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Influence of Induced Plant Defenses in Cotton and Tomato on the Efficacy of Baculoviruses on Noctuid Larvae
Authors:Kelli Hoover  Michael J Stout  Susan A Alaniz  Bruce D Hammock  Sean S Duffey
Affiliation:(1) Department of Entomology, USA;(2) Department of Environmental Toxicology, University of California, Davis, California, 95616;(3) Present address: Department of Plant and Microbial Biology, University of California, Berkeley, California, 94720;(4) Present address: Department of Entomology, Louisiana State University, 402 Life Sciences Bldg., Baton Rouge, Louisiana, 70803
Abstract:Constitutive phenolase activity of plants has a profound ability to modulate disease in insects caused by baculoviruses. We investigated the influence of damage-induced plant phenolic oxidases in cotton and tomato on mortality caused by two different baculoviruses in their respective hosts, Heliothis virescens (L.) and Helicoverpa zea (Boddie). For both plant species, peroxidase (POD) and phenolic levels were predictive of larval mortality caused by baculoviruses. The higher the POD activity, the lower the mortality in both hosts. Different classes of phenolics (e.g., monohydroxyphenolics vs. catecholic phenolics) in combination with POD activity had different effects on the severity of viral disease depending upon mixture, which implies that viral efficacy is predictable only if total chemical content of the plants is specified. Inhibition of baculoviral disease by plant phenolase activity has potential implications for the compatibility of baculoviruses with induced resistance in IPM programs.
Keywords:Induced resistance  baculovirus  Heliothis virescens  Helicoverpa zea  peroxidase  polyphenol oxidase  oxidative enzymes  tritrophic interactions
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