemical Society. Bacterial biofilms exhibit up to 1000 times greater resistance to ...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
Twitching motility-mediated biofilm expansion is a complex, multicellular behavior that enables the ...
Biofilms of Pseudomonas aeruginosa are ubiquitously found on surfaces of many medical devices, which...
Many bacteria actively bias their motility towards more favourable nutrient environments. In liquid,...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
Bacterial biofilms are known to cause millions of dollars in damage in the medical industry per year...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
© 2018 Sheraton et al. Segregation of bacteria based on their metabolic activities in biofilms plays...
Twitching motility is a mode of surface translocation that is mediated by the extension and retracti...
Bacteria form surface-attached communities, known as biofilms, which are central to bacterial biolog...
Bacteria form surface-attached communities, known as biofilms, which are central to bacterial biolog...
AbstractBacterial biofilms are structured multicellular communities that are responsible for a broad...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
© 2020 American Chemical Society. Bacterial biofilms exhibit up to 1000 times greater resistance to ...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
Twitching motility-mediated biofilm expansion is a complex, multicellular behavior that enables the ...
Biofilms of Pseudomonas aeruginosa are ubiquitously found on surfaces of many medical devices, which...
Many bacteria actively bias their motility towards more favourable nutrient environments. In liquid,...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
Bacterial biofilms are known to cause millions of dollars in damage in the medical industry per year...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
© 2018 Sheraton et al. Segregation of bacteria based on their metabolic activities in biofilms plays...
Twitching motility is a mode of surface translocation that is mediated by the extension and retracti...