Auxenochlorella protothecoides is a known thiamine auxotroph but our past work has shown that it can synthesize thiamine if provided with the precursor molecule 4-amino-5-hydroxymethyl-2-methylpyrimidine (HMP). Partial thiamine auxotrophy is common in microalgae with important ramifications for global phytoplankton productivity as well as engineering applications of algae. While thiamine deficiency can greatly depress algae growth and lipid content, the detailed metabolic impacts of thiamine deficiency are not well understood. We used metabolomics to study the response to thiamine-limited and replete conditions in mixotrophic A. protothecoides. We also investigated the impacts of exogenous HMP addition and the use of spent medium from anoth...
Microalgae are a promising feedstock for biofuel production. Microalgal metabolic pathways are heavi...
Not AvailableThe genus Chlorella is a widely employed microalga for biodiesel, as it can be grown us...
Biodiesel produced by microalgae has great potential as a portable energy that can replace tradition...
Auxenochlorella protothecoides is a known thiamine auxotroph but our past work has shown that it can...
ABSTRACT Vitamin B1 (thiamin) is a cofactor for critical enzymatic processes and is scarce in surfac...
There are numerous strains of Chlorella with a corresponding variety of metabolic pathways. A strain...
Vitamin B1 (thiamin) is a cofactor for critical enzymatic processes and is scarce in surface oceans....
Abstract In order to reduce the consumption of traditional fossil fuels and their impact on the envi...
The genus Chlorella is a widely employed microalga for biodiesel, as it can be grown using photo/mix...
Thiamin (vitamin B1) is an essential micronutrient needed as a cofactor for many central metabolic e...
Microalgae are proposed as feedstock organisms useful for producing biofuels and coproducts. However...
The unicellular green alga Chlorella sorokiniana is of great industrial interest for biofuels produc...
Thiamine release during synthetic mutualism between Chlorella sorokiniana co-immobilized in alginate...
Dissolved exometabolites mediate algal interactions in aquatic ecosystems, but microalgal exometabol...
Algae, a globally widespread group of photosynthetic eukaryotes, are the primary producers in the aq...
Microalgae are a promising feedstock for biofuel production. Microalgal metabolic pathways are heavi...
Not AvailableThe genus Chlorella is a widely employed microalga for biodiesel, as it can be grown us...
Biodiesel produced by microalgae has great potential as a portable energy that can replace tradition...
Auxenochlorella protothecoides is a known thiamine auxotroph but our past work has shown that it can...
ABSTRACT Vitamin B1 (thiamin) is a cofactor for critical enzymatic processes and is scarce in surfac...
There are numerous strains of Chlorella with a corresponding variety of metabolic pathways. A strain...
Vitamin B1 (thiamin) is a cofactor for critical enzymatic processes and is scarce in surface oceans....
Abstract In order to reduce the consumption of traditional fossil fuels and their impact on the envi...
The genus Chlorella is a widely employed microalga for biodiesel, as it can be grown using photo/mix...
Thiamin (vitamin B1) is an essential micronutrient needed as a cofactor for many central metabolic e...
Microalgae are proposed as feedstock organisms useful for producing biofuels and coproducts. However...
The unicellular green alga Chlorella sorokiniana is of great industrial interest for biofuels produc...
Thiamine release during synthetic mutualism between Chlorella sorokiniana co-immobilized in alginate...
Dissolved exometabolites mediate algal interactions in aquatic ecosystems, but microalgal exometabol...
Algae, a globally widespread group of photosynthetic eukaryotes, are the primary producers in the aq...
Microalgae are a promising feedstock for biofuel production. Microalgal metabolic pathways are heavi...
Not AvailableThe genus Chlorella is a widely employed microalga for biodiesel, as it can be grown us...
Biodiesel produced by microalgae has great potential as a portable energy that can replace tradition...