• Title/Summary/Keyword: 살충 활성

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Activity and sublethal effects of several insecticides to the rice skipper, Parnara guttata Bremer et Grey (Lepidoptera : Hesperiidae) (줄점팔랑나비 (Parnara guttata)에 대한 몇 가지 살충제의 활성과 아치사농도에 의한 영향)

  • Oh, Hong-Kyu;Lee, Young-Su;Lee, Sang-Gae;Park, Hyung-Man;Choi, Yong-Seok;Ryu, Gab-Hee;Chang, Young-Duck
    • The Korean Journal of Pesticide Science
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    • v.6 no.4
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    • pp.257-263
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    • 2002
  • This study was carried out not only to investigate the toxicities of 12 registered insecticides on different developmental stages, but also to determine the sublethal effects on longevity and reproduction of newly emerged adult female and development of the next generation in the rice skipper, Parnara guttata. Fenitrothion, fenthion, cartap hydrochloride, ethofenprox highly suppressed egg-hatch. All insecticides treated showed high larvicidal activity on the 1st to 2nd instar larva. The insecticides showed higher larvicidal activities on the 5th instar larva were fenitrothion, fenthion, ethofenprox, fipronil, methoxyfenozide, tebufenozide and Bt. var. kurstaki. The sublethal doses of fenthion, tebufenozide, cartap hydrochloride, methoxyfenozide, ethofenprox, imidacloprid and fipronil shortened the longevities of newly emerged adult female from the treated larva ($3{\sim}4$ instar). BPMC, imidacloprid, ethofenprox, fipronil and methoxyfenozide delayed the preoviposition periods of adult females and decreased the number of eggs laid when they were treated at the larval stages of the previous generation. Ethofenprox caused severe sublethal effects on P. guttata offspring, completely blocking the production. All insecticides except fenitrothion affected the egg viability, and all eggs from the adult females emerged from the survivors treated larvae with imidacloprid or fipronil fail to hatch. IGRs, methoxyfenozide and tebufenozide showed an adverse effect on the development of next generation larva.

Microbial Control of the Tobacco Cutworm, Spodoptera litura (Fab.), Using S. litura Naclear Polyhedrosis Virus. I. The Effect of Spray on Soybean Leaves, Temperature, Storage, and Sunlight on the Pathogenicity of the Virus (곤충 핵다각체병 바이러스를 이용한 담배거세미나방의 미생물적방제. I. 기주식물, 온도, 보관 미 태양광선이 바이러스의 병원성에 미치는 영향)

  • 임대준;진병래;최기문;강석권
    • Korean journal of applied entomology
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    • v.29 no.3
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    • pp.184-189
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    • 1990
  • A nuclear polyhedrosis virus (NPV) of the tobacco cutworm, Spodoptera litura would be a promisible agent for the control of the insect. To develop a viral insecticide using S. litura NPV, effect of spray on soybean leaves, temperature, storage, an sunlight on the pathogenicity of the virus were studies as follows: Median lethal concentration ($LC_{50}$) of the virus sprayed on the leaves against the third and the fifth instar larvae were $1.301\times10^{4 PIBS}/ml$ and $1.087\times10^{5 PIBS}/ml$, respectively. On the concentration of $1.0\times10^{5 PIBS}/ml$, median lethal times ($LT_{50}$) were 7.3 days for the 3rd and 8.9 days for the 5th instar larvae. Stability of S. litura NPV was quickly decreased at the higher temperate than $60^{\circ}C$ and at the longer exposure to the higher temperature. Storage of the virus at $-20^{\circ}C$ was kept higher pathogenicity than $4^{\circ}C$ and $25^{\circ}C$. Viral activity was maintained more than 10 days in the sprayed-under leaves, but decreased at 3 day after spray in th sprayed-on the leaf surface when exposed the virus to sunlight.

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Anticancer and Antiviral Activity of Chlorine Dioxide by Its Induction of the Reactive Oxygen Species (이산화염소의 활성산소 생성 유도에 의한 항암 및 항바이러스 활성)

  • Kim, Yonggyun;Kumar, Sunil;Cheon, Wonsu;Eo, Hyunji;Kwon, Hyeok;Jeon, Yongho;Jung, Jinboo;Kim, Wook
    • Journal of Applied Biological Chemistry
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    • v.59 no.1
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    • pp.31-36
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    • 2016
  • Chlorine dioxide has been used for a disinfectant by exhibiting antimicrobial activity and is also potent to kill insect pests infesting stored grains. This study aimed to extend the usefulness of chlorine dioxide with respect to anticancer and antiviral activities. Cytotoxicity of chlorine dioxide was assessed against five different human cancer cell lines. Chlorine dioxide exhibited significant cytotoxicity against two breast cancer cell lines (MCF-7, MDA-MB-231) and three colorectal cancer cell lines (LoVo, HCT-116, SW-480). This cytotoxicity appeared to be associated with the capacity of chlorine dioxide to induce the production of reactive oxygen species (ROS). Compared to control insect cell lines, the cancer cell lines possessed much higher levels of ROS. On the other hand, a treatment of an antioxidant, vitamin E, significantly reduced the cytotoxicity, suggesting that the cytotoxicity was induced by high levels of ROS production. Chlorine dioxide exhibited antiviral activity against different viruses. A baculovirus, Autographa californica nuclear polyhedrosis virus (AcNPV), is a dsDNA insect virus and lost its viral activity to form polyhedral viral particles in response to chlorine dioxide. The antiviral activity against AcNPV was dependent on the incubation time with chlorine dioxide. Tobacco mosaic virus is a ssRNA plant virus and was reduced in its population after exposure to chlorine dioxide along with significant decrease of viral symptoms. These results indicate that chlorine dioxide possesses anticancer and antiviral activities probably due to its inducing activity of ROS production.

Insecticide Susceptibility of Western Flower Thrip, Frankliniella occidentalis (Thysanoptera: Thripidae) on Horticultural Crops in Gyeonggi Area (경기지역 원예작물 꽃노랑총채벌레 약제 감수성)

  • Lee, Young-Su;Lee, Hee-A;Lee, Hyun-Ju;Hong, Soon-Sung;Kang, Chang-Sung;Choi, Yong-Seok;Kim, Hyeong-Hwan;Jang, Myoung-Jun
    • Korean journal of applied entomology
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    • v.56 no.2
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    • pp.179-186
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    • 2017
  • This study was conducted to monitor the insecticidal susceptibility of western flower thrip, Frankliniella occidentalis, which damage horticultural crops in the Gyeonggi area. Bioassays were conducted under laboratory and greenhouse conditions by using the recommended concentrations of commercial insecticides being used for the control of thrips. Neonicotinoid insecticides, especially acetamiprid (8%) soluble powder (SP), clothianidin (8%) SC, imidacloprid (10%) wettable powder (WP) and thiacloprid (10%) water dispersible granule (WG) were not toxic to F. occidentalis collected from horticultural crops. However, F. occidentalis collected from vegetable greenhouses was extremely susceptible to acetamiprid + spinetoram (6 + 4%) suspension concentration (SC), clothianidin + spinetoram (6 + 4%) SC and methoxyfenozide + spinetoram (6 + 4%) SC, which resulted in over 90% control of thrips. In the greenhouse test, spinetoram (5%) WG, which caused 100% F. occidentalis mortality in the laboratory test, showed 87.4, 88.0, and 98.3% control at 3, 6, and 9 days after treatment, respectively, while imidacloprid (10%) WP showed below 44% control. From the results of this study, spinosin insecticides, such as more than over 4 and 10% of spinetoram and spinosad, and pyrrole insecticide, such as 5% chlorfenapyr, are recommended for the effective control of F. occidentalis.

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.

On the preparation of new formulation of Diazinon and its residual pattern in submerged soil (새로운 Diazinon입제의 제조 및 담수토양중의 잔류특성에 관하여)

  • Choi, Jong-Woo;Ryoo, Jong-Gook;Shin, Dong-Lin;Lee, Kyu-Seung
    • Korean Journal of Environmental Agriculture
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    • v.11 no.1
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    • pp.1-8
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    • 1992
  • New formulation of diazinon as granule preparing with piperonyl butoxide(PBO) and triphenyl phosphate(TPP) known as the inhibitor of monooxygenase(mo) and esterase was tested with the mortality of rice leaf hopper. Also, the mixed formulation of diazinon with tricyclazole, carbofuran and EPN were investigated about the residual pattern of diazinon in submerged soil condition at $30{\pm}2^{\circ}C$. Although the mortality about rice leaf hopper was higher only 10% on new formulation of diazinon than commercial at recommended dose but was 30-60% at half dose. Half life of diazinon in the formulation with 0.1% of PBO+TPP was 4.53 days in sterilized soil and 2.33 days in non-sterilized soil, and it was delayed about 0.74 and 0.45 respectively in contrast with the commercial granule. Also, half life of the new formulation with 1% PBO and PBO+TPP was delayed 0.44(PBO) and 0.65day(PBO+TPP) in non-sterilized soil condition, respectively. Half life of mixed formulation with tricyclazole, carbofuran, EPN or EPN+Carbofuran was delayed 2.61, 1.04, 0.43 or 2.7 days, respectively. As a result, the persistence rate of new formulation and mixed formulation was increased by inhibition of two enzymes affecting to the dgradation of diazinon in submerged soil.

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Bioassay of Environment-friendly Insecticides for Management of Mosquito, Culex pipieos molestus (지하집모기 (Culex pipiens molestus)의 방제를 위한 환경친화적 살충제의 생물검정)

  • Choi, Su-Yeon;Oh, Se-Chan;Cho, Min-Su;Paek, Seung-Kyoung;Kim, Jin-Su;Kim, Da-A;Gil, Mi-Ra;Youn, Young-Nam;Yu, Yong-Man
    • Korean journal of applied entomology
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    • v.46 no.2
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    • pp.261-267
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    • 2007
  • Bioassay of mosquito, Culex pipiens molestus, larva was investigated by several environment-friendly insecticides. These insecticides were Novaluron as chitin synthesis inhibitor, Metho-xyfenozide as ecdysone agonist, Pyriproxyfen as juvenile hormone mimic, and Spiromesifen as lipid biosynthesis inhibitor. The 50% lethal concentration $(LC_{50})$ of these insecticides were 0.00039, 0.07193, 0.65006 and 0.04839 ppm, respectively. Novaluron has lower concentration than any other insecticide. To determine the treatment time against larval stages, insecticides were applied to different larval stages of C. pipiens molestus. Mortality ratios of mosquito larva treated with Novaluron were 100.0, 84.5, 71.0 and 48.5% on 2, 4, 7 and 10 days after hatching from eggs, respectively. Otherwise, with the other insecticides, mortality ratios were under 80% with 2 days old larva. When exposure periods were tested to 3 or 4 days old larva against 4 insecticides, at least 3 hours were needed to 100% control effect against Novaluron, and over 12 hours with other insecticides.

Selection of Entomopathogenic Fungus Isaria javanica FT333 for Dual Control of Thrips and Anthracnose (총채벌레 및 고추탄저병의 동시 방제를 위한 곤충병원성 곰팡이 Isaria javanica FT333 선발)

  • Lee, Moran;Jeong, Hyeju;Kim, Jaeyoon;Kim, Dayeon;Ahn, Seung Ho;Lee, SangYeob;Han, Ji Hee
    • The Korean Journal of Mycology
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    • v.46 no.4
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    • pp.479-490
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    • 2018
  • Red pepper is seriously damaged by thrips (Thrips palmi) and anthracnose caused by Colletotrichum acutatum throughout its development. Because of biotic constraints, producers often depend on chemicals that are expensive and have adverse effects on the environment, operator, and beneficial insects. In addition, resistance is developed because of the repeated use of chemicals. In recent decades, the use of microorganisms in crop protection has become a credible alternative because it is eco-friendly. In this study, we aimed to select isolates with insecticidal and fungicidal activities against the pathogens that cause anthracnose and thrips. We treated T. palmi adults and juveniles with 13 strains of entomopathogenic fungi (isolated from the soil by using the insect-bait method), and 6 strains showed excellent insecticidal activity (70-100%) 5 days after the treatment. The selected isolates were cultured with C. acutatum to screen for the strain with excellent anti-fungal activities, among which an isolate FT333 showed more than 95% control efficacy against C. acutatum in vitro. The isolate was identified as Isaria javanica through its morphological characteristics and phylogenetic analysis of the ITS and ${\beta}-tubulin$ nucleotide sequences. The Isaria javanica FT333 isolate could be used effectively for dual bio-control of thrips and anthracnose during red pepper cultivation.

Evaluation of Susceptibility of Spoladea recurvalis (Lepidoptera: Crambidae) to Five Insecticides in Spinach (시금치 해충 흰띠명나방(Spoladea recurvalis)의 살충제 감수성)

  • Young Su, Lee;Hee-A, Lee;So-Hee, Kim;Jong Yoon, Choi;Hyun Ju, Lee;Sang-Woo, Lee;Jung-Soo, Park
    • Korean journal of applied entomology
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    • v.61 no.4
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    • pp.529-537
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    • 2022
  • The susceptibilities of five insecticides to the larvae of Spoladea recurvalis, a major pest of spinach, were evaluated. Lufenuron EC, chromafenozide EC, chlorantraniliprole WP, tebufenozide WP, and pyridalyl EW showed 90% or more insecticidal activity at dilution concentrations of 2 (12.5 ppm), 4 (12.5 ppm), 8 (2.5 ppm), 4 (20.0 ppm), and 8 (12.5 ppm), respectively. At their recommended concentrations, Chromafenozide EC, chlorantraniliprole WP, tebufenozide WP, and pyridalyl EW showed very high insecticidal activity of 98.3%, 100%, 95.0%, and 100%, respectively, after 72 h on S. recurvalis larvae exposed after 7 days of treatment. Field tests at two spinach greenhouses in Hwaseong and Yeoncheon showed a high control effect of over 90% after 7 days of treatment in both areas. In addition, the insecticides can be used as exclusive agents for S. recurvalis that occurs in spinach, as there is no phytotoxicity even at double doses.

The Synergy Effects of Mixed Treatment with Tannic Acid and Bacillus thuringiensis subsp. kurstaki KB100 against Spodoptera exigua (Lepidoptera: Noctuidae) (Tannic acid와 Bacillus thuringiensis subsp. kurstaki KB100균주의 혼합처리에 의한 파밤나방 살충활성의 상승효과)

  • Jin, Na-Young;Jung, Sun-Young;Park, Chan;Paek, Seung-Kyoung;Seo, Mi-Ja;Youn, Young-Nam;Yu, Yong-Man
    • Korean journal of applied entomology
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    • v.48 no.4
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    • pp.519-526
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    • 2009
  • Bacillus thuringiensis subsp. kurstaki KB100 isolated from the domestic soil have the most effective activity against the beet armyworm, Spodoptera exigua larva. The tannic acid as protease inhibitor might be increased the efficacy of sublethal concentrations of B. thuringiensis. The tannic acid was identified as a protease inhibitor that could increased the efficacy of sublethal concentrations of B. thuringiensis. Mixture of B. thuringiensis and tannic acid was investigated the mortality of S. exigua larva in the laboratory and field. When B. thuringiensis treated to 2nd larva of S. exigua, mortality was shown 54.4%. However, mixtures of B. thuringiensis with 4 and 40 mM tannic acid were increased mortalities to 2nd larva of S. exigua as 64.0 and 95.5%, respectively. Also, synergy effect of mixture of B. thuringiensis and 40 mM tannic acid was increased the mortality of S. exigua 3rd larva to 93.3%, even though 60.0% mortality with only B. thuringiensis treatment. On the other hand, the mortality of mixture with B. thuringiensis and 80 mM tannic acid was 53.3% lower than B. thuringiensis single treatment. In the welsh onion field, the accumulated mortalities of 3 times replicated with mixture of B. thuringiensis and 40 mM tannic acid were 83.9, 89.4 and 66.8% compare with 61.8, 80.4 and 47.3% as only B. thuringiensis treatment, respectively.