The aim of this research was to study the metabolic changes of starch and lipid biosynthesis in the microalga Chlorella zofingiensis under nitrogen starvation in comparison to nitrogen abundant condition. C. zonfingiensis showed a rapid growth and kept stable chlorophyll content when grown in nitrogen-replete medium, while a severe inhibition of cell growth and a sharp degradation of chlorophyll occurred under nitrogen depletion. Nitrogen-replete C. zonfingiensis cells possessed basal levels of starch and lipid. Upon nitrogen starvation, both starch and lipid increased greatly within cells, but starch synthesis preceded lipid accumulation. After 2 days of stress condition, starch was partially degraded, possibly to support lipid synthesis. ...
A freshwater green microalgae Chlorella sp., UMACC344 was shown to produce high lipid content and ha...
Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the key pro...
Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the key pro...
Oleaginous microalgae have been considered promising sources of biodiesel due to their high lipid co...
Though less attention has been paid to microalgae as a feedstock for bioethanol production, many mic...
Cellular biochemical composition of the microalga Chlorella zofingiensis was studied under favorable...
Microalgal lipid is one of the most promising feedstocks for biodiesel production. Chlorella appears...
The influence of N-replenishment on cell growth, chlorophyll content, nitrogen uptake, and accumulat...
The influence of N-replenishment on cell growth, chlorophyll content, nitrogen uptake, and accumulat...
Microalgae of the genus Nannochloropsis are capable of accumulating triacylglycerols (TAGs) when exp...
Microalgae of the genus Nannochloropsis are capable of accumulating triacylglycerols (TAGs) when exp...
International audienceMicroalgae of the genus Nannochloropsis are capable of accumulating triacylgly...
International audienceMicroalgae of the genus Nannochloropsis are capable of accumulating triacylgly...
International audienceMicroalgae of the genus Nannochloropsis are capable of accumulating triacylgly...
<div><p>Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the...
A freshwater green microalgae Chlorella sp., UMACC344 was shown to produce high lipid content and ha...
Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the key pro...
Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the key pro...
Oleaginous microalgae have been considered promising sources of biodiesel due to their high lipid co...
Though less attention has been paid to microalgae as a feedstock for bioethanol production, many mic...
Cellular biochemical composition of the microalga Chlorella zofingiensis was studied under favorable...
Microalgal lipid is one of the most promising feedstocks for biodiesel production. Chlorella appears...
The influence of N-replenishment on cell growth, chlorophyll content, nitrogen uptake, and accumulat...
The influence of N-replenishment on cell growth, chlorophyll content, nitrogen uptake, and accumulat...
Microalgae of the genus Nannochloropsis are capable of accumulating triacylglycerols (TAGs) when exp...
Microalgae of the genus Nannochloropsis are capable of accumulating triacylglycerols (TAGs) when exp...
International audienceMicroalgae of the genus Nannochloropsis are capable of accumulating triacylgly...
International audienceMicroalgae of the genus Nannochloropsis are capable of accumulating triacylgly...
International audienceMicroalgae of the genus Nannochloropsis are capable of accumulating triacylgly...
<div><p>Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the...
A freshwater green microalgae Chlorella sp., UMACC344 was shown to produce high lipid content and ha...
Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the key pro...
Many species of microalgae produce greatly enhanced amounts of triacylglycerides (TAGs), the key pro...