• Title/Summary/Keyword: 푸른곰팡이병

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Identification of Pathogens Causing Grape Rot on 'Red Glove' Variety Imported from Chile (칠레산 수입포도 '레드글로브' 품종에 발생한 부패병 병원균의 동정)

  • Song, Min-Ji;Lee, Hyok-In;Yea, Mi-Chi;Kim, Dae-Ho;Hong, Seung-Beom;Cha, Jae-Soon
    • Research in Plant Disease
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    • v.18 no.3
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    • pp.217-224
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    • 2012
  • Post-harvest rot of grape causes a severe economic loss and lower of the grape quality. It is also one of the important limiting factors for grape export. Grape rots and their casual agents on 'Red Globe' variety imported from Chile were identified. Grapes shown rotting symptom were collected from the storages near the import harbor. The 3 different rots were identified on the imported 'Red Globe'; melting decay, gray mold, and blue mold. A bacterium that isolated from a typical melting decay symptom was identified as Gluconobacter cerinus on basis of its nucleotide sequence of 16S rDNA and fatty acid profile. By inoculation on grape, it caused cracking and dissolution of epidermis of grape which were the characteristics of melting decay. Botrytis cinerea and Penicillium expansum were isolated from grapes showing gray mold and blue mold. The 2 fungal isolates were identified on basis of their morphological characteristics and nucleotide sequence of their beta-tubulin genes. They showed strong pathogenicity on 'Campbell Early' variety that is a major table grape in Korea.

Elucidation of Mode of Action of Pantoea agglomerans 59-4 for Controlling Garlic Blue Mold (마늘 푸른곰팡이병 방제용 Pantoea agglomerans 59-4의 억제기작 해석)

  • Kim, Yong-Ki;Kwon, Mi-Kyung;Yeh, Wan-Hae;Hong, Sung-Jun;Jee, Hyung-Jin;Park, Jong-Ho;Han, Eun-Jung;Park, Kyung-Seok;Lee, Sang-Yeob;Lee, Seong-Don
    • Research in Plant Disease
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    • v.16 no.2
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    • pp.163-169
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    • 2010
  • To screen for potential biocontrol agents against postharvest disease of garlics caused by Penicillium hirsutum, a total of 1292 isolates were isolated from the rhizoshere or rhizoplane of Allium species. Among them, S59-4 isolate was selected as a potential biocontrol agent by in vivo wounded garlic bulb assay. The isolate was identified as Pantoea agglomerans (Pa59-4) through Biolog system. Pa59-4 did not inhibit the mycelial growth of P. hirsutum in dual-culture with P. hirsutum on tryptic soy agar. In order to elucidate mode of action of Pa59-4 on biological control, nutrient competition between Pa59-4 and P. hirsutum was investigated by the simple method using tissue culture plates with cylinder inserts containing defusing membrane reported by Janisiewicz et al. (2000). The results showed that Pa59-4 effectively suppressed spore germination and mycelial growth of blue mold in the low concentration (0.5%) of garlic juice, but it did not suppress those of blue mold in the high concentration (5%) of garlic juice. This result suggests that the mechanism in biocontrol of garlic blue mold by Pa 59-4 may be involved in nutrient competition with P. hirsutum on garlic bulbs.

Biological Control of Garlic Blue Mold using Pantoea agglomerans S59-4 (Pantoea agglomerans S59-4를 이용한 마늘 푸른곰팡이병의 생물학적 방제)

  • Kim, Yong-Ki;Hong, Sung-Jun;Jee, Hyung-Jin;Park, Jong-Ho;Han, Eun-Jung;Park, Kyung-Seok;Lee, Sang-Yeob;Lee, Seong-Don
    • The Korean Journal of Pesticide Science
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    • v.14 no.2
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    • pp.148-156
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    • 2010
  • S59-4 isolate was evaluated as a potential biocontrol agent using in vivo wounded garlic bulb assay. When the spore suspension ($10^5$ spores/$m\ell$) of Penicillium hirsutum was co-inoculated with cell suspension of S59-4 isolate on wounded garlics, the isolate showed high suppressive effect to disease development. The isolate was identified as Pantoea agglomerans S59-4(Pa59-4) through Biolog system. Furthermore, soaking garlic bulbs in the suspension of Pa59-4 significantly reduced garlic decay caused by P. hirsutum. The optimal concentration of Pa59-4 for controlling garlic blue mold was $10^7\sim10^8$ cfu/$m\ell$. And suppressive effect of Pa59-4 on garlic storage decay reduced as inoculation concentration of Penicillium hirsutum increased. In addition in order to investigate population dynamics of Pa59-4 on application site of garlic cloves, two antibiotic markers, pimaricin and vancomycin were selected. Bacterial density of Pa59-4 on the wounded garlic cloves increased continuously both under room temperature condition and low temperature condition until 30days after application of Pa59-4, meanwhile that of Pa59-4 on intact garlic cloves increased until 15days after application of Pa59-4 and thereafter decreased continuously. Two culture media for mass-production of Pa59-4, LB medium and TSB medium, were selected. By-product of bio-fungicide formulated by mixing white carbon and bacterial suspension of Pa59-4 suppressed by 40 to 50% garlic blue mold. Above results suggest that Pa59-4 be a promising control agent against garlic blue mold.

Antifungal activity of pesticides to control dry rot and blue mold during garlic storage (마늘 저장 중 마름썩음병과 푸른곰팡이병 억제를 위한 농약의 살균활성)

  • You, Oh-Jong;Lee, Yong-Hoon;Jin, Yong-Duk;Kim, Jin-Bae;Hwang, Se-Gu;Han, Sang-Hyun;Kim, Jang-Eok
    • The Korean Journal of Pesticide Science
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    • v.11 no.4
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    • pp.331-338
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    • 2007
  • The major fungal diseases which effecting garlic storage are blue mold and dry rot, caused by Penicillium hirsutum and Fusarium oxysporum, respectively. In order to reduce the damage by the pathogenic fungi, here we report the effects of 11 fungicides tested to reduce spoilage during storage of garlics. In the in vitro antimicrobial activity test, the fungicides, diphenylamine, prochloraz and tebuconazole showed 0.3, 2.2, and 1.3 nun inhibition zone to F. oxysporium, and cyprodinil, diphenylamine, fenbuconazole, hexaconazole, penconazole, prochloraz, propiconazole, pyrimethanil and tebuconazole exhibited 0.2, 2.4, 0.8, 0.4, 1.2, 1.5, 1.2, 0.4 and 1.5 mm to P. hirsutum, respectively. To test the in vivo control effect, when the diphenylamine, prochloraz, and tebuconazole were treated by standard concentration, the fungal mycelium of F. oxysporium started to grow 5 days after inoculation, and 80, 63.3 and 83.3% of the inoculated cloves are infected 11 days after inoculation. When the tebuconazole were treated by standard concentration, the P. hirsutum was completely inhibited the growth of the fungi. In case of diphenylamine, penconazole and propiconazole treatment, the P. hirsutum was observed 7 days after inoculation and $20{\sim}23.3%$ of the cloves were infected 11 days after inoculation. When cyprodinil, prochloraz and pyrimethanil were treated, pathogens occurred 5 days after inoculation and $60{\sim}100%$ of the cloves infected 11 days after inoculation. Three fungicides such as diphenylamine, prochloraz and tebuconazole also suppressed remarkably the infection and growth of F. oxysporium and P. hirsutum on garlic when both of the pathogens are inoculated after the garlic cloves were dipped for 10 min in the suspension of each agrochemical. Overall, diphenylamine, prochloraz and tebuconazole showed effective control efficacy on dry rot and blue mold There was significant correlation between in vitro and in vivo assay in diphenylamine and prochloraz to F. oxysporum and cyprodinil, prochloraz and pyrimethanil to P. hirsutum.

Blue Mold of Persimmon (Diospyros kaki) Caused by Penicillium crustosum (Penicillium crustosum에 의한 감 푸른곰팡이병 발생)

  • Kwon, Jin-Hyeuk;Park, Chang-Seuk
    • Research in Plant Disease
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    • v.9 no.4
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    • pp.217-220
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    • 2003
  • A severe fruit rot of Persimmon (Diospyros kaki cv: Fuyu) was occurred during the storage and transport that infected with blue mold in Sweet Persimmon Experiment Station, Gyeongsangnam-do Agricultural Research and Extension Services, Korea. Fruit surfaces were infected with the fungus first and the colonized fungus formed mycelial mats. From the point of infection, fruits become collapsed and mostly ruptured. The pathogenic fungus from infected fruits was isolated and cultured on PDA. Colony color of the fungus was white at frist than became green on Malt Extract Agar and Czapek Yeast Extract Agar. Conidia were ellipsoid subglobose and 2.6${\sim}$3.8 ${\times}$ 2.4${\sim}$3.8 ${\mu}m$ in size. Stipes were 86${\sim}$320 ${\times}$ 2.8${\sim}$4.3 ${\mu}m$ in size. Rami were 7.5${\sim}$32.6 ${\times}$ 2.6${\sim}$4.2 ${\mu}m$ in size, Ramuli were 12.4${\sim}$14.8 ${\times}$ 3.2${\sim}$3.8 ${\mu}m$ in size, Metulae were 8.9${\sim}$13.6 ${\times}$ 2.8${\sim}$4.6 ${\mu}m$ in size. Phialides were ampulliform, 8.2${\sim}$12.4 ${\times}$ 2.3${\sim}$3.6 ${\mu}m$ in size. Based on the cultural and mycological characteristics and pathogenecity test on host plants, the fungus was identified as s, This is the first report on the blue mold of Persimmon (Diospyros kaki) caused by P. crustosum in Korea.

Cultural and chemical approaches for controlling postharvest diseases of garlics (마늘 저장병 방제를 위한 경종적, 화학적 접근)

  • Kim, Yong-Ki;Lee, Sang-Bum;Lee, Sang-Seob;Shim, Hong-Sik;Choi, Inn-Hoo
    • The Korean Journal of Pesticide Science
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    • v.7 no.2
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    • pp.139-148
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    • 2003
  • The purpose of this study was to investigate damages of garlics occurred under cold storage and farmhouse storage condition, influence of cultural and environmental factors on storage spoilage of garlics, and to establish control strategies to reduce damages occurred under storage of garlics. Decays of garlics were highly related with cultural condition (paddy field or upland soil), ventilation, storage temperature and relative humidity, continuous cropping years, and harvesting stage. Early-harvested garlics were more decayed than late-harvested garlics. Garlics cultivated on paddy field were less decayed than ones cultivated on upland soil under farmhouse storage condition. The densities of Penicillium spp. and Fusarium spp. were higher on plot with long term continuous cropping cultivation history than on plot with short term continuous cropping cultivation history. However there is no relation between continuous cropping years and percent of decay of garlics. As a result of investigating influence of environmental factors on decay of garlics, P. hirsutum caused severe spoilage under high relative humidity condition, while F. oxysporum and Stemphyllium botryosum were not related with relative humidity. The three postharvest pathogens grew well above woe. In addition when P. hirsutum and S. botryosum were cultured for two months, they grew even at $-1^{\circ}C$. Except for environmental factors, wounds occurred through farming works. had an effect on storage spoilage of garlics. Garlics only hurt with a toothpick without inoculation of pathogens were decayed more severe than those inoculated with pathogens without wounds. Seven agro-chemicals showed highly suppressive effect were selected by measuring mycelial growth of three major pathogens of garlics on potato dextrose agar amended with 0.1% (v/v) of each fungicide. When they were foliar-sprayed on garlics 30 days before harvesting, it was confirmed that they suppressed storage spoilage of garlics. Also when garlics were sprayed with and drenched into the suspension of Benoram WP very after harvesting garlics, garlic damages by postharvest pathogens were reduced remarkably.

Occurrence of green mold on Phellinus baumii caused by Penicillium rubrum (Penicillium rubrum에 의한 상황버섯 (Phellinus baumii) 푸른곰팡이병의 발생)

  • Jo, Woo-Sik;Rew, Young-Hyun;Choi, Sung-Kuk;Seo, Geon-Sik;Uhm, Jae-Youl
    • Journal of Mushroom
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    • v.5 no.1
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    • pp.25-28
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    • 2007
  • Green mold of Phellinus baumii mushroom caused by a species of Penicillium was observed in Daegu on August, 2000. The causal fungus was identified as Penicillium rubrum based on its cultural and morphological characteristics. Conidiophores of the fungus were one-stage branched and terminating in a whorl of 3~5 metulae. The metulae were mostly 5.2~7.8 ${\mu}m$ in size. Phialides were flask-shaped and $5.7{\sim}7.5{\times}2.2{\sim}2.7{\mu}m$. Conidia were subglobose and 1.8~2.3 ${\mu}m$. Colonies on Czapek's agar growing, attaining a diameter of 23 mm within 8 days at $25^{\circ}C$. The optimum temperature for growth of the fungus was about $20{\sim}30^{\circ}C$. This is the first report on the occurrence of green mold of P. baumii caused by P. rubrum in Korea.

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Occurrence of Bluish Green Mold of Pleurotus eryngii by Penicillium corylophilum (Penicillium corylophilum에 의한 큰느타리버섯(Pleurotus eryngii) 푸른곰팡이병의 발생)

  • Jo, Woo-Sik;Rew, Young-Hyun;Kim, Sung-Han;Yun, Jae-Tak;Choi, Boo-Sull
    • The Korean Journal of Mycology
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    • v.27 no.6 s.93
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    • pp.412-414
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    • 1999
  • Bluish green mold of Pleurotus eryngii caused by Penicillium was observed in Seungju on Feburary 4, 1999. The causal fungus was identified as Penicillium corylophilum based on its cultural and morphplogical characteristics. Conidiophores one-stage branched, terminating in a whorl of $2{\sim}4$ metulae. Metulae mostly $10{\sim}18{\times}2.5{\sim}3.0\;{\mu}m$. Phialides flask-shaped, $9{\sim}13{\times}2.2{\sim}2.8\;{\mu}m$. Conidia subglobose, $2.5{\sim}3.2{\times}2.5{\sim}3.0\;{\mu}m$. Colonies on Czapek agar mostly attaining a diameter of 21 mm within 7 days at $25^{\circ}C$. Colour blue-green soon becoming grey-green. Pathogenicity test by wound inoculation revealed that Penicillium corylophilum caused the same symptoms as observed in the field at $6{\sim}7$ days after inoculation.

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Biological Control of Blue Mold of Apples by Bacillus spp. and Serratia marcescens (Bacillus spp. 및 Serratia marcescens에 의한 사과 푸른곰팡이병의 생물적 방제)

  • Kim, Yong-Ki;Lee, Seong-Don;Ryu, Jae-Gee;Ryu, Jae-Dang
    • Research in Plant Disease
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    • v.9 no.4
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    • pp.229-236
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    • 2003
  • The 1080 epiphytic bacteria obtained from 370 samples of pome and stone fruits including apple, pear, peach, grape, apricot and Chinese quince were screened for antagonistic activity against postharvest pathogens, Penicillium expansum, Alternaria alternata and Botrytis cinerea. Among tested antagonistic bacteria, eight bacterial isolates inhibited mycelial growth of the postharvest pathogens and were identified as Bacillus amyloliquefaciens (three strains), B. megaterium, B. subtilis var. gladioli, B. licheniformis, B. pumilus and Serratia marcescens based on biochemical characteristics and utility of carbon and nitrogen compounds (Biolog system). Eight carbohydrates were evaluated for their effect on mycelial growth and germination of the postharvest pathogen, P. expansum to select nutrients for enhancing bio-control efficacy. The growth of four selected antagonists, B. amyloliquefaciens P43-2, B. amyloliquefaciens A71-2, B. licheniformis P94-1, and S. marcescens P76-9 were also tested. As a result, 1% glucose (w/v) strongly stimulated growth of the antagonists, suppressed mycelial growth of the postharvest pathogen, and had a little comparatively stimulatory effect on germination of the the postharvest pathogen. It was confirmed that the addition of 1% glucose (w/v) greatly enhanced biocontrol effect of B. amyloliquefaciens P43-2, B. licheniformis P94-1, and S. marcescens P76-9. Application of B. amyloliquefaciens P43-2, B. licheniformis P94-1, and S. marcescens P76-9 with the addition of 1% glucose (w/v) increased the control efficacy up to 48%, 46%, 14% compared with those of the antagonists without glucose, respectively. When the antagonists were applied to control postharvest disease caused by P. expansum in apple wounds, the population of B. amyloliquefaciens P43-2 and B. licheniformis P94-1 increased until 4 days after inoculation (DAI) of the antagonists and then decreased from 10 DAI. Meanwhile the population of S. marcescens P76-9 decreased at early stage (4 DAI), but increased from 7 DAI, and finally maintained constantly until 10 DAI in apple wounds.

Characteristics of a new oyster mushroom variety 『Jinmi』 for the bottle cultivation (느타리버섯 신품종 육성 연구(I) -병재배용 신품종 『진미』 느타리버섯의 특성-)

  • Chi, Jeong-Hyun;Ju, Young-Cheul;Choi, Jong-In
    • Journal of Mushroom
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    • v.2 no.4
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    • pp.218-221
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    • 2004
  • Jinmi oyster mushroom(Pleurotus ostreatus) were bred in Mushroom Research Institute, Gyonggi Province A.R.E.S in 2003. This oyster mushroom were bred and cultivated one after mating single spores collected from K3-2 and ASI2018-249. The major characteristics of the mushroom are showing a lot of pinheadings, the gray-colored and infundibuliform pileus. The optimum temperature for the mycelial growth was around $25{\sim}30^{\circ}C$ and that for the pinheading and growth of fruitbody was around $15{\pm}1^{\circ}C$. Around 22 days at $20^{\circ}C$ were required for incubation of Jinmi and the yield was shown high by 145.9g/bottle.

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