Abbott, W. S. 1925. A method of computing the effectiveness of an insecticide. Journal of Economic Entomology 18: 265-267.
Altaf Sabri, M., Sajid Aslam, M., Hussain, D. and Saleem, M. 2016. Evaluation of lethal response of biorational insecticides against Spodoptera litura (Lep.: Noctuidae). Journal of Entomology and Zoology Studies 4: 270-274.
Aramideh, Sh., Safaralizadeh, M. H., Pourmirza, A. A. and Parvizi, R. 2005. Investigation of susceptibility of larval instar, pupa and prepupa of Spodoptera exigua H. (Lep.: Noctuidae) to Steinernema carpocapsae nematodes in laboratory conditions and on sugar beet. Journal of Agricultural Science and Natural Resources of Gorgan 12: 159-166. (In Persian)
Bengochea, P., Sánchez-Ramos, I., Saelices, R., Amor, F., del Estal, P., Viñuela, E., Adán, Á., López, A., Budia, F. and Medina, P. 2014. Is emamectin benzoate effective against the different stages of Spodoptera exigua (Hübner) (Lep.: Noctuidae). Irish Journal of Agricultural and Food Research 53: 37- 49.
Cai, Y., Cheng, Z., Li, C., Wang, F., Li, G. and Pang, Y. 2010. Biological activity of recombinant Spodoptera exigua multicapsid nucleopolyhedrovirus against Spodoptera exigua larvae. Biological Control 55: 178–185.
Cisneros, J., Goulson, D., Derwent, L. C., Penagos, D. I., Hernandez, O. and Williams, T. 2002. Toxic effects of spinosad on predatory insects. Biological Control 23: 156–163.
Cleveland, C. B., Mayes, M. A. and Cryer, S. A. 2001. An ecological risk assessment for spinosad use on cotton. Pest Management Science 58: 70-84.
Darsouei, R., Karimi, J., Ghadamyari, M. and Hosseini, M. 2018. Natural enemies of the sugar beet army worm,
Spodoptera exigua (Lep.: Noctuidae) in Northeast Iran.
Bulletin of Iranian Entomological Society 127: 446-464. (In Persian)
El-Sayed, A. and El-Sheikh. 2014. Comparative toxicity and sublethal effects of emamectin benzoate, lufenuron and spinosad on
Spodoptera littoralis Boisd. (Lep.: Noctuidae).
Crop Protection67: 228-234.
Goodarzi, M., Fathipour, Y. and Talebi, A. A. 2015. Antibiotic resistance of canola cultivars affecting demography of Spodoptera exigua (Lep.: Noctuidae). Journal of Agricultural Science and Technology 17: 23–33
Hernandez-Martinez, P., Ferre, J. and Escriche, B. 2008. Susceptibility of Spodoptera exigua to 9 toxins from Bacillus thuringiensis. Journal of Invertebrate Pathology 97: 245–250.
Hu, J., Wang, X., Zhang, Y., Zheng, Y., Zhou, S. and Huang, G. H. 2016. Characterization and growing development of Spodoptera exigua (Lep.: Noctuidae) larvae infected by Heliothis virescens ascovirus 3h (HvAV-3h). Journal of Economic Entomology 109: 2020–2026.
Hashemitassuji, A., Hassan, M. Safaralizadeh, Aramideh, Sh. and Hashemitassuji, Z. 2015. Effects of Bacillus thuringiensis var. kurstaki and Spinosad on three larval stages 1st, 2nd and 3rd of tomato borer, Tuta absoluta (Meyrick) (Lep.: Gelechiidae) in laboratory conditions. Archives of Phytopathology and Plant Protection 48: 377–384.
Huang, S., Li, X., Li, G. and Jin, D. 2018. Effect of Bacillus thuringiensis CAB109 on the growth, development, and generation mortality of Spodoptera exigua (Hübner) (Lep.: Noctuidae). Egyptian Journal of Biological Pest Control 28: 1-5.
Kheyri, M. 1999. The most important pest of sugar beet in Iran and their control. Agricultural Research, Education Organization 34: 1-14. (In Persian)
Lasa, R., Aki, I., Itxaso, P., Jose, I., Belda, E., Williams, T. and caballero, P. 2007. Efficacy of Spodoptera exigua multiple nucleopolyhedrovirus as a biological insecticide for beet armyworm control in greenhouses of southern Spain. Biocontrol Science and Technology 17: 221-232.
Liburd, O. E., Funderburk, J. E. and Olson, S. M. 2000. Effect of biological and chemical insecticides on Spodoptera species (Lep.: Noctuidae) and marketable yields of tomatoes. Journal of Applied Entomology 124: 19-25.
Lin, H. F., Yang, X. J., Gao, Y. B. and Li, S. G. 2007. Pathogenicity of several fungal species on Spodoptera litura. Journal of Applied Ecology 48: 284-292.
Liu, Y., Li, X., Chao, Z., Liu, F. and Wei, M. 2016. Toxicity of nine insecticides on four natural enemies of
Spodoptera exigua.
Scientific Reports 6: 1-9.
Magholifard, Z., Hesami, S. H., Marzban, R. and Salehi Jouzani, G. H. 2018. Pathogenic effects of three Nucleopolyhedrovirus,
Spodoptera littoralis NPV,
Helicoverpa armigera NPV,
Spodoptera litura NPV on life stages of Egyptian cotton leaf worm
Spodoptera littoralis.
Entomology and Phytopathology 58: 203-218. (In Persian)
Moadeli, T., Hejazi, M. J. and Golmohammadi, G. 2014. Lethal effects of pyriproxyfen, spinosad and indoxacarb and sublethal effects of pyriproxyfen on the 1st instars larvae of beet armyworm, Spodoptera exigua (Hubner) (Lep.: Noctuidae) in the Laboratory. Journal of Agriculture Science and Technology 16: 1217-1227.
Mostafa, M. A. M., Kákai, Á., Awad, M. and Fónagy, A. 2016. Sublethal effects of spinosad and emamectin benzoate on larval development and reproductive activities of the cabbage moth, Mamestra brassicae L. (Lep.: Noctuidae). Crop Protection 90: 197-204.
Moulton, J. K., Pepper, D. A. and Dennehy, T. J. 2000. Beet armyworm (
Spodoptera exigua) resistance to spinosad.
Pest Management Science 56: 842-848.
Parsaeyan, E., Saber, M. and Bagheri, M. 2013. Toxicity of emamectin benzoate and cypermethrin on biological parameters of cotton bollworm, Helicoverpa armigera (Hübner) in laboratory conditions. Journal of crop protection 2: 477-485.
Pourmirza, A. A. 2005. Local variation in susceptibility of Colorado potato beetle (Col.: Chrysomelidae) to insecticide. Journal of Economic Entomology 98: 2176-80.
Pourmirza, A. A. and Kamali, S. A. 2003. Production Nucleopolyhedrovirus on beet army worm (Lep.: Noctuidae). Journal of Agricultural Science 26(1): 79-90. (In Persian).
Rabiya, M. M., Seraj, A. A., Talaee Hasanloee, R. and Rahimi, H. 2005. Effects of MbNPV and Indoxacarb on larvae of Spodoptera exigua (Lep.: Noctuidae), Beet armyworm. Journal of Agricultural Science 34: 89-81. (In Persian).
Reddy, P. P. 2013. Recent advances in crop protection: avermectins. New Delhi: Springer, India. 13–24
Rehan, A. and Shoaib, F. 2014. Selection, mechanism, cross resistance and stability of spinosad resistance in Spodoptera litura (Fabricius) (Lep.: Noctuidae). Crop Protection 56: 10–15.
Reichenbach, N. G. 1985. Response of the western spruce budworm to temperature and dose of a virus, a growth regulator, and an organophosphate. Entomologia Experimentalis et Applicata 38: 57-63.
Santis, E. L., Hernandez, L. A., Martinez, A. M., Campos, J., Figueroa, J. I., Lobit, P., Chavarrieta, J. M., Vinuela, E., Smagghe, G. and Pineda, S. 2012. Long-term foliar persistence and efficacy of spinosad against beet armyworm under greenhouse conditions. Pest Management Science 68: 914–921.
Senthil-Nathan, S. and Kalaivani, K. 2005. Efficacy of nucleopolyhedrovirus and azadirachtin on
Spodoptera litura Fabricius (Lep.: Noctuidae).
Biological Control34: 93-98.
Sharma, P. C. and Pathania, A. K. 2015. Toxicity of some insecticides and biopesticides to Spodoptera litura (fabricius). Indian Journal of Science and Technology 3: 43-50.
Singh, P. and Moore, R. F. 2005. Handbook of Insect Rearing. Elsevier Science Publishers 7: 575- 576.
Sukirno, T., Muhammad, R., Khawaja, G., Salamouny, S. E., Koko, D. S. and Saad Aldawood, A. 2017. The effectiveness of spinosad and neem extract against Spodoptera littoralis (Boisd.) and Spodoptera exigua (Hubner) exploring possibilities to enhance the bio-pesticide persistence with natural UV protectants. Pakistan Journal of Agricultural Science 54: 743-751.
Sun, Y. P. 1950. Toxicity indexes an improved method of comparing the relative toxicity of insecticides. Journal of Economic Entomology 43: 45–53.
Takatsuka, J. and Kunimi, Y. 2002. Lethal effects of Spodoptera exigua nucleopolyhedrovirus isolated in Shiga prefecture, Japan, on larvae of Spodoptera exigua (Lep.: Noctuidae). Applied Entomology and Zoology 37: 93-101.
Talebi-Jahromi, K. 2008. Pesticide Toxicology. Tehran University Press. 4th ed. 507 pp. (In Persian)
Tanada, Y. and Kaya, H. K. 1993. Insect Pathology. Academic Press, London. 666 pp.
Venkateswari, G., Krishnayya, P. V., Rao, P. A. and Murthy, K. V. M. K. 2008. Bio-efficacy of abamectin and emamectin benzoate against Spodoptera litura (Fab.). Pesticide Research Journal 53: 37–49.
Wing, K. D., Sacher, M., Kagaya, Y., Tsurubuchi, Y., Mulderig, L., Connair, M. and Schnee, M. 2000. Bioactivation and mode of action of the oxadiazine indoxacarb in insects. Crop Protection 19: 537–545
Yuana, X., Zhaoa, M., Wei, J., Zhang, W., Wang, B., Khaing, M. and Liang, G. 2017. New insights on the role of alkaline phosphatase from
Spodoptera exigua (Hübner) in the action mechanism of
Bt toxin
Cry2Aa.
Journal of Insect Physiology 98: 101-107.