• Title/Summary/Keyword: 'Graminearum'

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Comparison of electrophoretic karyotypes in fusarium

  • Min, Byung-Re
    • Journal of Microbiology
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    • v.33 no.4
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    • pp.334-338
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    • 1995
  • The electrophoretic karyotypes of 6 species in different Fusarium sections were examined by using contour-clamped homogeneous electric field (CHEF) gel electrophoresis. Intact chromosomal DNA was prepared from protoplasts and up to 9 distinct bands were separated on 0.7% or 0.8% agarose gel under several different conditions. Putative chromosome numbers varied from 6 to 9 amd polymorphic karyotypes were observed in different Fusarium sections. Using Schizosaccharomyces pombe and Saccharomyces cerevisiae chromosomes as standards, the sizes of the Fusarium spp. chromosomes were estimated. The electrophoretic karyotypes of F. moniliforme and F. subglutinans (section Liseola) were similar. Unidentified filamentour fungi, F. beomiforme was much closer to F. axysporum (section Elecgans) in karyotype and the karyotypes of F. napiforme were more similar to those of section Liseola than any other sections. F. graminearum (section Discolor) had a distinctive electrophoretic karyotype.

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Detection of Extracellular Enzyme Activities in Various Fusarium spp

  • Kwon, Hyuk-Woo;Yoon, Ji-Hwan;Kim, Seong-Hwan;Hong, Seung-Beom;Cheon, Young-Ah;Ko, Seung-Ju
    • Mycobiology
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    • v.35 no.3
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    • pp.162-165
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    • 2007
  • Thirty seven species of Fusarium were evaluated for their ability of producing extracellular enzymes using chromogenic medium containing substrates such as starch, cellobiose, CM-cellulose, xylan, and pectin. Among the tested species Fusarium mesoamericanum, F. graminearum, F. asiaticum, and F. acuminatum showed high ${\beta}$-glucosidase acitivity. Xylanase activity was strongly detected in F. proliferatum and F. oxysporum. Strong pectinase activity was also found in F. oxysporum and F. proliferatum. Amylase activity was apparent in F. oxysporum. No clear activity in cellulase was found from all the Fusarium species tested.

Efficacy of Diphenyleneiodonium Chloride (DPIC) Against Diverse Plant Pathogens

  • Jung, Boknam;Li, Taiying;Ji, Sungyeon;Lee, Jungkwan
    • Mycobiology
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    • v.47 no.1
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    • pp.105-111
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    • 2019
  • Many of the fungicides and antibiotics currently available against plant pathogens are of limited use due to the emergence of resistant strains. In this study, we examined the effects of diphenyleneiodonium chloride (DPIC), an inhibitor of the superoxide producing enzyme NADPH oxidase, against fungal and bacterial plant pathogens. We found that DPIC inhibits fungal spore germination and bacterial cell proliferation. In addition, we demonstrated the potent antibacterial activity of DPIC using rice heads infected with the bacterial pathogen Burkholderia glumae which causes bacterial panicle blight (BPB). We found that treatment with DPIC reduced BPB when applied during the initial flowering stage of the rice heads. These results suggest that DPIC could serve as a new and useful antimicrobial agent in agriculture.

Change in the Sensitivity to Propiconazole of Fusarium graminearum Species Complex Causing Head Blight of Barley and Wheat in Jeolla Province (전남북 지역 맥류 붉은곰팡이병균의 Propiconazole 약제에 대한 감수성 변화)

  • Jiseon Baek;Ju-Young Nah;Mi-Jeong Lee;Su-Bin Lim;Jung-Hye Choi;Ja Yeong Jang;Theresa Lee;Hyo-Won Choi;Jeomsoon Kim
    • The Korean Journal of Mycology
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    • v.50 no.4
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    • pp.281-289
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    • 2022
  • Fusarium head blight is an important disease of small grains. It is mainly caused by members of the Fusarium graminearum species complex (FGSC). Barley and wheat growers spray fungicides, especially demethylation-inhibitor fungicides, to suppress the disease. The objective of this study was to examine the changes in the sensitivity of the FGSC population to the triazole fungicide, propiconazole. A total of 124 and 350 isolates of FGSC were obtained from barley and wheat in Jeolla Province during 2010-2016 and 2020-2021, respectively. The species identity and trichothecene chemotypes of the FGSC isolates were determined based on polymerase chain reaction assays targeting translation elongation factor 1-alpha and TRI12 genes, respectively. Sensitivity to propiconazole was determined based on the effective concentration that reduced 50% of the mycelial growth (EC50) using the agar dilution method. Of all isolates, F. asiaticum with the nivalenol chemotype was the most common (83.9% in 2010-2016 and 96.0% in 2020-2021), followed by F. asiaticum with the 3-acetyl deoxynivalenol chemotype (12.1% in 2010-2016 and 2.9% in 2020-2021). The EC50 values of the isolates collected in 2010-2016 and 2020-2021 ranged from 0.0180 to 11.0166 ㎍/mL and 1.3104 to 17.9587 ㎍/mL, respectively. The mean EC50 value of the isolates increased from 3.8648 ㎍/mL in 2010-2016 to 5.9635 ㎍/mL in 2020-2021. The baseline resistance to propiconazole was determined to be 7 ㎍/mL, based on the EC50 value of isolates collected in 2010-2016, and the ratio of resistant isolates increased from 9.7% in 2010-2016 to 28.6% in 2020-2021.

Biochemical Characterization of Heterologously Expressed Chitinase 1 (Chi1) from an Inky Cap, Coprinellus congregatus (이형 재조합한 먹물버섯 Coprinellus congregatus Chitinase 1 (Chi1)의 발현과 생화학적 특성 분석)

  • Yoo, Yeeun;Choi, Hyoung T.
    • Korean Journal of Microbiology
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    • v.49 no.4
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    • pp.309-312
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    • 2013
  • Fungal cell walls consist of various glucans and chitin. Fungi produce chitinases for their growth and development. The inky cap, Coprinellus congregatus, produces at least two different chitinases during its life cycle. Chitinase 1 (chi1) is expresses throughout its life cycle while chitinase 2 (chi2) is expressed at the mushroom autolysing phase. The cloned cDNA of chi1 is successfully expressed as a fusion protein with c-myc in Pichia pastoris, and purified by the affinity chromatography. The optimum pH and temperature of Chi1 was pH 8.0 and $35^{\circ}C$, respectively when 4-nitrophenyl N,N',N"-triacetyl-${\beta}$-D-chitotrioside was used as the substrate. The $K_m$ value and $V_{max}$ for the substrate was 0.780 mM and 0.10 OD $min^{-1}unit^{-1}$, respectively. The addition of purified Chi1 resulted in total growth inhibition against several plant pathogenic fungi such as Alternaria alternata, Fusarium graminearum and Trichoderma harzianum at the concentration of 60 ${\mu}g/ml$.

Characterization of Bacillus amyloliquefaciens DA12 Showing Potent Antifungal Activity against Mycotoxigenic Fusarium Species

  • Lee, Theresa;Park, Dami;Kim, Kihyun;Lim, Seong Mi;Yu, Nan Hee;Kim, Sosoo;Kim, Hwang-Yong;Jung, Kyu Seok;Jang, Ja Yeong;Park, Jong-Chul;Ham, Hyeonheui;Lee, Soohyung;Hong, Sung Kee;Kim, Jin-Cheol
    • The Plant Pathology Journal
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    • v.33 no.5
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    • pp.499-507
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    • 2017
  • In an attempt to develop a biological control agent against mycotoxigenic Fusarium species, we isolated Bacillus amyloliquefaciens strain DA12 from soil and explored its antimicrobial activities. DA12 was active against the growth of mycotoxigenic F. asiaticum, F. graminearum, F. proliferatum, and F. verticillioides both in vitro and in planta (maize). Further screening using dual culture extended the activity range of strain DA12 against other fungal pathogens including Botrytis cinerea, Colletotrichum coccodes, Endothia parasitica, Fusarium oxysporum, Raffaelea quercus-mongolicae, and Rhizoctonia solani. The butanol extract of the culture filtrate of B. amyloliquefaciens DA12 highly inhibited the germination of F. graminearum macroconidia with inhibition rate 83% at a concentration of $31.3{\mu}g/ml$ and 100% at a concentration of $250{\mu}g/ml$. The antifungal metabolite from the butanol extract was identified as iturin A by thin layer chromatography-bioautography. In addition, volatile organic compounds produced by DA12 were able to inhibit mycelial growth of various phytopathogenic fungi. The volatile compounds were identified as 2-heptanone, 5-methyl heptanone and 6-methyl heptanone by gas chromatography-mass spectrometry (GC-MS) analysis. These results indicate that the antagonistic activity of Bacillus amyloliquefaciens DA12 was attributable to iturin A and volatile heptanones, and the strain could be used as a biocontrol agent to reduce the development of Fusarium diseases and mycotoxin contamination of crops.

Corn Cultivation to Reduce the Mycotoxin Contamination (곰팡이 독소 오염 경감을 위한 옥수수 재배법)

  • Kim, Yangseon;Kang, In Jeong;Shin, Dong Bum;Roh, Jae Hwan;Jung, Jingyo;Heu, Sunggi;Shim, Hyeong Kwon
    • Research in Plant Disease
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    • v.23 no.3
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    • pp.256-261
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    • 2017
  • The effects of insecticide and fungicide treatment were investigated to reduce mycotoxin contamination of corn (Zea mays L.) seeds. Deoxynivalenol and zearalenone contents were reduced in the treated seeds, but aflatoxin, ochratoxin A, fumonisin, and T-2 toxin were not effective by chemical treatments. The chemical treatment did not affect the growth of saprophyte, but inhibited the pathogenic fungi such as Fusarium verticillioides, F. graminearum and F. equiseti. Myotoxin contents at different harvesting time were compared. As the harvest time was delayed, both levels of deoxynivalenol and zearalenone and frequency of Fusarium spp. increased. However, the major nutrient contents of corn seeds were not affected by harvesting period. These results show that chemical treatments are necessary to reduce the fungal contamination of corn and harvest without delay is important as well.

Isozyme patterns of section Elegans, section Liseola and similar species in the genus Fusarium (Fusarium속 내의 section Elegans, section Liseola와 유사종의 Isozyme Patterns)

  • Min, Byung-Re;Kweon, O-Yeong
    • The Korean Journal of Mycology
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    • v.22 no.4
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    • pp.386-393
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    • 1994
  • To investigate taxonomical relationships of Fusarium species, $esterase-{\alpha},\;-{\beta}$, acid phosphatase, malate dehydrogenase, peroxidase and polygalacturonase were extracted and the isozyme patterns were compared by using polyacrylamide gel electrophoretic analysis. Only polygalacturonase was monozyme and the other enzymes showed little differences in banding patterns. Genetic similarities based on the isozyme banding patterns were as follows: the interspecific similarity between F. subglutinans and F. moniliforme in Liseola showed the closest relationship of 74.3% of all species studies. And the similarity between section Elegans and section Liseola was 45.4%. F. napiforme and F. nygamai showed the similarity of 64.7%, similar to the correlation between species in the same section. The similarity of these two species to Liseola and Elegans showed 55.2% and 45.4%, being revealed that they would be closer to Liseola than Elegans. However, these results were similar to those of any other sections. Therefore it suggested that these 2 species should be in a different section from any other sections. And F. graminearum showed the similarity of 28.2% to the other 6 species.

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Detection of Fungi Associated with Rice Ear Blight from Rice Seeds in Korea (벼 이삭마름병에 관여하는 진균의 검출)

  • Shim Hong-Sik;Hong Sung-Gi;Hong Sung-Jun;Kim Yong-Ki;Ye Wan-hae;Sung Jae-Mo
    • Research in Plant Disease
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    • v.11 no.2
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    • pp.93-97
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    • 2005
  • In order to detect casual agents associated with ear blight of rice, seed samples of 'Ilmi-byeo' and 'Daesan-byeo', susceptible cultivars were collected from 28 regions on a nationwide scale. Finally 23 fungi including Bipolaris oryzae($10.3\%$), Alternaria alternata ($10.2\%$), Cladosporium sp. ($7.5\%$), Nigrospora oryzae($5.2\%$) and Phoma sorghina ($6.3\%$) from seeds of 'Ilmi-byeo', and 13 fungi including N. oryzae ($15.1\%$), A. alternata ($9.6\%$) and Curvularia lunata ($2.2\%$) from seeds of 'Daesan-byeo' were detected. In case of discolored seeds caused by rice ear blight, B. oryzae($15.5\%$), A. alternata ($5.5\%$), Fusarium graminearum ($8.0\%$), N. oryzae($5.2\%$) and P. sorghina ($4.5\%$) were detected even from the hulled rice of Ilmi-byeo.

Diversity and Pathogenic Characteristics of Fusarium Species isolated from Wilted Soybeans in Korea (콩 시들음병에 관여하는 Fusarium균의 다양성 및 병원학적 특성)

  • Choi, Hyo-Won;Kim, Seungnoh;Hong, Sung Kee
    • The Korean Journal of Mycology
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    • v.48 no.3
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    • pp.297-312
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    • 2020
  • Wilted soybean plants were collected from soybeans cultivation fields in Korea from 2014 to 2016. Fusarium spp., Colletotrichum spp., Rhizoctonia spp., Macrophomina sp., Phytophthora spp., and Calonectria ilicicola were obtained from the infected samples. Out of these, Fusarium spp. were the dominant species (79.1%). In total, 53 isolates were identified as F. solani species complex, F. oxysporum species complex, F. graminearum species complex, and F. fujikuroi species complex based on mycological characteristics. Sequence typing analysis was conducted using translation elongation factor 1 alpha (TEF) to confirm the identification of isolates. All isolates were identified as F. solani, F. oxysporum, F. commune, F. asiaticum, and F. fujikuroi based on phylogenetic analysis of TEF sequences. Pathogenicity of 44 isolates was tested on three cultivars of soybean using the root dip inoculation method. Out of 5 Fusarium species, only F. asiaticum could not cause the symptoms or be weak. Ten isolates were selected based on pathogenic characters and species identification to investigate the host range and screen soybean cultivars for resistance. Fusarium solani, F. oxysporum, and F. commune were aggressive only to soybean, and F. fujikuroi was aggressive to kidney bean, yellow cowpea, black cowpea, adzuki bean as well as soybean. All 13 Korean soybean cultivars were susceptible to F. commune and F. fujikuroi. Out of 13 cultivars, cv. Janggi, cv. Poongsannamul, and cv. Socheongja were resistant to Fusarium wilt, while cv. Hwanggeumol and Chamol were susceptible to Fusarium wilt.