• Title/Summary/Keyword: Diamond-back moth

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Determination of the effective spray- interval of Bacillus thuringiensis against diamond-back moth (Plutella xylostella) on chinese cabbage

  • Han, E.J.;Park, J.H.;Hong, S.J.;Ahn, N.H.;Jee, H.J.;Kim, Y.K.
    • Korean Journal of Organic Agriculture
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    • v.19 no.spc
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    • pp.259-262
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    • 2011
  • In organic Chinese cabbage fields, Commercial Bacillus thuringiensis products are used widely against diamond back moth, Plutella xylostella. We conducted the study to determine the effective spray-interval of commercialized B. thuringiensis against diamond back moth on Chinese cabbages. Chinese cabbage leaves were collected 0, 1, 2, 3, 6, 10days after treatment in first trial and 0, 2, 4, 7, 9, 11days after treatment. We compared the insecticidal property of sprayed B. thuringiensis and the density of it on surface of Chinese cabbages using collected leaves. The insecticidal property maintained high until nine days after commercial B. thuringiensis products sprayed.

Design of the New Insecticidal Active Molecule against Diamond-Back Moth (Plutella Xylostella Linnaeus) (배추좀나방(Plutella Xylostella Linnaeus)에 대한 새로운 살충활성 분자의 설계)

  • Cho, Yun-Gi;Choi, Woo-Young;Sung, Nack-Do
    • Korean Journal of Agricultural Science
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    • v.34 no.2
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    • pp.171-179
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    • 2007
  • The new insecticidal active molecules from the based on the holographic quantitative structure-activity relationships (HQSAR) between a series of $1-(R_1)-2-(n-octyl)-3-(R_2)$, $3-(R_3)-pseudothiourea$ derivatives and their insecticidal activities against Diamond-back moth (Plutella Xylostella Linnaeus) were designed and discussed quantitatively. The most active molecule from the based graphical analyses of atomic contribution maps with the optimized HQSAR C-1 model ($q^2=0.764$ & $r^2{ncv}=0.942$) was 1-(n-butyl)-2-(t-butyl)-3,3-diisopropylpseudothiourea (P1: $pI_{50}=5.30$, $IC_{50}=1.397ppm$). Therefore, it is suggested that the new designed molecule would increased the activity as much as 23.5 times as compared to X=n-octyl substituent 17($pI_{50}=4.00$, $IC_{50}=32.86ppm$) which was the highest active molecule in training set compounds.

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Synthesis and Electroantennogram (EAG) Responses of the Sex Phermones of the Diamond Back Moth (배추좀나방 성 페로몬의 합성과 EAG 감응반응 연구)

  • Gang, Seok Gu;Seol, Gwang Yeol;Jeon, Jong Gap;Go, Hyeon Gwan;Kim, Jung Jin
    • Journal of the Korean Chemical Society
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    • v.34 no.2
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    • pp.179-183
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    • 1990
  • New synthesis and electroanthennogram (EAG) responses of the pheromones of the diamond back moth Plutella xylostella L. are described. Lithium dianion of propargyl alcohol was alkylated with 1-bromononane to give 2-dodecyn-1-ol, which was converted to 11-dodecyn-1-ol by acetylene-zipper reaction. Dianion of 11-dodecyn-1-ol was alkylated with 1-bromobutane to provide 11-hexadecyn-1-ol, which was in turn reduced over Pd/BaSO4 to afford (Z)-11-hexadecen-1-ol (3). (Z)-11-Hexadecen-1-ol was oxidized and acetylated to (Z)-11-hexadecen-1-al (1) and (Z)-11-hexadecen-1-yl acetate (2), respectively. The electroantennogram (EAG) responses of the diamond back moth to the pheromone compouds thus synthesized were measured.

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Synthesis and Biological Activity Test of the Sex Pheromone of the Diamond Back Moth (배추좀나방의 성 페로몬의 합성과 생물활성시험)

  • Suk-Ku Kang;Chul-Hee Lee;Jung Han Kim;Jeong-Oon Lee
    • Journal of the Korean Chemical Society
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    • v.32 no.1
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    • pp.60-64
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    • 1988
  • Synthesis and biological activity test are described for the (Z)-11-hexadecen-1-ol, (Z)-11-hexadecen-1-yl acetate, and (Z)-11-hexadecen-l-al, the sex pheromone of the diamond back moth, Plutella xylostella L.. Lithium acetylide was alkylated with 10-bromodecan-1-ol THP ether to give 11-hexadecyn-l-ol THP ether. 11-Hexadecyn-l-ol THP ether was stereoselectively reduced over Pd/BaSO4to yield (Z)-11-hexadecen-l-ol THP ether, which was in turn deprotected to provide (Z)-11-hexadecen-l-ol. (Z)-11-Hexadecen-l-ol was acetylated and oxidized to afford (Z)-11-hexadecen-1-yl acetate and (Z)-11-hexadecen-l-al, respectively. Biological activity test of the synthetic compounds, (Z)-11-hexadecen-l-ol, (Z)-11-hexadecen-1-yl acetate, and (Z)-11-hexadecen-l-al in the ratio of 0.1 : 5 : 5 was tested in the field using polyethylene capsules as containers. The numbers of moth trapped with pheromone vials were counted.

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Fetal growth retardation induced by flupyrazofos, a new organophosphorus insecticide, in rats.

  • Chung, Moon-Koo;Kim, Jong-Choon;Han, Sang-Seop
    • Proceedings of the Korean Society of Toxicology Conference
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    • 2001.05a
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    • pp.122-122
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    • 2001
  • Flupyrazofos is a new type of pyrazole organophosporus insecticide, which has a high activity against the diamond-back moth (Plutella xylostella). The potential of this agent to induce developmental toxicity was investigated in the Sprague-Dawley rat.(omitted)

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Establishment of Bioassay System for Developing New Insecticides II. Differences in Susceptibilities of the Insect Species to Insecticides according to Different Application Methods (살충제 개발을 위한 생물검정법의 확립 II. 처리방법 및 종간에 따른 살충제 감수성 차이)

  • 안용준;김길하;박노중;조광연
    • Korean journal of applied entomology
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    • v.31 no.4
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    • pp.452-460
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    • 1992
  • To establish the economical and reliable routine bioassay system for developing new insecticidal compounds, effects of leaf-dipping time, application methods, insect species and their developmental stages on susceptibilities of insects to insecticides were studied. The stable insecticidal activity appeared at the dipping time for 30-60 seconds in leaf-dipping method, and the most effective application methods were leaf-dipping method for apterous green peach aphid adults, and third instars of diamond-back moth and tobacco cutworm, whereas seedling+insect spray method for adults or third instars of brown planthoppers. For two-spotted spider mite, leaf-dipping or intact plant spray method was favorable. In the bioassay for chitin synthesis inhibitors, the inoculation of third instars of brown planthopper, diamond-back moth, tobacco cutworm and green peach aphid, and larvae of two-spotted spider mite to the young host plants treated by spray method were adequate bioassay methods.

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Structural Characteristics that Influence on the Insecticidal Activity of 2-(n-Octyl)pseudothiourea Analogues against the Diamondback Moth (Plutella xylostella, L.)

  • Soung, Min-Gyu;Kil, Mun-Jae;Sung, Nack-Do
    • Bulletin of the Korean Chemical Society
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    • v.30 no.11
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    • pp.2749-2753
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    • 2009
  • Structural characteristics that influence on the insecticidal activity ($pI_{50}$) of 2-(n-octyl)isothiourea analogues (1-45) against the diamondback moth (Plutella xylostella, L.) based on three dimensional quantitative structure activity relationships (3D-QSARs) were discussed quantitatively using a comparative molecular field analysis (CoMFA) and a comparative molecular similarity indeces analysis (CoMSIA) methods. The statistical values of the CoMFA 2 model were better than those of the CoMSIA 1 model. The CoMFA 2 model was the optimized model with the correlativity (the training set: Ave. = 0.104 & PRESS = 0.613) and the predictability (the test set: Ave. = 0.086 & PRESS = 0.096). Insecticidal activities with the optimized CoMFA 2 model were dependent upon steric factors (79.4%) of $R_1-R_3$ substituents. From the analytical results of CoMFA contour maps, it is predicted that the R1 substituent of 1-45 which has a steric favor in a broad space, $R_2\;and\;R_3$ groups with a steric favor in a narrow space and a H-bond donor favor would have better the insecticidal activity.

Economic Threshold for the Diamondback Moth (Plutella xylostella L., Lepidoptera: Plutellidae) on Leaf Broccoli (Brassica oleracea var. botrytis italiana) (잎브로콜리에서 배추좀나방 요방제 수준 설정)

  • Choi, Seon Wu;Lim, Ju Rak;Kim, Ju-Hee;Lee, Gong-Jun;Moon, Young-Hun;Cheong, Seong-Soo;Lee, Gi-Kwon
    • Korean journal of applied entomology
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    • v.54 no.1
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    • pp.1-6
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    • 2015
  • This study was conducted to estimate the economic injury level (EIL) to leaf broccoli (leaf vegetable) by the diamondback moth (Plutella xylostella L.) in 2007 and obtain basic data for pest management. To investigate the relationship between initial density of diamondback moth larvae and broccoli leaf yield, experimental plots with five treatments (0, 0.5, 1.0, 1.5 and 2.0 larvae per plant) as initial density were established. We inoculated larvae on cheesecloth covering to survey changes in larval density. When grown for consumption, leaves of broccoli are harvested in periods. High levels of larvae were associated with significant reductions in leaf yield. There were 0%, 15%, 35%, 42%, 44% yield reductions due to a density of 0, 0.5, 1.0, 1.5, 2.0 diamond back moth larvae per plant, respectively, 25 days after larva inoculation. The regression equation used to predict leaf yield based on the number of initial larvae per plant was y = 1636-394x($R^2=0.79^{***}$>). EIL of the diamondback moth on leaf broccoli was 2~3 larvae per 10 plants for a damage level of 5%. The economic threshold was 1~2 larvae per 10 plants. Thus, diamondback moth management should be initiated when 1~2 larvae appear on 10 plants.

Acute Toxicity Test of KH-502 (Flupyrazofos) in Rats and Mice (KH-502의 랫트 및 마우스를 이용한 급성독성시험)

  • 송시환;김형진;신천철;임광현;하창수;한상섭
    • Toxicological Research
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    • v.14 no.2
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    • pp.227-235
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    • 1998
  • KH-502 (Flupyrazofos), a new organophosphorus insecticide synthesized by Korea Re-search Institute of Chemical Technology, was found to be effective against diamond-back moth(Plutella xylostella). This study was carried out to determine the acute toxicity of KH-502 in Sprague-Dawley rats and ICR mice. The test article was orally or dermally administered to the animals. Death, tremors, salivation, lacrimation, abnormal gait and corneal opacity were observed. Decrease in body weight gain was observed in all treatment groups. At necropsy, dark red coloration of lung, enlargement of adrenal glands and atrophy of spleen were observed. The oral $LD_{50}$ value was 372 mg/kg in male rats, 605 mg/kg in female rats, 186 mg/kg in male mice, and 115 mg/kg in female mice. And the dermal $LD_{50}$ was 4086 mg/kg in male and 3881 mg/kg in female rats.

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