[138] Wang C, St. Leger RJ. A scorpion neurotoxin increases the potency of a fungal insecti‐
cide. Nature Biotech. 2007; 25 :1455‐1456
[139] Bonning BC. Insect viruses: Biotechnological applications. In: Bonning BC, editor.
Advances in Virus Research. New York: Academic Press; 2006. p. 68
[140] Chang JH, Choi JY, Jin BR, Roh JY, Olszewski JA, Seo SJ, O’Reilly DR, Je YH. An
improved baculovirus insecticide producing occlusion bodies that contain Bacillus
thuringiensis insect toxin. Journal of Invertebrate Pathology. 2003; 84 (1):30‐37
[141] El‐Menofy W, Osman G, Assaeedi A, Salama M. A novel recombinant baculovirus
overexpressing a Bacillus thuringiensis Cry1Ab toxin enhances insecticidal activity.
Biological Procedures Online. 2014; 16 :7. DOI: 10.1186/1480‐9222‐16‐7
[142] Rai M, Ingle A. Role of nanotechnology in agriculture with special reference to manage‐
ment of insect pests. Applied Microbiology and Biotechnology. 2012; 94 :287
[143] Barik TK, Sahu B, Swain V. Nano‐silica—from medicine to pest control. Parasitology
Research. 2008; 103 :253‐258
[144] Gajbhiye M, Kesharwani J, Ingle A, Gade A, Rai M. Fungus mediated synthesis of silver
nanoparticles and its activity against pathogenic fungi in combination of fluconazole.
Nanomedicine. 2009; 5 (4):282‐286
[145] Goswami A, Roy I, Sengupta S, Debnath N. Novel applications of solid and liquid
formulations of nanoparticles against insect pests and pathogens. Thin Solid Films.
2010; 519 :1252‐1257
[146] Owolade OF, Ogunleti DO, Adenekan MO. Titanium dioxide affects disease develop‐
ment and yield of edible cowpea. The Electronic Journal of Environmental, Agricultural
and Food Chemistry. 2008; 7 (50):2942‐2947
[147] Liu F, Wen LX, Li ZZ, Yu W, Sun HY, Chen JF. Porous hollow silica nanoparticles as
controlled delivery system for water‐soluble pesticide. Materials Research Bulletin.
2006; 41 :2268‐2275
[148] Ulrichs C, Mewis I, Goswami A. Crop diversification aiming nutritional security in
West Bengal: Biotechnology of stinging capsules in nature’s water‐blooms. SATSA
Annual Technical Issue. 2006; 10 :1‐ 18
[149] Murugan K, Priyanka V, Dinesh D, Madhiyazhagan P, Panneerselvam C, Subramaniam J,
Suresh U, Chandramohan B, Roni M, Nicoletti M, Alarfaj AA, Higuchi A, Munusamy MA,
Khater HF, Messing RH, Benelli G. Predation by Asian bullfrog tadpoles, Hoplobatrachus
tigerinus, against the dengue vector, Aedes aegypti, in an aquatic environment treated
with mosquitocidal nanoparticles. Parasitology Research. 2015; 114 (10):3601‐3610
[150] Ronia M, Murugana K, Panneerselvama C, Subramaniama J, Nicolettib M, Madhiyazhagana
P, Dinesha D, Suresha U, Khater HF, Weid H, Canalee A, Alarfaj AA, Munusamy MA,
Higuchig A, Benellie G. Characterization and biotoxicity of Hypnea musciformis‐synthe‐
sized silver nanoparticles as potential eco‐friendly control tool against Aedes aegypti and
Plutella xylostella. Ecotoxicology and Environmental Safety. 2015; 121 :31‐38
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