Bacterial biofilms are structured multicellular communities that are responsible for a broad range of infections. Knowing how free-swimming bacteria adapt their motility mechanisms near a surface is crucial for understanding the transition from the planktonic to the biofilm phenotype. By translating microscopy movies into searchable databases of bacterial behavior and developing image-based search engines, we were able to identify fundamental appendage-specific mechanisms for the surface motility of Pseudomonas aeruginosa. Type IV pili mediate two surface motility mechanisms: horizontally oriented crawling, by which the bacterium moves lengthwise with high directional persistence, and vertically oriented walking, by which the bacteriu...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
mm an cros to i iate tion stan nis pili h. V ators that pull the bacterium along a surface (14,15). ...
Surface-associated lifestyles dominate in the bacterial world. Large multicellular assemblies, calle...
AbstractBacterial biofilms are structured multicellular communities that are responsible for a broad...
Bacterial biofilms are multicellular surface-bound communities with important hu-man health impacts ...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
Monotrichous bacteria on surfaces exhibit complex spinning movements. Such spinning motility is ofte...
Monotrichous bacteria on surfaces exhibit complex spinning movements. Such spinning motility is ofte...
Many aerobic microorganisms can colonize at the air-liquid interface and form a multicellular struct...
Prokaryotes have the ability to walk on surfaces using type IV pili (TFP), a motility mechanism know...
Prokaryotes have the ability to walk on surfaces using type IV pili (TFP), a motility mechanism know...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
mm an cros to i iate tion stan nis pili h. V ators that pull the bacterium along a surface (14,15). ...
Surface-associated lifestyles dominate in the bacterial world. Large multicellular assemblies, calle...
AbstractBacterial biofilms are structured multicellular communities that are responsible for a broad...
Bacterial biofilms are multicellular surface-bound communities with important hu-man health impacts ...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
Bacterial biofilms are structured microbial communities which are widespread both in nature and in c...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
1. Department of Bioengineering, California Nano Systems Institute,University of California, Los Ang...
Monotrichous bacteria on surfaces exhibit complex spinning movements. Such spinning motility is ofte...
Monotrichous bacteria on surfaces exhibit complex spinning movements. Such spinning motility is ofte...
Many aerobic microorganisms can colonize at the air-liquid interface and form a multicellular struct...
Prokaryotes have the ability to walk on surfaces using type IV pili (TFP), a motility mechanism know...
Prokaryotes have the ability to walk on surfaces using type IV pili (TFP), a motility mechanism know...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
Biofilm formation is a complex process involving various signaling pathways and changes in gene expr...
mm an cros to i iate tion stan nis pili h. V ators that pull the bacterium along a surface (14,15). ...
Surface-associated lifestyles dominate in the bacterial world. Large multicellular assemblies, calle...