• Title/Summary/Keyword: benthiavalicarb

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Establishment of Baseline Sensitivity of Phytophthora capsici Causing Pepper Phytophthora Blight to Carboxylic Acid Amide Fungicides (Carboxylic acid amide계 살균제에 대한 고추 역병균 Phytophthora capsici의 감수성 기준 설정)

  • Kim, Jin-Ho;Kim, Joo-Hyung;Lee, Kyeong-Hee;Rho, Chang-Woo;Kim, Heung-Tae
    • The Korean Journal of Pesticide Science
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    • v.14 no.4
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    • pp.456-462
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    • 2010
  • Baseline sensitivity to benthiavalicarb, iprovalicarb and dimethomorph included into carboxylic acid amide (CAA) group was evaluated in 180 isolates of Phytophthora capsici over 4 years from 2005 to 2008. $EC_{50}$ (effective concentration inhibiting mycelial growth by 50%) value of benthiavalicarb ranged from $0.015{\mu}g\;mL^{-1}$ to $0.049{\mu}g\;mL^{-1}$ with a mean of $0.033{\mu}g\;mL^{-1}$. The mean values of $EC_{50}$ of iprovalicarb and dimethomorph were 0.411 (0.197 - 0.556) ${\mu}g\;mL^{-1}$ and 0.271 (0.101 - 0.798) ${\mu}g\;mL^{-1}$, respectively. Although there was no increasing tendency in $EC_{50}$of benthiavalicarb and iprovalicarb during 4 years, $EC_{50}$ of dimethomorph was increased gradually by laps of time. There was no cross-resistance between each fungicide used in this study and metalaxyl. Among fungicides included into CAA group, there was a positive correlation between benthiavalicarb and iprovalicarb, and between dimethomorp and mandipropamid.

Control Efficacy of Carboxylic Acid Amide Fungicides against Pepper Phytophthora Blight Causing Phytophthora capsici (고추 역병에 대한 Carboxylic Acid Amide계 살균제의 방제 효과)

  • Shin, Jin-Ho;Kim, Jooh-Young;Kim, Hyeong-Jo;Choi, Young-Ki;Kim, A-Hyeong;Lee, Kyeong-Hee;Rho, Chang-Woo;Kim, Heung-Tae
    • The Korean Journal of Pesticide Science
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    • v.14 no.4
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    • pp.463-472
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    • 2010
  • It was conducted to investigate the control efficacy of carboxylic acid amide (CAA) fungicides, such as benthiavalicarb, iprovalicarb, dimethomorph and mandipropamid, against pepper Phytophthora blight caused by P. capsid in the laboratory and the field. The fungicides inhibited mycelial growth and direct sporangium germination of P. capsid strongly, while there was no activity of all fungicides against zoospore release from sporangium. In greenhouse test, they showed the good protective and curative effect against pepper Phytophthora blight. Benthiavalicarb applied at $100{\mu}g\;mL^{-1}$ 7 days before inoculation prevented pepper Phytophthora blight by 100%, even though the zoosporangiurn suspension of P. capsid adjusted to not only $5{\times}10^3$ zoosporangia $mL^{-1}$ but also $1{\times}10^5$ zoosporangia $mL^{-1}$ was inoculated by soil-drenching. Except for dimethomorph, the other fungicides showed an excellent control activity over 2 years from 2009 to 2010 in the field test. The control value of dimethomorph applied at $250{\mu}g\;mL^{-1}$ was low, 27.2% in 2009, but that of dimethomorph applied even at $125{\mu}g\;mL^{-1}$ was high, 89.5% in 2010. All the fungicides showed good inhibitory effect on the mycelial growth and the direct germination of zoosporangiurn, and controlled pepper Phytophthora blight preventively and curatively, can be used to establish the spray system for control1ing the pepper disease.