The bacterium Bacillus subtilis produces the molecule surfactin, which is known to enhance the spreading of multicellular colonies on nutrient substrates by lowering the surface tension of the surrounding fluid, and to aid in the formation of aerial structures. Here we present experiments and a mathematical model that demonstrate how the differential accumulation rates induced by the geometry of the bacterial film give rise to surfactant waves. The spreading flux increases with increasing biofilm viscosity. Community associations are known to protect bacterial populations from environmental challenges such as predation, heat, or chemical stresses, and enable digestion of a broader range of nutritive sources. This study provides evidence of ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
Bacteria grow in either planktonic form or as biofilms, which are attached to either inert or biolog...
Several pathogenic bacterial species that are found in the environment can form complex multicellula...
Bacterial biofilms are organized communities of cells living in association with surfaces. The hallm...
AbstractSwarming bacteria move on agar surfaces in groups, using flagella as motive organelles. Moti...
Hennes et al. (1) report on the collective slipping ofBacillus subtilis colonies across the agar sur...
Many bacteria on earth exist in surface-attached communities known as biofilms. These films are resp...
AbstractThis work describes a new, to our knowledge, strategy of efficient colonization and communit...
Robust colony formation by Bacillus subtilis is recognized as one of the sessile, multicellular life...
Robust colony formation by Bacillus subtilis is recognized as one of the sessile, multicellular life...
Many bacteria on earth exist in surface-attached communities known as biofilms. These films are resp...
Swarming and biofilm formation are two modes of bacterial collective behavior that en- able cells to...
Bacteria in nature are usually found in complex multicellular structures, called biofilms. One commo...
Biofilms are ubiquitous macro-colonies of bacteria that develop at various interfaces (solid- liquid...
Bacteria colonise interfaces by the formation of dense aggregates. In this thesis, we develop and an...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
Bacteria grow in either planktonic form or as biofilms, which are attached to either inert or biolog...
Several pathogenic bacterial species that are found in the environment can form complex multicellula...
Bacterial biofilms are organized communities of cells living in association with surfaces. The hallm...
AbstractSwarming bacteria move on agar surfaces in groups, using flagella as motive organelles. Moti...
Hennes et al. (1) report on the collective slipping ofBacillus subtilis colonies across the agar sur...
Many bacteria on earth exist in surface-attached communities known as biofilms. These films are resp...
AbstractThis work describes a new, to our knowledge, strategy of efficient colonization and communit...
Robust colony formation by Bacillus subtilis is recognized as one of the sessile, multicellular life...
Robust colony formation by Bacillus subtilis is recognized as one of the sessile, multicellular life...
Many bacteria on earth exist in surface-attached communities known as biofilms. These films are resp...
Swarming and biofilm formation are two modes of bacterial collective behavior that en- able cells to...
Bacteria in nature are usually found in complex multicellular structures, called biofilms. One commo...
Biofilms are ubiquitous macro-colonies of bacteria that develop at various interfaces (solid- liquid...
Bacteria colonise interfaces by the formation of dense aggregates. In this thesis, we develop and an...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
Bacteria grow in either planktonic form or as biofilms, which are attached to either inert or biolog...
Several pathogenic bacterial species that are found in the environment can form complex multicellula...