• Title/Summary/Keyword: Trichothecium

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Studies on the Growth and Control of Storage Fungi in Stored Paddy Rice (미곡저장에 있어서 저장균류의 생육 및 억제에 관한 연구)

  • Mheen, T.I.;Cheigh, H.S.;Ragunathan, A.N.;Majumder, K.S.
    • Microbiology and Biotechnology Letters
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    • v.10 no.4
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    • pp.297-305
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    • 1982
  • Environmental conditions of fungal growth on Korean rice grain, Milyang No.23, were studied and optimum treatment conditions of the selected fumigants for controlling fungal deterioration of rice were investigated The results are as follows. 1. Most of the fungi grew well above 80% relative humidity and 19% moisture content within 10-30 days. But at 12.5-13.0% moisture content of grains, only Aspergillus candidus, Asperillus versicolor, Penicillium chrysogenum, and Trichothecium roseum were developed within 2 months. The other fungi were only detectable for their mycelial growth under microscopic observation. 2. Among the ten fumigants tested to control the fungal growth on the rice, ethylene oxide was found to be the most effective at a leve1 of 16 mg/$\ell$ for 48 hrs treatment and the next was methyl bromide (32 mg/$\ell$), acrilonitrile and methyl iodide (64 mg/$\ell$). The other fumigants, such as ammonia, methyl formate, ethyl formate, carbon dioxide and propionic acid were found less effective under the tested conditions.

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Studies on the Microbiological Treatment of Hazardous Compounds in Waste Waters from Chemical Plants - (I) Relationship between the Content of Mercury Compound and Microbial Growth - (공장폐수중(工場廢水中) 유독성분(有毒成分)의 미생물학적(微生物學的) 처리방법(處理方法)에 관(關) 연구(硏究) - 수은함유량(永銀含有量)과 미생물(徵生物)의 생육(生育)과의 관계(關係)(제1보(第1報)) -)

  • Lee, Ji-Yul;Chang, Hyun-Ki
    • The Korean Journal of Mycology
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    • v.3 no.1
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    • pp.21-25
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    • 1975
  • This is a study to determine the content of the mercury compound and the distribution of microorganisms in the waste waters flowing from the chemical plants in the Ulsan area (at 4 stations). The summary of the result of this study is as follows: 1. The content of the mercury compound has ranged from non-detection to 0.075 ppm with an average of 0.03 ppm. The highest content has been detected from the water at station A. 2. As for the distribution of the microorganisms, one species each of bacteria, Mucor, Aspergillus, Cladosporium, and Trichothecium (T. roseum); 4 species of Penicillium; and 3 species of Sterile hyphae; a total of 12 species have been isolated. 3. The following results have been found with regard to the growth of these microorganisms in terms of the content of the mercury compound. In the case of an inorganic mercury compound, most of the microbes can grow in water with a content of up to 10 ppm. Pe. sp No. 1 particularly can grow even in 50 ppm. In the case of an organic mercury compound, the growth of the microbes seems to be somewhat restrained even in 2 ppm.

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Survey on the Occurrence of Apple Diseases in Korea from 1992 to 2000

  • Lee, Dong-Hyuk;Lee, Soon-Won;Choi, Kyung-Hee;Kim, Dong-A;Uhm, Jae-Youl
    • The Plant Pathology Journal
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    • v.22 no.4
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    • pp.375-380
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    • 2006
  • In the survey from 1992 to 2000, twenty-eight parasitic diseases were observed in major apple producing areas in Korea. The predominant apple diseases were white rot(Botryosphaeria dothidea), Marssonina blotch(Marssonina mali), Valsa canker(Valsa ceratosperma), Alternaria leaf spot(Alternaria mali), and bitter rot(Collectotrichum gloeosporioides and C. acutatum). Apple scab that reappeared in 1990 after disappearance for 15 years was disappeared again since 1997. A viroid disease(caused by apple scar skin viroid) was newly found in this survey. The five diseases, fire blight(Erwinia amylovora), black rot(Botryosphaeria obtusa), scab(Cladosporium carpophilum), Monochaetia twig blight(Monochaetia sp.), and brown leaf spot(Hendersonia mali), which had once described in 1928 but no further reports on their occurrence, were not found in this survey. However, blossom blight(Monilinia mali), brown rot(Monilinia fructigena), and pink rot(Trichothecium roseum), which did not occur on apple after mid 1970s, were found in this survey.

Cytotoxicity of Trichothecenes to Human Solid Tumor Cells in Vitro

  • Choi, Sang-Un;Choi, Eun-Jung;Kim, Kwang-Hee;Kim, Nam-Young;Kwon, Byung-Mog;Kim, Sung-Uk;Bok, Song-Hae;Lee, So-Young;Lee, Chong-Ock
    • Archives of Pharmacal Research
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    • v.19 no.1
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    • pp.6-11
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    • 1996
  • The trichothecenes are sesquiterpenoid mycotoxins characterized by the 12,13-epoxytrichothec-9-ene ring system. We have tested cytotoxicity of several naturally-occurring or synthesized trichothecenes against human solid tumor cell lines. Among them, trichothecin(I) and $4-\beta$-Acetoxy-12,13-epoxytrichothec-9-ene (trichodermin, II) exhibited highly cytotoxic activities. 4-.betha.-Hydroxy-12,13-epoxytrichothec-9-ene (trichodermol, III) and $4-\beta$-Methoxy-12,13-epoxytrichothec-9-ene (IV) had mild cytotoxicities. But 12,13-Epoxytrichothec-9-ene-4-one (V) and $4-\beta$-Hydroxy-12,13-epoxytrichothec-9-ene(VI) had no cytotoxicities up to 10 $\mug/ml$. And in the tested cell lines, HCT15 colon cancer cell line was the most sensitive to all tested trichothecenes.

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Ecological Characteristics of White Stain Symptom on the Grape in Korea (포도흰얼룩증상의 발생생태적 특성)

  • Oh, Soh-Young;Nam, Ki-Woong;Yoon, Deok-Hoon
    • Korean Journal of Environmental Agriculture
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    • v.33 no.3
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    • pp.178-183
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    • 2014
  • BACKGROUND: The white stain symptom of grape clusters and canes by dust-like particles occurred in many vineyards recently. This study was conducted to investigate the ecological characteristics of white stain symptom in grapevines and vineyards. METHODS AND RESULTS: Optimal climate condition for white stain symptom was $25^{\circ}C{\sim}30^{\circ}C$ with 60% of humidity. Moreover, closed condition with same humidity showed higher incidence rate of white stain symptom than ventilation condition. Grape varieties with black berry skin such as Campbell-Early and Kyoho were more sensitive to white stain symptom compare to varieties with green and red berry skin. Although the pathogens were not detected until March, they increased from April, and increased sharply from mid of July. The pathogens may overwinter in the infected stems and/or on the bark as a mycelium. According to the increase of sugar content of grape from August to September, the mycelium which was parasitic on the bark grew to move to the fruits through the stems, and finally reached the fruit stalk to detach berries from the clusters. CONCLUSION: Well ventilation is recommended inside the vineyard since mid-July with roll up an insect net. In addition, infected stems and fruits should be removed out from grapevines infected with pathogens in the vineyards.

Effect of Environmental-Friendly Control for White Stain Symptom on Grape (포도흰얼룩증상의 친환경방제 효과)

  • Oh, Soh-Young;Nam, Ki-Woong;Yoon, Deok-Hoon
    • Korean Journal of Environmental Agriculture
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    • v.33 no.3
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    • pp.184-188
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    • 2014
  • BACKGROUND: White stain symptom caused by Acremonium acutatum and Trichothecium roseum, is one of the most important diseases on the grape. This disease occurs national-wide in Korea and causes irreversible damage on grape, at harvest season. This study was conducted to develop environment-friendly control method against white stain symptom. METHODS AND RESULTS: Environment-friendly materials were tested for control activity against A. acutatum and T. roseum in vitro and in vivo. The effect of environment-friendly materials against white stain symptom on grape in farmer's greenhouse was examined. The materials, NaDCC and sulphur, were sprayed three times on the leaves and fruit of grape at the two sites of farmer's field, Anseong and Hwaseong of Gyeounggi. To evaluate control effect of NaDCC and sulphur against white stain symptom, the disease severity was investigated after the two materials were sprayed from the disease onset three times at the 7-day intervals. NaDCC showed efficacy of 59.71% for Kyoho and 72.26% for Campbell-Early, and sulphur showed 78.31% for Koyho and 66.19% for Campbell-Early. CONCLUSION: We were selected sulphur and Sodium-Dichloroisocyannurate(NaDCC) based on the results of experiments in vitro. In field test, sulphur and NaDCC showed suppressive effect in the white stain symptom of grape. These results suggested that NaDCC and sulphur selected can be used as control agents for controlling white stain symptom on grape.

Biology and Health Aspects of Molds in Foods and the Environment

  • Bullerman, Lloyd-B.
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.3
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    • pp.359-366
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    • 1993
  • Molds are eucaryotic, multicellular, multinucleate, filamentous organisms that reproduce by forming asexual and sexual spores. The spores are readily spread through the air and because they are very light-weight and tend to behave like dust particles, they are easily disseminated on air currents. Molds therefore are ubiquitous organisms that are found everywhere, throughout the environment. The natural habitat of most molds is the soil where they grow on and break down decaying vegetable matter. Thus, where there is decaying organic matter in an area, there are often high numbers of mold spores in the atmosphere of the environment. Molds are common contaminants of plant materials, including grains and seeds, and therefore readily contaminate human foods and animal feeds. Molds can tolerate relatively harsh environments and adapt to more severe stresses than most microorganisms. They require less available moisture for growth than bacteria and yeasts and can grow on substrates containing concentrations of sugar or salt that bacteria can not tolerate. Most molds are highly aerobic, requiring oxygen for growth. Molds grow over a wide temperature range, but few can grow at extremely high temperatures. Molds have simple nutritional requirements, requiring primarily a source of carbon and simple organic nitrogen. Because of this, molds can grow on many foods and feed materials and cause spoilage and deterioration. Some molds ran produce toxic substances known as mycotoxins, which are toxic to humans and animals. Mold growth in foods can be controlled by manipulating factors such as atmosphere, moisture content, water activity, relative humidity and temperature. The presence of other microorganisms tends to restrict mold growth, especially if conditions are favorable for growth of bacteria or yeasts. Certain chemicals in the substrate may also inhibit mold growth. These may be naturally occurring or added for the purpose of preservation. Only a relatively few of the approximately 100,000 different species of fungi are involved in the deterioration of food and agricultural commodities and production of mycotoxins. Deteriorative and toxic mold species are found primarily in the genera Aspergillus, Penicillium, Fusarium, Alternaria, Trichothecium, Trichoderma, Rhizopus, Mucor and Cladosporium. While many molds can be observed as surface growth on foods, they also often occur as internal contaminants of nuts, seeds and grains. Mold deterioration of foods and agricultural commodities is a serious problem world-wide. However, molds also pose hazards to human and animal health in the form of mycotoxins, as infectious agents and as respiratory irritants and allergens. Thus, molds are involved in a number of human and animal diseases with serious implication for health.

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