Background: Microalgae are emerging as suitable feedstock for renewable biofuel production and providing a promising way to alleviate green house gas CO2. Characterizing the metabolic pathways involved in the biosynthesis of energy-rich compounds and their global regulation upon elevated CO2 is necessary to explore the mechanism underlying rapid growth and lipid accumulation, so as to realize the full potential of these organisms as energy resources. Results: In the present study, 2 and 5 % CO2 increased growth rate and lipid accumulation in autotrophically cultured green alga Coccomyxa subellipsoidea C-169. Overall biomass productivity as 222 mg L-1 day(-1) and fatty acid content as 48.5 % dry cell weight were attained in 2 % CO2, sugges...
Microalgae are a promising platform for the production of renewable fuels and oleochemicals. Despite...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Improving acid tolerance is pivotal to the development of microalgal feedstock for converting flue g...
Microalgae are renewable feedstock for sustainable biofuel production, cell factory for valuable che...
BackgroundIn industrial oleaginous microalgae such as Nannochloropsis spp., the key components of th...
As one of the promising species of microalgae for biofuel production, Chlorella vulgaris CS-42 was c...
Microalgae, such as Chlamydomonas reinhardtii, account for a large percentage of photosynthesis that...
Background: Numerous studies have shown that stress induction and genetic engineering can effectivel...
The mixed culture of microalgae and yeast has been confirmed to enhance many bioprocesses including ...
Abstract Background The biomass yield of Chlorella PY-ZU1 drastically increased when cultivated unde...
To enrich our knowledge of carbon dioxide (CO2)-concentrating mechanism (CCM) in eukaryotic algae, w...
The emission of carbon dioxide (CO2) to the atmosphere at an increasingly high rate is the primary c...
The realization of the environmental and economic impact that occurs from the release of carbon diox...
Jaeger D, Winkler A, Mussgnug JH, Kalinowski J, Goesmann A, Kruse O. Time-resolved transcriptome ana...
To reveal the molecular mechanisms of oleaginousness in microalgae, transcriptomic and lipidomic dyn...
Microalgae are a promising platform for the production of renewable fuels and oleochemicals. Despite...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Improving acid tolerance is pivotal to the development of microalgal feedstock for converting flue g...
Microalgae are renewable feedstock for sustainable biofuel production, cell factory for valuable che...
BackgroundIn industrial oleaginous microalgae such as Nannochloropsis spp., the key components of th...
As one of the promising species of microalgae for biofuel production, Chlorella vulgaris CS-42 was c...
Microalgae, such as Chlamydomonas reinhardtii, account for a large percentage of photosynthesis that...
Background: Numerous studies have shown that stress induction and genetic engineering can effectivel...
The mixed culture of microalgae and yeast has been confirmed to enhance many bioprocesses including ...
Abstract Background The biomass yield of Chlorella PY-ZU1 drastically increased when cultivated unde...
To enrich our knowledge of carbon dioxide (CO2)-concentrating mechanism (CCM) in eukaryotic algae, w...
The emission of carbon dioxide (CO2) to the atmosphere at an increasingly high rate is the primary c...
The realization of the environmental and economic impact that occurs from the release of carbon diox...
Jaeger D, Winkler A, Mussgnug JH, Kalinowski J, Goesmann A, Kruse O. Time-resolved transcriptome ana...
To reveal the molecular mechanisms of oleaginousness in microalgae, transcriptomic and lipidomic dyn...
Microalgae are a promising platform for the production of renewable fuels and oleochemicals. Despite...
Diatoms are eukaryotic microalgae that are responsible for up to 40% of the ocean's primary producti...
Improving acid tolerance is pivotal to the development of microalgal feedstock for converting flue g...