81 resultados para Chrysomelidae
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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We evaluated oil and powder formulations of Melia azedarach for controlling larvae of Diabrotica speciosa (Germar) in corn and plant enhancement. Five concentrations of each formulation were evaluated and compared to fipronil (negative control) and distilled water (positive control). After treatment, the number of surviving insects (larvae, pupae, and adults), the adult body weight, the sex ratio, and the longevity were recorded, while the height, dry weight of aerial part and roots, and number of leaves of plants were measured. The oil formulation at 4.0 mL reduced the larvae population of D. speciosa similarly to the insecticide fipronil, which resulted in greater height, dry weight of the root system, and number of leaves. Powder formulation at concentrations of 40, 80, and 160 mg caused larval mortality above 80%; however, these concentrations did not prevent reduction of plant height and dry weight of aerial part. Further studies assessing the residual period of M. azedarach control against D. speciosa larvae and its phytotoxicity, which are common traits associated with azadirachtin application, are necessary to subsidize the next steps of this alternative control strategy.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The genus Lamprosoma Kirby, 1818 includes 128 neotropical species and 54 of them are recorded from Brazil (Monros, 1960). The first species with a described larva was L. seraphinum Lacordaire. After that, larvae and pupae of three species were described: L. bicolor Kirby, 1818, L. chorisiae Monros, 1948 and L. azureum Germar, 1824. Fiebrig (1910) described the larva of L. seraphinum Lacordaire, collected on Teminalia hassleriana Chod. (Combretaceae) of Paraguay. Moreira (1913) described L. bicolor collected on Terminalia catappa L., in Rio de Janeiro. According to him, this tree was introduced from Molucas Islands, in Oceania. He also considered it probable that L. bicolor lived on one native species of Terminalia or on another species of Combretaceae and adaptated itself to live on Terminalia catappa. Monros (1949) described L. chorisiae collected on Chorisia speciosa and Ch. insignis [ Ceiba speciosa (A. St.-Hil., A. Juss. & Cambess.) Ravenna and Ceiba insignis (Kunth) P. E. Gibbs & J. Semir] (Bombacaceae) ("" palos borrachos"") in Tucuman. Caxambu and Almeida (1999) described L. azureum collected on Psidium cattleianum Sabine (Myrtaceae)(""araca""), in Parana state. Herein, the larva and pupa of L. amethystinum collected on Terminalia catappa amendoeira-da-praia"", "" chapeu-de-sol"") in Campinas, Sao Paulo state, are described and illustrated.
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Diabrotica speciosa (Germar) is an economically important pest of Neotropical cultures and represents a quarantine risk for Neartic and Paleartic Regions. Despite its agricultural importance, few studies have been done on mating behavior and chemical communication, which has delayed the development of behavioral techniques for population management, such as the use of pheromone traps. In this study, we determined 1) the age at first mating; 2) diel rhythm of matings; 3) number of matings over 7 d; 4) the sequence of D. speciosa activities during premating, mating, and postmating; 5) the duration of each activity; and 6) response to male and female conspecific volatiles in Y-tube olfactometer. The first mating occurred between the third and seventh day after adult emergence and the majority of pairs mated on the fourth day after emergence. Pairs of D. speciosa showed a daily rhythm of mating with greater sexual activity between the end of the photophase and the first half of the scotophase. During the 7 d of observation, most pairs mated only once, although 30% mated two, three, or four times. In a Y-tube olfactometer, males were attracted by virgin females as well as by the volatile compounds emitted by females. Neither males nor their volatiles were attractive to either sex. Our observation provide information about mating behavior of D. speciosa, which will be useful in future research in chemical communication, such as identification of the pheromone and development of management techniques for this species using pheromone traps.
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Reprinted from N. Y. State Museum bulletin 68, Aquatic insects in N. Y. State.
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"Issued March 1981"--T.p. verso.
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Issued Aug. 1976.
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Issued June 1979.
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O ciclo de vida de Spaethiella tristis (Boh.), um besouro que se alimenta de folhas de dende (Elaeis guineensis Jacq.), é de mais ou menos 56 dias, sob condicoes de laboratorio. Seus inimigos naturais, coletados de um plantio de dende na Estacao Experimental do Rio Urubu/CPAA, foram: Paecilomyces farinosus (Samson & Evans) e Metarhizium sp. parasitando larvas e adultos, respectivamente, e uma especie nao identificada de Chalcididae (Hymenoptera), parasitando larvas. O dano da folha causado por S. tristis é agravado pela infeccao do fungo Pestalotiopsis guepini (Desm.) Steyaert, que se instala nos ferimentos feitos pelo inseto.
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Understanding the effects of different types and quality of data on bioclimatic modeling predictions is vital to ascertaining the value of existing models, and to improving future models. Bioclimatic models were constructed using the CLIMEX program, using different data types – seasonal dynamics, geographic (overseas) distribution, and a combination of the two – for two biological control agents for the major weed Lantana camara L. in Australia. The models for one agent, Teleonemia scrupulosa Stål (Hemiptera:Tingidae) were based on a higher quality and quantity of data than the models for the other agent, Octotoma scabripennis Guérin-Méneville (Coleoptera: Chrysomelidae). Predictions of the geographic distribution for Australia showed that T. scrupulosa models exhibited greater accuracy with a progressive improvement from seasonal dynamics data, to the model based on overseas distribution, and finally the model combining the two data types. In contrast, O. scabripennis models were of low accuracy, and showed no clear trends across the various model types. These case studies demonstrate the importance of high quality data for developing models, and of supplementing distributional data with species seasonal dynamics data wherever possible. Seasonal dynamics data allows the modeller to focus on the species response to climatic trends, while distributional data enables easier fitting of stress parameters by restricting the species envelope to the described distribution. It is apparent that CLIMEX models based on low quality seasonal dynamics data, together with a small quantity of distributional data, are of minimal value in predicting the spatial extent of species distribution.
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Prickly acacia, Vachellia nilotica subsp. indica (syn. Acacia nilotica subsp. indica) (Fabaceae), a major weed in the natural grasslands of western Queensland, has been a target of biological control since the 1980s with limited success to date. Surveys in India, based on genetic and climate matching, identified five insects and two rust pathogens as potential agents. Host-specificity tests were conducted for the insects in India and under quarantine conditions in Australia, and for the rust pathogens under quarantine conditions at CABI in the UK. In no-choice tests, the brown leaf-webber, Phycita sp. A, (Lepidoptera: Pyralidae) completed development on 17 non-target plant species. Though the moth showed a clear preference for prickly acacia in oviposition choice trials screening of additional test-plant species was terminated in view of the potential non-target risk. The scale insect Anomalococcus indicus (Hemiptera: Lecanodiaspididae) developed into mature gravid females on 13 out of 58 non-target plant species tested. In the majority of cases very few female scales matured but development was comparable to that on prickly acacia on four of the non-target species. In multiple choice tests, the scale insect showed a significant preference for the target weed over non-target species tested. In a paired-choice trial under field conditions in India, crawler establishment occurred only on prickly acacia and not on the non-target species tested. Further choice trials are to be conducted under natural field conditions in India. A colony of the green leaf-webber Phycita sp. B has been established in quarantine facilities in Australia and host-specificity testing has commenced. The gall-rust Ravenelia acaciae-arabicae and the leaf-rust Ravenelia evansii (Puccineales: Raveneliaceae) both infected and produced viable urediniospores on Vachellia sutherlandii (Fabaceae), a non-target Australian native plant species. Hence, no further testing with the two rust species was pursued. Inoculation trials using the gall mite Aceria liopeltus (Acari: Eriophyidae) from V. nilotica subsp. kraussiana in South Africa resulted in no gall induction on V. nilotica subsp. indica. Future research will focus on the leaf-weevil Dereodus denticollis (Coleoptera: Curculionidae) and the leaf-beetle Pachnephorus sp. (Coleoptera: Chrysomelidae) under quarantine conditions in Australia. Native range surveys for additional potential biological control agents will also be pursued in northern and western Africa.
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Los pinos son afectados por plagas y e nfermedades debido a diferentes factores como: incendios forestales, periodos de sequías prolongados, el manejo inadecuado del bosque y la falta de aplicación de prácticas silviculturales. Uno de los insectos que más se reporta atacando los pinos es el gor gojo descortezador del pino Dendroctonus frontalis. Ataques por este insecto fueron reportados en el departamento de Nueva Segovia en el periodo comprendido entre 1999 al 2001. D. frontalis afectó aproximadamente 32,359.41 ha. de bosques equivalentes al 50 % del área boscosa de Nueva Segovia y unos 3 millones m 3 de madera en rollo. Los daños estimados por este ataque se aproximan a los 39 millones de dólares por pérdida de madera en pie y 56 millones de dólares por costo de oportunidad y un cuantioso daño a mbiental. Ante tal situación y debido a la importancia que tiene el recurso forestal en Nicaragua, se realizó una investigación con el objetivo de describir la fluctuación poblacional de todos los insectos asociados a los pinos y sus enemigos naturales. El estudio se realizó en el Departamento de Nueva Segovia, específicamente en los Municipios de Dipilto y El Jicaro en el periodo comprendido entre Febrero 2004 a Enero 2005. El monitoreo se realizó cada 15 días y se utilizaron trampas del tipo “Lindgren non sticky funnel trap®” de doce embudos con vaso colector, llevando adherido un paquete de feromona sintetica (frontalin ®) y un depósito de aguarrás (pine turpentine). Los resultados obtenidos fueron los siguientes. Se describió la fluctuación poblacional d e insectos de la familia Scolytidae. Las poblaciones de insectos de esta familia fueron estadísticamente similares en ambos municipios. También, se describió la fluctuación poblacional de insectos del Orden Coleóptera y se les identificó hasta el nivel de familia. El número de insectos de la familia Curculionidae, Cerambycidae, Scarabaeidae, Coccinellidae fueron mayores estadísticamente en Dipilto que en El Jicaro. Por el contrario, los insectos de la familia Buprestidae y Elateridae fueron mayores en El Ji caro en comparación con el municipio de Dipilto. El número de insectos de las familias Chrysomelidae, Carabidae, Nitidullidae, Lampiridae, Tenebrionidae fueron estadísticamente similares en ambos municipios. En este mismo estudio, se describió la fluctuaci ón poblacional de insectos depredadores encontrados en el bosque de pino. Los insectos de la familia Staphylinidae fueron estadísticamente mayores en Dipilto que en El Jicaro, por el contrario las poblaciones de insectos Trogostidae, Histeridae y Cucujidae fueron estadísticamente similares en Dipilto y El Jicaro. Es importante señalar que en comparación con los otros depredadores, la familia Trogostidae se encontró en mayor númer o a lo largo de todo el estudio