• Title/Summary/Keyword: gray mold (Botrytis cinerea)

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Biocontrol of gray mold of cucumber and tomato by epihpytic bacteria in field condition

  • Lee, Sang-Yeob;Lee, Sang-Bum;Kim, Il-Yon;Kim, Yong-Ki
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 2003.10a
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    • pp.104.2-105
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    • 2003
  • Bacterial isolates, CC178, PTC25, HC39 and KY165 originally obtained from the leaves of cucumber or tomato were selected for biocontrol agents against gray mold of cucumber and tomato by in vivo cucumber seedling assay. Each suspension of the selected epiphytic bacteria were sprayed three times at seven-day interval from early stage of cucumber in a field. Incidence of gray mold on cucumber fruits treated with isolates CC178, PTC25, HC39 and KY165 was 15.3%, 18.2%, 23.6%, and 10.4%, respectively, whereas that of control was 38.0% after 7 days of final spray. On the other hand, treatment with the selected isolates, CC178, PTC25, HC39, and KY165 on tomato showed 2.2%, 1.3%, 2.9%, and 3.5% in the incidence of gray mold on leaves, whereas that of control was 9.3%. All selected isolates had strong antagonistic activity against Botrytis cinerea on dual culture plate assay.

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Monitoring for the Resistance of Strobilurin Fungicide Against Botrytis cinerea Causing Gray Mold Disease (Strobilurin계 살균제에 대한 잿빛곰팡이병균 Botrytis cinerea의 저항성 검정)

  • Kim, Ah Hyeong;Kim, Seon Bo;Han, Ki Don;Kim, Heung Tae
    • The Korean Journal of Pesticide Science
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    • v.18 no.3
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    • pp.161-167
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    • 2014
  • This study was conducted to investigate the resistance of Botrytis cinerea to azoxystrobin, which belongs to strobilurin fungicides. The sensitivity of B. cinerea isolates, which were collected from infected pepper, strawberry, cucumber and tomato by a single spore isolation, to the fungicide was tested through a agar dilution method on PDA amended with fungicides and $100{\mu}g\;mL^{-1}$ of salicylhydroxamic acid (SHAM). All isolates of B. cinerea tested in this study were classified as a sensitive and a resistant group by $1.0{\mu}g\;mL^{-1}$ of $EC_{50}$ value to azoxystrobin. While the sensitive isolates accounted for 46.5% of B. cinerea population, the resistant ones did for 53.5%. According to the regions isolating B. cinerea, the highest isolation frequency was showed as 81.1% in Chungnam among the all. Among 4 host plants as pepper, strawberry, cucumber and tomato, the highest isolation frequency was obtained in strawberry, while the lowest was done in pepper. The isolate resistant to azoxystrobin showed the cross resistance to other fungicides included into strobilurins as kresoxim-methyl and trifloxystrobin. In spite of an excellent efficacy of strobilurins, it should be taken care to use them in the field, because of the high risk in the fields.

Post-harvest Decay of 'Campbell Early' Grape (포도 '캠벨얼리'의 저장 중 발생하는 썩음병)

  • Noh, Young-Hee;Kim, Yong-Eon;Song, Min-Ji;An, Ji-Hye;Jeong, Min-Jung;Hong, Seung-Beom;Kim, Seon-Hwa;Lee, Hyok-In;Cha, Jae-Soon
    • Research in Plant Disease
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    • v.20 no.4
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    • pp.275-282
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    • 2014
  • The occurrence of post-harvest diseases and their pathogens in 'Campbell Early' which is the most produced grape in Korea was investigated. The 'Campbell Early' grapes produced in 3 main grape-producing areas were stored in a cold room ($0-4^{\circ}C$) for 2 weeks then at room temperature for 4 weeks prior to investigation. The major post-harvest diseases occurred were gray mold, blue mold, ripe rot, new decay 1, and new decay 2. Pathogens isolated from the symptoms were identified as Botrytis cinerea for gray mold, Penicillium sclerotiorum for blue mold and Collectrichum acutatum for ripe rot. Pathogens for new decay 1 and new decay 2 were not identified yet. Incidences of new decay 1 and new decay 2 were much higher than the other 3 decays in all grapes produced from 3 areas. Gray mold and blue mold occurred at much lower frequencies than these two decays, and ripe rot occurred least.

Relationships Between Pathogenicty and Activities of Polygalacturonase, Laccase, and ${\beta}$-Glucosidase Produced by Botrytis cinerea (Botrytis cinerea 균주들이 생산하는 Polygalacturonase, Laccase, ${\beta}$-glucosidase의 균주 간 화성 및 병원성과의 상관관계)

  • Kim, Jong-Jin;Kim, Jae-Won;Lee, Chang-Won;Chung, Young-Ryun
    • Korean Journal Plant Pathology
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    • v.13 no.4
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    • pp.225-231
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    • 1997
  • Activities of polygalacturonase, laccase, and intra- and extra-cellular $\beta$-glucosidase produced by 20 Botrytis cinerea isolates in liquid culture media containing cucumber cell was as a carbon source were measured and their relationships to the pathogenicity were analyzed. No significant correlations between these enzyme activities and the pathogenicity of B. cinerea were found. Mycelial growth rate on Bayendamm media, however, was higthly correlated with the pathogenicity (r=0.522) anong these isolates. Immuno-blot analysis of the culture filtrate using antibody against against exo-polygalacturonase revealed that only one band with molecular weight of 66 kDa was detected amone 34 tested isolates. It appears that these enzymes may not be primary factors in dermining the pathogenicity of B. cinerea.

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Effect of Mepanipyrim on the Resistant Isolates of Gray Mold fungus, Botrytis Cinerea to the Fungicides of Benzimidazole and Dicarboximide (Benzimidazole과 dicarboximide계 살균제 저항성 잿빛곰팡이병원균(Botrytis cinerea)에 대한 mepanipyrim의 효과)

  • Koo, Han-Mo;An, Seung-Joon;Shin, Ho-Chul;Do, Eun-Soo;Shin, Mi-Ho;Kim, You-Seok;Kim, Jin-Hee;Chun, Se-Chul
    • Applied Biological Chemistry
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    • v.49 no.4
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    • pp.259-265
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    • 2006
  • Effect of the fungicide mepanipyrim on the resistant and sensitive isolates of Botrytis cinerea was studied in vitro and also tested to control Botrytis rot of strawberry, cucumber and grape in the field. These isolates were selected by relative mycelial growth and spore germination on potato dextrose agar(PDA) incorporated with $100{\mu}g\;a.i./ml$ of benomyl and procymidone, respectively, compared to the unamended PDA. Mycelial growth of the selected resistant isolates was significantly inhibited by mepanipyrim but the inhibition rate was similar to other fungicides belong to benzimidazole or dicarboximide, although spore germination was not inhibited even by the higher concentration of mepanipyrim. When the benomyl and procymidone resistant isolates were inoculated to cucumber leaves, lesion development was significantly inhibited with application of $250{\mu}g\;a.i./ml$ of mepanipyrim but not with that of benomyl and procymidone. In addition, when $250{\mu}g\;a.i./ml$ of mepanipyrim was applied to strawberry, cucumber, and grape in the field, the control of Botrytis rot was significantly different from that of the untreated control(Duncan's multiple range test, p<0.05). The results suggested that mepanipyrim might be an alternative fungicide for the control of benomyl- and procymidone-resistant pathogens of Botrytis rot.

Control of Fungal Diseases with Antagonistic Bacteria, Bacillus sp. AC-1

  • Park, Yong-Chul-
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 1994.06a
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    • pp.50-61
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    • 1994
  • Biological control of important fungal diseases such as Phytophthora blight of red pepper, gary mold rot of vegetables, and powdery mildew of many crops was attempted using an antagonistic bacterium, Bacillus sp. AC-1 in greenhouses and fields. The antagonistic bacterium isolated from the rhizosphere soils of healthy red pepper plant was very effective in the inhibition of mycelial growth of plant pathogenic fungi in vitro including Phytophthora capsici, Rhizoctonia solani, Pyricularia oryzae, Botrytis cinerea, Valsa mali, Fusarium oxysporum, Pythium ultimum, Alternari mali, Helminthosporium oryzae, and Colletotrichum gloeosporioides. Culture filtrate of antagonistic Bacillus sp. AC-1 applied to pot soils infested with Phytophthora capsici suppressed the disease occurrence better than metalaxyl application did until 37 days after treatment in greenhouse tests. Treatments of the bacterial suspension on red pepper plants also reduced the incidence of Phytophthora blight in greenhouse tests. In farmers' commercial production fields, however, the controlling efficacy of the antagonistic bacteria was variable depending on field locations. Gray mold rot of chinese chives and lettuce caused by Botrytis cinerea was also controlled effectively in field tests by the application of Bacillus sp. AC-1 with control values of 79.7% and 72.8%, respectively. Spraying of the bacterial suspension inhibited development of powdery mildew of many crops such as cucumber, tobacco, melon, and rose effectively in greenhouse and field tests. The control efficacy of the bacterial suspension was almost same as that of Fenarimol used as a chemical standard. Further experiments for developing a commercial product from the antagonistic bacteria and for elucidating antagonistic mechanism against plant pathogenic fungi are in progress.

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Induction of Disease Resistance by Acibenzolar-S-methyl, the Plant Activator against Gray Mold (Botrytis cinerea) in Tomato Seedlings (저항성 유도물질(acibenzolar-S-methyl)처리에 의한 토마토 잿빛곰팡이병 발병억제)

  • Lee Jung-Sup;Kang Nam-Jun;Seo Sang-Tae;Han Kyoung-Suk;Park Jong-Han;Jang Han-Ik
    • Research in Plant Disease
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    • v.12 no.1
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    • pp.40-45
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    • 2006
  • The plant defence activator, Acibenzolar-S-methyl [benzo (1,2,3) thiadiazole-7-carbothioic acid-S-methyl ester, ASM] was assayed on tomato seedlings for its ability to induce resistance against Botrytis cinerea, the causal agent of gray mold in tomato. Pre-treatment of plants with ASM reduced the severity of the disease as well as the growth of the mycelium in plants. In ASM treated plants, reduction in disease severity (up to 55%) was correlated with suppression of mycelia growth (up to 46.5%) during the time course of infection. In plants treated with ASM, activities of peroxidase were determined as markers of resistance. Applications of ASM induced Progressive and significant increase of the enzyme in locally treated tissues. Such responses were expressed earlier and with a much higher magnitude when ASM-treated seedlings were challenged with the pathogen, thus providing support to the concept that a signal produced by the pathogen is essential for triggering enhanced synthesis and accumulation of the enzymes. No such activities were observed in water-treated control plants. Therefore, the slower symptom development and reduction in mycelium growth in ASM treated plants might be due to the increase in activity of oxidative and antioxidative protection systems in plants.