• Title/Summary/Keyword: EPG 파형

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Feeding Behavior of the Small Brown Planthopper, Laodelphax striatellus (Hemiptera: Delphacidae) on Rice Plants Based on EPG Waveform, Honeydew Excretion, and Microsection Analysis (EPG 파형과 감로 분비, 미세절편 관찰로 해석된 애멸구의 벼 섭식행동)

  • Seo, Bo Yoon;Kwon, Youn-Hee;Jung, Jin Kyo;Kim, Gil-Hah
    • Korean journal of applied entomology
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    • v.55 no.4
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    • pp.351-358
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    • 2016
  • Consistent with a previous study on the brown planthopper Nilaparvata lugens (BPH) (Seo et al., 2009), we identified seven distinct EPG waveforms (np, L1, L2, L3, L4-a, L4-b, and L5) in adult female Laodelphax striatellus (SBPH) that fed on rice plants, by using the direct current electrical penetration graph (DC-EPG) system. The shape of waveforms and the pattern of occurrence of each waveform of SBPH were very similar to those of BPH. L3 and L4-a always occurred prior to L4-b. Periodical honeydew excretion was observed in L4-b only. Microsection observation following laser stylectomy revealed that the tips of SBPH stylets severed in L3, L4-a, and L4-b were commonly located in or near the phloem region of rice plants, but were located in the xylem in L5. Plant sap flowed from the stylets severed in L4-b only, and its main carbohydrate component was detected as sucrose by HPLC analysis. These results and the patterns of EPG waveform progress in SBPH suggested that feeding activities on rice plant tissue were relevant to each EPG waveform. L1 and L2 corresponded to the initiation of stylet penetration and stylet movement with salivation on the outside of the vascular bundle. L3 and L4-a were related to feeding activities within the phloem region in preparation for phloem sap ingestion. L4-b was closely associated with phloem sap ingestion, and L5 corresponded to xylem feeding behavior.

Changes of Feeding Behavior of Sweetpotato Whitefly, Bemisia tabaci Correlated with the Residual Effect of Emamectin benzoate and Pyridaben (Emamectin benzoate와 Pyridaben의 잔효성에 따른 담배가루이의 섭식행동 변화)

  • Kwon, Yun-Hee;Yang, Jeong-Oh;Oh, Jeong-Hoon;Noh, Doo-Jin;Yoon, Chang-Mann;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.12 no.4
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    • pp.397-402
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    • 2008
  • This study was performed to investigate the correlation between changes of feeding behavior of Bemisia tabaci and residual effect of two insecticides, emamectin benzoate and pyridaben, using EPG technique. Waveforms such as non-probe time and total duration of phloem phase of B. tabaci were recorded during three hours using EPG. Relationship between non-probe time and the change of residual effect of two insecticides correlated with more pyridaben than emamectin benzoate. In the relationship between phloem phase time and those of residual effect, emamectin benzoate was more correlated than pyridaben. These results show that the change of feeding behavior of B. tabaci is correlated with the change of residual effect of two insecticides.

Comparison of Insecticidal Activity and Feeding Behavior of Nilaparvata lugens by Root Uptake Times against Fenobucarb and Imidacloprid (Fenobucarb와 Imidacloprid의 벼 뿌리 침지시간에 따른 벼멸구의 살충활성과 섭식행동비교)

  • Yang, Jeong-Oh;Cho, Sun-Ran;Kwon, Yun-Hee;Yoon, Chang-Mann;Kim, Gil-Hah
    • The Korean Journal of Pesticide Science
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    • v.14 no.2
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    • pp.175-182
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    • 2010
  • Two insecticides, fenobucarb (36, 12 ppm) and imidacloprid (0.7, 0.4 ppm) were treated on rice seedling roots by root uptake method with different dipping time (1, 4, 8, 12, 16, 20, 24 hrs). This study was performed to elucidate the correlation between insecticidal activity and feeding behavior of Nilaparvata lugens using EPG (electrical penetration graph). EPG waveforms are recorded for 4 hours and classified into six waveforms. In the correlation between root uptake and corrected mortality, both insecticides showed higher corrected mortality as higher doses and as longer root uptake times. In the analysis of waveforms, N. lugens showed longer nonprobe time but shorter phloem feeding time at a higher dose. It was also showed the same result as longer the root uptake times. Therefore, it showed the correlation between insecticidal activity by root uptake time and both EPG waveforms (non-probing time and phloem feeding time).

Changed in Feeding Behavior of Cacopsylla pyricola Foerster (Hemiptera: Psyllidae) and Activities of Several Insecticides (몇 가지 약제처리에 대한 꼬마배나무이(Cacopsylla pyricola Foerster)의 섭식행동 변화 및 살충효과)

  • Park, Min-Woo;Kwon, Hay-Ri;Yu, Yong-Man;Youn, Young-Nam
    • The Korean Journal of Pesticide Science
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    • v.20 no.1
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    • pp.72-81
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    • 2016
  • Feeding behaviors of the pear psylla, Cacopsylla pyricola, and their changing feeding behaviors were recorded and analyzed with an electrical penetration graph (EPG) analysis against 5 insecticides. And their mortality against insecticides were carried out in the laboratory. General feeding behavior patterns of C. pyricola were changed by insecticide treatments. Especially, the type and frequency of waveforms differently occurred depending on a sort of insecticides treated. Total duration of transition to waveform PE1 and phloem ingestion (waveform PE2) were significantly different between treatment and non-treatment of insecticides. When 5 different insecticides were treated on pear leaves, difference of feeding patterns were recorded. In case of treatment of benfuracarb, total duration of non-probes (waveform Np) was appeared higher than any other insecticide. However, when flonicamid and deltamethrin were treatment, total duration of stylet penetration (waveform PA) and xylem ingestion (waveform PG) were appeared higher than other insecticide, respectively. As results feeding behaviour of C. pyricola after treated insecticides with time-based consumed rate of C. pyricola, the rate of non-probe (waveform Np) was longer than start penetration (waveform PA), penetration and ingestion in parenchyma cells (waveform PC1+PC2), ingestion at phloem (waveform PD+PE1+PE2) and xylem (waveform PG). As result of direct spray treatment to C. pyricola, mortality of C. pyricola against imidacloprid was higher than any other insecticide on 24 hours after treatment. However, all of insecticides showed 100% mortality of after 48 hours. On the other hand, when 5 insecticides sprayed on the pear leaves and then C. pyricola located on the treated leaves, benfuracarb showed the most toxicity against C. pyricola among insecticides. These result was consistent with the EPG results that showed relatively longer total duration time of waveform Np (non-probes) by benfuracarb treatment.