• Title/Summary/Keyword: acephate

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Cumulative Risk Assessment of Organophosphorus Pesticides in the Diet (식품을 통한 유기인계농약류의 동시노출위해성평가)

  • 이효민;한지연;윤은경;김효미;황인균;최동미;이강봉;원경풍;송인상
    • Journal of Food Hygiene and Safety
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    • v.16 no.1
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    • pp.21-26
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    • 2001
  • Risk assessment traditionally are conducted on individual chemicals; however, humans are exposed to multiple chemicals in daily life. The organophosphorus (OP) pesticides are considered in a single risk assessment because they act by a common mechanism of toxicity, and there is likely to be expose to multiple OP pesticides simultaneously or sequentially. The OP pesticides act by inhibiting the enzyme acetylcholinesterasc (AChE) and have available extensive database. AChE is widely distributed throughout the body, most importantly in the nervous system. Inhibition of AChE results in accumulation of acetylcholine in the nervous system that results in clinical signs of cholinergic toxicity, including increased salivation and lacrimation, nausea and vomiting, muscle fasciculation, lethargy and fatigue, among others. To conduct an exposure assessment for pesticides in the diet, we need to know the food consumption patterns of the populations, and the pesticide residue levels in the foods that are consumed. This study was conducted to identify cumulative dietary risk due to multiple OP pesticides that can be exposed through various foods. Total 22 food samples including cereals, vegetables and fruits were collected randomly two times from food markets in several sites (4 cities). The subjected foods were selected by regarding of highly consumed foods to general Korean people. The 12 OP pesticides including Acephate, Azinphos-methyl, Chlorpyrifos, and Diazinon were monitored. For the exposure assessment, general adult group of 60 kg body weight was regarded as target population and food consumption data suggested by Lee et al. (2000) were used as consumed value of individual food. Analyses of samples for OP pesticides have been carried out according to the multiclass multiresidue analysis method and acephate and methamidophos analysis method of Korea Food Code. In general the levels of OP pesticides found in the food samples were very low or not detected.

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Synergistic action of pesticide mixtures using glutathione-s-transferase- and esterase-inhibiting properties in diamondback moth (Plutella xylostella L.) (Glutathione-S-transferase와 esterase 효소 저해특성을 이용한 농약의 혼합 상승효과)

  • Yu, Yong-Man;Hong, S.S.;Kim, S.;Hur, J.H.
    • The Korean Journal of Pesticide Science
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    • v.7 no.1
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    • pp.38-44
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    • 2003
  • In vitro inhibitory activity of 34 insecticides and 31 fungicides to glutathione-S-transferase and esterases extracted from rats was determined. Of tested pesticides, the pesticides with high activity on both detoxifying enzymes were mixed with pesticides that are known to be detoxified by detoxifying enzymes. Glutathione-S-transferase was inhibited by thiodicarb $(I_{50}:1.87\times10^{-4}M)$, thiocyclam $(7.40\times10^{-4}M)$, dithianon $(7.55\times10^{-5}M)$, and tolylfluanide $(8.66\times10^{-5}M)$, while esterases by dichlorvos $(8.95\times10^{-8}M)$, pirimicarb $(2.74\times10^{-6}M)$, pyrazophos $(3.31\times10^{-5}M)$, and benomyl $(4.96\times10^{-5}M)$. After acephate known to be detoxified by glutathione-S-transferase was mixed with glutathione-S-transferase-inhibiting pesticides and phenthoate known to be detoxified by esterases was mixed with esterases-inhibiting pesticides, insecticidal activities of such mixtures were determined against diamondback moth (PlutelLa xylostella L.). Synergistic action was observed in all pesticide combinations. The highest synergistic action was obtained when phenthoate was combined with dichlorvos, showing that co-toxicity coefficients were 1512 and 1877 after 24 and 48 hours of treatment, respectively. Several other combinations of pesticides, such as phenthoate with benomyl, and acephate with dithianon, also showed synergism, showing that their co-toxicity coefficients were about 1,000 and 500, after 24 hours of treatment, respectively. Our results showed that combinations of pesticides inhibited by detoxifying enzymes and ones detoxified by detoxifying enzymes resulted in increased toxicities of pesticides, suggesting that such combinations could be used to develop pesticide mixtures with more broad spectrum and high effectiveness.

Chemical Control of the Pine Gall Midges (Thecodiplosis japonensis Uchida et Inouye) ( I ) -Low-volume Foliar Spray of the Insecticides- (솔잎혹파리의 약제방제에 관한 연구 -고농도미량엽면살포-)

  • Choi S.Y.;Song Y.H.;Lee H.R.
    • Korean journal of applied entomology
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    • v.18 no.2 s.39
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    • pp.111-116
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    • 1979
  • The experiments were carried out to evaluate the effectiveness of some insecticides in the control of the pine gall midges (Thecodiplosis japonensis Uchida et Inouye) when the low-volume of the insecticides were applied by the mist foliar sprayer. The insecticides, Salithion $(24\%\;Ec)$, Omethoate $(Folimat^{(R)}\;50\%\;Ec)$, Monocrotopos $(Azodrin^{(R)}24\%\;Ec)$, Acephate $(Ortran^{(R)}\;50\%\;Wp)$, Metalkamate $(Bux^{(R)}24\%\;Ec)$. BPMC $(Bassae^{(R)}50\%\;Ec)$ and MIPC $(Mipcin\;50\%\;Wp)$ were tested with 100, 200 and 400 times of water solution on the basis of single application at the six different intervals. Salithion was the most effective for the pressure of the gall formation by the pine gall midges and Omethoate, Monocrotophos and Metalkamate were relativey effective and others no effective. The most reliable concentration of the insecticides was 100 times of water solution, and the feasible timing of insecticide application on the basis of single application would be from May 9 to July 1 with Salithion, June 6 with Metalkamate and June 20 with Omethoate and Monocrotophos. The number of pine needles with the larval injured signs (no larvae in the needles) excluded the gall-formed needles were relatively higher in the treatments of Omethoate, Salithion and Monocrotophos than other insecticides. The treatments of Omethoate, Salithion and Monocrotophos caused the lower larval population in the gall than other insecticides.

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Monitoring of Pesticide Residues in Special Products (지역특산품 중 잔류농약 실태조사)

  • Kim, Mi-Ra;Na, Mi-Ae;Jung, Woo-Young;Kim, Chang-Soo;Sun, Nam-Kyu;Seo, Eun-Chae;Lee, Eun-Mi;Park, You-Gyoung;Byun, Jung-Ah;Eom, Joon-Ho;Jung, Rae-Seok;Lee, Jin-Ha
    • The Korean Journal of Pesticide Science
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    • v.12 no.4
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    • pp.323-334
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    • 2008
  • This experiment was carried out to analyze for pesticide residues in 17 different types of the special of geographical indication. We purchased 3 cereal grains, nuts and seeds, 3 fruits, 8 vegetables, mushrooms and other plants (Korean medicines) mainly at the agricultural cooperative's joints markets. Total 209 pesticides including multi-analysed pesticides (204) and single-analysed pesticides (5 ; acephate, methamidophos, monocrotophos, omethoate, vamidothion) were analysed with a GC/MS/MS, an HPLC/UVD (PDA) and a GC/FPD. No. 83 method and single-analysed method (Screening of multi-pesticide residue in the special products of geographical indication) of Korea Food Code was selected for validation in recovery and interferences of matrice. The results were as follows: among the selected 17 the special products, the residual pesticides were detected in 8 types of the special products (40 in 302 samples, detection ratio; 13.2%). All of the samples were not detected over MRLs, but tebuconazole, procymidone and isoprothioran were detected with considerable high frequency. These results could be used as KFDA official methods for the analysis of pesticide residues in foods and reference data will be provided to the related institutions.

Control effects of some systemic insecticides to small brown planthopper, Laodelphax Striatellus (Fallen), on barley (맥전세대 애멸구에 대한 몇가지 침수성 살충제의 방제효과)

  • Hyun Jae Sun;Lee Kang Hun
    • Korean journal of applied entomology
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    • v.19 no.1 s.42
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    • pp.45-50
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    • 1980
  • The control effects of four systemic insecticides $Disyston^{(R)}$ (disulfoton) 5G, $Temik^{(R)}$ (aldicarb) 15G, $Ortran^{(R)}$ (acephate) 5G and $Curaterr^{(R)}$ (carbofuran) 3G, on small brown planthopper, Laodetphax striatellus (fallen), were studied by applying them in the furrow of spring barley field. Two different application times; April 19 and 25, and three different dosage rates were used. The results are as follows: 1. No significant difference in the mortalities among the developmental stages were observed with the treated barley on April 25, when various life stages had infested on the cutting of the treated barley in the laboratory. The residual periods were 19 days for Disyston and 31 days for Temik. 2. With field experiments, highly effective control effects were obtained with Disyston and Temik. The residual period was longer with the treatment on April 19 than with those on April 25 for Disyston, while they were reverse for Temik. 3. The effective doses were 2kg/10a for Disyston, while the effectiveness lasted more than 40days with dose of 1kg/10a for Temik. 4. From above results, Disyston and Temik could effectively reduce the population of small brown planthopper in the barley field, which is the effective reproductive sources of the population in the rice field.

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Effects of Some Pesticides on Korean Paddy Soil Microorganisms (수도용(水稻用) 농약(農藥)의 토양미생물(土壤微生物)에 대(對)한 영향(影響))

  • Roh, Jung-Koo;Baik, Ok-Ryun
    • Applied Biological Chemistry
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    • v.24 no.3
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    • pp.174-180
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    • 1981
  • As the amount of pesticides consumption increases in agriculture, the side effects of pesticides on soil microorganisms have become an essential part in safety evaluation of pesticide for continued soil fertility. In order to establish the method of safety assessment of pesticides in Korea, a series of tests were carried out. Among the paddy pesticides Fujione (Isoprothiolane, fungicide), Ortran (Acephate, insecticide), and Machete (Butachlor, herbicide) were chosen and the effects of above three pesticides on Korean paddy soil microorganisms were studied. The measurements of pesticide effects on the cycling of carbon ($CO_2$ production), nitrogen fixation ($C_2H_2$ reduction), nitrification, and dehydrogenase activity were carried out. These measurements were complemented by evaluation of pesticide effects on viable microbial numbers. Although Fujione reduced the fungi numbers and inhibited nitrogen cycling activities somewhat, no significant adverse effects were show by any of the tested pesticides in our study.

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Studies of Insecticide Resistance in the Green Peach Aphid,_Myzus persicae (Sulz.) (IV). Oxydemeton-methyl Resistance Devlopment, Cross Resistance and Esterase Isozymes (복숭아혹진딧물의 살충제저항성에 관(關)한 연구(硏究)(IV) -Oxydemeton-methyl 도태(淘汰)에 의(依)한 저항성발달(抵抗性發達), 교차저항성(交叉抵抗性) 및 Esterase Isozymes-)

  • Choi, Seung-Yoon;Kim, Gil-Hah
    • Korean journal of applied entomology
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    • v.25 no.3 s.68
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    • pp.151-157
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    • 1986
  • Population of the green peach aphid, Myzus persicae(Sulz.), were successively selected(up to 20th generation) in the laboratory by the insecticide oxydemeton-methyl (Metasystox-R 25Ec) and the resistance was linearly increased with the selected generations. The population developed 355.5-to 359.9-fold resistance to oxydemeton-methyl at 20th generation-selection. The population showed cross resistance to the insectides cypermethrin(770.1-to 778.5-fold), acephate(25.6-to 33.2-fold) and pirimicarb(3.4-to 3.6-fold). The different esterase isozymes were detected by the electrophoresis from the selected and non-selected strains and the band of the ${\beta}-2$ from the selected strain showed greater esterase activity than that of the non. selected strain.

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Selection of Low Toxic Pesticides and Residual Toxicity to Cotesia glomerata (배추나비고치벌 (Cotesia glomerata)에 대한 저독성 약제 및 잔류독성)

  • Choi, Byeong-Ryeol;Lee, Si-Woo;Park, Hyung-Man
    • Korean journal of applied entomology
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    • v.46 no.2
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    • pp.251-259
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    • 2007
  • For the development of integrated pest management system by harmonizing biological and chemical control, some experiments wee carried out to select low toxic pesticides against natural enemies. and their residual toxicity were evaluated. Leaf dipping method, body dipping method, and diet treatment method were set up for the toxicity evaluation against Cotesia glomerata adults. We had tested 46 different pesticides (31 insecticides, 11 fungicides, 4 herbicides) at recommending concentration commonly used to control diamond back moth, disease and up-land weeds in chinese cabbage field. Twenty three insecticides, eleven fungicides, and four herbicides were shown to be low toxic to C. glomerata adults in the treatment of body dipping. After insecticide spraying at recommending dose on the chinese cabbage, we examined residual effect of insecticides by introducing natural enemies on different days. Safety interval for the introduction of C. glomerata adults was established according to the residual toxicity of pesticides. Safe insecticides for the introduction of C. glomerata adults at one day after treatment (DAT) were thiacloprid, acephate, chlorfenapyr, clothianidin and at 3 DAT were imidacloprid, deltamethrin, thiamethoxam, dimethylvinphos, emamectin benzoate.

Cloning and Site-Directed Mutagenesis of Musca domestica Acetylcholinesterase for Enhancing Sensitivity to Organophosphorus and Carbamate Insecticides

  • Kim, Chung-Sei;Kim, Su-Il
    • Journal of Microbiology and Biotechnology
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    • v.16 no.11
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    • pp.1760-1772
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    • 2006
  • Mature acetylcholinesterase (AChE) gene (gm, 1,836 bp) was cloned from the housefly and successfully expressed in the E. coli CodonPlus (DE3) RIL system (GM-E, 72 kDa) with a yield of 1,630 mU/g fresh cells. Using the gm, 10 kinds of mutants were constructed and expressed for enhancing sensitivity to insecticides. The sensitivity of these mutants to five kinds of organophosphate (OP) and three carbamate insecticides was investigated by measuring the apparent bimolecular inhibition constant ($k_i=k_2/K_d$). Surprisingly, the sensitivity of quadruple mutant IGFT was enhanced as much as 7-fold for acephate, 164-fold for demeton-S-methyl, 484-fold for dichlorvos, 523-fold for edifenphos, 30-fold for ethoprophos, 30-fold for benfuracarb, 404-fold for carbaryl, and 107-fold for furathiocarb, compared with that of GM-E, although the sensitivity of each single point mutant was slightly increased. These mutational studies indicated that (i) contradictory to Walsh et al. [39], the residue 327 is the important key residue for enhancing sensitivity as much as the residue 262, (ii) the residue 82 and additional residues of 234, 236, and 585 are also important, and (iii) sensitivity was cooperatively accelerated as the number of strategic mutations increased.

Seasonal fluctuation of Carboxylesterase activity in field collected populations of the green peach aphid (Carboxyl Esterase의 활성측정에 의한 복숭아혹진딧물, Myzus persicae S.의 살충제포장저항성도의 계절적변동)

  • ;;Naoki Motoyama
    • Korean journal of applied entomology
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    • v.32 no.3
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    • pp.348-353
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    • 1993
  • The fluctuation of insecticide resistance in the green peach aphid (GPA) in fields was investigated by caboxy1 esterase (CE) activity index analysis. Of the GP A Populations occurred on the red pepper seedlings, aphids in the untreaLed and treaLed with acephate plots showed 40 and 78 resistance percent (RP), respectively. Aphids in the untreated kale field showed the RP value 24 in July, contrast to 83 in October. Mean RPs of aphids from 18 localities were 50 + 14 in summer and B2+ 10 in late fall, indicating a seasonal fluctuation of Lhe CE activity.

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