• Title/Summary/Keyword: 미생물 농약

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Effect of a Low Temperature-Induced Quiescence on Short Term Storage of an Egg Parasitoid, Trichogramma sp. Nabis 101 (알기생봉(Trichogramma sp. Nabis101)의 저온 발육 휴지와 단기 저장 기술)

  • Kim, Yong-Gyun;Heo, Hye-Jung;Kim, Geun-Seob;Hahm, Eun-Hye;Kim, Ji-Won;Kang, Sung-Young;Kwon, Ki-Myeon
    • Korean journal of applied entomology
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    • v.48 no.3
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    • pp.369-375
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    • 2009
  • A commercial egg parasitoid, Trichogramma sp. Nabis101, was released into agricultural cultivating areas in Korea due to its wide host spectrum against insect pests. Moreover, an application technique has been recently developed to enhance its control efficacy by mixture treatment with a microbial control agent. Despite its expansion of commercial availability, any genetic identification on this commercial strain was not determined. Also, to meet inconsistent demands from consumers, the live parasitoids need to be stored without significant loss of their survival and parasitic activity. This study determined nucleotide sequence of internal transcribed spacer (ITS) of the wasp species. The identified ITS sequences indicate that this wasp species is most similar to T brasiliensis. Optimal storage condition of this wasp required young parasitized stage at $10^{\circ}C$. Under these conditions, survival, sex ratio, longevity, and parasitic behavior were not much impaired for 5 weeks.

Effects of Polychlorinated Biphenyls and Phenols on the Biosynthesis of 6-Methoxymellein, a Phytoalexin (당근 Phytoalexin 6-Methoxymellein 생합성에 미치는 Polychlorinated Biphenyls 및 Phenol의 영향)

  • Lim, Do-Hyung;Lim, Da-Som;Keum, Young-Soo
    • Korean Journal of Environmental Agriculture
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    • v.35 no.3
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    • pp.216-222
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    • 2016
  • BACKGROUND: Polychlorinated biphenyls (PCBs) are one of the most common environmental contaminants. Because of their recalcitrant properties and long-term toxicity, numerous studies have been performed. The toxicological concerns are focused on endocrinological effects of animal. Several different metabolites have been reported, including hydroxy PCBs, PCB quinones, and methylsulfonyl PCBs from animal tissues. However, details in plants have never been studied. It is well-known that plants can produce phytoalexin in response to chemical, physical, or pathological stress.METHODS AND RESULTS: In this study, the several PCBs and hydroxy derivatives were prepared by chemical syntheses. Their effects on secondary metabolite biosynthesis were determined in carrot roots. The levels of 6-methoxymellein were determined in several different treatments, using gas chromatography-mass spectrometry. In general, the concentration of 6-methoxymellein reached a maximum at 2 days and gradually decreased to trace level at 5 days in control experiments. However, the effects of PCBs or hydroxy derivatives were highly dependent on compounds. For example, the maximum concentrations of 6-methoxymellein were observed at 3 days for 2-hydroxy/4-hydroxybiphenyl, while 3,3',4,4',5-pentachlorobiphenyl and 3,5-dichloro-2-hydroxybiphenyl showed a rapid accumulation within 1 day, followed by rapid dissipation to undetectable levels.CONCLUSION: Biphenyl derivatives were effective elicitor of 6-methoxymellein accumulation. In general, hydroxybiphenyls (phenols) more efficiently induced phytoalexin biosynthesis than those without hydroxy groups. It can be concluded that PCBs or their possible metabolites could change the plant secondary metabolism.

Biological Control of Phytophthora Blight of Red-pepper Caused by Phytophthora capsici.;II. Isolation and Antifungal Activity of the Substances (고추역병균(疫病菌)(Phytophthora capsici)의 생물학적(生物學的) 방제(防除);II. 항균물질(抗菌物質)의 분리(分離) 정제(精製) 및 항균활성(抗菌活性))

  • Chang, Yoon-Hee;Chang, Sang-Moon;Choi, Jyung;Lee, Dong-Hoon
    • Korean Journal of Environmental Agriculture
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    • v.15 no.4
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    • pp.399-405
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    • 1996
  • In the culture medium, the three antifungal fractions against P. capsici were separated by Sephadex G-25 column chromatography and Silica-gel chromatography. The substance A in white powder and the substance B in sticky oil were isolated by ethyl acetate : acetone mixture(7 : 3), and the substance C in yellow powder was isolated by chloroform : ethyl acetate mixture(95 : 5). The crude extract by ethyl acetate from the culture medium acidified to pH 2 was known to inhibit completely the growth of P. capsici at the level of $50mgkg^{-1}$. The substance A and B were known to be effective above the level of $5mgkg^{-1}$, and the substance C was effective above the level of $1mgkg^{-1}$. However, at the level of $20mgkg^{-1}$, the efficiency was in the order of A>C>B. It is apparent on a pot-experiment scale that the three substances effectively control Phytophthora blight of the red-pepper plant grown in the soil inoculated with P. capsici.

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Isolation and Morphological Characterization of Ttichoderma harzianum SJG-99721, a Powerful Biocontrol Agent (길항작용을 나타내는 Trichoderma harzianum SJG-99721의 분리 및 형태학적 특징)

  • 이호용;민봉희
    • Korean Journal of Environmental Biology
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    • v.20 no.2
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    • pp.130-135
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    • 2002
  • Species of Genus Trichoderma are commercially applied as biological control agents against fungal Pathogens. A powerful biocontrol agent, Trichoderma sp. SJG-99721 was isolated from 305 isolates by morphological characters, chitinase activities and antifungal activities against Phytophthora capsiei. The isolate was identified as Trichoderma harzianum from various features such as growth rate at $27^\circ{C}$, significant growth ratio of $27^\circ{C}$ to $17^\circ{C}$, amount of aerial mycelium, types of branching: system, and disposition patterns of phialide and phialospore. Trichoderma harzianum SJG-99721 have been shown to act as a powerful biological agent against fungal phytopathogens; Botrytis cinerea, Rhizoctonia solani, Phytophthora cryptogea, Phytophthora capsiei, Sclerotinia sclerotiorum, Mycoshaerella melonis, Alternaria sotani, Fusarium oxysporum, Collectotrichum gloesporioodes, Alternaria alternata, Phythium ultimum, Phytophthora drechsleri, Pyricularia grisea.

Degradation Pattern and Rate of Some Pesticides in Soils -Part I. Degradation Pattern and Rate of Parathion in Soils- (토양처리(土壤處理) 농약제(農藥劑)의 분해율(分解率)에 관한 연구(硏究) -제1보(第一報). Parathion의 토양중(土壤中) 분해(分解)에 대하여-)

  • Lim, Sun-Uk;Kang, Kyu-Yung;Choi, Yong-Lak
    • Applied Biological Chemistry
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    • v.26 no.4
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    • pp.239-247
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    • 1983
  • The effects of some soil conditions on the degradation rate and decomposing pattern of parathion were investigated and the obtained results are summarized as follows: Parathion degraded more rapidly in flooded soils than in non-flooded, in wet soils than in dry soils under non-flooded soils. The degradation rates in paddy and upland soils increased at high temperature than low temperature, higher pesticide concentration than low concentration and higher soil pH level. Parathion in paddy and upland soils was more persistent under soil sterilization than under non-sterilization and degraded rapidly in glucose application. Parathion was more persistent in upland soils than paddy soils under several factors described above. The metabolites identified from the paddy and upland soils by TLC include para-oxon (Rf 0.5), aminoparathion(Rf 0.27), p-nitrophenol(Rf 0.2), p-aminophenol(Rf 0.15). Soil enzyme, acid phosphatase activities decreased more at flooded soils than non-flooded, higher pesticide concentration than low concentration and higher soil pH level and the activity in glucose application was increased. Soil enzymes, urease and dehydrogenase activity decreased more at higher pesticide concentration than low concentration. Comparing with soil enzyme activity in paddy and upland soil, the former was higher than the latter.

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Population of Pesticide Resistant Strains in Cultivated Soils of Honam Area and Degradation of Chlorothalonil in soil (호남지역 농경지 토양에 분포된 농약내성균의 밀도와 살균제 Chlorothalonil의 분해)

  • Lee, Sang-Bok;Choi, Yoon-Hee
    • Korean Journal of Soil Science and Fertilizer
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    • v.34 no.3
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    • pp.185-191
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    • 2001
  • To obtain the basic information for degradation of remaining pesticide accumulated in cultivated soil of Honam area, the resistant bacterial strains were investigated in Chlorothalonil(TPN). Mancozeb, Bentazone, and Butachlor levels of 100, $500{\mu}g\;ml^{-1}$, and degradation of TPN by TPN-resistant bacteria in sterilized soil was studied under TPN levels 0, 10, 50 and $100{\mu}g\;g^{-1}$. A number of resistance strains were decreased with higher at concentration level of pesticide, and were higher in greenhouse than upland or paddy soil. The resistance of bacteria was strong in other of Bentazone> Butachlor> TPN> Mancozeb. The percentage of bacterial strains of resistance for pesticides isolated from the cultivated soil were the highest in Acinetobacter spp. and Corynebacterium spp., and the lowest in Moraxella spp. A number of TPN-resistant strains were the highest at the TPN level of $10{\mu}g\;g^{-1}$, and 5 days after strains inoculation, and were higher in Pseudomonas spp. TD-25 than TC-23 or strains in non-sterilized soil. The degradation of TPN was fast in order of strain TD-25>strain in non-sterilized soil >TC-23.

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Control efficacy of BtPlus against two mosquitoes, Aedes koreicus and Culex vagans (한국숲모기와 줄다리집모기에 대한 비티플러스 방제 효과)

  • Kim, Yonggyun;Minoo, Sajjadian;Ahmed, Shabbir
    • Korean journal of applied entomology
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    • v.59 no.1
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    • pp.41-54
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    • 2020
  • Two mosquito species were collected in still-water near farming area in Andong, Korea. Based on morphological characters, these two mosquitoes were identified as Aedes koreicus and Culex vagans, respectively. DNA barcode analyses supported the identification. An entomopathogenic bacterium, Bacillus thuringiensis subsp. israelensis (BtI), exhibited insecticidal activities against the two mosquito species and its virulence was more potent than that of B. thuringiensis subsp. kurstaki. It has been known that the bacterial metabolites of Xenorhabdus spp. suppress insect immunity and enhance pathogenicity of B. thuringiensis. This study tested the effect of the bacterial culture broth of Xenorhabdus spp. on enhancing BtI pathogenicity. Among three Xenorhabdus spp., culture broth of X. ehlersii (Xe) was relatively effective to enhance BtI pathogenicity against both mosquito species. Indeed, organic extracts of Xe culture broth suppressed the hemocyte-spreading behavior, suggesting the presence of immunosuppressant in the culture broth. These results suggest a formulation of BtPlus by mixing BtI spore and Xe culture broth to be applied to control the two mosquito species.

Biological Control of Paraconiothyrium minitans S134 on Garlic White Rot Caused by Sclerotium cepivorum (Paraconiothyrium minitans S134의 마늘흑색썩음균핵병에 대한 생물적 방제)

  • Lee, Sang Yeob;Hong, Sung Kee;Choi, In Hu;Chon, Yong Dal;Kim, Jeong Jun;Han, Ji Hee;Kim, Wan Gyu
    • The Korean Journal of Mycology
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    • v.40 no.4
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    • pp.282-287
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    • 2012
  • Sclerotium cepivorum is a causal agent of white rot disease on different plants including Allium species such as garlic. A mycoparasite, Paraconiothyrium minitans S134 was selected for biological control of sclerotinia rot of garlic caused by S. cepivorum. The experiment was carried out in a garlic field in Taean from October in 2011 to June in 2012. Spore suspension of the mycoparasite was treated twice onto soil surface around garlic plants in sowing in 2011 and late Feb. in 2012, and disease rating was made June in 2012. Incidence of white rot in the twice-application plot of the mycoparasite ($5{\times}10^6$ spores/mL) and in the fluquinconazole (WP)-treated plot was 6.8% and 0.4%, respectively, whereas that of control was 19.5%. As the results, P. minitans S134 could be a prospective biofungicide for biological control of white rot of garlic.

Biological control of Paraconiothyrium minitans CM2 on Lettuce Sclerotinia Rot Caused by Sclerotinia sclerotiorum (Paraconiothyrium minitans CM2의 상추 균핵병균(Sclerotinia sclerotiorum)에 대한 생물적 방제)

  • Lee, Sang Yeob;Hong, Sung Kee;Kim, Jeong Jun;Han, Ji Hee;Kim, Wan Gyu
    • The Korean Journal of Mycology
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    • v.40 no.4
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    • pp.271-276
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    • 2012
  • A mycoparasite, Paraconiothyrium minitans CM2 was selected for biological control of sclerotinia rot of lettuce caused by Sclerotinia sclerotiorum. The experiment was carried out in a lettuce greenhouse in Yangpyeong from March to April.. When lettuce sclerotinia rot showed in the early stage of occurrence, Conidial suspension of the mycoparasite was weekly treated once to three times onto soil surface around lettuce plants. Incidence of sclerotinia rot in the once-application plot of the mycoparasite ($1{\times}10^7$ spores/$m{\ell}$) and in the benomyl(WP)-treated plot was 11.0% and 2.7%, respectively, whereas that of control was 31.0%. Incidence of twice- and three-application plots of the isolate was 7.9% and 12.8%, respectively. For increasing the effect of the mycoparasite, the experiment for the timing of application of P. minitans CM2 was carried out in a lettuce greenhouse in Yangpyeong and Suwon. Control efficacy against lettuce sclerotinia rot in the soil-drenching plots of P. minitans CM2 ($5{\times}10^6$ spores/$m{\ell}$) in the planting was 75.3~84.7%, and control effect by treatment of the isolate at the pot drenching+the soil-drenching plots in the early stage of disease occurrence was 63.8~58.0%. As the results, P. minitans CM2 could be a prospective biofungicide for biological control of sclerotinia rot of lettuce.

Isolation and Characteristics of Soil Microorganisms Degrading Herbicide Napropamide (제초제(除草劑) Napropamide의 분해미생물(分解微生物)의 분리(分離) 및 분해특성(分解特性))

  • Han, S.S.
    • Korean Journal of Weed Science
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    • v.15 no.1
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    • pp.63-72
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    • 1995
  • This study was carried out to isolate the soil bacteria degrading herbicide napropamide [N,N-diethyl-2-(1-naphthoxy)-propionamide] from the clayey loam soil tested and to clarify the characteristics of the napropamide-degrading bacteria. Twenty strains of the gram-positive and the gram-negative bacteria were isolated and identified from the clayey loam soil tested. Most of them were vigorously proliferated at 100ppm of napropamide and two strains of Staphylococcus spp., Corynebacterium spp. II and Other spp. II were very tolerated to napropamide even at the concentration of 1500ppm. Staphylococcus spp. II and Actinobacillus spp. II of the isolated bacteria degraded more than 20% of the treated napropamide. These two strains could not utilize napropamide as sole nitrogen sources, but could use this compound as sole carbon sources. Napropamide was rapidly decomposed by Staphylococcus spp. II at one-time application and at three-time application of napropamide, but wasn't at two-time application of napropamide.

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