• 제목/요약/키워드: soilborne fungal diseases

검색결과 8건 처리시간 0.018초

Infection Mechanism of Pathogenic Exduate by Soil-Borne Fungal Pathogens : A Review

  • Lim, You-Jin;Kim, Hye-Jin;Song, Jin-A;Chung, Doug-Young
    • 한국토양비료학회지
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    • 제45권4호
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    • pp.622-627
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    • 2012
  • The processes to determine the composition, dynamics, and activity of infection mechanisms by the rhizosphere microflora have attracted the interest of scientists from multiple disciplines although considerable progress of the infection pathways and plant-pathogen interactions by soil borne fungal pathogens have been made. Soilborne pathogens are confined within a three-dimensional matrix of mineral soil particles, pores, organic matter in various stages of decomposition and a biological component. Among the physical and chemical properties of soils soil texture and matric water potential may be the two most important factors that determine spread exudates by soil borne fungal pathogens, based on the size of the soil pores. Pathogenic invasion of plant roots involves complex molecular mechanisms which occur in the diffuse interface between the root and the soil created by root exudates. The initial infection by soilborne pathogens can be caused by enzymes which breakdown cell wall layers to penetrate the plant cell wall for the fungus. However, the fate and mobility of the exudates are less well understood. Therefore, it needs to develop methods to control disease caused by enzymes produced by the soilborne pathogens by verifying many other possible pathways and mechanisms of infection processes occurring in soils.

Biological Control of Oomycete Soilborne Diseases Caused by Phytophthora capsici, Phytophthora infestans, and Phytophthora nicotianae in Solanaceous Crops

  • Elena Volynchikova;Ki Deok Kim
    • Mycobiology
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    • 제50권5호
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    • pp.269-293
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    • 2022
  • Oomycete pathogens that belong to the genus Phytophthora cause devastating diseases in solanaceous crops such as pepper, potato, and tobacco, resulting in crop production losses worldwide. Although the application of fungicides efficiently controls these diseases, it has been shown to trigger negative side effects such as environmental pollution, phytotoxicity, and fungicide resistance in plant pathogens. Therefore, biological control of Phytophthora-induced diseases was proposed as an environmentally sound alternative to conventional chemical control. In this review, progress on biological control of the soilborne oomycete plant pathogens, Phytophthora capsici, Phytophthora infestans, and Phytophthora nicotianae, infecting pepper, potato, and tobacco is described. Bacterial (e.g., Acinetobacter, Bacillus, Chryseobacterium, Paenibacillus, Pseudomonas, and Streptomyces) and fungal (e.g., Trichoderma and arbuscular mycorrhizal fungi) agents, and yeasts (e.g., Aureobasidium, Curvibasidium, and Metschnikowia) have been reported as successful biocontrol agents of Phytophthora pathogens. These microorganisms antagonize Phytophthora spp. via antimicrobial compounds with inhibitory activities against mycelial growth, sporulation, and zoospore germination. They also trigger plant immunity-inducing systemic resistance via several pathways, resulting in enhanced defense responses in their hosts. Along with plant protection, some of the microorganisms promote plant growth, thereby enhancing their beneficial relations with host plants. Although the beneficial effects of the biocontrol microorganisms are acceptable, single applications of antagonistic microorganisms tend to lack consistent efficacy compared with chemical analogues. Therefore, strategies to improve the biocontrol performance of these prominent antagonists are also discussed in this review.

Identification and Characterization of the Antifungal Substances of a Novel Streptomyces cavourensis NA4

  • Pan, Hua-Qi;Yu, Su-Ya;Song, Chun-Feng;Wang, Nan;Hua, Hui-Ming;Hu, Jiang-Chun;Wang, Shu-Jin
    • Journal of Microbiology and Biotechnology
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    • 제25권3호
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    • pp.353-357
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    • 2015
  • A new actinomycete strain NA4 was isolated from a deep-sea sediment collected from the South China Sea and showed promising antifungal activities against soilborne fungal pathogens. It was identified as Streptomyces cavourensis by morphological, physiological, and phylogenetic analyses based on its 16S rRNA gene sequence. The main antifungal components were isolated and identified from the fermentation culture as bafilomycins B1 and C1. These compounds exhibited significant antifungal activities and a broad antifungal spectrum. The results suggest that the Streptomyces cavourensis NA4 and bafilomycins B1 and C1 could be used as potential biocontrol agents for soilborne fungal diseases of plants.

미생물제에 의한 잔디의 토양전염병 방제 효과 (Effect of a Microbial Product on the Control of Soilborne Diseases of Turfgrasses)

  • 박규진;김영호;박은경;김동성
    • 식물병과 농업
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    • 제1권1호
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    • pp.19-29
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    • 1995
  • A microbial product composed of three antagonistic fungal isolates (Aspergillus sp., Penicillium sp. and Trichoderma sp.) and three bacterial isolates (Arthrobacter sp., Bacillus sp., and Pseudomonas sp.) was tested for the control of Pythium blight caused by Pythium sp., brown patch by Rhizoctonia solani (anastomosis group(AG) 1-1) and large patch by R. solani (AG 2-2) of turfgrasses. Cultures of the antagonistic fungi and bacteria varied in the effectiveness in reducing disease severity of Pytium blight and brown patch on bentgrass. The antagonistic fungal and bacterial isolates were mixed and cultured at 20-$25^{\circ}C$ for 3 days in a growth medium, and the diluted solution of the microbial culture was applied under the field conditions after inoculation of the above turfgrass pathogens. The treated turfgrass was incubated at 28$^{\circ}C$ in a growth chamber. In this experiment, Pythium blight was almost completely controlled and brown patch was slightly decreased by the microbial product, while no control was observed in large patch of zoysiagrass. In zoysiagrass treated with the microbial culture, thatch accumulation was notably reduced.

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Effects of cultivation ages and modes on microbial diversity in the rhizosphere soil of Panax ginseng

  • Xiao, Chunping;Yang, Limin;Zhang, Lianxue;Liu, Cuijing;Han, Mei
    • Journal of Ginseng Research
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    • 제40권1호
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    • pp.28-37
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    • 2016
  • Background: Panax ginseng cannot be cultivated on the same land consecutively for an extended period, and the underlying mechanism regarding microorganisms is still being explored. Methods: Polymerase chain reaction and denaturing gradient gel electrophoresis (PCR-DGGE) and BIO-LOG methods were used to evaluate the microbial genetic and functional diversity associated with the P. ginseng rhizosphere soil in various cultivation ages and modes. Results: The analysis of microbial diversity using PCR-DGGE showed that microbial communities were significantly variable in composition, of which six bacterial phyla and seven fungal classes were detected in P. ginseng soil. Among them, Proteobacteria and Hypocreales dominated. Fusarium oxysporum, a soilborne pathogen, was found in all P. ginseng soil samples except R0. The results from functional diversity suggested that the microbial metabolic diversity of fallow soil abandoned in 2003was the maximum and transplanted soil was higher than direct-seeding soil and the forest soil uncultivated P. ginseng, whereas the increase in cultivation ages in the same mode led to decreases in microbial diversity in P. ginseng soil. Carbohydrates, amino acids, and polymers were the main carbon sources utilized. Furthermore, the microbial diversity index and multivariate comparisons indicated that the augmentation of P. ginseng cultivation ages resulted in decreased bacterial diversity and increased fungal diversity, whereas microbial diversity was improved strikingly in transplanted soil and fallow soil abandoned for at least one decade. Conclusion: The key factors for discontinuous P. ginseng cultivation were the lack of balance in rhizosphere microbial communities and the outbreak of soilborne diseases caused by the accumulation of its root exudates.

토양살균에 의한 멜론 연작재배지 뿌리썩음병 방제 (Control of Soilborne Fungal Diseases on Muskmelon by Soil Disinfestation in Consecutively Cultivated Fields)

  • 이중섭;최장전;최진호;허윤찬
    • 식물병연구
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    • 제15권1호
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    • pp.30-35
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    • 2009
  • 청양지역을 비롯한 멜론 연작재배지에서 매년 피해를 나타내고 있는 시들음 증상 발생주의 뿌리로부터 뿌리씩 음병 원균 Monosporascus cannonballus(28.4%), Fusarium spp.(27.4%), Didymella bryoniae(24.2%), Phytophthora spp.(20.0%) 등을 각각 분리하였다. 멜론 연작재배 토양내 뿌리썩음병 방제를 위해 고온수 관주 및 훈증제 3종 살균처리하고 방제효율을 검정하였다. 고온수($92{\sim}98^{\circ}C$) 토양관주 살균처리는 $'05{\sim}'06$년 정식전 4시간(관주량: $52{\sim}55$ tons/10a) 관주하였다. 그 결과 발병율이 0.01$\sim$0.08%로 무처리의 발병량(6.6$\sim$81.4%)보다 높은 방제효과를 나타내었다(p<0.05). 이는 토양훈증 살균제 3종의 방제효과(54.8$\sim$79.7%) 보다 20.2$\sim$45.1% 높았다. 또한, 고온수 관주처리 토양에서의 역병(Fire blight), 시들음병 (Fusarium wilt)의 발병율도 극히 낮았다 한편, 2005-2006년 고온수 관주처리구의 수량은 39톤/ha으로 무처리구(13.6톤/ha)에 비해 매우 높아 고도의 유의성을 나타내었다(P<0.05). 그러나, Dazomet, methyl bromide등 훈증제 처리는 약제 처리간 유의성은 없었으나 수량은 무처리 보다 39$\sim$47% 높았다. 결과적으로 고온수($92{\sim}98^{\circ}C$)를 이용한 연작재배지 토양 살균은 토양병해에 높은 방제효과를 나타내어 약제에 의한 훈증살균보다 효과적이라 판단되었다.

Molecular Characterization of Biosynthetic Genes of an Antifungal Compound Produced by Pseudomonas fluorescens MC07

  • Kim Jin-Woo;Kim Eun-Ha;Kang Yong-Sung;Choi Ok-Hee;Park Chang-Seuk;Hwang In-Gyu
    • Journal of Microbiology and Biotechnology
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    • 제16권3호
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    • pp.450-456
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    • 2006
  • Pseudomonas fluorescens MC07 is a growth-promoting rhizobacterium that suppresses mycelial growth in fungi such as Rhizoctonia solani, Pythium ultimum, Fusarium oxysporum, and Phytophthora capsici. To determine the role of the bacterium's antifungal activity in disease suppression, we screened 2,500 colonies generated by Tn5lacZ insertions, and isolated a mutant 157 that had lost antifungal activity. The EcoRI fragment carrying Tn5lacZ was cloned into pBluescript II SK(+) and used as a probe to isolate wild-type clones from a genomic library of the parent strain, MC07. Two overlapping cosmid clones, pEH4 and pEH5, that had hybridized with the mutant clone were isolated. pEH4 conferred antifungal activity to the heterologous host P.fluorescens strain 1855.344, whereas pEH5 did not. Through transposon mutagenesis of pEH4 and complementation analyses, we delineated the 14.7-kb DNA region that is responsible for the biosynthesis of an antifungal compound. DNA sequence analysis of the region identified 11 possible open reading frames (ORF), ORF1 through ORF11. A BLAST search of each putative protein implied that the proteins may be involved in an antifungal activity similar to polyketides.

잔디 주요 토양 병해에 대한 토양세균 Pseudomonas spp.의 길항 효과 (Antagonistic Effects of Pseudomonas spp. against Turfgrass Pathogenic Soil Fungi)

  • 장석원;장태현;최병진;송정희;박경숙;노용택
    • 아시안잔디학회지
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    • 제23권2호
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    • pp.209-218
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    • 2009
  • 본 연구에서는 골프장에서 문제가 되는 주요 병의 방제가능한 생물학적 제제를 개발하기 위하여 실시하였다. 강원도 소재 골프장의 잔디 근권토양으로부터 채취한 100여개의 미생물로부터 4개의 길항 미생물을 선발하였다. 배지를 이용한 저지원 실험에서 4개의 균주는 한국 골프장에서 문제가 되고 있는 옐로우패취(Rhizoctonia cerealis), 브래운패취(R. solani AG-1(1B)), 동전마름병(Sclerotinia homoeocarpa), 그리고 설부갈색소립균핵병원균 (Typhula incarnata)에 대하여 효과적이었다. 옐로우패취, 브래운패취, 동전마름병을 대상으로 온실실험 결과, 4개의 균주는 병의 종류, 기주 식물체 및 병 발생 정도에 따라 효과가 달랐지만 한개 혹은 그 이상의 병에 대해 60% 이상을 방제가를 기록하였다. 4개의 균주는 생화학적 특성과 16S rRNA 분석을 통해 Pseudomonas spp.로 밝혀졌다. 현재 4개의 균주는 적정 배양조건과 제제화를 위한 연구 중에 있다.