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1.
Prikl Biokhim Mikrobiol ; 52(4): 435-42, 2016.
Article in Russian | MEDLINE | ID: mdl-29512993

ABSTRACT

It has been demonstrated that electroacoustic analysis with polyclonal antibodies can be used for bacteriophage detection. The frequency dependences of the real and imaginary parts of electrical impedance of a resonator with a viral suspension with antibodies were shown to be essentially different from the dependences of a resonator with control viral suspension without antibodies. It was shown that ΦAl-Sp59b bacteriophages were detected with the use of antibodies in the presence of foreign virus particles. The ΦAl-Sp59b bacteriophage content in the analyzed suspension was ~1010­106 phages/mL; the time of analysis was no more than 5 min. The optimally informative parameter for obtaining reliable information was the change in the real or imaginary part of electrical impedance at a fixed frequency near the resonance upon the addition of specific antibodies to the analyzed suspension. It was demonstrated that the interaction between bacteriophages and antibodies can be recorded, offering good prospects for the development of a biological sensor for liquid-phase identification and virus detection.


Subject(s)
Antibodies, Viral/chemistry , Azospirillum/virology , Bacteriophages/chemistry , Electromagnetic Fields , Animals , Antibodies, Viral/immunology , Azospirillum/immunology , Bacteriophages/immunology , Immunologic Techniques/methods , Rabbits
2.
Appl Environ Microbiol ; 74(3): 861-74, 2008 Feb.
Article in English | MEDLINE | ID: mdl-18065619

ABSTRACT

The prevalence of bacteriophages was investigated in 24 strains of four species of plant growth-promoting rhizobacteria belonging to the genus Azospirillum. Upon induction by mitomycin C, the release of phage particles was observed in 11 strains from three species. Transmission electron microscopy revealed two distinct sizes of particles, depending on the identity of the Azospirillum species, typical of the Siphoviridae family. Pulsed-field gel electrophoresis and hybridization experiments carried out on phage-encapsidated DNAs revealed that all phages isolated from A. lipoferum and A. doebereinerae strains had a size of about 10 kb whereas all phages isolated from A. brasilense strains displayed genome sizes ranging from 62 to 65 kb. Strong DNA hybridizing signals were shown for most phages hosted by the same species whereas no homology was found between phages harbored by different species. Moreover, the complete sequence of the A. brasilense Cd bacteriophage (phiAb-Cd) genome was determined as a double-stranded DNA circular molecule of 62,337 pb that encodes 95 predicted proteins. Only 14 of the predicted proteins could be assigned functions, some of which were involved in DNA processing, phage morphogenesis, and bacterial lysis. In addition, the phiAb-Cd complete genome was mapped as a prophage on a 570-kb replicon of strain A. brasilense Cd, and a region of 27.3 kb of phiAb-Cd was found to be duplicated on the 130-kb pRhico plasmid previously sequenced from A. brasilense Sp7, the parental strain of A. brasilense Cd.


Subject(s)
Azospirillum brasilense/virology , Azospirillum/classification , Azospirillum/virology , Bacteriophages/isolation & purification , Genome, Viral , Sequence Analysis, DNA , Bacteriophages/classification , Bacteriophages/genetics , Bacteriophages/ultrastructure , Computational Biology , DNA, Viral/analysis , DNA, Viral/isolation & purification , Electrophoresis, Gel, Pulsed-Field , Microscopy, Electron, Transmission , Molecular Sequence Data , Phylogeny , Siphoviridae/classification , Siphoviridae/genetics , Siphoviridae/isolation & purification , Siphoviridae/ultrastructure , Viral Proteins/chemistry , Viral Proteins/genetics , Viral Proteins/metabolism
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