1,744
Views
4
CrossRef citations to date
0
Altmetric
Research Article

Current status of insecticide resistance in Aphis gossypii and Aphis spiraecola (Hemiptera: Aphididae) under central Indian conditions in citrus

, & | (Reviewing editor:)
Article: 1660494 | Received 22 Jan 2019, Accepted 17 Aug 2019, Published online: 03 Sep 2019

References

  • Abbott, W. S. (1925). A method of computing the effectiveness of an insecticide. Journal of Economic Entomology, 18, 265–22. doi:10.1093/jee/18.2.265a
  • Ahmad, M., Arif, I., & Ahmad, M. (2008). Occurrence of insecticide resistance in field populations of Spodoptera litura (Lepidoptera: Noctuidae) in Pakistan. Crop Protection (guildford, Surrey), 26, 807–809.
  • Ahmad, M., Arif, M. I., & Ahmad, M. (2009). Resistance of Pakistani field populations of Spotted Bollworm Earias Vittella (Lepidoptera: Noctuidae) to pyrethroid, organophosphorus and new chemical insecticides. Pest Management Science, 65, 433–439. doi:10.1002/ps.v65:4
  • Akashe, V. B., Gud, M. A., Shinde, S. K., & Deshpande, A. N. (2009). Influence of weather parameters on Safflower aphid, Uroleucon compositae (Theobald) and its management. International Journal Agriculture Science, 5(2), 453–458.
  • Aldridge, W. N. (1950). Some properties of specific cholinesterase with particular reference to the mechanism of inhibition of diethyl p-nitrophenyl thiphosphate (E605) and analogues. The Biochemical Journal, 46, 451–460. doi:10.1042/bj0460451
  • Andrews, G. L., & Kitten, W. F. (1989). How cotton yields are affected by aphid populations which occur during boll set. Proceedings of the Beltwide Cotton Conference National Cotton Council of America Book, 1, 291–293.
  • Bar-Joseph, M., Marcus, R., & Lee, R. F. (1989). The continuous challenge of citrus tristeza virus control. Annual Review of Phytopathology, 27, 291–316. doi:10.1146/annurev.py.27.090189.001451
  • Benfatto, D., Gafa, M., & Giudice, V. (1970). Efficacia di alcuni insetticidi contro gli afidi degli agrumi. I. Annali dell’Istituto Sperimentale per l’Agrumicoltura, 3–4, 155–174.
  • Blackman, R. L., & Eastop, V. F. (1985). Aphids on the world’s crop: An identification guide. New York: Wiley.
  • Blackman, R. L., & Eastop, V. F. (2000). Aphids on the world’s crops: an identification and information guide. Aphids on the world’s crops: an identification and information guide. Ed. 2: x+ 466 pp.; 39. Chichester [West Sussex] ; New York : Wiley.
  • Brogdon, W. G., Hobbs, J. H., St Jean, Y., Jacques, J. R., & Charles, L. B. (1988). Microplate assay analysis of reduced fenitrothion susceptibility in Haitian Anopheles albimanus. Journal of the American Mosquito Control Association, 4, 152–158.
  • Campbell, P. M., Trott, J. F., Claudianos, K., Smyth, C., Russell, R. J., & Oakeshott, J. G. (1997). Biochemistry of esterases associated with organophosphate resistance in Lucilia cuprina with comparisons to putative orthologues in other diptera. Biochemical Genetics, 35, 17–40.
  • Cartwright, B., 1992. Assessment of damage to watermelon by Aphis gossypii (Homoptera: Aphididae). Proceedings XIX international congress of entomology, China,
  • Chavan, V. M., & Singh, S. J. (2005). Population dynamics and management of aphid vectors of citrus tristeza virus in Maharashtra. Agriculture Science Digest, 25(2), 85–89.
  • Cousin, X., Hotelier, T., Giles, K., Lievin, P., Toutant, J. P., & Chatonnet, A. (1997). Cholinesterase genes server (ESTHER): A database of cholinesterase-related sequences for multiple alignments, phylogenetic relationships, mutations and structural data retrieval. Nucleic Acids Research, 24(1), 132–136.
  • EJF (2007). The deadly chemicals in cotton, environmental justice foundation in collaboration with pesticide action network UK London, UK: Environmental Justice Foundation in collaboration with Pesticide Action Network. ISBN No. 1-904523-10-2.
  • Finney, D. J. (1971). Probit analysis. Cambridge, UK:Cambridge University Press.
  • Fournier, D., Bride, J. M., Hoffman, F., & Karch, F. (1992). Acetylcholine esterase: Two types of modifications confer resistance to insecticide. Journal of Biology Chemistry, 267(20), 14270–14274.
  • Gavkare, O., Kumar, S., & Sharma, P. L. (2013). Evaluation of some novel insecticides against Myzus persicae (Sulzer). The Bioscan, 8(3), 1119–1121.
  • Herron, G. A., & Wilson, L. J. (2010). Neonicotinoid resistance in Aphis gossypii Glover (Aphididae: Hemiptera) from Australian cotton. Australian Journal of Entomology, 50, 93–98. doi:10.1111/aen.2011.50.issue-1
  • Hong, J., Han, K. S., & Boo, K. S. (2003). Sex pheromone of Aphis spiraecola (Homoptera: Aphididae): composition and circadian rhythm in release. Journal of Asia-Pacific Entomology, 6(2), 159–165. doi:10.1016/S1226-8615(08)60181-8
  • Kaufman, P. E., Nunez, S. C., Mann, R. S., Christopher, G. J., & Scharfa, E. (2010). Nicotinoid and pyrethroid insecticide resistance in houseflies (Diptera: Muscidae) collected from Florida dairies. Pest Management Science, 66, 290–294. doi:10.1002/ps.v66:3
  • Kerns, L., & Gaylor, M. I. (1992). Insecticide resistance in field populations of the cotton Aphids (Homoptera: Aphidiclae) J. Journal of Economic Entomology, 85(1), 1–8. doi:10.1093/jee/85.1.1
  • Khalequzzaman, M., & Nahar, J. (2013). Relative toxicity of some insecticides and azadirachtin against four crop infesting aphid species. University Journal of Zoology Rajshahi University, 2008(27), 31–34.
  • Komazaki, S., Sakagami, Y., & Korenaga, R. (1979). Overwintering of aphids on citrus trees. Japanese Journal of Applied Entomology and Zoology, 23, 246–250. doi:10.1303/jjaez.23.246
  • Kulkarni, U. S., Khandar, R. S., & Madankar, S. S. (2017). Monitoring of resistance to conventional insecticides in field populations of Aphis gossypii Glover from major cotton growing areas of Vidarbha. International Journal of Chemical Studies, 5(6), 1136–1139.
  • LeOra Software. (1987). POLO-PC a user’s guide to Probit or Logit analysis. Berkeley, CA: Author.
  • Lowry, O. H., Rosebrough, N. J., Farr, A. L., & Randall, R. J. (1951). Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry, 193: 265. (The original method).
  • Naidu, R. (1980). Aphis citricola van der Goot - a new vector of citrus tristeza virus in India. Current Science, 49(17), 668–669.
  • O’Brien, P. J., Abdel-Aal, Y. A., Ottea, J. A., & Graves, J. B. (1992). Relationship of insecticide resistance to carboxylesterases in aphis gossypii (Homoptera: Aphididae) from Midsouth cotton. Journal of Economic Entomology, 85(3), 651–657. doi:10.1093/jee/85.3.651
  • Owusu, E. O., Horiike, M., & Hirano, C. (1996). Polyacrylamide gel electrophoretic assessment of esterases in cotton aphid (Homoptera: Aphididae) resistance to dichlorvos. Journal of Economic Entomology, 89, 302–306. doi:10.1093/jee/89.2.302
  • Pena Martinez, R., Villegas Jimenez, N., Lomeli Flores, J. R., & Trejo Loyo, A. G., 2004. Monitoring citrus aphids in Mexico. Aphids in a new millennium Proceedings of the Sixth International Symposium on Aphids, September 2001, Rennes, France, pp. 51–357.
  • Powell, C. A., Pelosi, R. R., Burton, M. S., Rundell, P. A., Ritenour, M. A., & Bullock, R. C. (2005). Natural field spread of decline and nondecline inducing isolates of citrus tristeza virus in Florida after the introduction of the brown citrus aphid. HortScience, 40(3), 691–693. doi:10.21273/HORTSCI.40.3.691
  • Raccah, B., Loebenstein, G., & Singer, S. (1980). Aphid-transmissibility variants of citrus tristeza virus in infected citrus trees. Phytopathology, 70, 89–93. doi:10.1094/Phyto-70-89
  • Robertson, J. L., Russell, R. M., Priesler, H. K., & Savin, N. E. (2007). Bioassays with Arthropods, second ed. Boca Raton, FL: CRC.
  • Roistacher, C.N, & Gumpf, D.J. (1984). Transmission of tristeza and seedling yellows tristeza virus by small populations of aphis gossypii. Plant Disease, 68, 494–496.
  • Sharma, S. R. (1989). Factors affecting vector transmission of citrus tristeza virus in south India. Zentralblatt für Mikrobiologie, 144(4), 283–294. doi:10.1016/S0232-4393(89)80092-7
  • Slosser, J. E., Pinchak, W. E., & Rummel, D. R. (1989). A review of known and potential factors affecting the population dynamics of the cotton aphid. The Southwestern Entomologist, 14, 302–313.
  • Song, S. S., Oh, H. K., & Motoyama, N. (1995). Insecticide resistance mechanism in the spiraea aphid, Aphis citricola (van der Goot). Korean Journal of Applied Entomology, 34(2), 89–94.
  • Suzuki, K., & Hama, H. (1998). Carboxylesterase of the cotton aphid, Aphis gossypii Glover. Isoelectric point variants in an organophosphorus insecticide resistant clone. Applied Entomology and Zoology, 33, 11–20.
  • Tiwari, S., Pelz-Stelinski, K., Mann, R. S., & Stelinski, L. L. (2011). Glutathione S transferase and cytochrome P450 activity levels in candidatus liberibacter asiaticus-infected and uninfected Asian citrus Psyllid. Annals of the Entomological Society of America, 104, 297–305. doi:10.1603/AN10128
  • Vennila, S., & Biradar, V. K., 2007. Know your cotton insect pest Aphids. Retrieved from http://www.cicr.org.in/pdf/kycp_aphid.pdf doi:10.1094/PDIS-91-4-0467B
  • Viggiani, G., 1988. Citrus pest in the Mediterranean Basin. Proceedings of the Sixth International Citrus Congress, 1067–1073. doi:10.3168/jds.S0022-0302(88)79586-7
  • Wang, K. Y., Guo, Q. L., Xia, X. M., Wang, H. Y., & Lu, T. X. (2007). Resistance of Aphis gossypii (Homoptera: Aphididae) to selected insecticides on cotton from five cotton production regions in Shandong, China. Journal of Pesticide Science, 32, 372–378. doi:10.1584/jpestics.G06-51
  • Wang, K. Y., Liu, T. X., Yu, C. H., Jiang, X. Y., & Yi, M. Q. (2002). Resistance of Aphis gossypii (Homoptera: Aphididae) to fenvalerate and imidacloprid and activities of detoxification enzymes on cotton and cucumber. Journal of Economic Entomology, 95, 407–413. doi:10.1603/0022-0493-95.2.407
  • Zhang, G. X., & Zhong, T. S. (1990). Experimental studies on some aphid life-cycle patterns and the hybridization of two sibling species in Aphid-Plant genotype interactions. In R. K. Campbel & R. D. Eikenbary (Eds.). Aphid plant genotype interactions. New York, NY: Elsevier Press. doi:10.1099/00221287-136-2-327