The identification and study of marine microorganisms with unique physiological traits can be a very powerful tool discovering novel enzymes of possible biotechnological interest. This approach can complement the enormous amount of data concerning gene diversity in marine environments offered by metagenomic analysis, and can help to place the activities associated with those sequences in the context of microbial cellular metabolism and physiology. Accordingly, the detection and isolation of microorganisms that may be a good source of enzymes is of great importance. Marinomonas mediterranea, for example, has proven to be one such useful microorganism. This Gram-negative marine bacterium was first selected because of the unusually high amount...
Microorganisms have evolved to exist in diverse environments on earth, even under the harsh conditio...
This book presents contributions from scientists who are directly involved in the potential of marin...
During evolution microorganisms accumulated a remarkable physiological and functional heterogeneity ...
Marine habitats represent a prolific source for molecules of biotechnological interest. In particula...
A collection of marine bacteria isolated from a temperate coastal zone has been screened in a progra...
As a consequence of its geochemical and geophysical variability, the marine environment, which is do...
The melanogenic marine bacterium M. mediterranea synthesizes marinocine, a protein with antibacteria...
Not AvailablePhenol oxidases are the group of enzymes with multifunctional abilities. The presence o...
Oceans possess tremendous diversity in microbial life. The enzymatic machinery that marine bacteria ...
Marine microorganisms have evolved a large variety of metabolites and biochemical processes, providi...
The biodiversity of marine microorganisms opens a promising potential for the discovery of new techn...
The vast biodiversity of marine environments is increasingly being recognized as a source for new en...
Industrial (white) biotechnology poses an increasing demand for novel biocatalysts that are robust u...
Bacteria associated with algae are underexplored despite their huge biodiversity and the fact that t...
Oceans include the greatest extremes of pressure, temperature and light, and habitats can range from...
Microorganisms have evolved to exist in diverse environments on earth, even under the harsh conditio...
This book presents contributions from scientists who are directly involved in the potential of marin...
During evolution microorganisms accumulated a remarkable physiological and functional heterogeneity ...
Marine habitats represent a prolific source for molecules of biotechnological interest. In particula...
A collection of marine bacteria isolated from a temperate coastal zone has been screened in a progra...
As a consequence of its geochemical and geophysical variability, the marine environment, which is do...
The melanogenic marine bacterium M. mediterranea synthesizes marinocine, a protein with antibacteria...
Not AvailablePhenol oxidases are the group of enzymes with multifunctional abilities. The presence o...
Oceans possess tremendous diversity in microbial life. The enzymatic machinery that marine bacteria ...
Marine microorganisms have evolved a large variety of metabolites and biochemical processes, providi...
The biodiversity of marine microorganisms opens a promising potential for the discovery of new techn...
The vast biodiversity of marine environments is increasingly being recognized as a source for new en...
Industrial (white) biotechnology poses an increasing demand for novel biocatalysts that are robust u...
Bacteria associated with algae are underexplored despite their huge biodiversity and the fact that t...
Oceans include the greatest extremes of pressure, temperature and light, and habitats can range from...
Microorganisms have evolved to exist in diverse environments on earth, even under the harsh conditio...
This book presents contributions from scientists who are directly involved in the potential of marin...
During evolution microorganisms accumulated a remarkable physiological and functional heterogeneity ...