International audienceDiatoms are major primary producers in polar environments where they can actively grow under extremely variable conditions. Integrative modeling using a genome-scale model (GSM) is a powerful approach to decipher the complex interactions between components of diatom metabolism and can provide insights into metabolic mechanisms underlying their evolutionary success in polar ecosystems. We developed the first GSM for a polar diatom, Fragilariopsis cylindrus, which enabled us to study its metabolic robustness using sensitivity analysis. We find that the predicted growth rate was robust to changes in all model parameters (i.e., cell biochemical composition) except the carbon uptake rate. Constraints on total cellular carbo...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are unicellular photosynthetic eukaryotic algae that account for 40% of the marine primary p...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Diatoms are major primary producers in polar environments where they can actively grow under extreme...
Diatoms are major primary producers in polar environments where they can actively grow under extreme...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
The polar regions represent two of the most extreme environments on Earth, with sub-zero temperature...
Diatoms are unicellular photosynthetic algae known to secrete organic matter that fuels secondary pr...
AbstractA major challenge in the development of microalgal strains for large-scale production is the...
Diatoms (Bacillarophyceae) are photosynthetic unicellular microalgae that have risen to ecological p...
Diatoms (Bacillarophyceae) are photosynthetic unicellular microalgae that have risen to ecological p...
© 2015 The Authors The Plant Journal. Diatoms (Bacillarophyceae) are photosynthetic unicellular micr...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are unicellular photosynthetic eukaryotic algae that account for 40% of the marine primary p...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Diatoms are major primary producers in polar environments where they can actively grow under extreme...
Diatoms are major primary producers in polar environments where they can actively grow under extreme...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
The polar regions represent two of the most extreme environments on Earth, with sub-zero temperature...
Diatoms are unicellular photosynthetic algae known to secrete organic matter that fuels secondary pr...
AbstractA major challenge in the development of microalgal strains for large-scale production is the...
Diatoms (Bacillarophyceae) are photosynthetic unicellular microalgae that have risen to ecological p...
Diatoms (Bacillarophyceae) are photosynthetic unicellular microalgae that have risen to ecological p...
© 2015 The Authors The Plant Journal. Diatoms (Bacillarophyceae) are photosynthetic unicellular micr...
Diatoms are eukaryotic microalgae that contain genes from various sources, including bacteria and th...
Diatoms are unicellular photosynthetic eukaryotic algae that account for 40% of the marine primary p...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...