Characterization of a plasmid in isolates of Corynebacterium sepedonicum

1986 ◽  
Vol 32 (8) ◽  
pp. 617-622 ◽  
Author(s):  
Mervyn C. Clark ◽  
C. Harold Lawrence

Lysis of mid-log phase cells of the Gram-positive bacterium, Corynebacterium sepedonicum, by a combination of lysozyme treatment and incubation with alkaline sodium dodecyl sulfate at 56 °C led to the recovery of a single plasmid. The plasmid was purified in CsCl density gradients, and its molecular weight estimated to be 31 megadaltons (46 kilobases), as determined from its relative mobility in agarose gels, from its contour dimensions in electron micrographs, and from the size of the fragments generated when it was cleaved with various restriction endonucleases. Thirteen widely divergent isolates of C. sepedonicum were screened for the presence of plasmid, and of these, 11 were shown to harbour a single plasmid at a level of about 30 copies per cell. Cleavage of the plasmid with PstI gave an identical banding pattern in agarose gels for the fragments from all of the plasmid-carrying isolates. The relevance of plasmid incidence and distribution in C. sepedonicum is discussed in relation to the possibility of developing a test for the detection of bacterial ring rot by using plasmid DNA as a hybridization probe.


1960 ◽  
Vol 40 (2) ◽  
pp. 383-387
Author(s):  
R. Paquin ◽  
J. Santerre ◽  
H. Généreux ◽  
L. J. Coulombe

Forty-seven chemicals, including antibiotics, detergents, quaternary ammonium salts, mercury compounds, disinfectants and protectants, were tested for their effectiveness as potato seed piece disinfectants after inoculating each potato set with bacterial ring rot. None of the substances tested was as effective as a solution of acidified mercuric chloride (2:1000 + 1 per cent HCl) in a 10-minute dip treatment which gave 93 to 98 per cent control. A more effective control of the disease (100 per cent) was obtained when seed stock contained only 1 per cent diseased tubers.



1956 ◽  
Vol 34 (1) ◽  
pp. 48-53 ◽  
Author(s):  
H. Katznelson ◽  
M. D. Sutton

Studies are described on the laboratory detection of bacterial ring rot of potatoes caused by Corynebacterium sepedonicum (Spieckermann and Kotthoff) Skaptason and Burkholder. A cultural–microscopic procedure, involving the preincubation of aseptically removed infected material on a suitable medium, was found in general to be more reliable than direct examination of Gram-stained smears from diseased material. This was especially noticeable with lightly infected potatoes. The use of both methods would likely decrease the possibility of incorrect diagnosis. A serological method also was found to be of value in detecting ring rot in tubers and in plant extracts. Antiserum for one typical strain of C. sepedonicum (CS850) agglutinated all strains tested, and also reacted with all infected samples examined but not with uninfected material. This organism might be used to prepare bulk antiserum for distribution to various laboratories engaged in the diagnosis of bacterial ring rot. Attempts to isolate a phage for C. sepedonicum were unsuccessful.





1974 ◽  
Vol 54 (1) ◽  
pp. 115-122 ◽  
Author(s):  
S. H. DE BOER ◽  
R. J. COPEMAN

The aerobic endophytic bacterial population in "healthy" potato plants was found to vary from fewer than 1 × 103 to 4.2 × 107 cells/cm3 of stem tissue and from 0 to 1.6 × 104 cells/cm3 in tubers. No significant correlation was found between the bacterial population in stems and tubers of the same plant, nor was there a significant difference in the bacterial populations of virus-free plants when compared with PVX-infected plants. Strains of Micrococcus, Pseudomonas, Bacillus, Flavobacterium, Xanthomonas, Agrobacterium, and coryneforms were isolated in addition to several isolates that could not be identified. All isolates were nonpathogenic, including the coryneforms, some of which were morphologically indistinguishable from Corynebacterium sepedonicum but which were biochemically different.



2009 ◽  
Vol 22 (7) ◽  
pp. 809-819 ◽  
Author(s):  
Riitta Nissinen ◽  
Yunjian Xia ◽  
Laura Mattinen ◽  
Carol A. Ishimaru ◽  
Dennis L. Knudson ◽  
...  

Molecular biological studies on Clavibacter michiganensis subsp. sepedonicus, the causal agent of bacterial ring rot of potato, have gained greater feasibility due to the recent availability of whole genomic sequences and genetic tools for related taxa. Here, we describe the first report of construction and characterization of a transposon (Tn) mutant library of C. michiganensis subsp. sepedonicus sp. strain R10. Since virulence of R10 in potato has been shown previously to be associated with elicitation of a nonhost hypersensitive response (HR), the mutant library was screened initially for loss of HR in tobacco. The screen identified two HR-negative mutants containing Tn insertions within the same gene, CMS2989 (chp-7), although at distinct locations. chp-7 is one of 11 pat-1 homologs in C. michiganensis subsp. sepedonicus. HR-negative mutants of R10 multiplied to the same extent as wild type in planta but were less virulent in potato. Complementation with chp-7 restored virulence as well as the HR phenotype. Together, these findings demonstrate a role for chp-7 in C. michiganensis subsp. sepedonicus–plant interactions.



Author(s):  
Ruchama Baum ◽  
J.T. Seto

The ribonucleic acid (RNA) of paramyxoviruses has been characterized by biochemical and physiochemical methods. However, paramyxovirus RNA molecules have not been studied by electron microscopy. The molecular weights of these single-stranded viral RNA molecules are not known as yet. Since electron microscopy has been found to be useful for the characterization of single-stranded RNA, this investigation was initiated to examine the morphology and length measurements of paramyxovirus RNA's.Sendai virus Z strain and Newcastle disease virus (NDV), Milano strain, were used. For these studies it was necessary to develop a method of extracting RNA molecules from purified virus particles. Highly purified Sendai virus was treated with pronase (300 μg/ml) at 37°C for 30 minutes and the RNA extracted by the sodium dodecyl sulfate (SDS)-phenol procedure.





Author(s):  
Preeti Anand ◽  
Jay Prakash Pandey ◽  
Dev Mani Pandey

Abstract Background Cocoonase is a proteolytic enzyme that helps in dissolving the silk cocoon shell and exit of silk moth. Chemicals like anhydrous Na2CO3, Marseille soap, soda, ethylene diamine and tartaric acid-based degumming of silk cocoon shell have been in practice. During this process, solubility of sericin protein increased resulting in the release of sericin from the fibroin protein of the silk. However, this process diminishes natural color and softness of the silk. Cocoonase enzyme digests the sericin protein of silk at the anterior portion of the cocoon without disturbing the silk fibroin. However, no thorough characterization of cocoonase and sericin protein as well as imaging analysis of chemical- and enzyme-treated silk sheets has been carried out so far. Therefore, present study aimed for detailed characterization of cocoonase and sericin proteins, phylogenetic analysis, secondary and tertiary structure prediction, and computational validation as well as their interaction with other proteins. Further, identification of tasar silkworm (Antheraea mylitta) pupa stage for cocoonase collection, its purification and effect on silk sheet degumming, scanning electron microscope (SEM)-based comparison of chemical- and enzyme-treated cocoon sheets, and its optical coherence tomography (OCT)-based imaging analysis have been investigated. Various computational tools like Molecular Evolutionary Genetics Analysis (MEGA) X and Figtree, Iterative Threading Assembly Refinement (I-TASSER), self-optimized predicted method with alignment (SOPMA), PROCHECK, University of California, San Francisco (UCSF) Chimera, and Search Tool for the Retrieval of Interacting Genes/Proteins (STRING) were used for characterization of cocoonase and sericin proteins. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE), protein purification using Sephadex G 25-column, degumming of cocoon sheet using cocoonase enzyme and chemical Na2CO3, and SEM and OCT analysis of degummed cocoon sheet were performed. Results Predicted normalized B-factors of cocoonase and sericin with respect to α and β regions showed that these regions are structurally more stable in cocoonase while less stable in sericin. Conserved domain analysis revealed that B. mori cocoonase contains a trypsin-like serine protease with active site range 45 to 180 query sequences while substrate binding site from 175 to 200 query sequences. SDS-PAGE analysis of cocoonase indicated its molecular weight of 25–26 kDa. Na2CO3 treatment showed more degumming effect (i.e., cocoon sheet weight loss) as compared to degumming with cocoonase. However, cocoonase-treated silk cocoon sheet holds the natural color of tasar silk, smoothness, and luster compared with the cocoon sheet treated with Na2CO3. SEM-based analysis showed the noticeable variation on the surface of silk fiber treated with cocoonase and Na2CO3. OCT analysis also exemplified the variations in the cross-sectional view of the cocoonase and Na2CO3-treated silk sheets. Conclusions Present study enlightens on the detailed characteristics of cocoonase and sericin proteins, comparative degumming activity, and image analysis of cocoonase enzyme and Na2CO3 chemical-treated silk sheets. Obtained findings illustrated about use of cocoonase enzyme in the degumming of silk cocoon at larger scale that will be a boon to the silk industry.



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