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Telomeric fingerprinting of the violet root rot fungus, Helicobasidium mompa: a useful tool for karyotype estimation.

We hybridized the telomere-associated DNA sequence pTel46 isolated from Coprinus cinereus with Helicobasidium mompa genomic DNA. The hybridized fragments were more sensitive to Bal31 nuclease than those that were not hybridized, suggesting that they were located at the ends of chromosomes in H. mompa. The hybridization profile can be used to estimate chromosome number, since the number of chromosomes in a single basidiospore isolate is about half that in putative parent strains. Thus, single basidiospore and field isolates might be homokaryons and heterokaryons respectively. We found telomere-linked restriction fragment length polymorphisms (RFLPs) in strains of H. mompa isolated from field and individual basidiosporcs. Thus, this marker appears to be an excellent tool with which to reveal the considerable polymorphism of H. mompa and to identify strains. The RFLP was not found among several strains of the same mycelial compatibility group (MCG) isolated from the same field, suggesting that strains belonging to an MCG group are identical.

Basidiomycota↗

Genetic diversity and biocontrol potential of fluorescent pseudomonads producing phloroglucinols and hydrogen cyanide from Swiss soils naturally suppressive or conducive to Thielaviopsis basicola-mediated black root rot of tobacco.

Pseudomonas populations producing the biocontrol compounds 2,4-diacetylphloroglucinol (Phl) and hydrogen cyanide (HCN) were found in the rhizosphere of tobacco both in Swiss soils suppressive to Thielaviopsis basicola and in their conducive counterparts. In this study, a collection of Phl+ HCN+Pseudomonas isolates from two suppressive and two conducive soils were used to assess whether suppressiveness could be linked to soil-specific properties of individual pseudomonads. The isolates were compared based on restriction analysis of the biocontrol genes phlD and hcnBC, enterobacterial repetitive intergenic consensus (ERIC)-PCR profiling and their biocontrol ability. Restriction analyses of phlD and hcnBC yielded very concordant relationships between the strains, and suggested significant population differentiation occurring at the soil level, regardless of soil suppressiveness status. This was corroborated by high strain diversity (ERIC-PCR) within each of the four soils and among isolates harboring the same phlD or hcnBC alleles. No correlation was found between the origin of the isolates and their biocontrol activity in vitro and in planta. Significant differences in T. basicola inhibition were however evidenced between the isolates when they were grouped according to their biocontrol alleles. Moreover, two main Pseudomonas lineages differing by the capacity to produce pyoluteorin were evidenced in the collection. Thus, Phl+ HCN+ pseudomonads from suppressive soils were not markedly different from those from nearby conducive soils. Therefore, as far as biocontrol pseudomonads are concerned, this work yields the hypothesis that the suppressiveness of Swiss soils may rely on the differential effects of environmental factors on the expression of key biocontrol genes in pseudomonads rather than differences in population structure of biocontrol Pseudomonas subcommunities or the biocontrol potential of individual Phl+ HCN+ pseudomonad strains.

Ascomycota↗

[Search for actinomycetes--antagonists of fungi causing sugar beet root rot].

Actinomycetes belonging to Streptomyces were isolated from the rhizosphere of sugar beet grown on an infected area after cultivation for many years. 44.1 per cent of them proved to be antagonists of phytopathogenic test fungi. The majority of the antagonists were detected among the Cinereus. The lowest number of the antagonists was detected among the Azureus, the maximum number of the antagonists was observed in the middle and at the end of the sugar beet vegetation period. During various periods of the plant development, the number of the antagonists belonging to different sections changed. The majority of the actinomycetes belonging to Streptomyces were active against Fusarium solani and Botrytis cinerea. The antagonists of the fungi were mainly detected among the representatives of the Cinereus and Helvolo-Flavus.

Antibiosis↗

Characterization of streptomyces lydicus WYEC108 as a potential biocontrol agent against fungal root and seed rots.

The actinomycete Streptomyces lydicus WYEC108 showed strong in vitro antagonism against various fungal plant pathogens in plate assays by producing extracellular antifungal metabolites. When Pythium ultimum or Rhizoctonia solani was grown in liquid medium with S. lydicus WYEC108, inhibition of growth of the fungi was observed. When WYEC108 spores or mycelia were used to coat pea seeds, the seeds were protected from invasion by P. ultimum in an oospore-enriched soil. While 100% of uncoated control seeds were infected by P. ultimum within 48 h after planting, less than 40% of coated seeds were infected. When the coated seeds were planted in soil 24 h prior to introduction of the pathogen, 96 h later, less than 30% of the germinating seeds were infected. Plant growth chamber studies were also carried out to test for plant growth effects and for suppression by S. lydicus WYEC108 of Pythium seed rot and root rot. When WYEC108 was applied as a spore-peat moss-sand formulation (10(8) CFU/g) to P. ultimum-infested sterile or nonsterile soil planted with pea and cotton seeds, significant increases in average plant stand, plant length, and plant weight were observed in both cases compared with untreated control plants grown in similar soils. WYEC108 hyphae colonized and were able to migrate downward with the root as it elongated. Over a period of 30 days, the population of WYEC108 colonized emerging roots of germinating seeds and remained stable (10(5) CFU/g) in the rhizosphere, whereas the nonrhizosphere population of WYEC108 declined at least 100-fold (from 10(5) to 10(3) or fewer CFU/g). The stability of the WYEC108 population incubated at 25 degrees C in the formulation, in sterile soil, and in nonsterile soil was also evaluated. In all three environments, the population of WYEC108 maintained its size for 90 days or more. When pea, cotton, and sweet corn seeds were placed into sterile and nonsterile soils containing 10(6) or more CFU of WYEC108 per g, it colonized the emerging roots. After a 1-week growing period, WYEC108 populations of 10(5) CFU/g (wet weight) of root were found on pea roots in the amended sterile soil environment versus 10(4) CFU/g in amended nonsterile soil. To further study the in vitro interaction between the streptomycete and P. ultimum, mycelia of WYEC108 were mixed with oospores of P. ultimum in agar, which was then used as a film to coat slide coverslips.(ABSTRACT TRUNCATED AT 400 WORDS)

Antifungal Agents↗

Population dynamics of Pythium aphanidermatum in cucumber grown in closed systems.

Foot and root rot in cucumber, caused by Pythium aphanidermatum (Edson) Fitzp., is an economically important disease in soilless culture systems. Nevertheless, very few data are available on the populations of this pathogen. Therefore, two detection methods, nested PCR (polymerase chain reaction) and plating on a selective medium after concentration of samples, were optimised and evaluated. With both methods very low concentrations of P. aphanidermatum could be detected; i.e. the detection limits were around 0.05 CFU/ml nutrient solution. In addition, real-time quantitative PCR using a Molecular Beacon probe was designed and tested. The potential and limitations of the different detection methods are discussed. With these different detection techniques, the population dynamics of P. aphanidermatum in a cucumber crop was followed. The impact of different disinfection treatments was studied in a greenhouse experiment with a cucumber crop growing on rockwool slabs in 12 independent closed systems. The nutrient solution was recirculated without disinfection (control), after UV-irradiation (250 mJ/cm2), or after slow sand filtration treatment. Part of the crop was inoculated with an isolate of P. aphanidermatum. The non-inoculated part could only become infected through the recirculated nutrient solution. Disease symptoms (stem rot, wilt, and root rot) and the yield loss were recorded in addition to the population dynamics of the pathogen. Very clear differences in the spread of the pathogen and in disease symptoms were measured between the systems with and without disinfection. UV-irradiation and slow sand filtration were both effective in removing the pathogen and protected the crop from disease symptoms. Correlation indices between the final yield and the different measurements during the experiment were calculated.

Colony Count, Microbial↗

A rapid molecular method for differentiating two special forms (lycopersici and radicis-lycopersici) of Fusarium oxysporum.

Two pathogenic special forms (f. sp.) of the Fusarium oxysporum species complex f. sp. lycopersici (Fol) and f. sp. radicis-lycopersici (Forl) are morphologically indistinguishable. Although they are pathogenic to the same host genus Lycopersicon (tomato), and infect the same tomato cultivar, they form distinct diseases; Fol causes wilt and Forl causes crown rot and root rot. These two special forms apparently exist as genetically isolated populations, based on vegetative compatibility and molecular variation at the DNA level. In seeking efficient diagnostic tools for differentiating Fol and Forl isolates, we examined three techniques: isozyme analysis, mitochondrial DNA (mtDNA) RFLP by HaeIII-digestion of total genomic DNA, and an osmotic method using high performance liquid chromatography (HPLC) to detect fungal pigments. The isolates were collected from geographically widespread locations. Distinct HPLC-profile differences were found between an endophytic non-pathogenic isolate and the other pathogenic isolates. However, the direct mtDNA RFLP technique proved to be an efficient diagnostic tool for routine differentiation of Fol and Forl isolates.

Chromatography, High Pressure Liquid↗