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Viability and respiratory activity of Pseudomonas syringae cells starved in buffer.

Pseudomonas syringae cells starved in buffer released orcinol-reactive molecules and materials that absorbed ultraviolet light. The number of cells culturable in nutrient medium decreased more rapidly than the number of intact particles determined by microscopy. The results suggested that starvation resulted in the lysis of an increasing number of cells, and that a fraction of the intact particles were not culturable. Starvation also resulted in a decrease in the rate of oxygen consumption with acetate, glycerol, and succinate, but at different levels. Whereas the respiration of acetate and glycerol decreased concomitantly with culturability, the respiration of succinate decreased to levels similar to the concentration of intact cells, suggesting that all intact particles respired the succinate, but only the culturable cells respired the acetate and glycerol. The results suggest that measuring the activity of the electron-transport system can overestimate the viability of starved bacterial cells, and that complex metabolic activities such as the respiration of acetate and glycerol are probably better suited for the evaluation of this parameter.

Acetates↗

Use of Tn5-gusA5 to investigate environmental and nutritional effects on gene expression in the coronatine biosynthetic gene cluster of Pseudomonas syringae pv. glycinea.

Pseudomonas syringae pv. glycinea PG4180 produces coronatine (COR), a chlorosis-inducing phytotoxin that consists of the polyketide coronafacic acid (CFA) coupled via an amide bond to the ethylcyclopropyl amino acid coronamic acid (CMA). Both CFA and CMA function as intermediates in the pathway to coronatine, and genes encoding their synthesis have been localized: however, the precise factors that regulate the production of COR and its precursors remain unclear. In the present study, a lambda delivery system for Tn5-gusA5 was developed and used to obtain transcriptional fusions in the COR gene cluster. Selected carbon (fructose and xylose) and amino acid (isoleucine and valine) sources significantly decreased COR biosynthesis at the transcriptional level. Transcriptional activity in the COR gene cluster was temperature dependent with maximal expression at 18-24 degrees C and significantly less expression at 14 and 30 degrees C. Interestingly, changes in osmolarity and the addition of complex carbon and nitrogen sources to the growth medium did not significantly affect COR gene expression, although both factors significantly impacted the quantity of COR produced. These results indicate that multiple factors impact COR production and only some of these directly affect transcription in the COR gene cluster.

Amino Acids↗

Efficient genome editing in Pseudomonas syringae pv. actinidiae using the CRISPR/FnCas12a system.

CRISPR-based gene editing has rarely been studied in plant pathogens. In this report, the CRISPR/FnCas12a system was successfully established for gene editing in Pseudomonas syringae pv. actinidiae (Psa), which causes bacterial canker (BC) of kiwifruit. The system was constructed in a Psa-suitable vector pBBR1-MCS2 to edit hopH1 or/and hopZ5, which encode effectors only present in Psa biovar 3 (Psa3) responsible for BC pandemic in kiwifruit worldwide. Two different CRISPR RNAs (crRNA) were designed to edit either hopH1 or/and hopZ5, and two different sets of PCR primers were used to screen deletions of the target genes and the presence of the vector in Psa. The deletion in Psa was impacted by the position of the DNAs targeted by the crRNAs. The vector-eliminated mutant could receive the editing system iteratively. Interestingly, the double mutant ΔhopZ5ΔhopH1 showed significantly stronger virulence than the wild-type Psa on Actinidia eriantha cv. White (resistant to BC), but weak virulence on A. chinensis cv. Hongyang (highly susceptible to BC), respectively, suggesting that hopH1 or/and hopZ5 potentially matches an unknown resistance gene in White. In summary, we have established the CRISPR/FnCas12a genome-editing system to probe gene function in the pathogen and to explore effector-target interactions in kiwifruit-Psa-pathosyetem.

Bacterial canker↗

Studies on constituents with cytotoxic activity from the stem bark of Syringa velutina.

Cytotoxic compounds, oleuropein (1) and a phenylethanoid glycoside (2) were isolated from the stem bark of Syringa velutina KOM. along with coniferylaldehyde 4-O-glucoside, syringin, ligstroside, (+)-syringaresinol 4-O-glucoside, (+)-medioresinol 4"-O-glucoside and (-)-olivil 4"-O-glucoside. Phenylethanoid glycoside (2) was identified to be 3,4-dihydroxyphenylethyl alcohol 8-O-beta-D-glucopyranoside. This compound showed the most potent cytotoxic effect on several tumor cell lines (P-388, L-1210, SNU-5 and HL-60) among eight compounds isolated in the present study. We suggest that the 3,4-dihydroxyphenylethoxy moiety of this compound contributes to cytotoxicity.

Animals↗

Cloning and expression in Escherichia coli of 2-hydroxypropylphosphonic acid epoxidase from the fosfomycin-producing organism, Pseudomonas syringae PB-5123.

The fosfomycin resistance gene, fosC, has been cloned from the fosfomycin-producing organism, Pseudomonas syringae PB-5123. Sequence analysis upstream of this gene found a new ORF showing significant homology to 2-hydroxypropylphosphonic acid epoxidase from fosfomycin-producing Streptomyces wedmorensis. The purified recombinant protein of this ORF converted 2-hydroxypropylphosphonic acid to fosfomycin. This result clearly showed the ORF to encode 2-hydroxypropylphosphonic acid epoxidase in PB-5123.

Amino Acid Sequence↗

[Some characteristics of Pseudomonas syringae pv. maculicola dissociants].

Pseudomonas syringae pv. maculicola dissociants producing colonies of different morphotype were found to possess similar biochemical and serological properties but different virulence to the host plant. The heterogeneous extracellular and intracellular lipopolysaccharide-protein complexes of the dissociants differed in their chemical composition and biological activity towards test plants.

Bacterial Proteins↗

Aluminium, chromium and manganese detoxification mechanisms in Pseudomonas syringae: an X-ray fluorescence study.

Pseudomonas syringae cultured in a defined citrate medium supplemented with 1 mM aluminium, chromium and manganese, respectively, appeared to elicit disparate biochemical responses. At the stationary phase of growth aluminium was predominantly present as an insoluble residue. Although virtually none of this metallic element was detected in the supernatant, the bacterial cells appeared to contain some aluminium. Following the initial uptake of chromium the microbe secreted the metal in the supernatant. Only a small fraction of the chromium was localised in the bacterial cells; 91% manganese was biotransformed into an insoluble pellet. No citrate was detected in the exocellular fluid at cessation of cellular growth.

Aluminum↗

[An analysis of the molecular forms of the lipopolysaccharide from Pseudomonas syringae pv. atrofaciens IMV K-1025].

Water extract and salt-EDTA extract of Pseudomonas syringae, pv. atrofaciens cells were fractionated by ultracentrifugation with following salting out of ultracentrifugal supernatant by ammonium sulphate at 55% saturation (pH 4.5). The composition and distribution of LPS molecular forms were studied in the obtained fractions by means of electrophoresis in 10% polyacrylamide gel with 1% sodium dodecylsulphate when staining gels by silver nitrate and cumassi. It is shown that ultracentrifugal supernatant and a sediment as well as sulphate sediment contain S-LPS and R-LPS. SR-LPS is not differentiated. Sulphate supernatant does not contain the determinable amount of S-LPS but it is enriched by the proteins with molecular weights of 65-15 kDalton. S-LPS is localized in the gel area which corresponds to mobilities of polypeptides with molecular weights 130-45 KDalton and the number of monomeric links in O-specific chains of its molecules reaches 25-30. R-LPS migrates under electrophoresis in gel to the mobility zone of polypeptides with molecular weights 14.5-16 kDalton.

Bacterial Outer Membrane Proteins↗

[The polysaccharide glycocalyx of Pseudomonas syringae pv. atrofaciens].

It was shown by the method of electron microscopy that cells of virulent strain Pseudomonas syringae rv. atrofaciens 4394 have extracellular, probably, polysaccharide glycocalix. It consists of acid components giving positive cytochemical reaction with ruthenium red, a specific reagent to polyanions.

Glycoproteins↗

[Antigenic polysaccharides of bacteria. 27. Structure of the O-specific polysaccharide chain of lipopolysaccharides from Pseudomonas syringae pv. atrofaciens 2399, phaesolica 120a and Pseudomonas holci 8299 belonging to serotype VI].

Lipopolysaccharides from Pseudomonas syringae pvs atrofaciens 2399. phaseolicola 120a and Pseudomonas holci 8299, belonging to serogroup VI. possess an identical polysaccharide chain composed of D-rhamnose and D-fucose. On the hasis of methylation, partial acid hydrolysis, 1H- and 13C-NMR data, it was concluded that the backbone of the polysaccharide represents D-rhamnan built up of tetrasaccharide repeating units and alpha-D-fucofuranose residues are attached to the backbone as the monosaccharide branches. The following structure of the repeating unit is established: (Formula: see text).

Antigens, Bacterial↗

[Antigenic bacterial polysaccharides. 28. The structure of the O-specific lipopolysaccharide chain of Pseudomonas syringae pv. atrofaciens K-1025 and Pseudomonas holci 90a (serogroup II)].

Lipopolysaccharides of serologically related strains of Pseudomonas syringae pv. atrofaciens K-1025 and Pseudomonas holci 90a possess the identical O-specific polysaccharide chains, representing a homopolymer of D-rhamnose. On the basis of methylation, partial and complete Smith degradation, and analysis by 1H- and 13C-NMR-spectroscopy, it was concluded that the repeating unit of the polysaccharide is a branched pentasaccharide of the following structure: (formula; see text)

Antigens, Bacterial↗

Induction of potassium efflux by cupric ions in Pseudomonas syringae ATCC 12271 and its correlation with cell viability.

In Pseudomonas syringae, Cu2+ induce a significant loss of K+ from the cells. The course of the efflux followed an approximately sigmoidal pattern. The maximum rate of K+ efflux, the time needed to achieve this rate and the maximum amount of K+ released from the cells, were dependent on copper concentration. Pre-treatment with several divalent cations modified markedly the parameters of potassium efflux induced by copper, by increasing the maximum rate of K+ efflux and the amount of K+ released after 4 min of copper treatment, and decreasing the time required to achieve the maximum rate. The addition of copper to cell suspensions resulted in a progressive decrease in the number of viable cells. Pre-treatment with Mg2+ or Ca2+ resulted in a decrease in the lethality of copper ions.

Calcium↗

Regulation of 3-indoleacetic acid production in Pseudomonas syringae pv. savastanoi. Purification and properties of tryptophan 2-monooxygenase.

The oxidative decarboxylation of L-tryptophan to yield 3-indoleacetamide, catalyzed by tryptophan 2-monooxygenase, represents a controlling reaction in the synthesis of indoleacetic acid by Pseudomonas savastanoi (Pseudomonas syringae pv. savastanoi), a gall-forming pathogen of olive (Olea europea L.) and oleander (Nerium oleander L.). Production of indoleacetic acid is essential for virulence of the bacterium in its hosts. Tryptophan 2-monooxygenase was characterized to determine its role in indoleacetic acid metabolism in the bacterium. The enzyme was purified to apparent homogeneity from Escherichia coli cells containing the genetic locus for this enzyme obtained from P. savastanoi. The preparation contained a single polypeptide with a mass of 62,000 that cross-reacted immunologically with a homologous protein in P. savastanoi. The holoenzyme contained one FAD moiety/subunit with properties consistent with a catalytic function. The enzyme preparation catalyzed an L-tryptophan-dependent O2 uptake and yielded 3-indoleacetamide as a product. Enzyme activity fit simple Michaelis Menten kinetics with a Km for L-tryptophan of 50 microM. 3-Indoleacetamide and 3-indoleacetic acid were identified as regulatory effectors. The apparent Ki for 3-indoleacetamide was 7 microM; that for indoleacetic acid was 225 microM. At Km concentrations of tryptophan, enzyme activity was inhibited 50% by 25 microM 3-indoleacetamide. In contrast, 230 microM indoleacetic acid was required to effect a similar inhibition. Phenylalanine and tyrosine were ineffective as regulatory metabolites. These results indicate that IAA synthesis in P. savastanoi is regulated by limiting tryptophan and by feedback inhibition from indoleacetamide and indoleacetic acid.

Feedback↗

[Studies on the variability of the phaseolotoxin production by Pseudomonas syringae pv. phaseolicola].

Isolation of bacteria from a field of bean plants (Phaseolus vulgaris L.) with conspicuous symptoms of halo blight disease resulted in 123 bacterial strains from which 57 were identified as Pseudomonas syringae pv. phaseolicola . At 18 degrees C the phaseolotoxin production of the isolated strains differs widely in submerse culture. Only few strains produce high amounts of phaseolotoxin being comparable with those of the reference strain 1321, while most of the strains show a low capability of phaseolotoxin production. Furthermore, we proved the stability of phaseolotoxin production of 29 strains. After one year about 50% of the strains were extremely reduced in their capability of phaseolotoxin production. We found that the reason for this reduction of toxin production is the appearance of Tox- segregants within a Tox+ clone. At 24 degrees C all strains (with one exception) show considerable lower amounts of toxin production or none at all: maximally 30% of the toxin amounts synthesized at 18 degrees C were produced. At 28 degrees C none of the isolated strains produce phaseolotoxin . The present data allow the conclusion to be drawn that in natural environments there exists a wide spread regarding the amount and stability of the phaseolotoxin production.

Biological Assay↗

Dynamic model of discontinuous and continuous phaseolotoxin production of Pseudomonas syringae pv. phaseolicola.

From experimental data of kinetics of growth, glucose consumption and product formation of Pseudomonas syringae pv. phaseolicola the development and parameter estimation of a mathematical model is presented. The model describes the behaviour of both, batch and chemostat culture, as well as for different temperatures. The model is favoured for dynamic optimization studies. Maximal productivity is reached in the chemostat for a dilution rate which is only a little bit smaller than the wash out point.

Culture Media↗

[Clinico-pharmacological trial of the preparation streptobicillin depot-syringae mammariae].

Streptobicillin depot-syringae mammariae contains: benzathin-penicillin--1,200,000 UI, streptomycin sulfa--1,000,000 UI, vitamin A oleosum--15,000 UI in a suitable base up to 10 ml. It is intended for the therapy and prophylaxis of inapparent mastitis of cows during the dry period. The preparation was tested in a total of 301 udder quarts of cows in terms of tolerance (general and local), depot effect, residual amounts, bactericidic effect, and therapeutic effect. The preparation was found to be well tolerated by the body and the parenchyma of the udder. The duration of its effect was 25 days. No residual amounts were found in the milk during the following lactation. The bactericidic effect in vitro reached 92.4 per cent, and in vivo--87.3 per cent of the cases. Positive therapeutic effect was found in 87.1 per cent of the cases, with subclinical mastitis it being 80.2 per cent, with latent infections--96.2 per cent, with secretion disturbances--94.3 per cent. Results revealed that the preparation was suitable to control inapparent mastitis in cows during the dry period.

Animals↗

Characterization of O-antigens from different strains of Pseudomonas syringae pv. tabaci.

O-Antigens (lipopolysaccharides, LPS) were isolated by NaCl extraction from microbial biomass of Pseudomonas syringae pv. tabaci and purified by ultracentrifugation. Individual structural components of the LPS macromolecule (O-specific polysaccharide (O-PS), core oligosaccharide, and lipid A) were obtained and characterized. Fatty acids 3-OH-C10:0, C12:0, 2-OH-C12:0, 3-OH-C12:0, C16:1, C16:0, C18:1, and C18:0 were identified in the lipid A composition. Glucosamine, ethanolamine, and phosphoethanolamine were found in the hydrophilic part of the lipid A macromolecule in all strains tested. Lipid A preparations contained phosphorus and amino acids. Rhamnose, glucose, glucosamine, 2-keto-3-deoxyoctulosonic acid, heptose, alanine, and phosphorus were identified as the main core components. The strains differed in O-PS structure. We describe the O-chain of LPS in strain P-28. It contains repeating units of the following structure: [formula: see text] The O-PS structures of LPS from strains P-28 and 225 are identical, however, they differ substantially from that of strain 223. Both structures from strains 223 and 225 were reported previously. Antibodies to antigenic epitopes of O-PS, core, and lipid A were revealed in O-serum against the whole bacterial cells. Correlation of O-PS structure with the serological grouping of strains was observed.

Carbohydrate Conformation↗

[The properties of the proteins and nucleic acids of 3 Pseudomonas syringae phages].

The 9B, 123, 788/8 Pseudomonas syringae phages were investigated. PAAG electrophoretic profiles of phage proteins were identical for all three phages except the minor polypeptide having molecular weight 35,000 Da. The band corresponding to this protein was present only in 9B and 788/8 phage protein profiles. Amino acid composition of phage proteins varied insignificantly showing prevalence of Asp, Glu, Ala, Leu. Phage DNA fragments electrophoresis, carried out after processing with specific endonuclease Hind III, made it possible to evaluate common restriction sites in phage genomes. Genome molecular weight was equal to 15 mda for 9B phage and to 14 mDa for 123 and 788/8 phages. The analysis of phage growth cycle showed that latent period consisted of 50 min at 20 degrees C and the yield equalled to 70 virions per infected bacterium cell. The similarity of the phages' features suggests their broad spreading in the environment.

Amino Acids↗