The past decade the awareness for sustainability has come more and more into focus of society in terms of a need for eco-friendlier processes and renewable energies, new and better pharmaceuticals, and agricultural- and aquaculture challenges amongst others. Hence, enzyme technology has emerged as one of the most important technologies to meet future demands. A common consensus is that the marine environments represent a largely untapped potential for industrial applicable enzymes. As deep-sea hydrothermal vent fields have revealed a biodiversity of largely uncultivated microorganisms they have been reviewed as hot spots for finding new biocatalysts. In this study, samples from the Arctic Mid-Ocean- Ridge (AMOR) deep-sea hydrothermal vent f...
Permanently cold environments are populated by a diversity of microorganisms that possess cold-adapt...
A novel GH9 cellulase (AMOR_GH9A) was discovered by sequence-based mining of a unique metagenomic da...
Lutibacter profundi LP1T within the family Flavobacteriaceae was isolated from a biofilm growing on ...
Members of the genus Geobacillus have been isolated from a wide variety of habitats worldwide and ar...
The vast majority of deep-sea ecosystems are sustained by exported organic material from the product...
Deep-sea hydrothermal vents are amongst the most extreme environments on Earth and represent interes...
Deep-sea hydrothermal vents are a global phenomenon driven by reservoirs of geothermal energy that c...
Microbial communities inhabiting the Antarctic Ocean show extremophilic adaptations conferring inte...
Marine bioprospecting is a highly topical research subject since the marine ecosystem is a relativel...
The majority of the Earth’s surface is covered by fine-grained deep-sea sediments, with bacteria dom...
Polysaccharides represent a labile, abundant class of marine dissolved organic matter (DOM), which m...
Marine microbial communities are an untapped reservoir of genetic and metabolic diversity and a valu...
Industrial (white) biotechnology poses an increasing demand for novel biocatalysts that are robust u...
Oceans possess tremendous diversity in microbial life. The enzymatic machinery that marine bacteria ...
Oceans include the greatest extremes of pressure, temperature and light, and habitats can range from...
Permanently cold environments are populated by a diversity of microorganisms that possess cold-adapt...
A novel GH9 cellulase (AMOR_GH9A) was discovered by sequence-based mining of a unique metagenomic da...
Lutibacter profundi LP1T within the family Flavobacteriaceae was isolated from a biofilm growing on ...
Members of the genus Geobacillus have been isolated from a wide variety of habitats worldwide and ar...
The vast majority of deep-sea ecosystems are sustained by exported organic material from the product...
Deep-sea hydrothermal vents are amongst the most extreme environments on Earth and represent interes...
Deep-sea hydrothermal vents are a global phenomenon driven by reservoirs of geothermal energy that c...
Microbial communities inhabiting the Antarctic Ocean show extremophilic adaptations conferring inte...
Marine bioprospecting is a highly topical research subject since the marine ecosystem is a relativel...
The majority of the Earth’s surface is covered by fine-grained deep-sea sediments, with bacteria dom...
Polysaccharides represent a labile, abundant class of marine dissolved organic matter (DOM), which m...
Marine microbial communities are an untapped reservoir of genetic and metabolic diversity and a valu...
Industrial (white) biotechnology poses an increasing demand for novel biocatalysts that are robust u...
Oceans possess tremendous diversity in microbial life. The enzymatic machinery that marine bacteria ...
Oceans include the greatest extremes of pressure, temperature and light, and habitats can range from...
Permanently cold environments are populated by a diversity of microorganisms that possess cold-adapt...
A novel GH9 cellulase (AMOR_GH9A) was discovered by sequence-based mining of a unique metagenomic da...
Lutibacter profundi LP1T within the family Flavobacteriaceae was isolated from a biofilm growing on ...