Abstract Brown macroalgae have attracted great attention as an alternative feedstock for biorefining. Although direct conversion of ethanol from alginates (major components of brown macroalgae cell walls) is not amenable for industrial production, significant progress has been made not only on enzymes involved in alginate degradation, but also on metabolic pathways for biorefining at the laboratory level. In this article, we summarise recent advances on four aspects: alginate, alginate lyases, different alginate-degrading systems, and application of alginate lyases and associated pathways. This knowledge will likely inspire sustainable solutions for further application of both alginate lyases and their associated pathways
ABSTRACT Alginate is a major component of brown algae, but it cannot be utilized for ethanol ferment...
Alginate lyase is a promising biocatalyst because of its application in saccharification of alginate...
lginate is a polysaccharide found within brown seaweeds and has been targeted as a carbon source fo...
Alginate, a major acidic polysaccharide in brown macroalgae, has attracted attention as a carbon sou...
The cell wall of brown algae contains alginate as a major constituent. This anionic polymer is a com...
Alginate, the most abundant polysaccharides of brown algae, consists of various proportions of uroni...
Alginate is the most abundant carbohydrate in brown algae, accounting for up to 10–45% of the dry we...
Alginate lyase is a biocatalyst that degrades alginate to produce oligosaccharides, which have many ...
A novel algae fermentation strain was obtained in our previous work. This strain can produce alginat...
In this work, we have compared the carbohydrate content and the enzymatic saccharification of the br...
Polysaccharides from seaweeds are widely used in various fields, including the food, biomedical mate...
Bioethanol production from brown algae is a promising way to help solve the energy problem. Alginate...
Despite the progress in massive gene analysis of brown algal species, no alginate-degrading enzyme f...
The total area of the Earth's oceans is 360 million square kilometers, accounting for approximately ...
Brown algae is a kind of renewable resource for biofuels production. As the major component of carbo...
ABSTRACT Alginate is a major component of brown algae, but it cannot be utilized for ethanol ferment...
Alginate lyase is a promising biocatalyst because of its application in saccharification of alginate...
lginate is a polysaccharide found within brown seaweeds and has been targeted as a carbon source fo...
Alginate, a major acidic polysaccharide in brown macroalgae, has attracted attention as a carbon sou...
The cell wall of brown algae contains alginate as a major constituent. This anionic polymer is a com...
Alginate, the most abundant polysaccharides of brown algae, consists of various proportions of uroni...
Alginate is the most abundant carbohydrate in brown algae, accounting for up to 10–45% of the dry we...
Alginate lyase is a biocatalyst that degrades alginate to produce oligosaccharides, which have many ...
A novel algae fermentation strain was obtained in our previous work. This strain can produce alginat...
In this work, we have compared the carbohydrate content and the enzymatic saccharification of the br...
Polysaccharides from seaweeds are widely used in various fields, including the food, biomedical mate...
Bioethanol production from brown algae is a promising way to help solve the energy problem. Alginate...
Despite the progress in massive gene analysis of brown algal species, no alginate-degrading enzyme f...
The total area of the Earth's oceans is 360 million square kilometers, accounting for approximately ...
Brown algae is a kind of renewable resource for biofuels production. As the major component of carbo...
ABSTRACT Alginate is a major component of brown algae, but it cannot be utilized for ethanol ferment...
Alginate lyase is a promising biocatalyst because of its application in saccharification of alginate...
lginate is a polysaccharide found within brown seaweeds and has been targeted as a carbon source fo...