The formation of a pattern of differentiated cells from a group of seemingly equivalent, undifferentiated cells is a central paradigm of developmental biology. Several species of filamentous cyanobacteria differentiate nitrogen-fixing heterocysts at regular intervals along unbranched filaments to form a periodic pattern of two distinct cell types. This patterning has been used to exemplify application of the activator-inhibitor model to periodic patterns in biology. The activator-inhibitor model proposes that activators and inhibitors of differentiation diffuse from source cells to form concentration gradients that in turn mediate patterning, but direct visualization of concentration gradients of activators and inhibitors has been difficult...
Thesis (Ph.D.)--University of Hawaii at Manoa, 2008.The goal of this research was to understand regu...
The hetR, patA, hetN, and patS genes are part of a regulatory network that regulates the differentia...
In the filamentous cyanobacterium, Anabaena sp. PCC 7120, single heterocysts differentiate at semi-r...
In the absence of sufficient combined nitrogen, some filamentous cyanobacteria differentiate nitroge...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
AbstractWe have quantitatively modeled heterocyst differentiation after fixed nitrogen step-down in ...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
The filamentous cyanobacterium Anabaena sp. strain PCC 7120 forms nitrogen-fixing heterocysts in a p...
AbstractWe have quantitatively modeled heterocyst differentiation after fixed nitrogen step-down in ...
The Anabaena genus is a model organism of filamentous cyanobacteria whose vegetative cells can diffe...
Under nitrogen deprivation, filaments of the cyanobacterium Anabaena undergo a process of developmen...
The Anabaena genus is a model organism of filamentous cyanobacteria whose vegetative cells can diffe...
Thesis (Ph.D.)--University of Hawaii at Manoa, 2008.The goal of this research was to understand regu...
The hetR, patA, hetN, and patS genes are part of a regulatory network that regulates the differentia...
In the filamentous cyanobacterium, Anabaena sp. PCC 7120, single heterocysts differentiate at semi-r...
In the absence of sufficient combined nitrogen, some filamentous cyanobacteria differentiate nitroge...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
AbstractWe have quantitatively modeled heterocyst differentiation after fixed nitrogen step-down in ...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
Cyanobacteria forming one-dimensional filaments are paradigmaticmodel organisms of the transition be...
The filamentous cyanobacterium Anabaena sp. strain PCC 7120 forms nitrogen-fixing heterocysts in a p...
AbstractWe have quantitatively modeled heterocyst differentiation after fixed nitrogen step-down in ...
The Anabaena genus is a model organism of filamentous cyanobacteria whose vegetative cells can diffe...
Under nitrogen deprivation, filaments of the cyanobacterium Anabaena undergo a process of developmen...
The Anabaena genus is a model organism of filamentous cyanobacteria whose vegetative cells can diffe...
Thesis (Ph.D.)--University of Hawaii at Manoa, 2008.The goal of this research was to understand regu...
The hetR, patA, hetN, and patS genes are part of a regulatory network that regulates the differentia...
In the filamentous cyanobacterium, Anabaena sp. PCC 7120, single heterocysts differentiate at semi-r...