Marine Synechococcus is ubiquitous in aquatic environments. However, distinct phylogenetic lineages of this genus have a complex ecological distribution that is not fully explained. Here, we undertook a broad study of the phosphorus (P)-related behavior of marine Synechococcus isolates from all previously described ribotypes (sensu Fuller et al. 2003). A wide variability in P-related physiology was noted among members of this genus, particularly in the utilization of organic P sources. However, some characteristics (e.g., cell size change during P limitation and the ability to accumulate polyphosphate) were largely consistent with their phylogenetic lineage and inferred ecology, with clear distinctions between oligotrophic, mesotrophic, and...
Phosphate uptake kinetics of Synechococcus sp. WH7803 and Thalassiosira weissflogii were studied in ...
The cyanobacteria inhabit every illuminated environment on Earth, from polar lakes to desert crusts ...
The surface waters of oligotrophic oceans have chronically low phosphate (Pi) concentrations, which ...
Marine Synechococcus is ubiquitous in aquatic environments. However, distinct phylogenetic lineages ...
Prochlorococcus and Synechococcus are major prokaryotic primary producers in the oligotrophic oceans...
Prochlorococcus and Synechococcus are major prokaryotic primary producers in the oligotrophic oceans...
Prochlorococcus and Synechococcus are major prokaryotic primary producers in the oligotrophic oceans...
Phosphate (P) is an important nutrient potentially limiting for primary productivity, yet, we curren...
Phosphate (P) is an important nutrient potentially limiting for primary productivity, yet, we curren...
Primary productivity of open ocean environments, such as those inhabited by marine picocyanobacteria...
Crocosphaera watsonii is a marine cyanobacterium that frequently inhabits low phosphate environments...
Phycoerythrin-containing Synechococcus species are considered to be major primary producers in nutri...
The cyanobacterium Prochlorococcus is the numerically dominant phototroph in the oligotrophic oceans...
The cyanobacterium Prochlorococcus is the numerically dominant phototroph in the oligotrophic oceans...
Crocosphaera watsonii is a marine cyanobacterium that frequently inhabits low phosphate environments...
Phosphate uptake kinetics of Synechococcus sp. WH7803 and Thalassiosira weissflogii were studied in ...
The cyanobacteria inhabit every illuminated environment on Earth, from polar lakes to desert crusts ...
The surface waters of oligotrophic oceans have chronically low phosphate (Pi) concentrations, which ...
Marine Synechococcus is ubiquitous in aquatic environments. However, distinct phylogenetic lineages ...
Prochlorococcus and Synechococcus are major prokaryotic primary producers in the oligotrophic oceans...
Prochlorococcus and Synechococcus are major prokaryotic primary producers in the oligotrophic oceans...
Prochlorococcus and Synechococcus are major prokaryotic primary producers in the oligotrophic oceans...
Phosphate (P) is an important nutrient potentially limiting for primary productivity, yet, we curren...
Phosphate (P) is an important nutrient potentially limiting for primary productivity, yet, we curren...
Primary productivity of open ocean environments, such as those inhabited by marine picocyanobacteria...
Crocosphaera watsonii is a marine cyanobacterium that frequently inhabits low phosphate environments...
Phycoerythrin-containing Synechococcus species are considered to be major primary producers in nutri...
The cyanobacterium Prochlorococcus is the numerically dominant phototroph in the oligotrophic oceans...
The cyanobacterium Prochlorococcus is the numerically dominant phototroph in the oligotrophic oceans...
Crocosphaera watsonii is a marine cyanobacterium that frequently inhabits low phosphate environments...
Phosphate uptake kinetics of Synechococcus sp. WH7803 and Thalassiosira weissflogii were studied in ...
The cyanobacteria inhabit every illuminated environment on Earth, from polar lakes to desert crusts ...
The surface waters of oligotrophic oceans have chronically low phosphate (Pi) concentrations, which ...