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The aim of the study was to determine, whether the new chemical preparation P3 Tsunami, product of Ecolab, shows bactericidal activity towards Hafnia alvei, Citrobacter freundii, Enterobacter cloacae. The P3 preparation has been suggested for reduction of microbiological contamination in technological water used for washing fruit and vegetables prior to freezing. The tested bacterial suspension (1.5 x 108cfu/mL - 5.0 x 108cfu/mL) was added to prepared samples of tested preparation in four different concentrations. After specified contact time (1 min or 5 min ±10 sec) bactericidal activity of the preparation was neutralised by a validated method. After 5 min ±10 sec, 1 mL of neutralised mixture was transferred to Petri plates and 12-15 mL molten TSA medium was added. After 48 h of incubation at 37°C±1°C, the number of bacteria colonies was determined and the decrease of viable count was calculated. Preparation which in the test conditions defined by EN 1040 norm: 1997 caused 105 or higher decrease of bacteria count was described as bactericidal. P3 Tsunami used in the concentration of 0.05% and 0.025% after 5 min contact time showed bactericidal activity towards all 30 bacterial strains used in the study; when used in the concentration of 0.05% after 1 min contact time it caused 105 higher decrease of bacteria count in 27 strains. Bactericidal activity of P3 preparation after such a short contact time (1 min) suggests that it would fulfil the task of disinfecting technological water in the process of freezing fruit and vegetables.
It was found that pathogens of clamp rot in sugar beet cultivated in Belarus are the following fungal species: Fusarium redolens, Fusarium culmorum, Penicillium expansum, Botrytis cinerea, Gliocladium catenulatum, Sclerotinia sclerotiorum, Alternaria tenuis, Phoma betae. G. catenulatum, F. redolens, F. culmorum, P. expansum, S. sclerotiorum proved more aggressive, P. betae, A. tenuis - less aggressive. Experiments in vitro and in vivo have revealed that strain Bacillus subtilis BIM B-439 D - main component of new biopesticide „Betaprotectin” was characterized by maximal antagonistic activity against clamp rot pathogens. According to small-scale experimental data, „Betaprotectin” biological efficiency reached 36.9-39.2%. Technology of manufacturing new biopreparation comprises a procedure of direct regulation of bacterial antagonistic activity under the impact of physical stress factors - application of spore inoculation material exposed to thermal treatment raised antimicrobial activity of B. subtilis BIM B-439 D liquid culture by 1.2-1.4 times. Deleterious effect of pathogens during storage of root crops in large-scale clamps and piles fell 2-fold upon „Betaprotectin” treatment as compared to the control. Spread of clamp rot slowed down likewise. Biological efficiency of biopesticide application ranged from 17.5% to 39.6%, economic efficiency - from 5.1% to 35.8%. Root crop preservation rate reached 94.1%.
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