• Title/Summary/Keyword: 생물학적방제

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An Effective and Practical Strategy for Biocontrol of Plant Diseases Using On-Site Mass Cultivation of Chitin-Degrading Bacteria (키틴분해세균의 현장 대량 배양방법을 이용한 효과적인 식물병의 생물적 방제 전략)

  • Kim, Young-Cheol;Kang, Beom Ryong;Kim, Yong Hwan;Park, Seur Kee
    • Research in Plant Disease
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    • v.23 no.1
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    • pp.19-34
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    • 2017
  • Recent worldwide demand for organic and sustainable agriculture products is driving the development of formulations of biopesticides effective in the field. Biopesticides have the benefit of environmentally-friendly qualities. However, biocontrol approaches largely have been ineffective in controlling plant pests in field conditions. Previously, we developed a cost-effective biocontrol formulation containing chitin and chitinase-producing biocontrol bacteria with field efficacy. This formulated product has successfully suppressed various plant diseases in the field conditions. In this review, we focus on ecological aspects and the potential mechanisms underpinning the success of chitinase-producing bacteria. In addition, we discuss the possibility on-site cultivation of the formulated products to further strengthen the approach as being farmer friendly and successful.

Biological Control of Plant Diseases and Biodegradation of Pesticides by Gliocladium virens (Gliocladium virens를 이용한 식물병의 생물적 방제 및 유기합성농약의 분해)

  • 박용하;이용세
    • Korean Journal Plant Pathology
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    • v.12 no.2
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    • pp.255-265
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    • 1996
  • 토양에 존재하는 진균인 Gliocladium virens는 식물병을 감소 또는 방제할 수 있는 생물학적인 특성에 의하여 G. virens는 지난 수십년간 실용가능성이 큰 생물학적 방제균(또는 길항균)으로 집중적으로 연구되었다. 이 균이 식물병의 발생을 감소시키는 생물적 방제효과는 항생작용, 중복기생, 근권에서의 생존과 집단번식, 뿌리표면에서의 정착 등에 의한 것으로 분류되고 있다. 특히, 항생물질인 gliotoxin, gliovirin, viridin 등은 Rhizoctonia solani 및/또는 Pythium spp. 등에 항생효과가 뚜렷하고, 식물병의 발생과 직접적인 상관관계를 나타내고 있어 G. virens의 식물병의 방제에 관련된 중요한 작용기작으로 제시되어 있다. 또한, 근권에서 이균의 생존과 집단증식 및 뿌리표면에서의 정착은 식물병의 방제와 상관관계를 나타낼 수 있는 중요한 작용기작으로 제시되고 있다. 그러나 이균이 R. solani 등에 기생하는 현상은 식물병의 생물적 방제의 직접적인 연관관계를 나타내고 있지 않다. G. virens을 이용의 생물적 방제효과를 증진시키기 위한 방법으로 다음과 같은 두 가지 방법을 들 수 있다. 첫째, 길항효과가 높은 G. virens 균주를 선발하기 위하여 여러 종류의 토양에서 길항력이 높은 G. virens의 선발이 지난 수십년간 진행되고 있다. 또한, 특정 길항효과를 발현하는 유전자를 G. virens의 염색체에 도입하고 이를 발현시킴으로써 생물적 방제효과를 증진시키는 것으로 이러한 방법은 1980년 후반부터 진행되고 있다. 둘째, G. virens의 길항효과가 최대의 효율로 발현될 수 있도록 최적의 미세환경을 갖추고 있으며 농민이 편리하게 사용할 수 있는 G. virens의 운송매체의 개발이 중요하다. 운송매체의 개발에 의한 'Glioguard'는 G. virens의 포자를 alginate 입자에 제형화한 것으로서 미국에서 시판되고 있다. Aldicarb, metalaxyl, atrazine 등의 농약을 분해할 수 있는 능력은 G. virens의 다른 생물적 특성중의 하나이다. 특히, parathion을 분해할 수 있는 Flavobacterium sp.의 유전자(opd)가 G. virens의 염색체에 도입되여 발현될 수 있는 방법이 제시되었으며, 이는 G. virens을 이용한 토양에서의 특정한 농약의 분해효율을 증진시킬수 있는 가능성을 제시한 것이다. 그러나, G. virens를 이용한 농약의 생물적 분해에 관한 연구는 기초단계로 평가되고 있으며, 포장에서 이를 실용화하기 위해서는 향후 지속적인 연구가 필요하다.

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Isolation of Siderophore-producing Pseudomonas fluorescens GL7 and Its Biocontrol Activity against Root-rot Disease (Siderophore 생산성 생물방제균 Pseudomonas fluorescens GL7의 선발 및 식물근부병의 방제)

  • 이정목;임호성;장태현;김상달
    • Microbiology and Biotechnology Letters
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    • v.27 no.6
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    • pp.427-432
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    • 1999
  • For the development of a multifunctional biocontrol agent, the siderophore-producing strain GL7 was isolated from a rhizosphere on chrome azurol S agar. The GL7 was identified as a strain of Pseudomonas fluorescents on the basis of their reactions to standard physicochemcial tests from Bergey's manual, API diagnostic test, and fatty acid analysis. P. fluorescents GL7 considerably inhibited spore germination and hyphal growth of phytopathogenic fungus Funsarium solani in a dual culture. In pot trials of bean with P. fluorescens GL7, the disease incidence was significantly reduced down to 5% from 70% of incidence in the untreated control. P. fluorescens GL7 also enhanced plant growth to nearly 1.5 times than that of the untreated control, promoting elongation and development of the roots. These results suggest that the plant growth-promoting P. fluorescens GL7 can play an important role in the biological control of soil-borne plant disease in a rhizosphere.

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Weed Management Technology with Host Specific of Biological Control Agents (기주특이성 잡초 활성 미생물을 이용한 잡초방제 기술)

  • Hong, Yeon-Kyu;Lee, Bong-Choon;Song, Seok-Bo;Park, Sung-Tae;Kim, Jeong-Nam;Geon, Min-Goo;Kim, In-Seob
    • Asian Journal of Turfgrass Science
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    • v.20 no.2
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    • pp.175-190
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    • 2006
  • The term mycoherbicide started in 1970, but its interest heightened due to increase costs of chemical herbicides. A classical biocontrol agent is expected to become a permanent part of its new environment and do no harm to it. Contemporary biological control agent(BCA) must be produced by artificial culture and could be applied like chemical herbicides over weeds. BCA is different from the classical approach in that it released through natural spread. To date 26 species of fungi are used as classical BCA against 26 species of weeds in seven countries. There are a number of examples of pathogens attacking non-target plants. But through risk assessments which include understanding the taxonomy, biology and ecology, the target and non-target species, it will be safe to introduce of exotic pathogens to control weeds. But pathogens have not been successfully used in practice. Many mycoherbicides show potential in laboratories, but are ineffective in the field and not consistent from year to year or field to field. There is also a lack of understanding humidity, dew formation and temperature and their effects on suppression of weeds by plant pathogens. Potential pathogen must be selected as a BCA. Previous studies suggest that these pathogens must (1) produce abundant and durable inoculum in artifical culture, (2) be genetically stable and weed specific and (3) kill weeds in control. A granular preparation of mycoherbicide into sodium alginate is lighter than liquids and less bulky than organic matter. Gel forms have also been used.

Development of Antagonistic Microorganism for Biological Control of Dollar Spot of Turfgrass (잔디 동전마름병의 생물학적 방제를 위한 길항 미생물의 선발과 효력 검정)

  • Shim, Taek-Su;Jung, Woo-Cheol;Do, Ki-Seok;Shim, Gyu-Yul;Lee, Jae-Ho;Choi, Kee-Hyun
    • Asian Journal of Turfgrass Science
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    • v.20 no.2
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    • pp.191-201
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    • 2006
  • Dollar spot caused by Sclerotinia homeocarpa is one of major diseases in putting greens. Microorganisms antagonistic to S. homeocarpa, a pathogen of dollar spot, were primarily screened through in vitro tests, including dual culture method and triple layer agar diffusion method. In vivo tests were also conducted to select the best candidate for a biocontrol microorganism, using pot experiment. Bacillus subtilis EW42-1 and Trichoderma harziaum GBF-0208 were finally selected as biocontrol agents against dollar spot. Relative Performance Index(RPI) was used as a criterion of selecting potential biocontrol agents. B. subtilis EW42-1 and T. harzianum GBF-0208 showed resistance to several agrochemicals mainly used in a golf course. B. subtilis EW42-1 and T. harzianum GBF-0208 suppressed effectively the disease progress of dollar spot like synthetic fungicide tebuconazole in the nursery where dollar spot had seriously occurred. B. subtilis EW42-1 and T. harzianum GBF-0208 have a potential to be biocontrol agents for the control of dollar spot.

Spray Performance Evaluation of Knapsack Type Sprayer (배부식 방제기의 분무 성능평가)

  • 김영주;곽현환;강태경;이중용
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2003.02a
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    • pp.257-263
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    • 2003
  • 방제는 재배작물에 발생하는 병충해를 최소화하여 농산물의 품질을 향상시키고 생산성을 증대시키는 중요한 관리 작업이며, 작물을 재배하는 동안에 여러 번 작업해야하며 노동 강도가 크고 농약중독 위험 때문에 농민이 기피하는 작업이다. 방제 방법에는 화학적 방제와 생물학적 방제, 농업적 방제, 기계적 방제 등 여러 방법이 있다. 화학적 방제는 잡초나 해충, 균의 밀도가 경제적 피해 수준 이하에서 유지되면서 더욱 확산되지 않도록 천연 또는 인공 화학물질을 이용하여 병해충이나 잡초를 억제는 방제방법으로 현재는 물론 가까운 미래에도 주를 이룰 것으로 예상된다. (중략)

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Mechanical and physical control of tree insect pest (병해충 방제 - 수목해충의 기계적, 물리적 방제)

  • Sin, Sang-Cheol
    • Landscaping Tree
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    • s.127
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    • pp.32-36
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    • 2012
  • 수목에 있어서 해충방제란 인간에게 경제적 손실을 초래하고 해충의 활동을 억제하는 것으로서, 수목 해충의 밀도 개체수를 일정한 수준 이하로 조절하는 것을 의미한다. 즉 유해한 생물이 존재하더라도 그 밀도가 인간에게 심각한 피해를 줄 정도가 아니면 굳이 시간과 경비를 투자하여 방제 작업을 수행할 필요가 없다. 어떤 해충의 밀도가 점점 높아져서 이들에 의한 피해를 방치 하였을 때 예상되는 손실액이 방제에 소요될 제반 비용보다 높을 경우에는 방제 수단을 적용해야 할 것이며, 이러한 해충에 의한 손실액과 방제비용이 같을 때의 해충밀도를 경제적 피해수준이라고 한다. 따라서 경제적 피해수준을 경계로 하여 방제를 할 것인가 말 것인가를 결정하게 되며 조경수의 경우에는 경관미적 가치도 이러한 경제적 피해수준에 반영되어야 한다고 생각된다. 해충의 방제법을 대별하여 보면 기계적 방제법, 물리적 방제법, 화학적 방제법, 생물학적 방제법, 임업적 방제법, 페로몬과 기타 생리활성물질을 이용한 방제법, 법적 방제법으로 분류할 수 있다. 그러나 최근의 수목해충 방제는 화학적 방제 일변도의 방제가 이루어지고 있기 때문에 환경오염 등 생태환경에 영향을 주고 있는 상황에 있다. 이러한 관점에서 본다면 수목해충 방제는 여러 가지의 방제법을 적지 적소에 활용할 수 있는 종합적인 방제방법이 필요한 시점이라고 할 수 있다. 특히 화학적 방제를 할 시의 주의점 등 각각의 방제법에 대하여는 추후 살펴보도록 하겠으며, 본 지면에서는 직접적 방제법인 기계적 방제법과 물리적인 방제법에 대하여 소개하도록 하겠다.

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Effect of Organic Amendments on Efficacy of Biological Control of Seedling Damping-off of Cucumber with Several Microbial Products (유기물 첨가가 오이 모잘록병에 대한 미생물 제제의 생물학적 방제 효과 증진에 미치는 영향)

  • Lee, Jong-Moon;Do, Eun-Soo;Baik, Su-Bong;Chun, Se-Chul
    • The Korean Journal of Mycology
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    • v.31 no.1
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    • pp.44-49
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    • 2003
  • Several microbial biocontrol products (Greenbiotech Co., Paju, Korea), Green-all T (Trichoderma harzianum), Green-all S(Bacillus sp.) and Green-all G (Streptomyces sp.) were supplemented with organic amendments such as sawdusts and rice hulls to study on efficacy of biological control of seeding damping-off of cucumber caused by Pythium ultimum. Sawdusts amended into potato dextrose agar alone could inhibit in vitro mycelial growth of P. ultimum. All there microbial products of Green-all T, Green-all G and Green-all S significantly reduced seeding damping-off (LSD, P=0.05). However, several amendments such as sawdusts and rice hulls into Green-all T and Green-all S products did not increase efficacy of biological control compared to non-amended treatment. In contrast, supplements of aminodoctor containing several amino acids (Greenbiotech Co., Korea) into Green-all G product significantly increased efficacy of biological control of seeding damping-off, resulting in from 42% to 2% disease incidence in relation to seedling emergence (LSD, P=0.05). Also, amendment of sawdusts into Tricoderma product significantly increased efficacy of biological control as disease index of 5.0 compared to non-amended control of 56.0 in Green-all T product alone. This indicates that organic amendments could increase efficacy of biological control of cucumber seedling damping-off.

Biological Control of Perilla Culture by Burkhoderia sp. AK-17 (Burkhoderia sp. AK-17에 의한 잎들깨 재배의 생물학적 조절)

  • Kim, Keun-Ki;Kim, Yong-Kyun;Son, Hong-Joo;Choi, Young-Whan;Kang, Kyu-Young
    • Applied Biological Chemistry
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    • v.48 no.1
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    • pp.34-39
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    • 2005
  • There are various crop diseases in green houses that are caused by the cultural environments, especially high temperature and moisture. To solve the forementioned problems, farmers are overusing agricultural chemicals, causing other damages by the chemical residue. In this study, antagonistic bacteria as biological control agents were isolated to produce the environmentally-friendly crops for use in green houses. Eighteen species of antagonistic bacteria were totally isolated from the soil and plants in the Perilla fields, and AK-17 showed the highest activity among the isolates. According to the results of anti-fungal spectrum against several pathogens by AK-17, the antagonism effect of the isolates was remarkable against grey mold rot by Botrytis cinerea, sclerotinia rot by Sclerotnia sclerotiorum, and stem rot by Rhizoctonia solini. To evaluate the biological control effects of the isolates against the major diseases of Perilla, studies were carried out to evaluate the preventive and the curative effects of the diseases throughout the pot experiments. According to the forementioned experiments, the preventive and the curative effects by the isolates against sclerotinia rot were respectively showed as 55% and 92%. For the grey mold rot, those were 40% and 78%, respectively. As to the evaluation of the growth-promoting effect by AK-17, the length and the biomass of the tested plants were increased to 120% and to 164%, respectively. For the leaf numbers and area were respectively increased to 120% and 220%. Furthermore, AK-17 was identified as Burkhoderia sp. according to the results of physiological properties and genetic methods.

Life Cycle and Host Specificity of Tanysphyrus (Tanysphyroides) major Roelofs (Coleoptera : Curculionidae), a Possible Candidate Agent for the Biological Control of Monochoria vaginalis var. plantaginea (물달개비의 생물학적 방제인자 물달개비바구미의 생활사 및 기주특이성)

  • Park, Jin-Young;Park, Jae-Eup;Lee, In-Yong;Kwon, Oh-Seok;Park, Jong-Kyun
    • Korean Journal of Weed Science
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    • v.31 no.1
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    • pp.103-111
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    • 2011
  • Monochoria vaginalis var. plantaginea (Pontederiaceae) is one of the most problematic weed in the rice field in Korea. Tanysphyrus (Tanysphyroides) major was selected as a potential biological control agent for M. vaginalis. Continuous rearing of T. (T.) major was carried out from 2006 to 2007, and its morphological characteristics and ecological characteristics were investigated. This species has a single generation per year, over-wintering as an adult stage. The emergence of adults starts in later June and last until September. These observations indicate that T. (T.) major takes $22{\pm}0.7$ days to develop from egg to adulthood. Host specificity test showed that finally selected this species was suitable candidates for the biological control of M. vaginalis var. plantaginea since it showed negative host specificity against major 60 test crops.