• 제목/요약/키워드: Fusarium mycotoxin

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Insertional mutagenesis of fusarium graminearum for characterization of genes involved in disease development and mycotoxin production

  • Han, Yon-Kyoung;Lee, Hyo-Jin;Yun, Sung-Hwan;Lee, Yin-Won
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.85.2-86
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    • 2003
  • Fusarium graminearum is an important pathogen of cereal crops in many areas of the world causing head blight and ear rot of small grains. In addition to serious economic losses, this fungus produces mycotoxins, such as trichothecenes and zearalenone on diseased crops and has been a potential threat to human and animal health. To massively identify pathogenesis-related genes from F. graminearum, two representative strains (SCKO4 from rice and Z03643 from wheat) were mutagenized using restriction enzyme-mediated integration (REMI). In total, 20,DOD REMI transformants have been collected from the two strains. So far, 63 mutants for several traits involved in disease development such as virulence, mycotoxin production, and sporulation have been selected from 3,000 REMI transformants. Now, selected mutants of interest have being genetically analyzed using a newly developed outcross method (See Jungkwan Lee et al poster). In addition, cloning and characterization of genomic DNA regions flanking the insertional site in the genome of the mutants are in progress.

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Systemic Infection of Maize, Sorghum, Rice, and Beet Seedlings with Fumonisin-Producing and Nonproducing Fusarium verticillioides Strains

  • Dastjerdi, Raana;Karlovsky, Petr
    • The Plant Pathology Journal
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    • 제31권4호
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    • pp.334-342
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    • 2015
  • Two fumonisin-nonproducing strains of Fusarium verticillioides and their fumonisin producing progenitors were tested for aggressiveness toward maize, sorghum, rice, and beetroot seedlings grown under greenhouse conditions. None of the plants showed obvious disease symptoms after root dip inoculation. Fungal biomass was determined by species-specific real-time PCR. No significant (P = 0.05) differences in systemic colonization were detected between the wild type strains and mutants not producing fumonisins. F. verticillioides was not detected in any of the non-inoculated control plants. The fungus grew from roots to the first two internodes/leaves of maize, rice and beet regardless of fumonisin production. The systemic growth of F. verticillioides in sorghum was limited. The results showed that fumonisin production was not required for the infection of roots of maize, rice and beet by F. verticillioides.

Phenotypic and Marker Assisted Evaluation of Korean Wheat Cultivars

  • Jung, Yeonju;Park, Chul Soo;Jeung, Ji-Ung;Kang, Chon-Sik;Lee, Gi-An;Choi, Yu-Mi;Lee, Jung-Ro;Lee, Myung-Chul;Kim, Chung-Kon;Seo, Yong Weon
    • 한국육종학회지
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    • 제43권4호
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    • pp.273-281
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    • 2011
  • Fusarium head blight (FHB), also known as scab, caused mainly by Fusarium graminearum is a devastating disease of wheat in regions that are warm and humid during flowering. In addition to significant yield and quality losses, the mycotoxin deoxynivalenol produced by the pathogen in infected wheat kernels is a serious problem for food and feed safety. Twenty- three Korean cultivars and "Sumai 3", which is a FHB-resistant Chinese cultivar were tested for Type I, Type II resistances of FHB. Three cultivars were identified as resistant in Type I assessment, and two cultivars were resistant in Type II assessment. Genetic variation and relationship among the cultivars were evaluated on the basis of 11 Simple Sequence Repeat (SSR) and 29 Sequence Tagged Site (STS) markers that were linked to FHB resistance Quantitative Trait Loci (QTL) on chromosome 3BS. One SSR and 7 STS markers detected polymorphisms. Especially, using a STS marker (XSTS3B-57), 32.4% of the variation for Type II FHB resistance could be explained. Genetic relationship among Korean wheat cultivars was generally consistent with their released year. These markers on chromosome 3BS have the potential for accelerating the development of Korean wheat cultivars with improved Fusarium head blight resistance through the use of marker-assisted selection.

Mouse 장기의 형태에 미치는 T-2 Toxin의 영향 (The Effects of T-2 Toxin on the Morphology of Mouse Organ)

  • 송재영;정덕화
    • 한국환경보건학회지
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    • 제21권4호
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    • pp.96-101
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    • 1995
  • To study the immunotoxicity of mouse injected with fungal mycotoxin, T-2 toxin (Fusarium mycotoxin) was treated to 6 week-old female C3H/He mouse and the body, organ weight and morphological change were investigated. The weights of body, liver and kidney of mouse injected the 2 mg/kg of toxin was decreased to 17, 20 and 3%, respectively, compared to control animal and the comsumption of feed was also decreased with lapsing the time. The fat dropleting phenomenon and destruction of Golgi apparatus in liver and histopathological changes of tissue and mitochondria in small intestine were found by scanning electron microscopic observation.

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한국산 곡류의 Becuvericin의 오염도 조사 및 Becuvericin과 Enniatin 유도체 생성조건 (Survey of Beauvericin Contamination in Korean Grains by HPLC and the Production of Beauvericin and Enniatin Derivatives by Fusarium oxysporum KFCC 11363P)

  • 송혁환;이희석;이찬
    • 한국식품위생안전성학회지
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    • 제23권1호
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    • pp.73-79
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    • 2008
  • Beauvericin과 enniatin H, I, 그리고 MK1688의 생산에 미치는 온도와 수분함량의 효과를 조사하였다. 쌀을 기질로 할 경우 $25^{\circ}C$, 40% 수분함량에서 조사된 모든 독소들이 최대로 생산되었으며, $15^{\circ}C$의 온도에서 접종 2주 후 $50\;{\mu}g/g$이하의 생성량을 나타내었다. 수분함량 10%에서도 접종 후 6주차에 모든 독소들의 검출이 확인되었으며, 이는 이 독소들이 0.75정도의 낮은 수분활성도에서도 생성될 수 있음을 나타낸다. 한편, 국내에서 생산된 곡류들(65종)에 대하여 Fusarium 독소인 beauvericin의 오염을 분석하였다. 국내에서 수확된 65종의 곡류시료 중 6종의 시료에서 beauvericin오염이 확인되었다. 쌀과 현미에서는 beauvericin이 검출되지 않았으며, 2004년산 옥수수 3종, 2004년과 2005산 보리 시료 각 1종, 그리고 2005년 재배된 밀 1종에서 beauvericin이 검출되었다. 가장 높은 오염도를 보인 것은 옥수수 시료이며, 이 시료에서 $0.23\;{\mu}g/g$의 beauvericin이 검출되었다. 국내에서는 beauvericin에 대한 곡류 오염 조사가 이 연구에서 처음으로 이루어졌으며, 국내산 곡류에서도 beauvercin이 검출됨에 따라 지속적으로 오염도를 조사할 필요가 있다.

곰팡이 생육 및 곰팡이 독소 생산의 억제에 있어서의 유산균의 역할 (The Roles of Lactic Acid Bacteria for Control of Fungal Growth and Mycotoxins)

  • 김지후;이희섭
    • 생명과학회지
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    • 제30권12호
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    • pp.1128-1139
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    • 2020
  • 최근 기후의 급속한 변화에 따라서 식품과 농산물에 Aspergillus, Fusarium 및 Penicillium속에 해당하는 곰팡이에 의한 오염이 빈번하고 이들에 의해 생성되는 aflatoxins, fumonisins, ochratoxins, patulin, trichothecenes, zearalenone등의 곰팡이 독소로 인해서 인간의 건강에 위해를 끼치고 또한 경제적인 손실을 가져오게 하고 있다. 최근 건강에 대한 소비자의 관심으로 인하여 기존에 사용되고 있는 프로피온산 및 소브산과 같은 보존료에 대한 거부감이 증가하고 있어 천연의 소재로부터 이를 대체할 만한 항진균제의 개발이 필요한 상황이다. 본 총설에서는 곰팡이의 생육 및 독소 생성을 제어하기 위한 생물학적 방법으로 유산균의 역할에 대하여 살펴보고자 하였다. 최근의 연구에 의하면 유산균은 저분자 화합물인 유기산, reuterin, 단백질 유래 화합물, 하이드록시 지방산, 페놀 화합물과 같은 다양한 대사산물을 통하여 곰팡이의 생육을 효과적으로 억제시키고 있으며, 또한 유산균의 세포벽 구성성분과의 흡착, 곰팡이 독소의 분해 및 곰팡이 독소의 생산 저해 등을 통하여 곰팡이 독소의 생산을 감소시키고 있는 사실이 제시되고 있다. 유산균은 다양한 종류를 포함하고 있으며 다양한 대사산물을 생산하고 있으므로 이를 바탕으로 효과적으로 곰팡이의 생육 및 독소 생산을 제어할 수 있는 잠재력 갖추고 있으므로, 유산균은 식품에 있어서 곰팡이의 생육을 조절하는 소재로서 주목 받을 것으로 기대된다.

Occurrence of Toxigenic Fusarium vorosii among Small Grain Cereals in Korea

  • Lee, Theresa;Paek, Ji-Seon;Lee, Kyung Ah;Lee, Soohyung;Choi, Jung-Hye;Ham, Hyeonheui;Hong, Sung Kee;Ryu, Jae-Gee
    • The Plant Pathology Journal
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    • 제32권5호
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    • pp.407-413
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    • 2016
  • Fusarium graminearum species complex (FGSC) causes Fusarium head blight in small grain cereals. To date, four species (F. graminearum, F. asiaticum, F. boothii, and F. meridionale ) belonging to FGSC frequently occur in Korean cereals. In addition, we first reported the occurrence of additional species (F. vorosii ) within FGSC, which was isolated from barley, corn, and rice in Korea. Phylogenetic analysis of the Fusarium isolates of this group using combined multigene sequences confirmed species identification. Moreover, the macroconidia produced by these isolates were morphologically similar to those of the F. vorosii holotype. Chemical analysis indicated that the F. vorosii isolates produced various trichothecenes such as nivalenol and deoxynivalenol with their acetyl derivatives along with zearalenone. Pathogenicity tests demonstrated that all of the F. vorosii isolates examined were pathogenic on barley, corn, and rice with variation in aggressiveness. This study is the first report of F. vorosii in Korean cereals, their pathogenicity towards barley and corn, and their ability to produce trichothecenes and zearalenone.

Evaluation of Potential Reference Genes for Quantitative RT-PCR Analysis in Fusarium graminearum under Different Culture Conditions

  • Kim, Hee-Kyoung;Yun, Sung-Hwan
    • The Plant Pathology Journal
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    • 제27권4호
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    • pp.301-309
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    • 2011
  • The filamentous fungus Fusarium graminearum is an important cereal pathogen. Although quantitative realtime PCR (qRT-PCR) is commonly used to analyze the expression of important fungal genes, no detailed validation of reference genes for the normalization of qRT-PCR data has been performed in this fungus. Here, we evaluated 15 candidate genes as references, including those previously described as housekeeping genes and those selected from the whole transcriptome sequencing data. By a combination of three statistical algorithms (BestKeeper, geNorm, and NormFinder), the variation in the expression of these genes was assessed under different culture conditions that favored mycelial growth, sexual development, and trichothecene mycotoxin production. When favoring mycelial growth, GzFLO and GzUBH expression were most stable in complete medium. Both EF1A and GzRPS16 expression were relatively stable under all conditions on carrot agar, including mycelial growth and the subsequent perithecial induction stage. These two genes were also most stable during trichothecene production. For the combined data set, GzUBH and EF1A were selected as the most stable. Thus, these genes are suitable reference genes for accurate normalization of qRT-PCR data for gene expression analyses of F. graminearum and other related fungi.

The Protein Kinase A Pathway Regulates Zearalenone Production by Modulating Alternative ZEB2 Transcription

  • Park, Ae Ran;Fu, Minmin;Shin, Ji Young;Son, Hokyoung;Lee, Yin-Won
    • Journal of Microbiology and Biotechnology
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    • 제26권5호
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    • pp.967-974
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    • 2016
  • Zearalenone (ZEA) is an estrogenic mycotoxin that is produced by several Fusarium species, including Fusarium graminearum. One of the ZEA biosynthetic genes, ZEB2, encodes two isoforms of Zeb2 by alternative transcription, forming an activator (Zeb2L-Zeb2L homooligomer) and an inhibitor (Zeb2L-Zeb2S heterodimer) that directly regulate the ZEA biosynthetic genes in F. graminearum. Cyclic AMP-dependent protein kinase A (PKA) signaling regulates secondary metabolic processes in several filamentous fungi. In this study, we investigated the effects of the PKA signaling pathway on ZEA biosynthesis. Through functional analyses of PKA catalytic and regulatory subunits (CPKs and PKR), we found that the PKA pathway negatively regulates ZEA production. Genetic and biochemical evidence further demonstrated that the PKA pathway specifically represses ZEB2L transcription and also takes part in posttranscriptional regulation of ZEB2L during ZEA production. Our findings reveal the intriguing mechanism that the PKA pathway regulates secondary metabolite production by reprograming alternative transcription.

Purification and Phytotoxicity of Apicidins Produced by the Fusarium semitectum KCTC16676

  • Jin, Jianming;Baek, Seung-Ryel;Lee, Kyung-Rim;Lee, Jungkwan;Yun, Sung-Hwan;Kang, Seog-Chan;Lee, Yin-Won
    • The Plant Pathology Journal
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    • 제24권4호
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    • pp.417-422
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    • 2008
  • Apicidin is a cyclic tetrapeptide produced by some Fusarium species and is known to inhibit Apicomplexan histone deacetylase. The goals of this study were to determine species identity of Fusarium isolate KCTC16676, an apicidin producer, to improve a method for apicidin extraction, and to test phytotoxicity of apicidin and its analogs. We compared sequences of the translation elongation factor 1-alpha (TEF) gene in KCTC16676 with those from isolates representing diverse Fusarium species, which showed that KCTC16676 belongs to the F. semitectum-F. equiseti species complex. To enhance apicidin production, after culturing isolate KCTC16676 on a wheat medium for 3 weeks at $25^{\circ}C$, the culture was extracted with chloroform. Apicidins were purified through a reverse phase $C_{18}$ silica gel column, resulting in 5 g of apicidin, 200 mg of apicidin A, and 300 mg of apicidin $D_2$ from 4 kg of wheat cultures; this represents a significant yield improvement from a previous method, offers more materials to study the modes of its action, and facilitates the elucidation of the apicidin biosynthesis pathway. Apicidin and apicidin $D_2$ showed phytotoxicity on both seedlings and 2-week-old plants of diverse species, and weeds were more sensitive to apicidins than vegetables