• Title/Summary/Keyword: fungal pathogen

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Chemical Control of Fusarium Wilt of Pigeonpea (Pigeonpea의 Fusarium 시들음병에 대한 화학적 방제)

  • Singh, Rajesh
    • The Korean Journal of Mycology
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    • v.26 no.4 s.87
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    • pp.416-423
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    • 1998
  • The fungicidal effects of four commercial fungicides, two herbicides and two insecticides have been examined on Fusarium udum, causing wilt disease of pigeonpea in vitro and in vivo. The fungicides Bavistin and MeMc inhibited the growth of the test pathogen completely at 8 and 30 ppm. The herbicide Butachlore inhibited the growth of the test pathogen up to 80.4%. The insecticides, Ekalux and Thiodane partially inhibited the radial growth at 1000 ppm. In unsterilized and sterilized soil MeMc was most effective in controlling the disease in comparison to Bavistin and Ekalux. Maximum rhizosphere fungal population was recorded in MeMc amended soil and minimum in case of Bavistin.

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Mycoparasitism of Acremonium strictum BCP on Botrytis cinerea, the Gray Mold Pathogen

  • Choi, Gyung-Ja;Kim, Jin-Cheol;Jang, Kyoung-Soo;Cho, Kwang-Yun;Kim, Heung-Tae
    • Journal of Microbiology and Biotechnology
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    • v.18 no.1
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    • pp.167-170
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    • 2008
  • A fungal strain BCP, which parasitizes Botrytis cinerea gray mold pathogen, was isolated and identified as Acremonium strictum. BCP strain overgrew the colonies of B. cinerea and caused severe lysis of the host hyphae. Frequent penetration and hyphal growth of A. strictum BCP inside the mycelia of B. cinerea were observed under light microscopy. In addition, some morphological abnormalities such as granulation and vacuolation of the cytoplasm were observed in mycelia and spores of B. cinerea. In dual culture test, A. strictum BCP strongly inhibited the mycelial growth of several plant pathogenic fungi as well as B. cinerea. To our knowledge, this is the first report on mycoparasitism of Acremonium species on B. cinerea.

Whole Genome Enabled Phylogenetic and Secretome Analyses of Two Venturia nashicola Isolates

  • Prokchorchik, Maxim;Won, Kyungho;Lee, Yoonyoung;Segonzac, Cecile;Sohn, Kee Hoon
    • The Plant Pathology Journal
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    • v.36 no.1
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    • pp.98-105
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    • 2020
  • Venturia nashicola is a fungal pathogen causing scab disease in Asian pears. It is particularly important in the Northeast Asia region where Asian pears are intensively grown. Venturia nashicola causes disease in Asian pear but not in European pear. Due to the highly restricted host range of Venturia nashicola, it is hypothesized that the small secreted proteins deployed by the pathogen are responsible for the host determination. Here we report the whole genome based phylogenetic analysis and predicted secretomes for V. nashicola isolates. We believe that our data will provide a valuable information for further validation and functional characterization of host determinants in V. nashicola.

Colletotrichum cymbidiicola Causing Anthracnose on Cymbidium Orchids in Korea

  • Park, Mi-Jeong;Back, Chang-Gi;Park, Jong-Han
    • Mycobiology
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    • v.48 no.4
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    • pp.321-325
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    • 2020
  • A Colletotrichum species was isolated from leaves of Cymbidium exhibiting symptoms of anthracnose. In this study, the isolates obtained were identified based on recent taxonomic approaches for the genus Colletotrichum. The identity of the causal pathogen was confirmed using morphological data and phylogenetic analysis of combined multi-gene dataset (internal transcribed spacer, glyceraldehyde 3-phosphate dehydrogenase, chitin synthase-1, actin, histone3, beta-tubulin, and calmodulin). Pathogenicity testing revealed that the isolates were pathogenic to Cymbidium. Based on these results, the fungal pathogen occurring on Cymbidium orchids was identified as Colletotrichum cymbidiicola, which is a newly recorded species in Korea.

Successful Treatment of Catheter Related Blood Stream Infection By Millerozyma farinosa with Micafungin: A Case Report

  • Hong, Sun In;Suh, Young Sun;Kim, Hyun-Ok;Bae, In-Gyu;Shin, Jong Hee;Cho, Oh-Hyun
    • Infection and chemotherapy
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    • v.50 no.4
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    • pp.362-366
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    • 2018
  • Millerozyma farinosa (formerly Pichia farinosa) is halotolerant yeast mainly found in food and ubiquitous in the environment. It was a rare yeast pathogen, but it has recently emerged as a cause of fungemia in immunocompromised patients. Optimal therapy for invasive fungal infection by this pathogen remains unclear. We report a case of catheter related blood stream infection caused by M. farinosa in a 71-year-old patient who recovered successfully after removal of the central venous catheter and treatment with micafungin.

Development of a Selective Medium for the Fungal Pathogen Cylindrocarpon destructans Using Radicicol

  • Kang, Yunhee;Lee, Seung-Ho;Lee, Jungkwan
    • The Plant Pathology Journal
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    • v.30 no.4
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    • pp.432-436
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    • 2014
  • The soil-borne ascomycete fungus Cylindrocarpon destructans causes ginseng root rot disease and produces various secondary metabolites such as brefeldin A and radicicol. The slow growth of this fungus compared with other plant pathogenic and saprophytic fungi in soil disturbs isolation of this fungus from soil and infected ginseng. In this study, we developed a selective medium for C. destructans using radicicol produced by this fungus. Supplementing 50 mg/L of radicicol to medium inhibited the mycelia growth of other fungi including Botrytis cinerea, Rhizoctonia solani and Alternaria panax, but did not affect the growth of C. destructans. In addition, conidia germination of other fungal species except for C. destructans was inhibited in submerged culture supplemented with radicicol. This medium provides a very efficient tool for isolating C. destructans and also can be used as an enrichment medium for this fungus.

New Fungal diseases of Economic Resource Plants in Korea(I) (유용 자원식물의 진균성 신병해(I))

  • 신현동
    • Korean Journal Plant Pathology
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    • v.10 no.3
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    • pp.181-191
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    • 1994
  • Occurrence of diseases in economic resource plants in Korea is poorly known. This paper reports short descriptions on symptom, occurrence condition, pathogen, and some phytopathological notes for each 10 fungal plant diseases new to Korea; leaf spot of Rosa multiflora with Seimatosporium discosioides causing leaf spot and defoliation, leaf blight of Equisetum arvense with Titaeospora equiseti causing leaf spot to leaf blight, leaf blight of Setaria viridis with Phyrenochaeta setariae causing leaf spot of Aster tataricus with Septoria astericola causing leaf spot and black spot, powdery mildew of Clematis fusca var. coreana with Erysiphe ranunculi causing powdery mildew and dwarfing, powder mildew of Ligularia stenocephala with Erysiphe galeopsidis causing powdery mildew and dwarfing, powdery mildew of Phlox subulata with Erysiphe cichoracearum causing powdery mildew and defoliation tar spot of Lonicera japonica with Rhytisma lonicericola causing tar spot and dwarfing, white rust of Pharbitis nil with Albugo ipomoeae-pandulatae causing white rust and deformation, and white rust of Achyranthes japonica with Albugo achyranthis causing white rust and defoliation.

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Drosophila melanogaster as a Model for Studying Aspergillus fumigatus

  • AL-Maliki, Hadeel Saeed;Martinez, Suceti;Piszczatowski, Patrick;Bennett, Joan W.
    • Mycobiology
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    • v.45 no.4
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    • pp.233-239
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    • 2017
  • Drosophila melanogaster is a useful model organism that offers essential insights into developmental and cellular processes shared with humans, which has been adapted for large scale analysis of medically important microbes and to test the toxicity of heavy metals, industrial solvents and other poisonous substances. We here give a brief review of the use of the Drosophila model in medical mycology, discuss the volatile organic compounds (VOCs) produced by the opportunistic human pathogen, Aspergillus fumigatus, and give a brief summary of what is known about the toxicity of some common fungal VOCs. Further, we discuss the use of VOC detection as an indirect indicator of fungal growth, including for early diagnosis of aspergillosis. Finally, we hypothesize that D. melanogaster has promise for investigating the role of VOCs synthesized by A. fumigatus as possible virulence factors.

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.

RNA Modification and Its Implication in Plant Pathogenic Fungi

  • Jeon, Junhyun;Lee, Song Hee
    • The Plant Pathology Journal
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    • v.37 no.6
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    • pp.505-511
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    • 2021
  • Interaction of a pathogen with its host plant requires both flexibility and rapid shift in gene expression programs in response to environmental cues associated with host cells. Recently, a growing volume of data on the diversity and ubiquity of internal RNA modifications has led to the realization that such modifications are highly dynamic and yet evolutionarily conserved system. This hints at these RNA modifications being an additional regulatory layer for genetic information, culminating in epitranscriptome concept. In plant pathogenic fungi, however, the presence and the biological roles of RNA modifications are largely unknown. Here we delineate types of RNA modifications, and provide examples demonstrating roles of such modifications in biology of filamentous fungi including fungal pathogens. We also discuss the possibility that RNA modification systems in fungal pathogens could be a prospective target for new agrochemicals.