• Title/Summary/Keyword: nivalenol (NIV)

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Contamination of Fusarium Mycotoxins in Corn Samples Imported from China (중국으로부터 수입한 옥수수에서의 Fusarium 진균독소오염)

  • Kang, Hyo-Jung;Kim, Jin-Cheol;Seo, Jeong-Ah;Lee, Yin-Won;Son, Dong-Hwa
    • Applied Biological Chemistry
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    • v.37 no.5
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    • pp.385-391
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    • 1994
  • The occurrence of Fusarium mycotoxins was surveyed in 68 corn samples imported from China. Four 8-ketotrichothecenes including deoxynivalenol (DON), 15-acetyldeoxynivalenol (15-ADON), 3-acetyldeoxynivalenol (3-ADON), and nivalenol (NIV) were detected in corn. In addition, the corn samples were contaminated with zearalenone (ZEA), fumonisin $B_1$, $(FB_1)$, fumonisin $B_2$, and fumonisin $B_3$. DON, 15-ADON, 3-ADON, ZEA, and $FB_1$ were major contaminants in corn, with mean levels of 277, 34, 37, 39, and 123 ng/g, respectively.

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Survey on Fusarium Mycotoxin Contamination in Oat, Sorghum, Adlay, and Proso Millet during the Harvest Season in Korea (귀리, 수수, 율무, 기장의 수확기에 발생하는 Fusarium 곰팡이독소 오염도 조사)

  • Lee, Mi Jeong;Wee, Chi-Do;Ham, Hyenheui;Choi, Jung-Hye;Baek, Ji Sun;Lim, Soo Bin;Lee, Theresa;Kim, Jeom-Soon;Jang, Ja Yeong
    • Journal of Food Hygiene and Safety
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    • v.35 no.1
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    • pp.13-22
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    • 2020
  • A total of 244 cereal samples (oat, sorghum, adlay, and proso millet) were collected from fields to examine the contamination of Fusarium mycotoxins in cereals during harvest season in 2017 and 2018. The contamination levels of deoxynivalenol (DON), nivalenol (NIV), and zearalenone (ZEA) were analyzed individually by using the immunoaffinity column clean-up method with ultra performance liquid chromatography, and fumonisins (FUM) were analyzed by using the QuEChERS method with liquid chromatography-mass spectrometry. Highest level of NIV contamination (120.0-3277.0 mg/kg) was observed in oat samples among the analyzed cereals. In the adlay samples, DON contamination was the highest (maximum level 730.0 ㎍/kg). The proso millet samples had a high frequency of detection of NIV and ZEA (61.5% and 57.9%, respectively), but the levels were low (average detection level of NIV, 75.6 ㎍/kg, for ZEA, 21.5 ㎍/kg). Among the cereal samples, sorghum had the highest contamination frequency of DON, ZEA, and FUM, and the co-occurrence of Fusarium mycotoxin was 70.0%, which was higher than the average of 29.9%. In order to safely manage Fusarium mycotoxin levels in cereals, continuous research on the development of contamination prevention technologies together with monitoring of mycotoxin contamination is needed.

Production of 8-ketotrichothecenes by Fusarium graminearum on Corn and Barley (옥수수와 보리에서 Fusarium graminearum의 8-ketotrichothecenes 생성)

  • 서영수;서정아;손황배;이인원
    • Korean Journal Plant Pathology
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    • v.14 no.5
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    • pp.418-424
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    • 1998
  • The production of 8-ketotrichothecenes, deoxynivalenol (DON), nivalenol (NIV), and their monoacetyl derivatives was studied in rice and corn cultures using 8 isolates of Fusarium graminearum which were obtained from corn and barley samples. Higher concentrations of trichothecenes were produced on rice than corn, and production of the toxins on rice was enhanced by growing the fungi at $25^{\circ}C$. The isolates were used for evaluation of toxin production and pathogenicity after artificial inoculation to 5 corn and 3 barley cultivars. The kinds and the relative amounts of trichothecenes produced in cultures were consistent with those in infected kernels of corn and barley with some exceptions. As for DON chemotypes, the ratios of 15-acetyl-DON to 3-acetyl-DON were varied among the pathogen-cultivar interactions. The corn and barley cultivars showed the significant differences of resistance to the Fusarium isolates in disease severity and seedling blight, and resistance ranking to the different isolates was varied. However, significant correlations were observed between the total concentrations of trichothecenes in infected kernels of corn and barley and pathogenicities of the Fusarium isolates to the hosts.

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Variation in Trichothecene and Zearalenone Production by Fusarium graminearum Isolates form Corn and Barley in Korea (한국산 옥수수 및 보리로 부터 분리한 Fusarium graminearum 균주의 Trichothecene과 Zearalenone 생성변이)

  • Kim, Jin-Cheol;Park, Ae-Ran;Lee, Yin-Won;Youn, Hee-Ju;Cha, Seung-Hee
    • Korean Journal of Microbiology
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    • v.31 no.4
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    • pp.312-317
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    • 1993
  • A total of 110 Fusarium graminearum isolates were obtained from corn and barley samples which were collected from Kangwon province and the southern part of Korea, respectively. The isolates were tested for trichothecene and zearalenone (ZEA) production in rice culture. The incidences of trichothecene production by 51 isolates of F. graminearum from corn were 64.7% for deoxynivalenol (DON), 7.8% for 3-acetyldeoxynivalenol (3-ADON),33.3% for 15-acetylde-oxynivalenol (15-ADON), 21.6% for invalenol (NIV), and 13.7% for 4-acetylnivalenol (4-ANIV). DON producers frequently co-produced 15-ADON rather than 3-ADON. On the other hand, the incidences of trichothecene production by 59 isolates of F. graminearum from barley were 71.2% for NIV, 61.0% for 4-ANIV, and only one isolate produced DON and 3-ADON. The incidences and mean levels of ZEA producers were 32.0% and 71.$\mu$g/g for the isolates from corn, and 29.0% and 74 .$\mu$g/g for the isolates from barley. There was a great regional difference in trichothecene production of F. graminearum isolates between Kangwon province and the southern part of Korea.

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Toxigenic Mycobiota of Small Grain Cereals in Korea

  • Lee, Theresa
    • 한국균학회소식:학술대회논문집
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    • 2016.05a
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    • pp.33-33
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    • 2016
  • Mycotoxins are toxic secondary metabolites produced by fungi. They can be present in where agricultural-based commodities are contaminated with toxigenic fungi. These mycotoxins cause various toxicoses in human and livestock when consumed. Small grains including corn, barley, rice or wheat are frequently contaminated with mycotoxins due to infection mainly by toxigenic Fusarium species and/or under environment favorable to fungal growth. One of the most well-known Fusarium toxin groups in cereals is trichothecenes consisting of many toxic compounds. Deoxynivalenol (DON), nivalenol (NIV), T-2 toxin, and various derivatives belong to this group. Zearalenone and fumonisin (FB) are also frequently produced by many species of the same genus. In order to monitor Korean cereals for contamination with Fusarium and other mycotoxigenic fungal species as well, barley, corn, maize, rice grains, and soybean were collected from fields at harvest or during storage for several years. The fungal colonies outgrown from the grain samples were identified based on morphological and molecular characteristics. Trichothecene chemotypes of Fusarium species or presence of FB biosynthetic gene were determined using respective diagnostic PCR to predict possible toxin production. Heavy grain contamination with fungi was detected in barley, rice and wheat. Predominant fungal genus of barley and wheat was Alternaria (up to 90%) while that of rice was Fusarium (~40%). Epicoccum also appeared frequently in barley, rice and wheat. While frequency of Fusarium species in barley and wheat was less than 20%, the genus mainly consisted of Fusarium graminearum species complex (FGSC) which known to be head blight pathogen and mycotoxin producer. Fusarium composition of rice was more diverse as FGSC, Fusarium incarnatum-equiseti species complex (FIESC), and Fusarium fujikuroi species complex (FFSC) appeared all at considerable frequencies. Prevalent fungal species of corn was FFSC (~50%), followed by FGSC (<30%). Most of FFSC isolates of corn tested appeared to be FB producer. In corn, Fusarium graminearum and DON chemotype dominate within FGSC, which was different from other cereals. Soybeans were contaminated with fungi less than other crops and Cercospora, Cladosporium, Alternaria, Fusarium etc. were detected at low frequencies (up to 14%). Other toxigenic species such as Aspergillus and Penicillium were irregularly detected at very low frequencies. Multi-year survey of small grains revealed dominant fungal species of Korea (barley, rice and wheat) is Fusarium asiaticum having NIV chemotype.

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Identification and Chemotype Profiling of Fusarium Head Blight Disease in Triticale (국내 재배 트리티케일에 발생한 붉은곰팡이병의 다양성 및 독소화학형 분석)

  • Yang, Jung-Wook;Kim, Joo-Yeon;Lee, Mi-Rang;Kang, In-Jeong;Jeong, Jung-Hyun;Park, Myoung Ryoul;Ku, Ja-Hwan;Kim, Wook-Han
    • Research in Plant Disease
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    • v.27 no.4
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    • pp.172-179
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    • 2021
  • This study aimed to assess the disease incidence and distribution of toxigenic in Korean triticale. The pathogen of triticale that cause Fusarium head blight were isolated from five different triticale cultivars that cultivated in Suwon Korea at 2021 year. The 72 candidate were classified as a Fusarium asiaticum by morphology analysis and by ITS1, TEF-1α gene sequence analysis. And the results of pathogenicity with 72 isolates on seedling triticale, 71 isolates were showed disease symptom. Also, seven out of 71 Fusarium isolates were inoculated on the wheat, to test the pathogenicity on the different host. The results showed more low pathogenicity on the wheat than triticale. The results of analysis of toxin type with 72 isolates, 64.6% isolates were produced nivalenol type toxin and other 4.6% and 30.8% isolates were produce 3-acetyldeoxynivalenol and 15-acetyldeoxynivalenol, respectively. To select fungicide for control, the 72 Fusarium isolates were cultivated on the media that containing four kinds fungicide. The captan, hexaconazole, and difenoconazole·propiconazole treated Fusarium isolates were not showed resistance response against each fungicide. However, six isolates out of 72 isolates, showed resistance response to fludioxonil. This study is first report that F. asiaticum causes Fusarium head blight disease of triticale in Korea.