International audienceUpon phosphorus (P) deficiency, marine phytoplankton reduce their requirements for P by replacing membrane phospholipids with alternative non-phosphorus lipids. It was very recently demonstrated that a SAR11 isolate also shares this capability when phosphate starved in culture. Yet, the extent to which this process occurs in other marine heterotrophic bacteria and in the natural environment is unknown. Here, we demonstrate that the substitution of membrane phospholipids for a variety of non-phosphorus lipids is a conserved response to P deficiency among phylogenetically diverse marine heterotrophic bacteria, including members of the Alphaproteobacteria and Flavobacteria. By deletion mutagenesis and complementation in t...
Marine microorganisms employ multiple strategies to cope with transient and persistent nutrient limi...
Phytoplankton replace phosphorus-containing lipids (P-lipids) with non-P analogues, boosting growth ...
In low-phosphorus (P) marine systems, phytoplankton replace membrane phospholipids with non-phosphor...
International audienceUpon phosphorus (P) deficiency, marine phytoplankton reduce their requirements...
International audienceUpon phosphorus (P) deficiency, marine phytoplankton reduce their requirements...
Sebastián, Marta ... et al.-- 11 pages, 5 figures, supplementary Information http://www.nature.com/i...
Upon phosphorus (P) deficiency, marine phytoplankton reduce their requirements for P by replacing me...
© The International Society for Microbial Ecology, 2015. This article is distributed under the terms...
Aquatic Sciences Meeting, Aquatic Sciences: Global And Regional Perspectives - North Meets South, 22...
Phosphorus (P) is a key nutrient limiting bacterial growth and primary production in the oceans. Uns...
Phosphorus (P) is a key nutrient limiting bacterial growth and primary production in the oceans. Uns...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
Marine microorganisms employ multiple strategies to cope with transient and persistent nutrient limi...
Phytoplankton replace phosphorus-containing lipids (P-lipids) with non-P analogues, boosting growth ...
In low-phosphorus (P) marine systems, phytoplankton replace membrane phospholipids with non-phosphor...
International audienceUpon phosphorus (P) deficiency, marine phytoplankton reduce their requirements...
International audienceUpon phosphorus (P) deficiency, marine phytoplankton reduce their requirements...
Sebastián, Marta ... et al.-- 11 pages, 5 figures, supplementary Information http://www.nature.com/i...
Upon phosphorus (P) deficiency, marine phytoplankton reduce their requirements for P by replacing me...
© The International Society for Microbial Ecology, 2015. This article is distributed under the terms...
Aquatic Sciences Meeting, Aquatic Sciences: Global And Regional Perspectives - North Meets South, 22...
Phosphorus (P) is a key nutrient limiting bacterial growth and primary production in the oceans. Uns...
Phosphorus (P) is a key nutrient limiting bacterial growth and primary production in the oceans. Uns...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
International audienceMolecular mechanisms of phosphorus (P) limitation are of great interest for un...
Marine microorganisms employ multiple strategies to cope with transient and persistent nutrient limi...
Phytoplankton replace phosphorus-containing lipids (P-lipids) with non-P analogues, boosting growth ...
In low-phosphorus (P) marine systems, phytoplankton replace membrane phospholipids with non-phosphor...