• Title/Summary/Keyword: 생물농약

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Identification of Rhizo-bacterium Inhibiting Diaporthe citri Causing Citrus Melanose (감귤 검은점무늬병균의 생육을 저해하는 근권 세균의 분리 및 동정)

  • Nnam, Myung-Hyeun;Shin, Jin-Ho;Choi, Jae-Pill;Hong, Suck_Il;Kim, Young-Gwon;Kim, Heung-Tae
    • The Korean Journal of Pesticide Science
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    • v.13 no.4
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    • pp.332-335
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    • 2009
  • Rhizo-bacteria were isolated from organic-farming soils to select antagonistic agent for controlling citrus melanose disease. Among several antagonistic bacteria, KB-401 effectively inhibited mycelial growth of several plant fungal pathogens, including the pathogen of citrus melanose, Diaporthe citri. KB-401 also inhibited spore germination of the fungal pathogen. The tip of germ tube was swollen when conidia of D. citri were co-culture with KB-401 in PD broth amended 1% glucose. KB-401 was identified as Bacillus subtilis through the investigation for physiological characters and the analysis of nucleotide sequences of 16S rDNA.

Genetic Effects of Pesticides in the Mammalian Cells: II. Mutagenesis in L5178Y Cells and DNA Repair Induction

  • Park, sang-Gi;Lee, Se-Yong
    • The Korean Journal of Zoology
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    • v.20 no.4
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    • pp.159-168
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    • 1977
  • In order to evaluate the mutagenic potentential in mammalian system for those pesticides which were proved to be mutagenic in Salmonella microsome assay system, we have studied drug-resistant mutagenesis in cultured L5178Y cells and unscheduled DNA synthesis in human lymphocytes in vitro. We have tested five pesticides: insecticides DDVP and trichlorfon, fungicide TMTD and herbicides MO and NIP. Of these pesticides, TMTD induced weak mutation to MTX-resistance in L5178Y cells in vitro and gave positive responses in DNA repair assay system. Therefore, its potential genetic risks in human beings should be re-evaluated. DDVP and trichlorfon gave negative response in L5178Y mutagenesis test system but stimulated incorporation of $^{3}H$-TdR in DNA repar assay. MO and NIP gave also negative responses both in L5178Y mutagenesis test systemand in DNA repair assay system.

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Synthesis of 2-Cyanoimino-1,3-thiazoline (2-Cyanoimino-1,3-thiazoline 유도체의 합성)

  • Hahn, Hoh-Gyu;Nam, Kee-Dal;Park, Ik-Kyu;Mah, He-Duck
    • The Korean Journal of Pesticide Science
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    • v.7 no.2
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    • pp.155-158
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    • 2003
  • 2-Imino-1,3-thiazolines 1 show selective antifungal activity against pyricularia oryzae by new mode of action. A synthesis of novel 2-cyano-l,3-thiazolines 2 in which cyano moiety is substituted in imino group at C-2 of 1 is described. The lone pair electrons of sulfur and nitrogen as well as strong electron withdrawing cyano substituent in 1,3-thiazoline scaffold would effect the biological activity of 2-imino-1,3-thiazoline series. Regiospecific nucleophilic attack of thiourea 4 for $\gamma$-chloro-$\beta$-ketoacetoacetanilide 3 followed by acid catalyzed dehydration gave 2.

Effects of Pesticides(Benomyl, Carbofuran, Thiobencarb) on the Asian Toad(Bufo Gargarizans) Embryo Development (농약류(Benomyl, Carbofuran, Thiobencarb)가 두꺼비(Bufo Gargarizans) 배아발달에 미치는 영향)

  • Ko, Sun-Kun
    • Korean Journal of Environment and Ecology
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    • v.34 no.3
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    • pp.207-215
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    • 2020
  • In this experiment, investigated toxicity evaluation of chemicals using Asian toad embryos, along FETAX(Frog Embryo Teratogenesis Assay-Xenopus) protocol. Asian toad, Bufo gargarizans embryo incubated and investigation of Benomyl(Germicide), Carbofuran(Insecticide) and Thiobencarb(Herbicide) effect by probit analysis. As a result, depends on the concentrations of Benomyl, Carbofuran and Thiobencarb, along mortality and malformation rates were increases and larval body length were decreased. The teratogenic concentration(EC50) of Benomyl, Carbofuran and Thiobencarb were 1.03, 8.74, 4.98mg/ℓ, respectively. And when exposed to Benomyl, larvae responded most sensitively to malformations. Embryo lethal concentration (LC50) Benomyl, Carbofuran and Thiobencarb were 7.26, 560.72, 16.87mg/ℓ, respectively. And Benomyl were at the lowest concentration of lethal the embryos. The teratogenic index(TI) were 7.05 in Benomyl, 64.16 in Carbofuran and 3.39 in Thiobencarb, thus TI values were above 1.5, which is the criterion of teratogenicity. Three of the pesticides used in this study were considered to be a teratogenic substances and Carbofuran was the most potent teratogen. And more specific researches are needed to investigate the effects of pesticides on the embryo development of toads and amphibians and their mechanism.

The Degradation Patterns of Three Pesticides in Perilla Leaf by Cultivation, Storage and Washing (깻잎의 재배, 저장 및 세척에 따른 잔류농약 분해특성)

  • Seo, Jung-Mi;Kim, Jong-Pil;Yang, Yong-Shik;Oh, Mu-Sul;Chung, Jae-Keun;Shin, Hyeon-Wo;Kim, Seon-Ju;Kim, Eun-Sun
    • Journal of Food Hygiene and Safety
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    • v.22 no.3
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    • pp.199-208
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    • 2007
  • Three pesticides commonly used in perilla leaf were subjected to a field residue trial to ensure safety of terminal residues in the harvest. The residual patterns of three pesticides, which were dimethomorph, indoxacarb and procymidone were examined after applying with the recommended and double dose and their DT50 were calculated. Also degradation patterns of pesticides at storage $4^{\circ}C$ were compared to those at $20^{\circ}C$, and removal rates of pesticides by washing perilla leaf with water were measured. Biological half-lives of dimethomorph, indoxacarb and procymidone were $2.91{\sim}3.11,\;2.53{\sim}3.14\;and\;2.62{\sim}2.92$ days, respectively. During the storage period, the degradation patterns were appeared more obviously at $20^{\circ}C$ than $4^{\circ}C$. Removal rates of dimethomorph, indoxacarb and procymidone were $51.3{\sim}73.3%,\;74.1{\sim}91.3%\;and\;57.9{\sim}81.6%$by various washing methods.

Biosensor System for the Detection of Agrichemicals and Its Applications (농약 검출을 위한 바이오센서 시스템 연구 및 그 응용)

  • Park, Tae-Jung;Yang, Min-Ho;Lee, Sang-Yup;Kim, Soo-Hyun
    • KSBB Journal
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    • v.24 no.3
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    • pp.227-238
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    • 2009
  • In the recent years, some organic toxic chemicals were used for obtaining high-yield productivity in agriculture. The undegraded pesticides may remain in the agricultural foods through atmosphere, water, and soil and cause public health problems to environmental resources and human beings even at very low concentrations. Small amounts of pesticides can affect a central nervous system, resulting in immunogenic diseases, infertility problems, respiratory diseases and born marrow diseases, which can lead even to death. Monitoring of the environmental pesticide is one of the important issues for the human well-being. Several kinds of biosensors have been successfully applied to the detection of agrichemical toxicity. Also, few platforms for biocide detection have been definitely developed for the degradation and reaction of pesticides. Biochip and electrochemistry experiments involve immobilizing a receptor molecule on a solid substrate surface, and monitoring its interaction with an analyze in a sample solution. Furthermore, nanotechnology can be applied to make high-throughput analyses that are smaller, faster and sensitive than conventional assays. Some nanomaterials or nanofabricated surfaces can be coupled to biomolecules and used in antibody-based assays and enzymatic methods for pesticide residues. The operation procedure has become more convenient as it does not require labeling procedure. In this paper, we review the recent advances in agrichemical defection research and also describe the label-free biosensor for pesticides using various useful detection methods.

Identification and Cultural Optimization of the Fenitrothion-degrading Microorganism, Bacillus sphaericus NFo1 (Fenitrothion 분해미생물 Bacillus sphaericus NFo1의 동정 및 분해 최적조건)

  • Choi, Hyuek;Lee, Young-Deuk;Kang, Sun-Chul
    • The Korean Journal of Pesticide Science
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    • v.13 no.1
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    • pp.21-27
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    • 2009
  • A study was carried out to find out the methodology of biological treatment for wastes and wastewater caused by an organophosporus insecticide, fenitrothion, using fenitrothion-degrading microorganism. A fenitrothion-degrading microorganism was isolated by using a selective nutrient broth (NB) medium including fenitrothion, and identified to Bacillus sphaericus NFol based on its morphological and biochemical characteristics. Further, investigation was processed to determine the optimal culture conditions degrading fenitrothion in NB medium by using the NFo1 strain. As results, the cultural conditions determined for temperature, initial pH and inoculum for the optimum growth of the strain and degradation of fenitrothion, which has a exact co-relationship between both of them, were $35^{\circ}C$, 7.5 and 1.5 at $OD_{660}$ value, respectively. In this conditions, fenitrothion could be degraded within 5 days over 90% at the high concentrations of fenitrothion, upto 200 mg/L.

Selection of Low Toxic Pesticides to Microplites mediator (큰밤고치벌(Microplites mediator)에 대한 저독성 약제 선발)

  • Choi, Byeong-Ryeol;Kwon, Min;Lee, Si-Woo;Park, Hyung-Man
    • The Korean Journal of Pesticide Science
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    • v.12 no.2
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    • pp.177-183
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    • 2008
  • For the development of integrated pest management system by harmonizing biological and chemical control, some experiments were carried out to select low toxic pesticides against natural enemies. Leaf dipping method, body dipping method, and diet treatment method were used for the toxicity evaluation against Microplites mediator adults. We tested 49 different pesticides (34 insecticides, 11 fungicides, 4 herbicides) at recommending concentration commonly used to control insect pests, disease and up-land weeds in chinese cabbage field. 16 insecticides, 11 fungicides, and 4 herbicides were shown to be low toxic to Microplites mediator adults in the treatment of body dipping.

Studies on Toxicological Evaluation of Pesticides(Fungicide, Insecticide, Herbicide) using Tree Frog Embryos, Hyla japonica (청개구리 배아를 활용한 농약류(살균제, 살충제, 제초제)의 독성평가 연구)

  • Yoon, Pil-Sang;Ko, Sun-Kun
    • Korean Journal of Environment and Ecology
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    • v.33 no.2
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    • pp.178-186
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    • 2019
  • This study used the probit analysis to evaluate the toxicity of three chemicals - benomyl (Germicide), carbofuran (insecticide), and thiobencarb (herbicide) - with the FETAX (Frog Embryo Teratogenesis Assay-Xenopus) protocol using the incubated embryos of tree frog, Hyla japonica. The results showed that the larval body length decreased while the mortality and malformation rates increased as the concentrations of benomyl, carbofuran, and thiobencarb increased. The teratogenic concentration ($EC_{50}$) of benomyl, carbofuran, and thiobencarb were 1.00, 0.58, 4.75 mg/L, respectively, indicating that the malformation of larvae was the most sensitive to carbofuran. The embryo lethal concentration ($LC_{50}$) was 7.04, 28.71, and 16.12mg/L, respectively, indicating that benomyl showed the lowest embryo lethal concentration. The teratogenic index (TI) was 7.04 in Benomyl, 49.50 in Carbofuran, and 3.39 in Thiobencarb, indicating that the TI values were above 1.5, which is the criterion of teratogenicity, for all three chemicals. All three pesticides examined by this study were considered to be the most teratogenic substances, and the carbofuran was the most potent teratogen.

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.