International Journal of Pharma and Bio Sciences
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10.22376/ijpbs.2019.10.1.p1-12
Volume 6 Issue 3
2015 (July - September)
ISOLATION, MOLECULAR CHARACTERIZATION AND PHA PRODUCTION BY A NOVEL BACILLUS SP., SKM155 FROM POLLUTED WATER
A polyhydroxyalkonate (PHA) producing Gram-positive, rod-shaped, motile bacterium was isolated from the polluted water pond. Strain SKM-155 grew at 15–45 lessThan sup greaterThan o lessThan /sup greaterThan C and pH 5.0–9.0 and in the presence of 0–2 % (w/v) NaCl. The strain was catalase-positive and oxidase-positive. Antimicrobial activities were studied. The DNA G+C content was 55.1 mol%. Phylogenetic analysis based on 16S rRNA gene sequences showed that strain is a member of the genus lessThan i greaterThan Bacillus lessThan /i greaterThan and is most closely related to lessThan i greaterThan Bacillus invictus Bi.FFUP1 lessThan /i greaterThan lessThan sup greaterThan T lessThan /sup greaterThan (98.94%), lessThan i greaterThan Bacillus altitudinis 41KF2b lessThan /i greaterThan lessThan sup greaterThan T lessThan /sup greaterThan (98.34%), lessThan i greaterThan Bacillus aerophilius 28K lessThan /i greaterThan lessThan sup greaterThan T lessThan /sup greaterThan (98.34%). The sequence of the 16S rDNA gene of strain SKM-155 was determined (1574 bp) and deposited in the EMBL under accession no. LM655321. The major isoprenoid quinine was MK-7 and the polar lipid consisted of diphosphotidylglycerol and an unidentified glycolipid was identified. The major fatty acid are dominated by saturated iso and anteiso (iso-C lessThan sub greaterThan 15:0 lessThan /sub greaterThan , anteisoC lessThan sub greaterThan 15:0 lessThan /sub greaterThan , anteisoC lessThan sub greaterThan 17:0 lessThan /sub greaterThan , isoC lessThan sub greaterThan 17:0 lessThan /sub greaterThan ). The phenotypic and genotypic properties clearly indicate that strain represents a novel species of the genus lessThan i greaterThan Bacillus lessThan /i greaterThan . The strain produced PHA in mineral medium consisting of glucose and nitrogenous substances. Optimum conditions for polymer production were determined, extracted and confirmed through Spectroscopic and IR analysis.
K.CHAITANYA P.NAGAMANI AND S.K.MAHMOOD
Bacillus sp., PHA, Polyhydroxyalkonates.
22-30