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Original Articles

Efficacy of Spodoptera exigua multiple nucleopolyhedrovirus as a biological insecticide for beet armyworm control in greenhouses of southern Spain

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Pages 221-232 | Received 22 May 2006, Published online: 26 Mar 2007

Keep up to date with the latest research on this topic with citation updates for this article.

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Mahmoud F. Ismail, Aly Fahmy Aly, Salwa S. Abdel-Wahab & Amira A El-Sayed. (2023) Synthesis, Characterization and Insecticidal Activity against Cotton Leaf Worm of New Heterocyclics Which Scaffold on Hydrazide-Hydrazone Derivative. Polycyclic Aromatic Compounds 43:2, pages 1288-1308.
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Juliana Gómez, Judith Guevara, Paola Cuartas, Carlos Espinel & Laura Villamizar. (2013) Microencapsulated Spodoptera frugiperda nucleopolyhedrovirus: insecticidal activity and effect on arthropod populations in maize. Biocontrol Science and Technology 23:7, pages 829-846.
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Willem J. RavensbergWillem J. Ravensberg. 2011. A Roadmap to the Successful Development and Commercialization of Microbial Pest Control Products for Control of Arthropods. A Roadmap to the Successful Development and Commercialization of Microbial Pest Control Products for Control of Arthropods 129 170 .
Rodrigo Lasa, Trevor Williams & Primitivo Caballero. (2009) The attractiveness of phagostimulant formulations of a nucleopolyhedrovirus-based insecticide depends on prior insect diet. Journal of Pest Science 82:3, pages 247-250.
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Rosa Murillo, Delia Muñoz, M. Carmen Ruíz-Portero, M. Dolores Alcázar, José E. Belda, Trevor Williams & Primitivo Caballero. (2007) Abundance and genetic structure of nucleopolyhedrovirus populations in greenhouse substrate reservoirs. Biological Control 42:2, pages 216-225.
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Rodrigo Lasa, Primitivo Caballero & Trevor Williams. (2007) Juvenile hormone analogs greatly increase the production of a nucleopolyhedrovirus. Biological Control 41:3, pages 389-396.
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