Pest Management Science 2012-10-01

Effects of buprofezin and diflubenzuron on various developmental stages of Asian citrus psyllid, Diaphorina citri.

Siddharth Tiwari, Paul J Clayson, Emily H Kuhns, Lukasz L Stelinski

文献索引:Pest Manag. Sci. 68(10) , 1405-12, (2012)

全文:HTML全文

摘要

Diaphorina citri populations in Florida are developing resistance to commonly used neurotoxic insecticides. Alternatives to neurotoxins, such as insect growth regulators, are needed to control this season-long subtropical pest to prevent or delay development of insecticide resistance. In the present investigation, two insect growth regulators (IGRs), buprofezin and diflubenzuron, were evaluated against various developmental stages of D. citri.The 0-1-day-old D. citri eggs were more susceptible to buprofezin and diflubenzuron than the 3-4-day-old eggs. Adult emergence was completely suppressed by treating first- or third-instar nymphs with buprofezin or diflubenzuron at 30-240 or 23-184 µg mL(-1) rates respectively. Treatment of fifth-instar nymphs with diflubenzuron at a rate of 184 µg mL(-1) and with buprofezin at 30-240 µg mL(-1) rates resulted in approximately 20 and 15-80% reductions in adult emergence respectively. The mean number of eggs per plant was reduced at 5 days after topical treatment with diflubenzuron. Mean egg hatch per plant was reduced at 5 and 6-15 days after topical treatments with buprofezin and diflubenzuron respectively.Buprofezin and diflubenzuron effectively suppressed D. citri adult emergence. D. citri were more susceptible as early (first-third-instar) than late (fifth-instar) nymphs. Both IGRs inhibited egg production and egg hatch. Reduction in the number of subsequent offspring suggests reduced vertical transmission of Candidatus Liberibacter asiaticus, the pathogen thought to cause citrus greening disease. The present results indicate that both IGRs tested here should be effective tools for rotation in insecticide-based D. citri management programs.Copyright © 2012 Society of Chemical Industry.


相关化合物

  • 噻嗪酮
  • 氟脲杀

相关文献:

Effect of repeated applications of buprofezin and acephate on soil cellulases, amylase, and invertase.

2014-10-01

[Environ. Monit. Assess. 186(10) , 6319-25, (2014)]

Effects of pyriproxyfen and buprofezin on immature development and reproduction in the stable fly.

2012-12-01

[Med. Vet. Entomol. 26(4) , 379-85, (2012)]

Action threshold for applying insect growth regulators to tomato for management of irregular ripening caused by Bemisia argentifolii (Homoptera: Aleyrodidae).

2002-04-01

[J. Econ. Entomol. 95(2) , 372-6, (2002)]

Baseline susceptibility of Planococcus ficus (Hemiptera: Pseudococcidae) from California to select insecticides.

2012-08-01

[J. Econ. Entomol. 105(4) , 1392-400, (2012)]

Compatibility of the entomopathogenic fungus Lecanicillium muscarium and insecticides for eradication of sweetpotato whitefly, Bemisia tabaci.

2005-08-01

[Mycopathologia 160(1) , 35-41, (2005)]

更多文献...