Unicellular cyanobacteria have recently been recognized for their contributions to nitrogen fixation in marine environments, a function previously thought to be filled mainly by filamentous cyanobacteria such asTrichodesmium. To begin a systems level analysis of the physiology of the unicellular N2-fixing microbes, we have sequenced to completion the genome of Cyanothece sp. ATCC 51142, the first such organism.Cyanothece 51142 performs oxygenic photosynthesis and nitrogen fixation, separating these two incompatible processes temporally within the same cell, while concomitantly accumulating metabolic products in inclusion bodies that are later mobilized as part of a robust diurnal cycle. The 5,460,377-bp Cyanothece51142 genome has a unique a...
Many cyanobacteria are capable of utilizing light energy for nitrogen fixation. As a by-product of t...
The filamentous cyanobacterium Nostoc PCC 7120 is able to convert dinitrogen to ammonia in the absen...
We analyzed the metabolic rhythms and differential gene expression in the unicellular, diazotrophic ...
Unicellular cyanobacteria have recently been recognized for their contributions to nitrogen fixation...
The genus Cyanothece comprises unicellular cyanobacteria that are morphologically diverse and ecolog...
Cyanobacteria is a remarkable group of prokaryotic photosynthetic microorganisms, with several gener...
Cultures of the cyanobacterial genus Cyanothece have been shown to produce high levels of biohydroge...
Cyanothece sp. strain ATCC 51142 is a unicellular, diazotrophic cyanobacterium that demonstrates ext...
Discrepancies between estimates of oceanic N2 fixation and nitrogen (N) losses through denitrificati...
Background Cyanothece sp. PCC 7822 is an excellent cyanobacterial model organism with great potentia...
Symbiosis between a marine alga and a N2-fixing cyanobacterium (Cyanobacterium UCYN-A) is geographic...
The manipulation of gene activity in cyanobacteria offers the possibility of producing energy and ma...
The diversity of nitrogenase genes in a marine cyanobacterial mat was investigated through amplifica...
Cyanobacteria are photosynthetic, gram-negative prokaryotes, which facilitated Earth\u27s atmospheri...
Background: Many cyanobacteria are capable of fixing atmospheric nitrogen, playing a crucial role in...
Many cyanobacteria are capable of utilizing light energy for nitrogen fixation. As a by-product of t...
The filamentous cyanobacterium Nostoc PCC 7120 is able to convert dinitrogen to ammonia in the absen...
We analyzed the metabolic rhythms and differential gene expression in the unicellular, diazotrophic ...
Unicellular cyanobacteria have recently been recognized for their contributions to nitrogen fixation...
The genus Cyanothece comprises unicellular cyanobacteria that are morphologically diverse and ecolog...
Cyanobacteria is a remarkable group of prokaryotic photosynthetic microorganisms, with several gener...
Cultures of the cyanobacterial genus Cyanothece have been shown to produce high levels of biohydroge...
Cyanothece sp. strain ATCC 51142 is a unicellular, diazotrophic cyanobacterium that demonstrates ext...
Discrepancies between estimates of oceanic N2 fixation and nitrogen (N) losses through denitrificati...
Background Cyanothece sp. PCC 7822 is an excellent cyanobacterial model organism with great potentia...
Symbiosis between a marine alga and a N2-fixing cyanobacterium (Cyanobacterium UCYN-A) is geographic...
The manipulation of gene activity in cyanobacteria offers the possibility of producing energy and ma...
The diversity of nitrogenase genes in a marine cyanobacterial mat was investigated through amplifica...
Cyanobacteria are photosynthetic, gram-negative prokaryotes, which facilitated Earth\u27s atmospheri...
Background: Many cyanobacteria are capable of fixing atmospheric nitrogen, playing a crucial role in...
Many cyanobacteria are capable of utilizing light energy for nitrogen fixation. As a by-product of t...
The filamentous cyanobacterium Nostoc PCC 7120 is able to convert dinitrogen to ammonia in the absen...
We analyzed the metabolic rhythms and differential gene expression in the unicellular, diazotrophic ...