Biosurfactant from a marine bacterium disrupts biofilms of pathogenic bacteria in a tropical aquaculture system

F Hamza, S Satpute, A Banpurkar… - FEMS microbiology …, 2017 - academic.oup.com
Bacterial infections are major constraints in aquaculture farming. These pathogens often
adapt to the biofilm mode of growth and resist antibiotic treatments. We have used a non-
toxic glycolipid biosurfactant (BS-SLSZ2) derived from a marine epizootic bacterium
Staphylococcus lentus to treat aquaculture associated infections in an eco-friendly manner.
We found that BS-SLSZ2 contained threose, a four-carbon sugar as the glycone component,
and hexadecanoic and octadecanoic acids as the aglycone components. The critical micelle …

Biosurfactant from a marine bacterium disrupts biofilms of pathogenic bacteria in a tropical aquaculture system.

FH Faseela Hamza, SS Surekha Satpute… - 2017 - cabidigitallibrary.org
Bacterial infections are major constraints in aquaculture farming. These pathogens often
adapt to the biofilm mode of growth and resist antibiotic treatments. We have used a non-
toxic glycolipid biosurfactant (BS-SLSZ2) derived from a marine epizootic bacterium
Staphylococcus lentus to treat aquaculture associated infections in an eco-friendly manner.
We found that BS-SLSZ2 contained threose, a four-carbon sugar as the glycone component,
and hexadecanoic and octadecanoic acids as the aglycone components. The critical micelle …
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