• 제목/요약/키워드: Phytophthora blight (Phytophthora capsici)

검색결과 128건 처리시간 0.019초

고추역병균 Phytophthora capsici의 생육을 저해하는 Chryseomonas luteola 5042의 선발과 항진균성 길항작용 (Identification and Antifungal Antagonism of Chryseomomas luteola 5042 against Phytophthora capsici)

  • 윤경현;이은탁;김상달
    • 한국미생물·생명공학회지
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    • 제29권3호
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    • pp.186-193
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    • 2001
  • 경북 경주지역의 저병해 고추경착지역의 토양으로부터 생물학적 방제기작중의 하나인 항생물질을 생산하는 길항미생물을 분히하기 위하여 70여종의 세균을 분리하였으며 이들을 대상으로 고추역병균 Phytophthora capsici를 가장 강력하게 길항하는 균주를 최종 선발하였다. 선발균주는 Chryseomonas luteola로 동정되었고 방제 기작은 약한 siderophore 생산성과 cellulase 생산성도 기인되었으나 항생물질 생산성이 주요 기작임을 확인하였다. 항진균성 항생물질의 대량생산의 기초자료로 활용하고자 항생물질 생산의 최적배지 조건 및 배양조건을 조사하였는데 길항균주의 항생물질 생산에 미치는 탄소원의 영향은 0.45% N-acetyl-D-glucosamine과 0.15% D(+) cellobiose에서 81%와 89%의 P. capsicivh자의 성장 억제율을 나타냈다. 질소원의 경우는 0.55% $NH_4$CI 첨가시 69%의 억제율을 나타냈고 무기염의 영향에 있어서는 0.01% KCI을 사용했을 때 63%의 억제율을 나타냈다. 또한 배양 조건에 있어서는 pH 7.0m $30^{\circ}C$에서 84시간 배양시 가장 높은 항진균성 항생물질 생산성을 나타내었다. 토양내에서 실제로 생물방제력을 발휘하는지를 확인하기 위하여 고추를 이용한 in vivo pot test를 실시한 결과 P capsici 만 처리한 것은 고추역병 현상을 나타냈고, P capsici 와 길항균 C luteola 5042를 함께 처리한 것은 역병 현상이 나타나지 않았다. 이것으로 길항균주는 C luteola 5042 P capsici 의 성장을 저해하여 고추 역병의 발병을 억제한다는 사실을 확인할수 있었다.

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TMV 감염에 의한 고추의 역병 저항성 유도 (Induction of Resistance by TMV Infection in Capsicum annuum Against Phytophthora Blight)

  • 이성희;이주연;차재순
    • 한국식물병리학회지
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    • 제14권4호
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    • pp.319-324
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    • 1998
  • Induction of systemic acquired resistance (SAR) against phytophthora blight and pathogenesis-related (PR) protein accumulation by TMV infection in pepper plant (Capsicum annuum cv. Nockwang) were examined to understand the mechanism of the systemic acquired resistance in pepper plant. The zoospore suspension of Phytophthora capsici was inoculated on stem of pepper plant in which TMV-pepper strain had been inoculated on fully expanded upper leaves, and thephytopha blight incidence was examined. Both disease severity and lesion length of phytophthora blight were much smaller in TMV pre-inoculated pepper plant than in uninoculated control plants. The phytophthora blight incidence was decreased about 50% in the TMV pre-inoculated pepper, compared to the uninoculated control plant at 10 days after P. capsici inoculation. Accumulation of PR1 and PR5 proteins in intercellular fluid of TMV-inoculated and uninoculated upper leaves were monitored by immuno-blot with tobacco P1b and PR5a, antibody during induction of SAR. PR1 and PR5 were detected from 24 hours after TMV inoculation in both TMV-inoculated and uninouclated upper leaves, and increased rapidly in TMV-inoculation in uninoculated upper leaves were defoliated. PR5 could be detected upto 20 days after TMV inoculation in uninoculated upper leaves. These results suggest that TMV infection induces SAR against phytophthora blight in pepper plant, and that PR proteins are accumulated very rapidly during induction of SAR and maintained for quite long time in pepper plant.

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In vitro and In vivo Activities of a Biocontrol Agent, Serratia plymuthica A2l-4, Against Phytophthora capsici

  • Shen, Shun-Shan;Park, Ok-Hee;Lee, Sun-Mi;Park, Chang-Seuk
    • The Plant Pathology Journal
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    • 제18권4호
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    • pp.221-224
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    • 2002
  • In vitro and in vivo activities of a biocontrol agent, Serratia plymuthica strain A2l-4, was evaluated for the control of Phytophthora blight of pepper, Strain A2l-4 inhibited mycelial growth, germination of zoosporangia and cystospores, and formation of zoospore and zoosporangia of Phytophthora capsici in vitro. In the pot experiment, incidence of Phytophthora blight of pepper in non-treated control was 100% at 14 days after inoculation, while no disease was observed in the plot treated with S. plymuthica A2l-4. In the greenhouse test, infection rate of pepper in the non-treated plots was 74.5%, while it was only 12.6% in the plots treated with A2l-4. Results indicate that S. plymuthica A2l-4 is a potential biocontrol agent for Phytophthora blight of pepper.

Efficacy of Fluopicolide against Phytophthora capsici Causing Pepper Phytophthora Blight

  • Shin, Jin-Ho;Kim, Joo-Hyung;Kim, Hyung-Jo;Kang, Bumg-Wan;Kim, Kyeong-Tae;Lee, Jeong-Deug;Kim, Heung-Tae
    • The Plant Pathology Journal
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    • 제26권4호
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    • pp.367-371
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    • 2010
  • In this study, we evaluated the efficacy of fluopicolide to inhibit Phytophthora capsici in vitro, and to control pepper Phytophthora blight in a greenhouse and pepper fields. Fluopicolide was tested on various developmental stages of P. capsici 06-143 (a sensitive isolate to metalaxyl) and JHAW1-2 (a resistant isolate to metalaxyl). Mycelial growth and zoosporangium germination of both isolates were completely inhibited at $4.0\;{\mu}g/ml$ of the fungicide in vitro. The $EC_{50}$ (effective concentrations reducing 50%) of P. capsici 06-143 against zoospore were $0.219\;{\mu}g/ml$, while those of JHAW1-2 were $3.829\;{\mu}g/ml$. When fluopicolide was applied at 100 and $1,000\;{\mu}g/ml$ 7 days before inoculation with P. capsici 06-143 in the greenhouse test, the disease was controlled completely until 6 days after inoculation. However, the curative effect of fluopicolide was not as much as the protective effect. When fluopicolide was applied by both soil drenching and foliar spraying, the treatments strongly protected pepper against the Phytophthora blight disease. Based on these results, fluopicolide can be a promising candidate for a fungicide to control P. capsici in the pepper fields.

Streptomyces neyagawaensis 38D10 균주가 생산하는 concanamycin B의 항고추역병 활성 (Concanamycin B, Active substance Against Phytophthora capsici Produced by Streptomyces neyagawaensis 38D10 Strain)

  • 김창진;이인경;윤봉식;유익동
    • 한국미생물·생명공학회지
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    • 제21권4호
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    • pp.322-328
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    • 1993
  • During the screening of antifungal compounds from microbial secondary metabolites to control phytophthora blight of red pepper caused by Phytophthora capsici, a soil isolate, strain 38D10 was selected. Based on taxonomic studies, this strain was identified as Streptomyces neyagawaensis. The antifungal compound was purified from culture broth by HP-20 column chromatography, ethyl acetate extraction, silica gel column chromatography, HPLC and identified as concanamycin B by UV. $^1H$-NMR, $^{13}C$-NMR, SIMS analysis. Concanamycin B has strong antifungal activity against some phytopathogenic fungi but not antivacterial activity and preventive value were 50% and 100% at 125ppm and 250ppm in pot assay.

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Characterization of Antibiotic Substance Produced by Serratia plymuthica A21-4 and the Biological Control Activity against Pepper Phytophthora Blight

  • Shen, Shun-Shan;Piao, Feng-Zhi;Lee, Byong-Won;Park, Chang-Seuk
    • The Plant Pathology Journal
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    • 제23권3호
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    • pp.180-186
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    • 2007
  • The biocontrol agent, Serratia plymuthica A21-4, has been developed for controlling pepper Phytophthora blight. Serratia plymuthica A21-4 strongly inhibits the mycelial growth, zoospore formation, and cyst germination of Phytophthora capsici in vitro. The application of a cell suspension of strain A21-4 to pepper plants in pot experiments and in greenhouse successfully controlled the disease. The bacteria produced a potent antifungal substance which was a key factor in the suppression of Phytophthora capsici. The most active chemical com-pound was isolated and purified by antifungal activity-guided fractionation. The chemical structure was identified as a chlorinated macrolide $(C_{23}H_{31}O_8Cl)$ by spectroscopic (UV, IR, MS, and NMR) data, and was named macrocyclic lactone A21-4. The active compound significantly inhibited the formation of zoosporangia and zoospore and germination of cyst of P. capsici at concentrations lower than $0.0625{\mu}g/ml$. The effective concentrations of the macrocyclic lactone A21-4 for $ED_{50}$ of mycelial growth inhibition were $0.25{\mu}g/ml,\;0.25{\mu}g/ml,\;0.30{\mu}g/ml \;and\;0.75{\mu}g/ml$ against P. capsici, Pythium ultimum, Sclerotinia sclerotiorum and Botrytis cinerea, respectively.

Enhanced Biological Control of Phytophthora Blight of Pepper by Biosurfactant-Producing Pseudomonas

  • Ozyilmaz, Umit;Benlioglu, Kemal
    • The Plant Pathology Journal
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    • 제29권4호
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    • pp.418-426
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    • 2013
  • Pseudomonas isolates from different crop plants were screened for in vitro growth inhibition of Phytophthora capsici and production of biosurfactant. Two in vivo experiments were performed to determine the efficacy of selected Pseudomonas strains against Phytophthora blight of pepper by comparing two fungicide treatments [acibenzolar-S-methyl (ASM) and ASM + mefenoxam]. Bacterial isolates were applied by soil drenching ($1{\times}10^9$ cells/ml), ASM ($0.1{\mu}g$ a.i./ml) and ASM + mefenoxam (0.2 mg product/ml) were applied by foliar spraying, and P. capsici inoculum was incorporated into the pot soil three days after treatments. In the first experiment, four Pseudomonas strains resulted in significant reduction from 48.4 to 61.3% in Phytophthora blight severity. In the second experiment, bacterial treatments combining with olive oil (5 mL per plant) significantly enhanced biological control activity, resulting in a reduction of disease level ranging from 56.8 to 81.1%. ASM + mefenoxam was the most effective treatment while ASM alone was less effective in both bioassays. These results indicate that our Pseudomonas fluorescens strains (6L10, 6ba6 and 3ss9) that have biosurfactant-producing abilities are effective against P. capsici on pepper, and enhanced disease suppression could be achieved when they were used in combination with olive oil.

고추역병의 생물학적 방제를 위한 길항세균의 분리 (Isolation of Antagonistic Bacteria to Phytophthora capsici for Biological Control of Phytophthora blight of Red Pepper)

  • 이용세;최장원;김상달;백형석
    • 생명과학회지
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    • 제9권1호
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    • pp.1-7
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    • 1999
  • 고추 역병균에 대한 Pseudomonas속 및 Bacillus속 길항미생물을 역병균과 동일한 서식처인 근권에서 분리하고자 4지역의 고추재배지에서 건전고추의 근권토양을 채취하여 선택배지를 사용하여 분리하였다. Pseudomonas속 237개 Bacillus속 260개 총 497개 균주중 327개 균주는 역병균에 대해 거의 활성이 없거나 역병균의 균사생장을 20$\%$ 이하로 억제시켰으나, Pseudomonas속 8균주와 Bacillus속 4균주는 50%이상 역병균의 균사생장을 억제시켰다. 이들 균주의 활성은 V-8 juice agar보다 TSA에서 높았으며, TSA에서 역병균의 균사생장을 60$\%$ 이상 억제시키는 균주를 선발하여 API system을 사용하여 P. cepacia (P0704, P1201), B. polymyxa (B1101) 및 B. subtilis (B1901)로 동정하였다. 이들 균주의 배양여액은 고추역병균의 유주자발아 및 균사생장을 억제시켜 항균성물질을 생성분비하는 균주로 판단되었다. 고추 역병발생 억제효과를 조사한 결과 P0704가 46.7$\%$ 로 가장 높았으며, 나머지 균주는 26.7$\%$ 에서 13.4$\%$ 로 나타났다.

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플라즈마 공정을 이용한 고추역병균(Phytophthora capsici) 불활성화에 관한 연구 (A Study on the Inactivation of Phytophthora Blight Pathogen (Phytophthora capsici) using Plasma Process)

  • 김동석;박영식
    • 한국환경과학회지
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    • 제23권9호
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    • pp.1601-1608
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    • 2014
  • Plasma reactor was used for the inactivation of Phytophthora capsici which is phytophthora blight pathogen in aquiculture. Effects of first voltage, second voltage, air flow rate, pH, incubation water concentration were examined. At the low $1^{st}$ voltage, under 80 V, the lag phase was noticed within 30 sec, however, it was not shown over 100 V. The variation of optimum operation condition was not shown by the variation of microorganisms. However, the inactivation rate was different by the variation of species of microorganisms. The inactivation rate and efficiency were increased by the increase of $2^{nd}$ voltage. The highest initial inactivation rate was shown at pH 3 and the rate was decreased by the increase of pH. The inactivation rate increased by the increase of air flow rate, however, it was shown as similar at the rate of 4 L/min and 5 L/min. The inactivation rate was distinctly decreased at the three times concentration of incubation solution comparing at the distilled water and basic incubation solution.

역병에 대한 Enterobacter asburiae ObRS-5 처리의 유도저항성 발현 (Induction of systemic resistance against Phytophthora blight by Enterobacter asburiae ObRS-5 with enhancing defense-related genes expression)

  • 김다연;전용희;안재형;안시현;윤영건;박인철;박진우
    • 환경생물
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    • 제38권4호
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    • pp.724-732
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    • 2020
  • 본 연구에서는 기 선발한 Enterobacter asburiae ObRS-5 균주를 1×108 cfu mL-1 농도로 고추에 관주 처리했을 때 Phytophthora capsici에 의한 고추역병을 74.6% 방제하는 효과가 있었다. E. asburiae ObRS-5 균주에 의한 고추역병 방제 메커니즘을 확인하기 위해 고추의 PR1, PR4 및 PR10 유전자를 특이적으로 증폭하는 프라이머를 이용하여 quantitative PCR을 수행하였다. 그 결과 E. asburiae ObRS-5 균주를 처리한 고추에서 대조구와 비교하여 상기 세 가지 유전자의 발현이 모두 높은 수준을 유지하였다. 또한 E. asburiae ObRS-5 균주는 고추의 생육을 억제하지 않으면서 ISR 반응을 유도하는 것으로 나타났다. 이러한 결과를 통하여 P. capsici이 침입할 때 E. asburiae ObRS-5 균주가 매개하는 ISR 메커니즘을 통해 Phytophthora 역병의 제어가 가능한 것으로 사료된다.