• Title/Summary/Keyword: 유충 살충력

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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.

Inhibitory Effect of Chlorine Dioxide Using Reactive Oxygen Species Against Heart Contraction of the Indianmeal Moth, Plodia interpunctella (이산화염소의 활성산소 발생에 따른 화랑곡나방 심장박동 억제 효과)

  • Kim, Chul-young;Kwon, Hyeok;Kim, Wook;Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.56 no.2
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    • pp.147-152
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    • 2017
  • Heart contraction is essential for insect hemolymph circulation, in which various physiological changes need control of the heart contraction. Thus, interruption of heartbeats intimidate insect survival. Chlorine dioxide induces release of reactive oxygen species (ROS), which has been regarded as the main insecticidal agent. This study analyzed the effect of chlorine dioxide on heartbeats of the Indianmeal moth, Plodia interpunctella. The larvae have the dorsal vessel on the medial dorsal region in a form of an extending tube from the first thorax to 10th abdominal segment. Dorsal vessel contraction was noticeable between 3rd and 10th abdominal segments, where five heart chambers were observed. Average heartbeat rate was 118.6 beats per min at $25^{\circ}C$. However, the heartbeats varied with ambient temperature. Injection of chlorine dioxide to hemocoel suppressed the heartbeats in a dose-dependent manner. The suppressive effect of chlorine dioxide also increased with exposure time to gas form of the chemical at 100 ppm. However, vitamin E (an antioxidant against ROS) treatment significantly rescued the larvae treated with chlorine dioxide in the heart contraction activity. These results suggest that chlorine dioxide negatively influences on the heart contraction of P. interpunctella via its production of ROS.

Toxicological Analysis of the Entomopathogenic Nematode, Steinernema carpocapsae, and the Symbiotic Bacteria, Xenorhabdus nematophilus on Beneficial Insects and Mammals (유용곤충과 포유류에 대한 곤충병원선충(Steinernema carpocapsae)과 공생세균(Xenorhabdus nematophilus)의 독성)

  • Park, Young-Jin;Kim, Mi-Kyung;Kim, Jin;Yang, Kyung-Hyung;Kim, Yong-Gyun
    • Korean journal of applied entomology
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    • v.40 no.3
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    • pp.259-264
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    • 2001
  • Toxicological studies of two potential biological control agents, the entomopathogenic nematode (Steinernema carpocapsae) and the symbiotic bacteria (Xenorhabdus nematophilus) were conducted against two beneficial insects and one mammal species. Two microbial agents varied in their toxicities between two insect species: an ant, Pristomyrmex pungens, and silkworm, Bombyx mori. In oral toxicity test, the symbiotic bacteria resulted in significant lethal [half lethal concentration of $1.4$\times$10^3$colony-forming units (cfu)/ml] on the ants, while they gave little lethal effect (half lethal concentration of more than $10^{8}$ cfu/ml) on the silkworms. The nematodes, however, gave significant lethal effect [half lethal concentration of 4 infected juveniles (IJs)/ml] on the silkworms, while they did little lethal effect (half lethal concentration of 150,000 IJs/ml) on the ants in topical assays. Both the nematodes and the bacteria did not give lethal effect to the albino rats, Rattus norvegicus, when they were fed orally into the rats. Also, any of these microbial agents were not detected in the internal organs of the treated rats.

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Sound Stress Induces Developmental Alterations and Enhances Insecticide Susceptibility in the Green Peach Aphid, Myzus persicae (스트레스 음파 처리에 따른 복숭아혹진딧물(Myzus persicae)의 발육 교란 및 살충 효과)

  • Seok, Jeong-Gyun;Kang, Taek-Jun;Kim, Yong-Gyun
    • The Korean Journal of Pesticide Science
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    • v.14 no.4
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    • pp.415-420
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    • 2010
  • This study investigated effects of different sound frequencies on development and insecticide susceptibility of the green peach aphid, Myzus persicae. Under a constant sound intensity (95 dB), different frequency (0-5,000 Hz) sounds were treated on entire developmental period of the aphids. With increase of sound frequencies, nymphal to adult development of the aphids showed significant retardation and the females exhibited a significant decrease in fecundity. The greatest disrupting effects were induced by treatment of 5,000 Hz, which also caused marked change in protein expression of the aphids analysed by two dimensional electrophoresis. Sound frequencies above 2,000 Hz significantly increased susceptibility of the aphids against imidacloprid. This study clearly suggest that there is a stress sound, which can be sensed by M. persicae and induces its physiological alteration.

Construction of a Transgenic Tobacco Expressing a Polydnaviral Cystatin (폴리드나바이러스 유래 시스타틴 유전자 발현 형질전환 담배 제작)

  • Kim, Yeongtae;Kim, Eunsung;Park, Youngjin;Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.54 no.1
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    • pp.7-15
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    • 2015
  • CpBV (Cotesia plutellae bracovirus) is a polydnavirus and encodes a cystatin (CpBV-CST1) gene. Its overexpression suppresses insect immunity and alters insect developmental processes. This study aimed to construct a genetically modified (GM) tobacco to further explore the physiological function of the viral cystatin and to apply to control insect pests. To this end, the transgenic tobacco lines were screened in expression of the target gene and assessed in insecticidal activity. A recombinant vector (pBI121-CST) was prepared and used to transform a bacterium, Agrobacterium tumefasciens. The transformed bacteria were used to generate transgenic tobacco lines, which were induced to grow callus and resulted in about 92% of shoot regeneration. The regenerated plants were screened by PCR analysis to confirm the insertion of the target gene in the plant genome. In addition, the expression of the target gene was assessed in the regenerated plants by quantitative real-time PCR (qRT-PCR). The qRT-PCR analysis showed that the transgenic line plant expressed the target gene about 17 times more than the control tobacco, indicating a stable insertion and expression of the target gene in the transgenic tobacco line. The insecticidal activity was then analyzed using the screened transgenic tobacco lines against the teneral 1st instar larvae of the oriental tobacco budworm, Helicoverpa assulta. Though there was a variation in the insecticidal efficacy among transgenic lines, T9 and T12 lines exhibited more than 95% mortality at 7 days after feeding treatment. These results suggest that CpBV-CST1 is a useful genetic resource to be used to generate GM crop against insect pests.