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« Previous AbstractLobesia botrana IPM: electrospun polyester microfibers serve as biodegradable sex pheromone dispensers    Next AbstractA human chemosignal modulates frontolimbic activity and connectivity in response to emotional stimuli »

Commun Agric Appl Biol Sci


Title:"Electrospun Mesofibers, a Novel Biodegradable Pheromone Dispenser Technology, Are Combined with Mechanical Deployment for Efficient Ipm of Lobesia Botrana in Vineyards"
Author(s):Hummel HE; Langner SS; Breuer M;
Address:
Journal Title:Commun Agric Appl Biol Sci
Year:2015
Volume:80
Issue:3
Page Number:331 - 341
DOI:
ISSN/ISBN:1379-1176 (Print) 1379-1176 (Linking)
Abstract:"Behaviour modifying pheromones are well known agents for disrupting mating communication of pest insects. For optimal activity, they must be dispensed in time and space at a quantitatively measurable, predetermined release rate covering the flight period of the target species. Pheromones appeal to environmentally conscientious entomologists for their biodegradability, non-toxicity and ecological compatibility. In attempts of combining the virtues of pheromones, suitable slow release dispensers, and their mechanical deployment, an ecologically sensible, reasonably priced and patented procedure was developed and tested with the vineyard pest Lobesia botrana (Lep.: Tortricidae). It is characterized by (1) Electrospun mesofibers with diameters ranging from 0.6 to 3.5 micrometres, containing disruptants and dispensing it by slow release diffusion into the crop, (2) simultaneous application of the fully biodegradable combination of pheromone with Ecoflex polyester mesofiber, (3) combination of mechanical deployment by multi-purpose cultivators of the prefabricated pheromone dispensers with other simultaneous cultivation measures, and thus further reducing labour time and treatment costs. The dispensers are biodegradable within half a year without leaving any objectionable residues. In the standard eco-toxicology tests pheromone dispensers are harmless to non-target organisms. The disruptive effect of one treatment lasts for seven weeks which covers well one of several flight periods of L. botrana"
Keywords:"Animals Insect Control/instrumentation/*methods Moths/drug effects/*physiology Pest Control, Biological/instrumentation/*methods Pheromones/*pharmacology Plant Diseases/parasitology/*prevention & control Sexual Behavior, Animal/drug effects Vitis/*parasit;"
Notes:"MedlineHummel, Hans E Langner, S S Breuer, M eng Evaluation Study Research Support, Non-U.S. Gov't Belgium 2015/01/01 Commun Agric Appl Biol Sci. 2015; 80(3):331-41"

 
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