• Title/Summary/Keyword: 침투이행성

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Chemical Control Effect Against Spot Clothing Wax Cicada, Lycorma delicatula (Hemiptera: Fulgoridae) Nymphs and Adults (꽃매미(Lycorma delicatula) 약충과 성충에 대한 약제방제 효과)

  • Kim, Sun-Kook;Lee, Gi-Yeul;Shin, Yon-Ho;Kim, Gil-Bah
    • The Korean Journal of Pesticide Science
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    • v.14 no.4
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    • pp.440-445
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    • 2010
  • This study was carried out to investigate the toxicities of five registered insecticides to the Lycorma delicatula nymphs and adults. Insecticidal activities were evaluated by testing systemic and residual effects in the laboratory, and control efficacy in the vineyard. For the 3rd nymphal instars and adults, etofenprox+diazinon, chlorpyrifos, etofenprox, dinotefuran and imidacloprid showed perfect insecticidal activity. The systemic effects of dinotefuran and etofenprox+diazinon on grape roots at half concentration were showed the adult mortality of 82.2% and 84.4%, respectively. Chlorpyrifos at recommended concentration was showed mortality of 86.0%. The leaf systemic effects at recommended and half concentrations of all insecticides except dinotefuran were lower than 65% but the mortality at double concentration of chlorpyrifos, dinotefuran, etofenprox were more than 82%. The residual effect between etofenprox+diazinon and dinotefuran at recommended and double concentrations were 100% at 14 days after treatment, the other insecticides have low efficacy. All the four insecticides showed 87% control value on nymphs in the field test and adults appeared more than 96% control value st and adinotefuran, etofenprox+diazinon, however, the other insecticides decreased to 59.1 % and 61.2%. Therefore, dinotefuran and etofenprox+diazinon showing high systemic effects to roots and long residual effects to leafs have high control efficacies.

Honeybee Toxicity by Residues on Tomato Foliage of Systemic Insecticides Applied to the Soil (침투이행성 농약의 토양처리 후 토마토잎에서의 잔류에 의한 꿀벌 독성)

  • Bae, Chul-Han;Cho, Kyung-Won;Kim, Yeon-Sik;Park, Hyun-Ju;Shin, Kwan-Seop;Park, Yeon-Ki;Lee, Kyu-Seung
    • The Korean Journal of Pesticide Science
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    • v.17 no.3
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    • pp.178-184
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    • 2013
  • Residual toxicity test to honeybee was conducted to evaluate an indirect effects on honeybee after planting hole application of systemic insecticides which were highly toxic to honeybee (Apis mellifera). In this study, It was applied three application rates in the planting hole by three systemic insecticides, dinotefuran GR, imidacloprid GR and clothianidin GR at planting time of tomato. Residual analysis of foliage was carried out after periodic sampling the foliage and investigated the effects of exposed honeybee on the tomato foliage. The honeybee mortality by dinotefuran residues on the foliage was shown almost 100% at 7 days after treatment and decreased 17 days after treatment. The maximum mortality of honeybee by imidacloprid residues on the foliage was 44 ~ 72%. But the effect of pesticide lasted for 18 days and then decreased. The honeybee mortality by clothianidin residues on the foliage was 100% at 7 days after treatment and decreased 14 days after treatment. A tendency of the honeybee mortality and residue in foliage showed a similar character as time goes by. The residues in tomato foliage decreased gradually after 14 days by vigorous growth of tomatoes and the toxic effect of honeybee was significantly decreased after 21 days in actual usage of the treatment.

Property and Mode of Action of Indoxacarb against Diamondback Moth, Plutella xylostella (Lepidoptera: Plutellidae) (배추좀나방에 대한 Indoxacarb의 작용특성 및 기작)

  • Choi Yu-Mi;Ahn Ki-Su;Hwang In-Cheon;Kim Gil-Hah
    • Korean journal of applied entomology
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    • v.43 no.4 s.137
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    • pp.317-322
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    • 2004
  • Insecticidal activity, systemic and residual effects, and effects on enzyme activities (esterase, acetylcholinesterase, glutathione S-transferase) of indoxcarb were evaluated against Plutella xylostella. The insecticide was very effective against larvae of P. xylostella. Also, indoxacarb showed only residual effect to P. xylostella when applied to vegetable leaves. It inhibited acetylcholinesterase activity, but didn't do esterase and glutathione S-transferase activities.

Control of Bemisia tabaci Genn. (Hemiptera: Aleyrodidae) Adults on Tomato Plants using Trap Plants with Systemic Insecticide (트랩식물과 침투이행성 살충제를 이용한 토마토 담배가루이 성충 방제효과)

  • Choi, Yong-Seok;Hwang, In-Su;Lee, Gyung-Joo;Kim, Gyung-Je
    • Korean journal of applied entomology
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    • v.55 no.2
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    • pp.109-117
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    • 2016
  • We investigated the control of Bemisia tabaci adults in tomato greenhouses using the eggplant as a trap plant with 4 systemic chemicals. The control effect of dinotefuran SG 50% on tobacco whitefly adults was 80% mortality, the highest than that cyantraniliprole, pyridaben and clothianidin, 51.0%, 12.4% and 11.0% respectively when all chemicals with recommended doses were used. Dinotefuran was applied at various doses and was observed to be most effective above 200ppm (88.4%)t. The control effect of dinotefuran lasted for appromimately nine 9 days and the density of tobacco whitefly adults increased there after. In field tests, the densities of tobacco whitefly adults on tomato shoots were highest at points 0, 15 and 20 m from the eggplant traps and lowest at 5 and 10 m. When the density of tobacco whitefly was low and the eggplants with dinotefuran SG 50% were placed in the tomato greenhouse at 10 m intervals, the overall density of tobacco whitefly adults was lower. In addition, densities were higher at the side of the greenhouse than in the interior and further away from the eggplant. When the density of tobacco whitefly was high and the eggplants with dinotefuran were placed at 5 m intervals, the density of tobacco whitefly at each 5 m point decreased. Theses results confirm that the eggplant is an effective trap plant for attracting tobacco whitefly audlts and combined with dinotefuran SG 50% decreases the density of tobacco whitefly in tomato greenhouses.

Susceptibility of Pine Sawyer, Monochamus saltuarius Adults (Coleoptera: Cerambycidae) to Commercially Registered Insecticides (북방수염하늘소의 살충제 감수성)

  • Han, Ju-Hwan;You, Jong-Hyun;Kim, Eun-Hee;Yang, Jeong-Oh;Noh, Doo-Jin;Yoon, Chang-Mann;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.12 no.3
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    • pp.262-269
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    • 2008
  • This study was performed to investigate the toxicity of 39 registered insecticides to the susceptibility, systemic effect, and residual effect and control effect against Pine sawyer beetle, Monochamus saltuarius. Eleven kinds of chemicals such as fenitrothion, fenthion, phenthoate, phosphamidon, dinotefuran, actamiprid, clothianidin, thiacloprid, thiamethoxam, esfenvalerate+fenitrothion, and fipronil were showed 100% insecticidal activity both in body spray and twig dipping bioassay. Among these chemicals, fenitrothion and fenthion were showed 100% insecticidal activity when sprayed at 4000 times diluted solutions, and phenthoate, thiacloprid, thiamethoxam and fipronil were showed 100% insecticidal activity when sprayed at 2000 times diluted solution. Root systemic effect was showed 100% mortality in phosphamidon, clothianidin, thiamethoxam, and 77.7% in thiacloprid. In residual effect, fenitrothion and thiamethoxam were showed 80% mortality fifteen days after treatment (DAT), and fenthion, phosphamidon, clothianidin were showed 80% mortality ten DAT, fenitrothion, thiamethoxam, fipronil showed 100% mortality in seven DAT, thiacloprid was showed 100% mortality in three DAT. Fenthion and phenthoate were showed 100% mortality one DAT. In the control effect, 6 kinds of chemicals were showed 100% mortality one DAT and all chemicals showed 100% mortality three DAT.

Selection of Systemic Chemicals and Attractiveness of Sunflower to Ricania spp.(Hemiptera: Ricaniidae) Adults (갈색날개매미충 성충에 대한 해바라기의 유인력과 침투이행성 약제 선발)

  • Choi, Yong-Seok;Seo, Hwa-Young;Jo, Shin-Hyuk;Whang, In-Su;Park, Deog-Kee
    • Korean journal of applied entomology
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    • v.56 no.4
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    • pp.345-350
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    • 2017
  • Sunflower, selected as a trap plant that can be controlled by attracting Ricania spp. adults via attraction has the highest attractiveness during the preoviposition period. Considering the ecological characteristics of Ricania spp., adults are distinguished by the preoviposition and oviposition periods and the attractiveness of sunflower to Ricania spp. adults was 91.4~95.2% higher than that of blueberry during the preoviposition period. On August 20, when Ricania spp. adults entered the oviposition season, sunflower attractiveness was low at 9.8~11.6% owing to preference for tree species. Based on the result of the selection of systemic chemicals that could be used concomitantly with sunflower, all chemicals, except etofenprox, showed a high controlling effect of over 90%, and among them, dinotefuran showed the highest insecticidal rate of 95.8%. The systemic chemicals acetamiprid, dinotefuran, thiamethoxam, and imidacloprid persisted for 13 days (survey period). Therefore, the concomitant use of sunflower and systemic chemicals can reduce the density of Ricania spp. entering farmlands and their populations in surrounding habitats, which are expected to help in stabilizing the ecosystem.

Control effects of new triazoyl quinolines KSI-4315 and KSI-4317 against barley powdery mildew and wheat leaf rust (신규의 triazoyl quinoline 화합물 KSI-4315와 KSI-4317의 보리 흰가루병과 밀 붉은녹병에 대한 방제효과)

  • Choi, Gyung-Ja;Yon, Gyu-Hwan;Kim, Heung-Tae;Jang, Kyoung-Soo;Kim, Jin-Cheol;Lee, Seon-Woo;Pak, Chwang-Siek;Cho, Kwang-Yun
    • The Korean Journal of Pesticide Science
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    • v.7 no.4
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    • pp.302-309
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    • 2003
  • Disease control activities of 230 triazolyl quinoline derivatives were investigated against six plant diseases such as rice blast, rice sheath blight, tomato gray mold, tomato late blight, wheat leaf rust (WLR) and barley powdery mildew (BPM). New triazolyl quinolines, KSI-4315 and KSI-4317 exhibited a great in vivo control activities against WLR and BPM, and then were selected for further tests such as preventive, curative, systemic, and persistence against WLR and BPM. The KSI-4315 and KSI-4317 contained MeS moiety and MsO moiety in carbon 4-position, respectively. They possessed both preventive activity and curative activity against WLR and BPM. KSI-4317 showed the better control activity than KSI-4315 against BPM, while KSI-4315 represented the better antifungal activity against WLR. Good persistence of KSI-4315 and KSI-4317 were also observed against WLR and BPM. Persistence of KSI-4315 was similar to that of KSI-4317 on WLR, but KSI-4317 was superior to KSI-4315 on BPM in its persistence. Systemic disease control of KSI-4315 and KSI-4317 was investigated by examining translaminar activity from leaf-under-surface to leaf-upper-surface, systemic activities by leaf to leaf movement and the effect of drenching treatment. Systemicities of KSI-4315 and KSI-4317 were not observed in wheat, but KSI-4317 showed more predominant systemicity than KSI-4315 in barley. These results suggest that KSI-4317 would potentially control WLR and BPM in the fields.

Comparison of insecticide susceptibility and enzyme activities of biotype B and Q of Bemisia tabaci (담배가루이 Biotype B와 Q의 약제감수성과 효소활성 비교)

  • Kim, Eun-Hee;Sung, Jae-Wook;Yang, Jeong-Oh;Ahn, Hee-Geun;Yoon, Chang-Mann;Seo, Mi-Ja;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.11 no.4
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    • pp.320-330
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    • 2007
  • Mitochondrial 16S DNA sequences of Bemisia tabaci which were collected on rose greenhouse of Iwol and Jinchen in Chungbuk and red pepper field of Miryang, Gyeongnam, were analyzed. The mtCOI PCR product of B. tabaci collected on red pepper field of Miryang were digested with EcoT14I (Sty I) into two fragments 555bp and 311bp, while the PCR product of B. tabaci collected on rose greenhouse of Iwol were digested with Sty I into two fragments of 560bp and 306bp. As a result, B. tabaci collected on red pepper reveal biotype Q and those on rose greenhouse was biotype B. These was difference between two biotypes in insecticide susceptibility, and the biotype B was more susceptible than biotype Q. As a result of foliar systemic test, root-uptake systemic test and residual effect, the biotype B was more susceptible. In case of inhibition effect on enzyme activities of fenitrothion (organophosphorous) and fenothiocarb (carbamate), those of biotype Q was higher than those of biotype B. These results indicate that biotype Q was more resistant than biotype B against 12 insecticides.