• Title/Summary/Keyword: 생물학적 방제법

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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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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.

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.

A New Frontier for Biological Control against Plant Pathogenic Nematodes and Insect Pests I: By Microbes (식물병원성 해충과 선충 방제의 새지평 I: 미생물)

  • Lee, Hae-Ran;Jung, Jihye;Riu, Myoungjoo;Ryu, Choong-Min
    • Research in Plant Disease
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    • v.23 no.2
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    • pp.114-149
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    • 2017
  • World-wide crop loss caused by insect pest and nematode reaches critical level. In Korea, similar crop loss has been gradually augmented in the field and greenhouse due to continuous crop rotation. The current methods on controlling herbivorous insects and plant parasitic nematodes are mostly depended on agro-chemicals that have resulted additional side-effect including occurrence of resistant insects and nematodes, environmental contamination, and accumulation in human body. To overcome the pitfalls, microbe-based control method have been introduced and applied for several decades. Here, we revised biological control using by the bacteria, fungi, and virus in order to kill insect and nematode and to attenuate its virulence mechanism. The introduced microbes mainly secreted out the hydrolysing enzymes and toxic compounds to target host membrane or cell wall directly. Indirectly, the microbe-triggered plant innate immunity against insects and nematodes was also reported. In conclusion, we provide a new frontier of microbe-based environmentally friendly procedure and effective methods to manage insects and nematodes.

The suggestion for mosquito control methods on mosquito habitat by land cover map classification (토지피복도 분류체계와 연계한 모기 서식지와 적용가능 방제법 검토)

  • Kim, Jeong-Eun;Lee, Hwang-Goo;Kim, Dong-Gun
    • Korean Journal of Environmental Biology
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    • v.38 no.1
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    • pp.189-196
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    • 2020
  • Mosquitos serve as vectors for diseases, causing inconvenience as well as a threat to human life and health. Concern about mosquitos introducing and spreading new diseases has been intensifying. We observed a variety of mosquito habitats based on land cover classification from Korea's Ministry of Environment, and the mosquito species that could appear were classified according to the each habitat type. Finally, we suggested the best control methods for each type of habitat considering habitat characteristics and the ecological traits of mosquitos. Urban areas harbor various habitats for pests, contributing significantly to mosquito habitats. Control must be performed regarding larva and adults because various sources for habitats exist. Public mosquito control programs such as educational training, as well as information brochures can be effective in managing mosquito populations and public health. Agricultural areas show high densities of mosquito larva to lentic zones such as reservoirs, wetlands, paddy fields. So, biological control using natural predators may be effective in controlling mosquito populations. Forests are major habitats for Aedes albopctus, so physical controls should be deployed for residents living nearby, and excessive deforestation should be minimized. Other areas including aquatic ecosystems should be adopted regarding biological control using Bti (Bacillus thuringiensis var. israelensis) and chemical control for eradicating mosquitos. We classified habitats into four types of land cover patterns considering ecological traits and habitat preference, and suggest adequate control methods for each habitat type. Our suggestion can be used to positively contribute toward effective managing mosquito's density and reducing the damage to public health.

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.

Tn5 insertions in the agrocin 84 plasmid the conjugal nature of pAgK84 and the locations of determinants for transfer and agrocin 84 production

  • 심재섭
    • The Microorganisms and Industry
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    • v.12 no.2
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    • pp.2-13
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    • 1986
  • Agrobacterium tumefaciens의 연구는 유전공학 시대를 맞이하여 많은 연구자들의 커다란 주목을 끌고있다. 식물세포내에 외부 유전자를 도입시키는, 확실히 믿을 수 있는 vector로 등장된 때문이다. 원래 이세균은 식물 줄기나 뿌리에 암종을 유발시키므로서 암발성 원인 구명 연구로 흥미를 끌게 되었다. 연구결과는 암발생 예방및 치료에 목적을 둠은 덩연할 것이다. 많은 약제가 시험되었으나 별로 진전을 보지 못하던중 비 원인성인 Agrobacterium radiobacter, strain 84에 의한 생물학적 방제의 성공으로 유일한 방제법을 갖게되었다. 뒤이어 암종발생 기작도 밝혀졌다. Agrobacterium의 세계는 온통 유전공학 기술로 채워져 있다. 암종발생에서 방제원리에 이르기까지 수없이 먼 옛날부터 이미 익혀오던 DNA 조작기술이었던가\ulcorner 암종을 유발시키는 agrocin84 plasmid를 갖는 비병원성 Agrobacterium을 찾아 생물학적 방제법을 확립하였다. 그후 병원성 Agrobacterium은 이에 대하여 어떻게 살아남을 것인가\ulcorner 실로 놀라운 일이라 아니할 수 있을까\ulcorner 이 병원성 Agrobacterium은 비 병원성 Agrobacterium 속에 있는 agrocin 84 plasmid을 탈취하여 자신이 agrocin84를 생성분비하며 암종 유발을 계소하여 간다. 아니면 비병원성 Agrobacterium이 병원성 Agrobacterium에게 agrocin 84 plasmid를 넘겨주었을까\ulcorner 왜 넘겨주었을까\ulcorner 공존을 위하여서일까\ulcorner 우리의 유전공학 기술은 이것을 막아줄수 있을까\ulcorner 생물학적 방제의 재성공을 위하여 논제의 연구는 왜 필요했던가\ulcorner 그 전후를 여기에 서술해 본다.닭이며 또한 제한된 지면에서 충분히 고찰하기는 어렵다. 우리나라에서 자주 거론되는 백신 및 종류에 국한하여 그 문제점과 앞으로의 전망을 고찰해 보기로 한다.ocking electrode를 제작하여 복합고분자 전해질과의 계면저항을 측정하였다.nm (1.2921eV)는 acceptor-bound exciton 인 I1(AO,X) 이고, 964.6nm(1.2853eV)는 donor-acceptor pair(DAP) 발광, 1341.9nm (0.9239eV)는 self activated(SA)에 기인하는 광발광 봉우리로 고찰되었다.가 높을수록 방출전류가 시간에 따라 급격히 감소하였다. 각 duty비에서 방출전류의 양이 1/2로 감소하는 시점을 에미터의 수명으로 볼 때 duty비 대 에미터 수명관계를 구해 높은 duty비에서 전계방출을 시킴으로써 실제의 구동조건인 낮은 duty비에서의 수명을 단시간에 예측할 수 있었다. 단속적으로 일어난 것으로 생각된다.리 폐 관류는 정맥주입 방법에 비해 고농도의 cisplatin 투여로 인한 다른 장기에서의 농도 증가 없이 폐 조직에 약 50배 정도의 고농도 cisplatin을 투여할 수 있었으며, 또한 분리 폐 관류 시 cisplatin에 의한 직접적 폐 독성은 발견되지 않았다이 낮았으나 통계학적 의의는 없었다[10.0%(4/40) : 8.2%(20/244), p>0.05]. 결론: 비디오흉강경술에서 재발을 낮추기 위해 수술시 폐야 전체를 관찰하여 존재하는 폐기포를 놓치지 않는 것이 중요하며, 폐기포를 확인하지 못한 경우와 이차성 자연기흉에 대해서는 흉막유착술에 더 세심한 주의가 필요하다는 것을 확인하였다. 비디오흉강경수술은 통증이 적고, 입원기간이 짧고, 사회로의 복귀가 빠르며, 고위험군에 적용할 수 있고, 무엇보다도 미용상의 이점이 크다는 면에서 자연기흉에 대해 유용한 치료방법임에는

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작은구슬산호말 (Corallina pilulifera)의 Methanol 추출물로부터 항적조물질 분리

  • ;Long-Guo JIN
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2001.05a
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    • pp.209-210
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    • 2001
  • 적조에 대한 대책으로서 가장 많이 이용되는 황토법은 적조생물을 침전시키므로써 제거하지만, 황토의 침전에 의한 2차적인 오염의 가능성이 있다 (Na et al., 1996). 황산구리, 과산화수소와 Triosyn에 의한 적조 살조효과가 있지만 이러한 화학물질은 모든 생물에 대한 살조효과가 있으므로 현상에 사용하기는 힘들다. 생물학적 방제에는 바이러스, 박테리아의 방법이 강구되고 있지만, 산소고갈 등의 2차적인 부작용이 야기된다. (중략)

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The Principle and Application of Bioremediation (생물학적 복구법(Bioremediation)의 원리와 응용)

  • 정재춘;박창희;이성택
    • Journal of Korea Soil Environment Society
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    • v.1 no.2
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    • pp.3-13
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    • 1996
  • The efficiency of bioremedation can be measured by the enumeration of microorganism, respiration rate and decomposition rate. The side-effect can be measured by using Daphnia, oyster larvae and rainbow trout. Oxygen transfer could be a problem in the on-site treatment. For these, hydrogen peroxide can be used for solvents such as benzenes. Oleophilic nitrogen and phosphorus can be added for the treatment of oil pollution. Mixed microbial population or pure culture can be used for the inoculum. The pure culture used is Pseudomonas and Phanerochate. Sometimes enzymes are added and Photodegadation is coupled to increase the efficiency. For the treatment of oil pollution residue on soil such as waste lubrication oil and machine oil sludges, top soil of 15cm∼20cm depth is plowed and oil residue with approximately 5% concentration is applied. The optimum pH range is 7∼8, the ratio of phosphorus to hydrocarbon is 1:800. Appropriate drainage is necessary. For the treatment of marine oil pollution residue, addition of oleophilic fertilizer is effective. Air pollutiant such as oder can be treated by bioremediation. In this case, biofilters or biosrubbers are used for the reactor.

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Antagonistic Effects of the Bacterium Alcaligenes sp. HC12 on Browning Disease Caused by Pseudomonas agarici (버섯 세균성회색무늬병균(Pseudomonas agarici)에 대한 Alcaligenes sp. HC12의 항균활성)

  • Lee, Chan-Jung;Moon, Ji-Won;Cheong, Jong-Chun;Kong, Won-Sik
    • The Korean Journal of Mycology
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    • v.44 no.3
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    • pp.171-175
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    • 2016
  • A gram-negative bacterium was isolated from spent substrates of Agaricus bisporus and showed significant antagonistic activity against Pseudomonas agarici. The bacterium was identified as Alcaligenes sp. based on cultural, biochemical, physiological characteristics and a 16S rRNA sequence analysis. The isolate is saprophytic, but not parasitic or pathogenic on cultivated mushroom, whereas it showed strong inhibitory effects against P. agarici cells in vitro. The control efficacy of Alcaligenes sp. HC12 against brown blotch of P. agarici was up to 63% on Agaricus bisporus. The suppressive bacterium may be useful for the development of biocontrol systems.