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1.
Braz. j. microbiol ; 45(4): 1221-1227, Oct.-Dec. 2014. ilus, graf, tab
Article in English | LILACS | ID: lil-741271

ABSTRACT

Metal nanoparticle synthesis is an interesting area in nanotechnology due to their remarkable optical, magnetic, electrical, catalytic and biomedical properties, but there needs to develop clean, non-toxic and environmental friendly methods for the synthesis and assembly of nanoparticles. Biological agents in the form of microbes have emerged up as efficient candidates for nanoparticle synthesis due to their extreme versatility to synthesize diverse nanoparticles with varying size and shape. In the present study, an eco favorable method for the biosynthesis of silver nanoparticles using marine bacterial isolate has been attempted. Very interestingly, molecular identification proved it as a strain of Ochrobactrum anhtropi. In addition, the isolate was found to have the potential to form silver nanoparticles intracellularly at room temperature within 24 h. The biosynthesized silver nanoparticles were characterized by UV-Vis spectroscopy, transmission electron microscope (TEM) and scanning electron microscope (SEM). The UV-visible spectrum of the aqueous medium containing silver nanoparticles showed a peak at 450 nm corresponding to the plasmon absorbance of silver nanoparticles. The SEM and TEM micrographs revealed that the synthesized silver nanoparticles were spherical in shape with a size range from 38 nm - 85 nm. The silver nanoparticles synthesized by the isolate were also used to explore its antibacterial potential against pathogens like Salmonella Typhi, Salmonella Paratyphi, Vibrio cholerae and Staphylococcus aureus.


Subject(s)
Anti-Bacterial Agents/pharmacology , Nanoparticles/metabolism , Ochrobactrum/metabolism , Silver/pharmacology , Anti-Bacterial Agents/metabolism , Aquatic Organisms/classification , Aquatic Organisms/genetics , Aquatic Organisms/isolation & purification , Aquatic Organisms/metabolism , Cluster Analysis , DNA, Bacterial/chemistry , DNA, Bacterial/genetics , DNA, Ribosomal/chemistry , DNA, Ribosomal/genetics , Gram-Negative Bacteria/drug effects , Microscopy, Electron , Nanoparticles/chemistry , Nanoparticles/ultrastructure , Ochrobactrum/classification , Ochrobactrum/genetics , Ochrobactrum/isolation & purification , Phylogeny , /genetics , Sequence Analysis, DNA , Spectrum Analysis , Silver/metabolism , Staphylococcus aureus/drug effects , Temperature , Time Factors
2.
Indian J Exp Biol ; 2002 Mar; 40(3): 329-33
Article in English | IMSEAR | ID: sea-61798

ABSTRACT

The effect of growth regulators and culture conditions on the morphogenetic response of cotyledonary leaf discs was studied in popular cucumber variety (Cucumis sativus cv. Sheetal). Organogenesis was induced directly without any intervening callus phase on Murashige and Skoog medium supplemented with different concentrations of benzyladenine and indole propionic acid. Best results (93%) were obtained in the presence of the 4 mg/L benzyladenine and 1 mg/L IPA. The elongated shoots were rooted in basal medium with 1 mg/L indole butyric acid, hardened and transferred to the field conditions. Genetic transformation system has been established for Cucumis sativus cv. Sheetal, plants by infecting cotyledonary explants with Agrobacterium tumefaciens strain LBA4404 carrying binary plasmid pBI121, which contains scorable marker, beta-glucuronidase and selectable marker nptII under the CaMV 35S promoter. Infection was most effective when explants were infected with Agrobacterium for 15 min and co-cultivated for 2 days in the co-cultivation medium. Shoots were regenerated directly from cotyledonary leaf explants in the presence of kanamycin (50 microg/ml) and analysed. Southern blot analysis confirmed that transformation had occurred. This method will allow genetic improvement of this crop by the introduction of agronomically important genes.


Subject(s)
Aminobutyrates/pharmacology , Cucumis sativus/drug effects , Genetic Engineering , Genetic Vectors , Indoles/pharmacology , Plant Growth Regulators/pharmacology , Plants, Genetically Modified , Agrobacterium tumefaciens/genetics , Transformation, Genetic
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