Microalgal species are potential resource of both biofuels and high-value metabolites, and their production is growth dependent. Growth parameters can be screened for the selection of novel microalgal species that produce molecules of interest. In this context our review confirms that, autotrophic and heterotrophic organisms have demonstrated a dual potential, namely the ability to produce lipids as well as value-added products (particularly carotenoids) under influence of various physico-chemical stresses on microalgae. Some species of microalgae can synthesize, besides some pigments, very-long-chain polyunsaturated fatty acids (VL-PUFA,>20C) such as docosahexaenoic acid and eicosapentaenoic acid, those have significant applications in ...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
AbstractThe energy and the world food crises have ignited interest in algal culture for making biodi...
International audienceThrough the photosynthetic activity, microalgae process more than 25% of annua...
Microalgae are important sources of triacylglycerols (TAGs) and high-value compounds such as caroten...
Microalgae are often called “sustainable biofactories” due to their dual potential to mitigate atmo...
Abstract Microalgae have drawn great attention as promising sustainable source of lipids and caroten...
Microalgae are important sources of triacylglycerols (TAGs) and high-value compounds such as caroten...
Microalgae are emerging as important cell factories for the production of various commercial product...
Microalgae produce a range of metabolites such as proteins, lipids and fatty acids, pigments such as...
Biotechnological processes based on microalgae cultivation are promising for several industrial appl...
Replacement of fossil fuels has to be accompanied by the incorporation of bio-based procedures for t...
peer reviewedConsidering the importance of microalgae as a promising feedstock for the production of...
Microalgae are photoautotrophic microorganisms that can produce energy both by using sunlight, water...
Interests in microalgal lipids as green and renewable energy sources are piquing as cheap hydrocarbo...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
AbstractThe energy and the world food crises have ignited interest in algal culture for making biodi...
International audienceThrough the photosynthetic activity, microalgae process more than 25% of annua...
Microalgae are important sources of triacylglycerols (TAGs) and high-value compounds such as caroten...
Microalgae are often called “sustainable biofactories” due to their dual potential to mitigate atmo...
Abstract Microalgae have drawn great attention as promising sustainable source of lipids and caroten...
Microalgae are important sources of triacylglycerols (TAGs) and high-value compounds such as caroten...
Microalgae are emerging as important cell factories for the production of various commercial product...
Microalgae produce a range of metabolites such as proteins, lipids and fatty acids, pigments such as...
Biotechnological processes based on microalgae cultivation are promising for several industrial appl...
Replacement of fossil fuels has to be accompanied by the incorporation of bio-based procedures for t...
peer reviewedConsidering the importance of microalgae as a promising feedstock for the production of...
Microalgae are photoautotrophic microorganisms that can produce energy both by using sunlight, water...
Interests in microalgal lipids as green and renewable energy sources are piquing as cheap hydrocarbo...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
Microalgae have been recognized as powerful phototrophic cell-factories whose applications range fro...
AbstractThe energy and the world food crises have ignited interest in algal culture for making biodi...
International audienceThrough the photosynthetic activity, microalgae process more than 25% of annua...