• Title/Summary/Keyword: 생물학적방제

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Mass Cultivation and Characterization of Multifunctional Bacillus velezensis GH1-13 (복합기능성 Bacillus velezensis GH1-13 균주의 대량배양 최적화 및 특성)

  • Park, Jun-Kyung;Kim, JuEun;Lee, Chul-Won;Song, JaeKyeong;Seo, Sun-Il;Bong, Ki-Moon;Kim, Dae-Hyuk;Kim, Pyoung Il
    • Korean Journal of Organic Agriculture
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    • v.27 no.1
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    • pp.65-76
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    • 2019
  • Bacillus genus are found abundantly in various sites and their secondary metabolites were used as potential agents in agriculture, notably plant growth promoting and bio-control. The objective of this study was to develop the culture conditions of GH1-13 strain including higher cell growth, stable endospore-forming and enhancement of potential agents which are related with plant growth promoting and phytopathogen suppression. The optimal carbon and nitrogen sources were determined by glucose and soy bean flour, respectively, then resulted in $7.5{\times}10^9cells/mL$, $6.8{\times}10^9\;endospore\;cells/mL$ and sporulation yield of 90% after 30 h cultivation in 500 L submerged fermenter at $37^{\circ}C$, pH 7.0. Cells and cell-free supernatant of GH1-13 strains showed the potent antifungal activity against phytopathogenic fungi of Colletotrichum gloeosporioides. It was also confirmed that indole-3-acetic acid (IAA) production of GH1-13 strain was greatly increased by addition of 0.3% tryptophan.

Development of Biofungicide Using Bacillus sp. KBC1004 for the Control of Anthracnose of Red Pepper (길항세균 Bacillus sp. KBC1004를 이용한 고추탄저병의 생물학적 방제제 개발)

  • Kang, Hoon-Serg;Kang, Jae-Gon;Park, Jeong-Chan;Lee, Young-Ui;Jeong, Yoon-Woo;Kim, Jeong-Jun;Park, Chang-Seuk
    • Research in Plant Disease
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    • v.21 no.3
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    • pp.208-214
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    • 2015
  • To develop an effective biopesticide to control pepper anthracnose disease, an isolate which showed strong inhibitory effect on the mycelial growth and conidial germination of Colletotrichum acutatum was selected among the antagonistic bacterial isolates collected from pepper grown soil. The bacterial isolate was identified as Bacillus sp. KBC1004 using 16S rRNA sequence analysis. The liquid culture of KBC1004 was freeze-dried and formulated as a wettable powder(WP). The wettable powder form of KBC1004 required at least 24 hours to activate and to inhibit the conidial germination of C. acutatum. In vitro bioassay using the detached green pepper fruits, biocontrol activity of the WP was not recognizable in simultaneous inoculation, but significant disease suppression was observed pre-treatment (24 hr) of the WP before pathogen inoculation. In field experiment, 4 times foliar applications of the 1/500 diluted wettable powder from the end of June showed great control efficacy similar to that of the chemical fungicide application. These results suggest that the formulated WP product could be an alternative mean to control of pepper anthracnose disease in environmentally friendly farming practices.

Effect of a Soil Amendment for Controlling Fusarium Wilt of Cucumber caused by Fusarium oxysporum f. sp. cucumerinum (오이 덩굴쪼김병(Fusarium oxysporum f. sp. cucumerinum) 방제에 대한 토양첨가제의 효과)

  • Chung, Bong-Koo;Ryou, Na-Young
    • The Korean Journal of Mycology
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    • v.24 no.2 s.77
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    • pp.93-103
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    • 1996
  • In order to find out effect on the inorganic and organic compounds as a soil amendment to control Fusarium wilt of cucumber caused by Fusarium oxysporum f. sp. cucumerinum, this study was conducted during the last two years from 1993 to 1995. According to add 14 inorganic chemicals (1%, w/v) including $Al_2(SO_4)_3$ individually in vitro, these chemicals were confirmed their suppression, and especially Alum, CaO and $Al_2(SO_4)_3$ suppressed not only $20.9{\sim}25.0$ percent on mycelial growth of the fungus, but also inhibited $72.8{\sim}97%$ on conidial germination. $Ca(NO_3)_2$ suppressed mycelial growth only, while KCl, $K_2SO_4,\;NH_4NO_3$, and Urea suppressed conidial germination. The 7 chemicals were finally seleced. Composted pine bark (CPB) suppressed definely more than 90% on conidial germination in the different extract concentration (2,5 and 10%), although mycelial growth on extract medium of CPB and milled alfalfa leaves (MAL) were not remarkable. The antagonist Trichoderma sp. (Tr-3) mixed with an amended soil (1%, w/w) containing composted pine bark showed a good mycelial growth to compete the causal fungus. And the antagonist Pseudomonas sp. (7-1-3) was also confirmed its antagonistic ability with culture filterate. It is known that a CPB soil amendment mixed with the two antagonists (1%, w/w) controlled almost completely Fusarium wilt of cucumber in greenhouse pots and a field experiment. It is therefore expected that biocontrol on Fusarium wilt of cucumber by a soil amendment can be applied to farmmer's fields.

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First Report of an Unrecorded Nematode-trapping Fungus, Arthrobotrys sinensis in Korea (국내 미기록 선충포식성 곰팡이 Arthrobotrys sinensis의 형태 및 분류)

  • Ha, Jihye;Kang, Heonil;Kang, Hangwon;Kim, Donggeun;Lee, Dongwoon;Kim, Yongchul;Choi, Insoo
    • Korean journal of applied entomology
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    • v.58 no.1
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    • pp.9-13
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    • 2019
  • Nematode-trapping fungi use various specialized traps to capture nematodes. A fungus that can capture nematodes in three dimensional adhesive networks was isolated from the soil around the root of Cucumis melo L. (Oriental melon) in Seongju, Korea. The conidiophores were found to be septate, hyaline, erect and $290-528(342.8){\mu}m$ high. It produces obovoid shape and 1-3 septate (commonly 2-septate) conidia with a size of $30.5{\times}20.3{\mu}m$. Molecular analysis of 5.8 S rDNA displayed 99% similarity to Arthrobotrys sinensis. On the basis of morphological, morphometric and molecular studies, the fungus was identified as A. sinensis. It is the first report in Korea which can be one of biological control resource of plant-parasitic nematode.

Environmental Fate of Trichlorfon Used to Control Agelastica coerulea B. in Forest by Aerial Application (오리나무 잎벌레(Agelastica coerulea B.) 방제용 살충제 Trichlorfon(Dipterex)의 환경 동태)

  • Lee, Sung-Kyu;Kim, Yong-Hwa;Roh, Jung-Koo
    • Korean Journal of Environmental Agriculture
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    • v.5 no.2
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    • pp.119-129
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    • 1986
  • Disappearence of the trichlorfon (Dipterex) in the forest, following aerial to control Agelastica coerulea B., were studied by sampling deposits on slide glasses, soils, water, and leaves, and analysing with a gas chromatograph equipped with an electron capture detector. By analysing the amount remained on slide glasses, it was shown that the pesticide was adequately sprayed and nearly all deposit was lost in a day. The amount deposited under the tree was about 1/100 of the amount at an exposed site. Concentration of trichlorfon in creek water was 10 to 100 times as high as the acute toxic level to zooplankton for 6 to 24 hours, The rain could recontaminate the stream water up to the toxic level. Loss rate of trichlorfon from soils showed variations by sampling sites and was generally slower than from slide glasses. Amount deposited on leaves were less than the calculated or expected amount. The loss from leaves were similar to that from soil.

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Pathogenicity Screening of Entomopathogenic Fungus, Beauveria bassiana against Paratlanticus ussuriensis (갈색여치에 대한 백강균의 병원력 검증)

  • Bang, Hea-Son;Jung, Myung-Pyo;Kim, Myung-Hyun;Han, Min-Su;Kang, Kee-Kyung;Lee, Deog-Bae;Nam, Sung-Hee
    • Korean Journal of Environmental Agriculture
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    • v.29 no.3
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    • pp.300-303
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    • 2010
  • Laboratory trial on the control effect of Beauveria bassiana against Paratlanticus ussuriensis was carried out with fungi collected from South Korea, China and Peru. All B. bassiana species from collected at each site had a strong fungicidal activity against P. ussuriensis. The Abbott's formula was the highest showing 100% mortality and the others also showed over 60% mortality. It took 3 to 6 days until katydid attained to death after inoculation with all B. bassiana treatments. From this trial, B. bassiana fungus was found to have some effects as pathogenicity of entomopathogenic activity against P. ussuriensis. So B. bassiana could be considered as one of the environment-friendly and effective pesticides for the control of P. ussuriensis.

Cultural characteristics of Bacillus velezensis HKB-1 in the water extract of the composted spent mushroom substrate of Lentinula edodes and biological control of Phytophthora blight disease of pepper (표고버섯 수확후배지 퇴비 추출물에서 Bacillus velezensis HKB-1의 배양적 특징 및 고추역병의 생물학적 방제)

  • Kim, Ja-Yoon;Seo, Hyun-Ji;Kang, Dae-Sun;Kang, Hee-Wan
    • Journal of Mushroom
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    • v.19 no.4
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    • pp.272-278
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    • 2021
  • Bacillus velezensis HKB-1 was isolated from the composted spent mushroom substrate of Lentinula edodes (LeCSMS) and inhibited mycelial growth of phytopathogenic fungal species, Phythhopthora capsici, Collectotrichum coccodes and Fusarium oxysporium by more than 70%. B. velezensis HKB-1 showed bacterial growth rate 10 to 100 times higher than that of other commercial bacterial media in water extract of LeCSMS supplemented with 1% molasses. The LeCSMS medium was effective in promoting the growth of pepper and controlling Phytophthora blight disease of pepper.

Biological Characterization of Paenibacillus polymyxa JE201 with Antifungal Activity Against Fungal Leaf Spot Disease of Aster scaber (취나물 점무늬병을 억제하는 Paenibacillus polymyxa JE201의 생물학적 특성)

  • Ahn, Seong-Ho;Kim, Dayeon;Park, Byeng-Yong;Han, Ji Hee;Lee, Sang-Yeop
    • Korean Journal of Organic Agriculture
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    • v.29 no.2
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    • pp.257-273
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    • 2021
  • Koreans consume cham-chwi (Aster scaber thunb.) as a common vegetable in a meal because of its bitter taste and rich flavor. In addition, it is the crop with the most residual pesticides detected in the last five years. Among the detected pesticides, the most common was azoxystrobin, which is a drug used primarily to prevent the leaf spot disease of A. scaber caused by Septoria sp.. We isolated the microorganisms that antifungal activity against Septoria sp.. The optimum incubation conditions (temperature, pH and growth medium) were examined for the growth of the isolates. Additionally, cellulase and protease activity and siderophore production ability were also examined. According to 16S rRNA sequencing of the isolate was affiliated to Paenibacillus polymyxa JE201. Largest inhibition zone measuring up to 9.2 mm was observed for P. polymyxa JE201 after 7 days of inoculation. P. polymyxa JE201 strain showed antifungal activity against various fungal phytopathogens Altanaria sp., Botrytis cinerea, Colletotrichum acutatum, Fusarium oxysporum, Phytophthora capsici, Ph. drechesleria, Rhizoctonia solani and Stemphylium sp.. Based on these observations, P. polymyxa. JE201 can be used as a promising biocontrol agent for preventing the leaf spot disease and other phytopathogens.

Pheromone Biosynthesis Activating Neuropeptide (PBAN) in Insects (곤충의 페로몬 생합성 활성화 신경펩타이드(PBAN))

  • Choi, Man-yeon
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.15-28
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    • 2022
  • Neuropeptides produced in neurosecretory cells are the largest group of insect hormones. They regulate various physiological functions, such as fat body homeostasis, feeding, digestion, excretion, circulation, reproduction, metamorphosis, and behavior throughout all life stages. The PRXamide peptide family (X, a variable amino acid) is a well-characterized neuropeptide component with a common amino acid sequence, PRXamide (NH2), at the C-terminal end conserved across Insecta. The PRXamide peptides are classified into three subfamilies, each having diverse biological roles in insects: (1) pyrokinin (PK) includes the pheromone biosynthesis activating neuropeptide (PBAN) and the diapause hormone (DH), (2) the capability (CAPA) peptides, and (3) the ecdysis-triggering hormone (ETH). PBAN as a member of PK subfamily was first identified to stimulate pheromone biosynthesis in moths three decades ago. Since then, PBAN peptides have been extensively studied by various research groups from a broad spectrum of arthropods. In this paper, we briefly review insect PBAN molecules with emphasis on gene structure and expression, signal transduction, physiological mechanism in sex pheromone biosynthesis, and application for pest management.

Efficacy of Suppression of Phytophthora Blight of Red Pepper Caused by Phytophthora capsici by Treatment with Antagonistic Trichoderma harzianum DYMC in Greenhouse (온실에서 길항미생물 Trichoderma hazianum DYMC 처리에 의한 고추 역병 억제 효과)

  • Lee, Yong-Se;Chang, Tae-Hyun;Ryu, Yeon-Ju;Park, Jeong-Yong;Lim, Tae-Heon
    • Korean Journal of Environmental Agriculture
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    • v.24 no.4
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    • pp.409-415
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    • 2005
  • To control Phytophthora blight of red pepper biologically caused by Phytophthora capsici, we developed Trichoderma harzianum DYMC for commercial product. DYMC was storage at room temperature and was investigated their population every 3 months for 1 year. For investigating the dynamic population of T. harzianum in the pot soils, we applied powder and suspension applications with DYMC, and then investigated for 95 days. The efficacy of powder and suspension applications of DYMC for control of Phytophthora blight of red pepper and plant growth were investigated for 50 days in greenhouse experiment. The population of T. harzianum was decreased at the room temperature for 1 year but there was not statistically significance. After soil treated in the pot with DYMC, the population of Trichoderma spp. was the highest when DYMC powder at 5 g was applied to mix with pot soil, and the population was deceased significantly among treatment means as time goes by ($R^2=0.76$, F=10.5960, P=<.0001). Incidence of Phytophthora blight of, red pepper was significantly reduced among treatment means on 50th day after treated with DYMC ($R^2=0.82$, P=16.4758, P=<.0001). Disease control value was the highest at 62.5% when DYMC powder at 5 g was applied to mix with pot soil. No significant difference (P=0.05) of effects of plant and root growth showed by treated with DYMC on 60th day, except stem. Mixing the application of DYMC powder with soil to control Phytophthora blight of red pepper was greater than suspension application to dilute with water. DYMC could be used as an effective biocontrol agent to control Phythophthora blight of red pepper.