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  • 1
    ISSN: 1432-0789
    Keywords: Biological suppression ; Pythium damping-off ; Rhizosphere pseudomonads ; Pseudomonas spp. ; Cucumis sativus L. ; Oligotrophs
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Geosciences , Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary Pseudomonads recovered from the cucumber rhizosphere were evaluated for their ability to suppress Pythium ultimum damping-off. Full-strength and 250-fold diluted selective media formulations with King's B medium (KB and KB/250, respectively) as the basal medium were used as the recovery media. Eight per cent of the isolates recovered (11/138) could induce suppression to Pythium damping-off and 45% of these biocontrol agents produced fluorescent pigments. No differences in the ability to induce suppression among the isolates recovered on full-strength and diluted media were detected. The growth rates of the selected isolates indicated that growth in KB broth was faster or equal to that in KB/10. Therefore, no obligate oligotrophs were recovered. Additionally, growth was observed in 15 000-fold diluted KB for 10 of 11 test isolates, which indicated that these isolates were facultative oligotrophs. In general, the faster growing isolates were more likely to induce suppression when used as seed treatments. Finally, the in vitro antifungal properties of test isolates against P. ultimum indicated that 4 of the 11 isolates inhibited P. ultimum.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-0789
    Keywords: Key words Benzoate biodegradation ; Comamonas terrigena ; Denitrification ; Interfacial environment ; Redox potential
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Geosciences , Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Abstract  The purpose of this work was to assess the influence of redox conditions on benzoate biodegradation coupled with oxygen and nitrate as electron acceptors. A benzoate-degrading, facultatively denitrifying bacterium was isolated from a sediment sample and was tentatively identified as Comamonas terrigena (strain J92-6). The experimental system was based on sand columns that were filled with liquid medium containing benzoate and nitrate. The columns were inoculated to provide a fixed biofilm on the sand. Conditions were created by aeration, dinitrogen-purging, and sodium sulfide amendment that comprised oxic, anoxic, and reduced (–375 mV) zones, respectively, at different depths of the columns. Anaerobic biodegradation of benzoate was nitrate-dependent and proceeded at all redox potential values ranging from +400 to –375 mV. Thus, benzoate degradation coupled with denitrification was not inhibited at low redox potentials characteristic of sulfate reduction and methanogenesis. The results demonstrate that the fixed biofilm column system can be successfully used to evaluate the influence of environmental factors on the biodegradation of benzoate, a central decomposition product of anaerobic, aromatic hydrocarbon biodegradation.
    Type of Medium: Electronic Resource
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