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Particulate cytochrome c in Agrobacterium tumefaciens.

In Agrobacterium tumefaciens the main part of c-type cytochromes is tightly bound to the bacterial cell envelope structures. Several techniques were attempted to solubilize these cytochromes. The highest yield of cytochromes released is obtained by treatment of particle suspensions with 5% Triton X-100. Further purification confirms that the proteins are not really solubilized, but still aggregated in small heterogeneous complexes. Chromatography on a CM-cellulose column demonstrates that at least three different c-type cytochromes are present: cyt c-550, cyt c-552 and cyt c-556.

Cytochrome c Group

Effect of sublethal heat injury on tumour induction and RNA synthesis in Agrobacterium tumefaciens.

When cells of Agrobacterium tumefaciens are subjected to sublethal heat injury at 45 degrees C for 20 min, less than 5% of the viable population retain their ability to initiate tumour formation on Kalanchöe daigremontiana. If the cells are then incubated in phosphate buffer at 27 degrees C for 2 h, tumour initiation returns to control levels. Inhibitors of DNA and protein synthesis had little effect on the recovery of tumour initiation after heat injury. Rifamycin, a specific inhibitor of RNA synthesis, dramatically reduced recovery of tumour formation. During the heating process large amounts of RNA leaked from the cells which correlated with a degradation of rRNA. The addition of Mg to the heating buffer reduced the loss of RNA into the medium and the degradation of rRNA and tumour initiation was retained at control levels. It is concluded that while current evidence indicates that DNA is probably the transforming agent, RNA synthesis is an important component of the induction process.

Bacterial Proteins

Host range conferred by the virulence-specifying plasmid of Agrobacterium tumefaciens.

The host range of Agrobacterium tumefaciens 1D1109, known to induce crown gall only on grapevine (Vitis spp.), was extended to include many plant species by transferring a tumor-inducing plasmid (pTi) from strain 1D1, a broad-host-range pathogen. The pTi plasmid was mobilized by the conjugative plasmid pRK2, which was inserted into 1D1 by mating with Escherichia coli J53(pRK2). The resulting transconjugants were screened for their ability to induce crown gall tumors on hosts other than grapevine by inoculation into sunflower. Transconjugants that were virulent on sunflower were then tested on 36 different host plants and compared with host-limited strain 1D1109 and the donor strain. Two transconjugants induced tumors on the same 28 plant species as those of the original plasmid donor 1D1(pRK2) (pTi). These results show that pRK2 promoted transfer of the pTi plasmid and suggest that the pTi plasmid rather than the A. tumefaciens chromosome determined the host range of the pathogen. Insertion of pRK2 alone did not extend the host range of strain 1D1109. Insertion of pS-a into A. tumefaciens 1D1 by mating with E. coli J53-1 (pS-a) resulted in the concomitant loss of pTi and virulence. There appears to be incompatibility between pTi and pS-a.

Conjugation, Genetic

Interactions and DNA transfer between Agrobacterium tumefaciens, the Ti-plasmid and the plant host.

Agrobacterium tumefaciens is a gram-negative bacterium with the unique capacity to induce neoplasmic transformations in dicotyledonous plants. Recently, both the mechanism and the biological significance of this transformation have been elucidated. Agrobacterium tumefaciens strains contain a large extrachromosomal DNA plasmid (the Ti-plasmid). This Ti-plasmid is responsible for the oncogenic properties of Agrobacterium strains. A particular segment of the Ti-plasmid, containing information determining the tumorous growth pattern and the synthesis of so-called 'opines', e.g. octopine (N-alpha-(D-1-carboxyethyl)-L-arginine) and nopaline (N-alpha-(1,3-dicarboxypropyl)-L-argine), is transferred and stably maintained and expressed in the transformed plant cells. This phenomenon can be understood as a 'genetic colonization' of the plant cells by bacterial plasmid DNA so that the transformed plant cells will produce and secrete into the medium amino acid derivatives (the opines) that Ti-plasmid carrying agrobacteria can selectively use as carbon and nitrogen sources.

DNA Restriction Enzymes

Properties of the cured oncogenic strain 37400 of Agrobacterium tumefaciens.

The properties of the 37400 oncogenic strain of Agrobacterium tumefaciens are described. This strain was derived from the VI lysogenic strain originally isolated by Hamilton from a Zinnia elegans tumour. Strain 37400 has a number of properties which render it suitable for quantitative and genetic studies. It is cured of prophages and can serve as a universal sensitive indicator for a number of phages isolated from various lysogenic strains of Agrobacterium tumefaciens. Its good growth properties in synthetic media and at elevated temperatues enable the isolation of auxotrophic mutants and temperature sensitive phage mutants. Preliminary experiments show that strain 37400 will serve as suitable starting material for conjugation experiments under defined conditions.

Bacteriophages

Low-intensity microwave radiation and the virulence of Agrobacterium tumefaciens strain B6.

When virulent cells of Agrobacterium tumefaciens strain B6 were exposed to low-level microwave radiation at a frequency of 10,000 MHz and an intensity of 0.58 mW/cm2 for 30 to 120 min, a 30 to 60% decrease in their ability to produce tumors on potato and turnip disks was observed. This microwave exposure did not affect the viability of these bacteria or their ability to attach to a tumor-binding site nor did it induce thermal shock. This loss of virulence was reversible within 12 h.

Microwaves

Isolation of a non-tumor-inducing mutant of the Ti plasmid of Agrobacterium tumefaciens strain B6.

A nonpathogenic mutant of Agrobacterium tumefaciens strain B6 was isolated and its properties compared with the parental strain in an effort to localize the mutation. Both B6 and its mutant (B6-95) had similar colony color and morphology, were ketolactose positive, utilized octopine, and contained plasmid DNA. Kinetic analysis of DNA reannealing showed that total DNA homology and plasmid DNA homology between B6 and B6-95 was at least 90%. The length of both plasmids was found to be 58 micrometer. Plasmid DNA from both B6 and the mutant was digested with endonucleases and the fragments separated by agarose gel electrophoresis. In all cases the pattern for B6 was identical with that of B6(-95). The Ti plasmid from B6 and the mutant was transferred to an avirulent, plasmidless strain of A. tumefaciens by in vitro conjugation and transformation. All of the B6 transconjugants and transformants were virulent, whereas all of the mutant transconjugants and transformants were avirulent. Electrophoretic patterns of endonuclease-digested plasmid DNA from transformants were identical to those of plasmid DNA from B6. Therefore, we conclude that the virulence mutation lies on the Ti plasmid.

Conjugation, Genetic

[A RNA extract from oncogenic and non oncogenic strains of Agrobacterium tumefaciens is an indispensable element for the induction of tumors in Datura stramomium].

An RNA bound to the reverse transcriptase of Agrobacterium tumefaciens has been isolated and shown to be oncogenic for stem tissues of Datura stramonium grown under axenic conditions. The tumorous nature of the cellular change induced by the infectious rna was demonstrated by serial grafts of tumors on Datura stems and by cultivation of tumorous tissue in vitro on a medium without supplemental auxins and cytokinins. Active cellular proliferation within tissues of Datura stems was a prerequisite for expression of the oncogenic potential of the RNA. Further, infectious RNA was isolated from avirulent and attenuated strains of Agrobacterium tumefaciens including attenuated derivatives of strain AC58 which have been "heat-cured" of the plasmid associated with virulence. It is proposed that the infectious RNA is an essential but not the sole component of the tumor-inducing mechanism of the crown-gall bacterium.

Cell-Free System

Proteins conferred by the virulence-specifying plasmid of Agrobacterium tumefaciens C-58.

Membrane-associated and periplasmic proteins of Agrobacterium tumefaciens C-58 were compared with those from avirulent (nontumrigenic) derivative strains by slab and two-dimensional gel electrophoresis. Two proteins (Per-I and Per-2), with a molecular weight of 37,500 and 37,300, respectively, were detected in the supernatant fraction of cells of strain C-58 treated with EDTA and lysozyme in which a 117-megadalton plasmid confers virulence on the organism. The same proteins are missing in an avirulent plasmid-free derivative of C-58. When this derivative is mated with C-58, the resulting transconjugants regain the large C-58 plasmid together with the restoration of virulence and the expression of Per-1 and Per-2 proteins. When the transconjugants were cured of their plasmid, they concomitantly lost their virulence and Per-1 and Per-2. The functional roles of these proteins are unknown, but they are associated with the outer membrane and periplasmic fraction of the Agrobacterium cell. If directly involved in tumorigenesis, these proteins are not the sole determinants of tumorigenicity because they are synthesized in an avirulent derivative of C-58 that carries a deletion in the plasmid in the region conferring the tumorigenic phenotype. These results strongly suggest that the Per-1 and Per-2 proteins are plasmid-coded gene products. The possible roles of these proteins in specifying host range and host-cell attachment are also discussed.

Bacterial Proteins

Plasmid content and tumor initiation complementation by Agrobacterium tumefaciens IIBNV6.

Avirulent strains IIBNV6 and NT1, derived from virulent strains of Agrobacterium tumefaciens, were tested for their ability to enhance tumor initiation (complement) on coinoculation with tumorigenic strains. Strain NT1, cured of the Agrobacterium virulence plasmid, failed to complement when inoculated with its virulent parental strain or with other virulent strains. Strain IIBNV6, however, complemented with all virulent strains tested. Attachment to host wound sites by both strain IIBNV6 and the virulent strain was essential for this effect. Inoculation of the tumorigenic strain at different times on leaves previously inoculated with IIBNV6 showed that the capacity to complement is lost during the period between 4 and 8 h after IIBNV6 inoculation. The rate of tumor appearance obtained with an inoculum containing IIBNV6 and a virulent auxotrophic strain was characteristic of the appearance rate obtained with prototrophic bacteria. Evidence is summarized which suggests that strain IIBNV6 can induce tumors when supplied with a substance produced or induced by a virulent bacterium at a separate site. A deoxyribonucleic acid plasmid about 40% the size of the Agrobacterium virulence plasmid was obtained from strain IIBNV6. We propose that this plasmid accounts for the ability of strain IIBNV6 to complement and that it contains part of the genetic information necessary for tumor initiation.

Plant Diseases

Isolation of a recombination deficient Agrobacterium tumefaciens mutant.

The isolation of a recombination deficient (Rec-) strain of Agrobacterium tumefaciens is described. Strain LBA 4011 was mutagenized with nitrosoguanidine and after segregation 18,000 colonies were replica plated and UV irradiated. Twentytwo UV sensitive strains were isolated and tested for methylmethanesulphonate (MMS) sensitivity. Six of these strains were more MMS-sensitive than LBA 4011. A Ti plasmid that was genetically marked with Tn 1 (CbR) was introduced in these strains and the rescue of the CbR marker during superinfection with an incompatible cointegrate plasmid Ti::R 702 was determined. One strain exhibited a large reduction in rescue frequency. It is concluded that the latter strain was recombination deficient. This property did not influence the induction of plant tumours.

Methyl Methanesulfonate

Conjugation in Agrobacterium tumefaciens in the absence of plant tissue.

A general, reliable conjugation system for Agrobacterium tumefaciens in the absence of plant tissue is described in which A. tumefaciens can serve either as the donor or recipient of plasmid deoxyribonucleic acid with reasonable efficiency. Plasmid RP4 was transferred from Escherichia coli to A. tumefaciens and from strain of A. tumefaciens. Both RP4 and the A. tumefaciens virulence-associated plasmids were detected by alkaline sucrose gradients in A. tumefaciens strains A6 and C58 after mating with E. coli J53(RP4). The pathogenicity (tumor foramtion) of strains A6 and C58 and the sensitivity of strain C58 to bacteriocin 84 were unaffected by the acquistion of RP4 by the Agrobacterium strains. Plasmid R1drd-19 was not transferred to A. tumefaciens. Transformation experiments with plasmid deoxyribonucleic acid were unsuccessful, even though, in the case of RP4, conjugation studies showed taht the deoxyribonucleic acid was compatible with that of the recipient strains.

Anti-Bacterial Agents

Studies on Agrobacterium tumefaciens. VIII. Avirulence induced by temperature and ethidium bromide.

When tumorigenic strains of Agrobacterium tumefaciens were subcultured at temperatures between 31.5 and 37 degrees C or in broth containing ethidium bromide, they lost their capacity to induce tumors in tomato plants. The sensitivities of curing virulence (tumorigenicity) depended on the density of the population of cells, fewer cells (100/ml) being more sensitive to curing than higher densities (10(6)/ml). The loss of virulence need not require the total loss of the virulence-specifying plasmid, but may result from a loss of a small segment of that plasmid. Virulent strains made avirulent by temperature or ethidium bromide treatment still harbor a large plasmid of 70-80 megadaltons size compared with the 100- to 120-megadalton plasmid in the untreated strains.

Ethidium

Agrobactin, a siderophore from Agrobacterium tumefaciens.

A siderophore (microbial iron transport compound) was isolated from low iron cultures of Agrobacterium tumefaciens B6. The substance was characterized as a threonyl peptide of spermidine acylated with 3 residues of 2,3-dihydroxybenzoic acid, the carbonyl group of 1 residue of the latter participating in an oxazoline ring with the beta-hydroxyl of the threonine moiety. The compound, N-[3-(2,3-dihydroxybenzamido)propyl]-N-[4-(2,3-dihydroxybenzamido)butyl]-2-(2,3-dihydroxyphenyl)-trans-5-methyl-oxazoline-4-carboxamide, was given the trivial name agrobactin. Exposure to acid opened the oxazoline ring to afford agrobactin A. Ferric agrobactin A and agrobactin A itself, but not agrobactin or its ferric complex, had some capacity to feed iron to enterobactin-deficient strains of Escherichia coli and Salmonella typhimurium. Agrobactin was produced by A. tumefaciens in response to iron deficiency and was able to reverse the iron starvation in this organism precipitated by the presence of a ferric complexing agent not utilized by the cells.

Biological Transport

R-plasmid-mediated chromosomal gene transfer in Agrobacterium tumefaciens.

Although several techniques are available for transferring the Ti plasmids from one strain of agrobacterium tumefaciens to another, there are no reproducible methods for analysis of chromosomal markers in this phytopathogen. The R plasmid, R68.45, is known to show chromosomal mobilizing ability in several bacterial genera including the closely related Rhizobia. R68.45 was transferred into the prototrophic A. tumefaciens strain 15955. Ten kanamycin-resistant transconjugant clones were tested for chromosomal mobilizing ability by mating with strain SA10, rifampin- and streptomycin-resistant histidine auxotroph of strain 15955. Of the 10 donor clones, 2 showed high chromosomal mobilizing ability. Between 1,000 and 2,000 His+ colony-forming units per ml were obtained, a value 10 to 20 times greater than can be accounted for by spontaneous reversion. Sequential recloning and matings resulted in the isolation of relatively stable donor cultures. Chromosome gene transfer is dependent upon the presence in the donor of R68.45. Donors lacking an R plasmid or harboring the closely related plasmid RP4 failed to yield His+ transconjugants. With strain SA11, a methionine auxotroph of strain SA10, coinheritance of histidine and methionine independence could be demonstrated. Approximately half of the transconjugants also inherited R68.45. These results indicate that A. tumefaciens 15955 is capable of undergoing host chromosomal genetic exchange.

Chromosomes, Bacterial

Physical characteristics of DNA from bacteriophages of Agrobacterium tumefaciens.

DNA was extracted from isolates of bacteriophages grown on virulent and avirulent strains of Agrobacterium tumefaciens. Molecular weights of DNA from phages isolated from the virulent A. tumefaciens (IIBV7) were about 41.5 X 10(6) daltons, while those from the avirulent A. tumefaciens (IIBNV6) were about 32.5 X 10(6) daltons. The buoyant densities of the four DNA's ranged from 1.7086 to 1.7089 g/cm3, values that were not significantly different. DNA-DNA hybridization studies also indicated that the four phages were closely related. Attempts to induce tumors with phage DNA were unsuccessful.

Bacteriophages