• Title/Summary/Keyword: 생물학적 방제제

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Biological Control of Pythium Root Rot by Radiation Induced Mutant, Bacillus lentimorbus WJ5a17 (방사선유도 돌연변이체 Bacillus lentimorbus WJ5a17에 의한 Pythium Root rot의 방제)

  • 이영근;김재성;장병일;장유신;이호용
    • Korean Journal of Environmental Biology
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    • v.21 no.3
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    • pp.276-285
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    • 2003
  • To control pythium root rot, Bacillus lentimorbus WJ5a17 with high anti-fungal activity against Pythium ultimum was induced from B. lentimorbus WJ5 by gamma radiation ($^{60}Co$). The biocontrollers of FWJ5 and FWJ5a17 were formulated ($1.0\times 10^{11}$) with B. lentimorbus WJ5 and WJ5a17, respectively, The population density of FWJ5 and FWJ5a17 maintained highly up to $1.0\times 10^{9}$ CFU $g^{-1}$ in nursery and field soils until 30 days after treatment. P. ultimum spores germination were inhibited 71.0% and 81.4% by FWJ5 and FWJ5a17, respectively. Pythium root rot of yea pepper, Chinese cabbage and radish were significantly (p < 0.05) controled by one time treatment of FWJ5 and FWJ5a17.

Isolation and Identification of Micromonospora sp. Showing Nematocidal Activity Against Pine Wood Nematode (소나무재선충에 대한 살선충 활성을 나타내는 Micromonospora sp.의 분리 및 동정)

  • Park, Dong-Jin;Lee, Jae-Chan;Kim, Pan-Kyung;Kim, Chang-Jin
    • The Korean Journal of Pesticide Science
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    • v.12 no.1
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    • pp.97-101
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    • 2008
  • For the isolation of Actinomycetes showing nematocidal activity against Pine wood nematode, Bursaphelenchus xylophilus, about 2000 culture broth of Actinomycetes were tested and their activity were compared with that of Streptomyces avermitilis resulting a selected strain AW050027. The cultural, morphological and physiological analysis was performed for the identification of a selected strain. Phylogenetic analyses based on 165 rDNA gene sequences showed that the selected strain AW050027 belonged to the genus Micromonospora and M. corioriae $NAR01^T$ was the closest neighbors, sharing 98.9% 165 rDNA gene sequence similarity.

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.

동물약품의 사용실태 및 오$\cdot$남용 사례

  • 김두
    • Journal of the korean veterinary medical association
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    • v.38 no.4
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    • pp.305-316
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    • 2002
  • 동물용의약품은 가축질병의 예방 및 치료의 목적으로 이용되어 그동안 우리나라 가축의 질병방제와 사료효율의 증진으로 양축농가의 소득증대와 아울러 축산이 대규모로 발전할 수 있게 하는데 기여한 바가 크다. 그러나 특히 항생제나 합성 항균제의 오남용에 따른 가축의 장내 세균과 병원성 세균의 항생항균제에 대한 내성획득으로 질병치료 효과의 저하, 축산식품을 통하여 이들 제제의 잔류물질이 인체내로 들어가 부작용을 일으키거나 세균의 내성인자가 사람 병원체에 전달되어 사람의 질병치료에 장애요인이 될 수 있는 문제점이 제기되고 있다. 그리고 공중위생전인 측면에서 항생항균제, 호르몬제, 생물학적제제(백신 등), 마취제, 마약류, 등의 요주의동물용의약품을 체계적으로 관리할 필요성이 제기되고 있다. 본 주제에서는 동물용의약품 중 현재 가장 많은 량이 이용되고 있는 항생제를 중심으로 사용실태와 오남용 사례를 살펴보고자 한다.

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Production of Biosurfactant by Pseudomonas sp. SW1 for Microbial Remediation of Oil Pollution (유류오염방제를 위한 Pseudomonas sp. SW1로부터 생물계면활성제의 생산)

  • Son, Hong-Joo;Suk, Wan-Su;Lee, Geon;Lee, Sang-Joon
    • Korean Journal of Microbiology
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    • v.33 no.3
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    • pp.193-198
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    • 1997
  • Microorganisms capable of producing biosurfactant were isolated from oil-contaminated soils and seawater. Among them, the selected strain SW1 was identified as Pseudomonas sp. by taxonomical characteristic tests, and so tentatively named Pseudomonas sp. SWI. The optimal temperature and initial pH for biosurfactant production were TEX>30^{\circ}C.$ and 7.0, respectively. The optimal medium composilion for the production of biosurfactant by Pseudomonas sp. SW1 were hexadecane of 2.0%, yeast extract of 0.04%, $K_{2}HPO_4$ of 0.02%, $KH_2PO_4$ of 0.03% and $MgSO_4$ center dot $7H_2O$ of 0.04%, respectively. Under the above conditions, minimum wrface tension was 32 mN/m after incubation of 2 days. The biosurfactant was produced during initial stationary phase in the optimal medium. Pseudotnonas sp. SWl utilized various hydrocarbons such as Bunker oils, n-alkanes and branched alkanes as a sole carbon source.

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Pseudomonas azotoformans HC5 Effective in Antagonistic of Mushrooms Brown Blotch Disease Caused by Pseudomonas tolaasii (버섯 세균갈색무늬병균(Pseudomonas tolaasii)에 항균활성을 가지는 미생물 Pseudomonas azotoformans HC5)

  • Lee, Chan-Jung;Yoo, Young-Mi;Han, Ju-Yeon;Jhune, Chang-Sung;Cheong, Jong-Chun;Moon, Ji-Won;Gong, Won-Sik;Suh, Jang-Sun;Han, Hye-Su;Cha, Jae-Soon
    • The Korean Journal of Mycology
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    • v.42 no.3
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    • pp.219-224
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    • 2014
  • A gram-negative bacterium was isolated from spent substrate of Agaricus bisporus and showed marked antagonistic activity against Pseudomonas tolaasii. The bacterium was identified as Pseudomonas azotoformans by based on the cultural, biochemical and physiological characteristics, and 16S rRNA gene sequence. The isolated bacterium was saprophytic but not parasitic nor pathogenic to cultivation mushroom. The isolated bacterium for P. tolaasii cell was not sufficient for inhibition in vitro. Control efficacy of Pseudomonas azotoformans HC5 to brown blotch of P. tolaasii was 73, 78, and 71% on A. bisporus, Flammulina velutipes, and Pleurotus ostreatus, respectively. In the future, the suppressive bacterium may be useful for development of a biocontrol system.

Selection and Antagonistic Mechanism of Pseudomonas fluorescens 4059 Against Phytophthora Blight Disease (고추역병과 시들음병을 방제하는 토착길항세균 Pseudomonas fluorescens 4059의 선발과 길항기작)

  • Jeong, Hui-Gyeong;Kim, Sang-Dal
    • Microbiology and Biotechnology Letters
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    • v.32 no.4
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    • pp.312-316
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    • 2004
  • In oder to select the powerful rhizophere-dorminatable biocontrol agent, we had isolated an indigenous antagonistic bacterium which produced antibiotic and siderophore from a disease suppressive local field soil of Gyungsan, Korea. And we could select the Pseudomosp. 4059 which can strongly antagonize against Fusarium oxysporum and Phytophthora capsici by two kinds of antifungal mechanism that can be caused by the antibiotic of Phenazin, a siderophore and a auxin like subThe selected strain was identified as Pseudomonas fluorescens (biotype A) 4059 by biochemical tests, API $\textregistered$ test, MicroLog TM system and 16S rDNA analysis. The selected antagonistic microorganism, Pseudomosp. 4059 had an antifungal mechanism of antifungal antibiotic and sidrophore. And we were confirmed the antagonistic activity of P fluorescens 4059 with in vitro antifungal test against Phytophthora capsici and in vivo by red-pepper.

Biological Control of Meloidogyne hapla on Lettuce and Pepper by Paecilomyces lilacinus (곰팡이(Paecilomyces lilacinus)를 이용(利用)한 고추 및 상치의 당근뿌리혹선충(線蟲)(Meloidogyne hapla)의 생물학적(生物學的) 방제(防除)에 관(關)하여)

  • Cho, Myoung Rae;Choi, Young Eoun
    • Current Research on Agriculture and Life Sciences
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    • v.8
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    • pp.65-70
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    • 1990
  • Effects of nematode-parasitic fungus, Paecilomyces lilacinus, on root-knot nematode, Meloidogyne hapla, and growth and yield of consecutively grown lettuce and pepper were evaluated and compared to three soil fumigants, Telone II, TeloneC-17 and Dowfune MC-II, in greenhouse plots from 1983 to 1984 at Milyang, Korea. The number of nematodes in fungus plots, Telone II plots, Telone C-17 plots, and Dowfume MC-II plots at 25 days after treatment were 22, 2, 24 and 0, respectively, while untreated control plots were 685. At 350 days after treatment, 66%, 98%, 98% and 96% control of root-knot nematodes were observed in fungus plots, Telone II plots, Telone C-17 plots, and Dowfume MC-II plots, respectively. Lettuce yields were increased 49%, 43%, 31% and 109% and pepper yields were increased 33%, 49%, 37%, and 95% in fungus plots, Telone II plots, Telone C-17 plots, and Dowfume MC-II plots, respectively. Fresh weight and plant height of pepper were higher only in fumigant treated plots than untreated control plots.

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Enhancement of Tomato Tolerance to Biotic and Abiotic Stresses by Variovorax sp. PMC12 (Variovorax sp. PMC12 균주에 의한 토마토의 생물학 및 비생물학적 스트레스 저항성 증진)

  • Kim, Hyeon Su;Lee, Shin Ae;Kim, Yiseul;Sang, Mee kyung;Song, Jaekyeong;Chae, Jong-Chan;Weon, Hang-Yeon
    • Research in Plant Disease
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    • v.24 no.3
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    • pp.221-232
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    • 2018
  • Rhizobacteria play important roles in plant growth and health enhancement and render them resistant to not only biotic stresses but also abiotic stresses, such as low/high temperature, drought, and salinity. This study aimed to select plant growth promoting rhizobacteria (PGPR) with the capability to mitigate biotic and abiotic stress effects on tomato plants. We isolated a novel PGPR strain, Variovorax sp. PMC12 from tomato rhizosphere. An in vitro assay indicated that strain PMC12 produced ammonia, indole-3-acetic acid (IAA), siderophore, and 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase, which are well-known traits of PGPR. The aboveground fresh weight was significantly higher in tomato plants treated with strain PMC12 than in non-treated tomato plants under various abiotic stress conditions including salinity, low temperature, and drought. Furthermore, strain PMC12 also enhanced the resistance to bacterial wilt disease caused by Ralstonia solanacearum. Taken together, these results indicated that strain PMC12 is a promising biocontrol agent and a biostimulant to reduce the susceptibility of plants to both abiotic and biotic stresses.

Entomopathogenic Fungi-mediated Pest Management and R&D Strategy (곤충병원성 진균을 활용한 해충 관리와 개발 전략)

  • Lee, Se Jin;Shin, Tae Young;Kim, Jong-Cheol;Kim, Jae Su
    • Korean journal of applied entomology
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    • v.61 no.1
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    • pp.197-210
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    • 2022
  • Entomopathogenic fungi can be used to control a variety of sucking and chewing insects, with little effect on beneficial insects and natural enemies. Approximately 170 entomopathogenic fungal insecticides have been registered and used worldwide, with the recent focus being on the mode of action and mechanism of insect-fungal interactions. During the initial period of research and development, the industrialization of entomopathogenic fungi focused on the selection of strains with high virulence. However, improvement in productivity, including securing resistance to environmental stressors, is a major issue that needs to be solved. Although conidia are the primary application propagules, efforts are being made to overcome the limitations of blastospores to improve the economic feasibility of the production procedure. Fungal transformation is also being conducted to enhance insecticidal activity, and molecular biology is being used to investigate functions of various genes. In the fungi-based pest management market, global companies are setting up cooperative platforms with specialized biological companies in the form of M&As or partnerships with the aim of implementing a tank-mix strategy by combining chemical pesticides and entomopathogenic fungi. In this regard, understanding insect ecology in the field helps in providing more effective fungal applications in pest management, which can be used complementary to chemicals. In the future, when fungal applications are combined with digital farming technology, above-ground applications to control leaf-dwelling pests will be more effective. Therefore, for practical industrialization, it is necessary to secure clear research data on intellectual property rights.