Bacterial dispersal, the movement of cells spanning diverse physical scales and environments, has been long investigated owing to its far-reaching ramifications in the ecology and evolution of bacterial species and their consortia. A major proportion of bacterial species are surface associated, yet if and how they disperse, specifically during the early stages of biofilm formation, remains to be understood. While physical vectors like fluid flow drive dispersal across large scales, surface-associated cells may benefit from the active biomechanical forces to navigate locally within a colony. Here, by analyzing sessile bacterial colonies, we study how cells disperse over generations due to the growth-induced forces under different conditions....
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
Bacterial habitats, such as soil and the gut, are structured at the micrometer scale. Important aspe...
Bacterial dispersal, the movement of cells spanning diverse physical scales and environments, has be...
Bacterial dispersal, the movement of cells spanning diverse physical scales and environments, has be...
A key feature of biological systems is the emergence of higher-order structures from interacting uni...
Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known that th...
Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known that th...
Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known that th...
Most bacteria live in colonies, where they often express different cell types. The ecological signif...
<div><p>Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known...
Most bacteria live in colonies, where they often express different cell types. The ecological signif...
<div><p>Most bacteria live in colonies, where they often express different cell types. The ecologica...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
Bacterial habitats, such as soil and the gut, are structured at the micrometer scale. Important aspe...
Bacterial dispersal, the movement of cells spanning diverse physical scales and environments, has be...
Bacterial dispersal, the movement of cells spanning diverse physical scales and environments, has be...
A key feature of biological systems is the emergence of higher-order structures from interacting uni...
Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known that th...
Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known that th...
Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known that th...
Most bacteria live in colonies, where they often express different cell types. The ecological signif...
<div><p>Biofilms are microbial collectives that occupy a diverse array of surfaces. It is well known...
Most bacteria live in colonies, where they often express different cell types. The ecological signif...
<div><p>Most bacteria live in colonies, where they often express different cell types. The ecologica...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
In nature, most bacteria live in surface-attached sedentary communities known as biofilms. Biofilms ...
Bacterial habitats, such as soil and the gut, are structured at the micrometer scale. Important aspe...