• 제목/요약/키워드: Penicillium islandicum

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Biocontrol Activity of Volatile-Producing Bacillus megaterium and Pseudomonas protegens Against Aspergillus and Penicillium spp. Predominant in Stored Rice Grains: Study II

  • Mannaa, Mohamed;Kim, Ki Deok
    • Mycobiology
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    • 제46권1호
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    • pp.52-63
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    • 2018
  • In our previous studies, Bacillus megaterium KU143, Microbacterium testaceum KU313, and Pseudomonas protegens AS15 have been shown to be antagonistic to Aspergillus flavus in stored rice grains. In this study, the biocontrol activities of these strains were evaluated against Aspergillus candidus, Aspergillus fumigatus, Penicillium fellutanum, and Penicillium islandicum, which are predominant in stored rice grains. In vitro and in vivo antifungal activities of the bacterial strains were evaluated against the fungi on media and rice grains, respectively. The antifungal activities of the volatiles produced by the strains against fungal development and population were also tested using I-plates. In in vitro tests, the strains produced secondary metabolites capable of reducing conidial germination, germ-tube elongation, and mycelial growth of all the tested fungi. In in vivo tests, the strains significantly inhibited the fungal growth in rice grains. Additionally, in I-plate tests, strains KU143 and AS15 produced volatiles that significantly inhibited not only mycelial growth, sporulation, and conidial germination of the fungi on media but also fungal populations on rice grains. GC-MS analysis of the volatiles by strains KU143 and AS15 identified 12 and 17 compounds, respectively. Among these, the antifungal compound, 5-methyl-2-phenyl-1H-indole, was produced by strain KU143 and the antimicrobial compounds, 2-butyl 1-octanal, dimethyl disulfide, 2-isopropyl-5-methyl-1-heptanol, and 4-trifluoroacetoxyhexadecane, were produced by strain AS15. These results suggest that the tested strains producing extracellular metabolites and/or volatiles may have a broad spectrum of antifungal activities against the grain fungi. In particular, B. megaterium KU143 and P. protegens AS15 may be potential biocontrol agents against Aspergillus and Penicillium spp. during rice grain storage.

Alcohol과 쌀 곰팡이의 Toxicity가 간(肝)의 지방(脂肪) 축적(蓄積)에 미치는 영향(影響) (Effects of Alcohol Intoxication and Moldy Rice Consumption on the Liver Lipid Content in Rat)

  • 정진은;김숙희
    • Journal of Nutrition and Health
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    • 제6권4호
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    • pp.37-53
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    • 1973
  • For the elucidation of the metabolic effects due to alcoholic drink and moldy rice intake author designed two experiments as follows. In the first experiment, sixty male and female rats, divided into six groups, 10 rats each in both sexes, were given 7.5% sucrose-30% alcohol solution (Jinro-Soju) and diets varied of fat content (2%, 7%, 30% of diet) and protein quality (casein, bean, anchovy) for 6 weeks. In the Second experiment, six groups of rats, 10 male rats each, were fed the diets containing zero, 5%, 10%, 25%, 50%, and 100% moldy rice contaminated Penicillium Islandicum and the experimental periods were 4 weeks and 6 weeks. The results of these studies due to the toxicity of alcohol consumption and moldy rice ingestion of the fatty liver production and the other effects are as follows. 1. Food intake of alcohol consumed groups decreased to 50%-70% of that of standard group. In the second study, there was no significant differences on food intake due to the different contents of moldy rice and experimental period. 2. On the view paint of body weight gain, the body weight of alcohol consumed groups gained much less than that of standard group, because food consumption was decreased due to alcohol ingestion. 3. In comparison of F.E.R. and P.E.R. between standard and experimental groups, there was no significant differences in this study. 4. As a matter of fact, there was no significance on the nitrogen balance in both studies. 5. From the result of hematology, R.B.C. counts, W.B.C. counts, hemoglobin, and hematocrit showed normal values in all groups including in this study. So we might conclude that the toxicity of alcohol and moldy rice do not effect significantly on blood picture. 6. The larger organs shrank on the range of 20%-70% of that against standard group in this study. The major reason for the shrinkage of organs might be account of decreased food consumption due to alcoholic drink. There was no great changes on the organ weight due to the ingestion of moldy rice. 7. The nitrogen content in various organs in both experiments was revealed at the normal level for the worst condition in terms of the least food intake. In other word, it was noteworthy that the concentration of nitrogen in various organs was kept at the normal ratio as standard groups under the circumstances of this study. 8. The lipid content in the liver of rats fed alcohol and diets containing either various lipid contents or protein quality did not increase. Hepatic lipids accumulation due to the dietary fat content was observed, but there wvas no significances among the compared groups. In the second experiment, the difference of hepatic lipid content between the moldy rice groups and standard group was not showed. In addition to the result of total lipid, hepatic free cholesterol, free fatty acid, and triglyceride did not change in both studies, we might conclude that the toxicity of alcohol and moldy rice could not effect on the hepatic lipid contents. 9. There was no significant differences on the serum glucose level between alcohol groups and standard group. In the second experiment, serum glucose level increase in 6th week compared with in 4th week, but there was no significant differences.

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