29 research outputs found
Inhibition of shrimp pathogenic vibrios by extracellular compounds from a proteolytic bacterium Pseudomonas sp. W3
Pseudomonas sp. W3, a bacterium known to produce an extracellular
alkaline protease, secreted secondary metabolites that inhibited
pathogenic bacteria responsible for shrimp luminous vibriosis disease.
Antivibrio compounds in the culture supernatant or culture filtrates
(0.45 \ub5m and 0.22 \ub5m) of the isolate W3 were tested using an
agar well diffusion method on a number of pathogenic vibrios. Vibrio
harveyi PSU 2015 a pathogenic isolate was the most sensitive strain.
The effectiveness of preparations from the isolate W3 against V.
harveyi PSU 2015, and V. cholerae PSSCMI 0062 was in the order of
culture supernatant > 0.45 \ub5m culture filtrate > 0.22
\ub5m culture filtrate. These extracellular antivibrio compounds also
lysed both dead and living cells of V. harveyi PSU 2015. Results of the
partial characterization tests indicated that there was some
particulate antivibrio compound that was destroyed by treatment with
enzymes particularly \u3b1-chymotrypsin, autoclaving at 121\ubaC for
15 min and was mostly removed by filtration through a 0.22 \ub5m
filter. Most of the inhibitory compounds were of small molecular weight
able to pass through a 0.22 \ub5m filter and were resistant to
treatment with various enzymes, pH values between 4-8 and temperatures
up to 121\ubaC for 30 min. The optimum pH for the antivibrio activity
in the 0.45 \ub5m culture filtrate was between pH 6-7
ANTIBACTERIAL POTENTIAL OF SOME THAI MEDICINAL PLANTS
published quarterly. The aim of IJPBS is to publish. peer reviewed research and review articles rapidly without delay in the developing field of pharmaceutical and biological science
Inhibition of shrimp pathogenic vibrios by extracellular compounds from a proteolytic bacterium Pseudomonas sp. W3
Pseudomonas sp. W3, a bacterium known to produce an extracellular
alkaline protease, secreted secondary metabolites that inhibited
pathogenic bacteria responsible for shrimp luminous vibriosis disease.
Antivibrio compounds in the culture supernatant or culture filtrates
(0.45 ”m and 0.22 ”m) of the isolate W3 were tested using an
agar well diffusion method on a number of pathogenic vibrios. Vibrio
harveyi PSU 2015 a pathogenic isolate was the most sensitive strain.
The effectiveness of preparations from the isolate W3 against V.
harveyi PSU 2015, and V. cholerae PSSCMI 0062 was in the order of
culture supernatant > 0.45 ”m culture filtrate > 0.22
”m culture filtrate. These extracellular antivibrio compounds also
lysed both dead and living cells of V. harveyi PSU 2015. Results of the
partial characterization tests indicated that there was some
particulate antivibrio compound that was destroyed by treatment with
enzymes particularly α-chymotrypsin, autoclaving at 121ÂșC for
15 min and was mostly removed by filtration through a 0.22 ”m
filter. Most of the inhibitory compounds were of small molecular weight
able to pass through a 0.22 ”m filter and were resistant to
treatment with various enzymes, pH values between 4-8 and temperatures
up to 121ÂșC for 30 min. The optimum pH for the antivibrio activity
in the 0.45 ”m culture filtrate was between pH 6-7