Effectiveness of dinotefuran to eliminate Matsumuratettix hiroglyphicus, a vector of sugarcane white leaf disease
Main Article Content
Abstract
Sugarcane white leaf disease is an epidemic that has caused greatly damage to the sugarcane industry. Matsumuratettix hiroglyphicus is a vector of this disease.One method that used to break the epidemic cycle is the vector elimination by using insecticide. The objective of this study was to evaluate the effectiveness of dinotefuran to eliminate M. hiroglyphicus that collected from 4 provinces, including UdonThani, NakhonRatchasima, Kanchanaburi and KamphaengPhet. The insect vectors that showed the highest and lowest susceptibilities to dinotefuran were M. hiroglyphicus collected from KamphaengPhet and UdonThani that showed LC50 values: 0.22 and 1.27 ppm at 48 hrs after treatment, respectively. However, dinotefuran at 10ppm was effective to eliminate M. hiroglyphicus nearly 100%.
Article Details
References
ศักดิ์ชัย คุณมี และ ยุพา หาญบุญทรง. 2561. การใช้สารฆ่าแมลงที่เหมาะสมต่อช่วงอายุอ้อยเพื่อการป้องกันแมลงพาหะ Matsumuratettix hiroglyphicus (Matsumura) นำโรคใบขาวอ้อย. แก่นเกษตร 46 ฉบับพิเศษ 1: 183-188.
Arthur, F.H. and E. A. Fontenot. 2013. Efficacy of dinotefuran (Alpine® spray and dust) on six species of stored product insects. Journal of Stored Products Research 55: 55-61.
Corbel, V., M.S. Zaim, and J.M. Hougard. 2004. Dinotefuran: a potential neonicotinoid insecticide against resistant mosquitoes. Journal of Medical Entomology 41: 712-717.
Hanboonsong, Y. and Y. Kobori. 2017. Effects of selected insecticides on Matsumuratettix hiroglyphicus(Matsumura), a vector of sugarcane white leaf disease, and on two natural enemies of the sugarcane stem borer in sugarcane fields. Sugar Tech 19: 573-578.
Hanboonsong, Y., C. Choosai, S. Panyim, and S. Damak. 2002. Transovarial transmission of sugarcane white leaf phytoplasma in the insect vector Matsumuratettix hiroglyphicus (Matsumura). Insect Molecular Biology 11: 97-103.
Hanboonsong, Y., W. Ratthison, C. Choosai, and P. Sirithorn. 2006. Transmission of sugarcane white leaf phytoplasma by Yamatotettixflavovittatus, a new leafhopper vector. Journal of Economic Entomology 99: 1531-1537.
Kiriyama, K. and K. Nishimura. 2002. Structural effects of dinotefuran and analogues in insecticidal and neural activities. Pest Management Science 58: 669-676.
Mokbel, E. S. and A. I. Mohamed. 2009. Development of resistance in field strain of Aphis craccivora to the dinotefuran insecticides from the new class neonicotinoids and its effect on some enzymes content. Egyptian Academic Journal of Biological Science 1: 65-69.
Qu, C., W. Zhang, F. Li, G. Tetreau, C. Luo and R. Wang. 2017. Lethal and sublethal effects of dinotefuran on two invasive whiteflies, Bemisia tabaci (Hemiptera: Aleyrodidae). Journal of Asia-Pacific Entomology 20: 325-330.
SAS Institute. 2000. SAS Online Doc, version 8. SAS Institute, Cary, NC.Wakita, T., K. Kinoshita, E. Yamada, N. Yasui, N. Kawahara, A. Naoi, M. Nakaya, K. Ebihara, H. Matsuno and K. Kodaka. 2003. The discovery of dinotefuran: a novel neonicotinoid. Pest Management Science 59: 1016-1022.