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1.
J Environ Sci Health B ; 44(5): 442-8, 2009 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-20183048

RESUMO

Decreasing pesticide use in olive groves is central to controlling pathogens and pests such as Bactrocera oleae. This has led to the development of mass trapping devices which not only minimize pesticide use but, with improved efficacy of attractants, also decrease costs associated with pest control and ensures that the quality of olive oil is safe for human consumption. This study was undertaken to test a new device which utilizes reduced quantities of both insecticide (lambda-cyalothrin) as well as the female olive fly pheromone (1,7-dioxaspiro-(5.5)-undecane). The new device was tested against an older device manufactured by the same company. The use of plastic polymers as substrate for encapsulating the pheromone allowed for a slower pheromone release, prolonging the efficacy and duration and thus reducing costs. The density of adult populations was monitored using yellow chromotropic traps that were checked every ten days and the degree of olive infestation, as determined by preimago stages, was assessed by analyzing 100 drupes per plot. Infestation analyses were performed every ten days. The control plot had the lowest density of adults and the highest drupe infestation rate. The new devices were more effective than the older devices in both attracting adults and controlling infestation of drupes. Moreover, the new devices containing reduced amounts of pheromone and insecticide were cheaper and exhibited longer functional efficacy. In addition to the slower release of attractants, the plastic polymers used in these newer devices were also more resistant to mechanical and weather degradations. Results demonstrate that mass trapping can indeed be an effective means of controlling B. oleae via eco-sustainable olive farming.


Assuntos
Controle de Insetos/instrumentação , Controle de Insetos/métodos , Olea/parasitologia , Controle Biológico de Vetores , Tephritidae/crescimento & desenvolvimento , Animais , Qualidade de Produtos para o Consumidor , Humanos , Inseticidas/efeitos adversos , Inseticidas/farmacologia , Olea/química , Feromônios/farmacologia , Tephritidae/efeitos dos fármacos
2.
J Environ Sci Health B ; 42(7): 783-8, 2007.
Artigo em Inglês | MEDLINE | ID: mdl-17763034

RESUMO

Several attempts for evaluating environmental impact of active agents allowed in organic olive farming against Bactrocera oleae have been made, but very few studies were performed contemporaneously on more than one of them. Insects were chosen as indicators because they are known to react very quickly to environmental perturbations, mainly at the community level. In fact, the coenosis is the functional unit interacting with biotic and abiotic environmental parameters. Seven taxa, known for their sensitivity to habitat alterations, were sampled and grouped in functional groups: predators and parasitoids, phytophagouses and pollinators. The coenotic balance between these two functional groups was analyzed. The study was carried out in an organic olive orchard in the municipality of Terranova da Sibari, Cosenza, Southern Italy. The tested active agents (Azadirachtin, Rotenone, Copper Oxychloride) were sprayed twice (end of September and middle October). During the treatments the population dynamics of all the taxa were knocked-down. No one tested compound seems to be harmless to the entomocoenosis, particularly on phytophagouses and pollinators. In truly organic farming it is necessary to provide natural refuge areas to beneficial insects (i.e. pest antagonists) in which no active agents are sprayed and alternative preys could be found.


Assuntos
Agricultura/métodos , Ecossistema , Controle de Insetos/métodos , Inseticidas/farmacologia , Olea , Tephritidae/efeitos dos fármacos , Acebutolol , Animais , Cobre/farmacologia , Limoninas/farmacologia , Olea/parasitologia , Controle Biológico de Vetores , Dinâmica Populacional , Rotenona/farmacologia , Tephritidae/crescimento & desenvolvimento
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