79 resultados para Trichogramma


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Trichogramma Westwood egg parasitoids alone generally fail to suppress heliothine pests when released in established cotton-growing regions. Factors hindering their success include indiscriminate use of detrimental insecticides, compensation for minimal pest larval hatch due to their activity via reduced larval cannibalism or mortality in general, singly laid heliothine eggs avoiding detection and asynchronous development benefiting host over parasitoid. Yet, despite these limitations, relatively large Trichogramma pretiosum Riley populations pervade and effectively suppress Helicoverpa (Hardwick) pests in Australian Bt (Bacillus thuringiensis Berliner)-transgenic cotton, Gossypium hirsutum L., crops, especially in the Ord River Irrigation Area (ORIA) of tropical northern Australia, where their impact on the potentially resistant pest species, Helicoverpa armigera (Hubner), is considered integral to the local insecticide resistance management (IRM) strategy for continued, sustainable Bt-transgenic cotton production. When devoid of conventional insecticides, relatively warm and stable conditions of the early dry season in winter grown ORIA Bt-transgenic cotton crops are conducive to Trichogramma proliferation and biological control appears effective. Further, there is considerable scope to improve Trichogramma's biological control potential, in both the ORIA and established cotton-growing regions, via habitat manipulation. It is proposed that Trichogramma may prove equally effective in developing agricultural regions of monsoonal northern Australia, and that environmental constraints on Trichogramma survival, and those of other natural enemies, require due consideration prior to their successful application in biological control programs.

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En el Centro de Investigación y Reproducción de Controladores Biológicos (CIRCB) de la UNAN, León, se determinó el ciclo biológico de Sitotroga cerealella Olivier , con el objetivo de validar el protocolo de producción de Sitotroga en las nuevas condiciones de laboratorio. La producción masiva de Trichogramma comprende dos fases generales: obtención de huevos de Sitotroga cerealella Olivier, hospedero utilizado para la reproducción masiva; y, la parasitación de esos huevos por Trichogramma . Se han realizado estudios sobre la biología de Sitotroga para mejorar la producción y optimizar la cría de Trichogramma . Se colocaron huevos blancos recién ovipositados y granos de trigo (como sustrato), provenientes de la cría masiva. Estos fueron pu estos en 25 platos petri, a razón de 3:6 (granos: huevos) por plato, diariamente se observaron y anotaron todos los cambios desde huevo hasta pupa. Cuando los adultos emergieron se aislaron en parejas para determinar la postura de huevos, hasta su muerte. A una temperatura y humedad promedio de 29 ºC y 76%, respectivamente, el ciclo biológico de Sitotroga se cumplió en 35.34 días en promedio. La fase de huevo duró 6.2 ± 0.46, larva 16.06 ± 2.62, pupa 5.78 ± 1.29 y adulto 7.3 ± 3.42 días en promedio. La larva pasó por 4 instares larvales: el primero duró 3.57 ± 0.72 días, el segundo 3.43 ± 0.86 días, el tercero 3.28 ± 1.17días y, el cuarto instar y la prepupa duró 5.78 ± 1.57 días. Paralelamente se montó otro ensayo utilizando un marco de incubación de la cría masiva de Sitotroga. Se colocó un termómetro en su interior para medir el comportamiento de la temperatura interna en relación con la temperatura y humedad de la Sala de Incubación donde fue ubicado, manteniendo una relación directamente proporcional durante el ensayo. A los 22 días se traslado al interior de un gabinete de producción para extraer diariamente la producción de huevos y adultos de Sitotroga. Se extrajo un total de 24.22 g de huevos con un promedio de 0.64 g por día; se recolectaron 211g de adultos y 5.7g por día durante 38 días, el 80% de la producción de huevos se obtuvo en los primeros 22 días. Los adultos extraídos pasaron a marcos de oviposición para seguir recolectando huevos hasta su muerte. La temperatura y humedad de las salas de producción del insecto (Sala de Incubación, Sala de Emergencia de adultos y Sala de Oviposición) influyen sobre su desarrollo biológico, manteniendo una óptima producción en un rango entre 70 - 80% y 26 - 30ºC de humedad y temperatura respectivamente.

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A traça-do-tomateiro é uma praga importante do tomate e inseticidas são freqüentemente empregados para o seu controle. Porém, devido ao impacto ambiental e a possibilidade de resistência aos produtos utilizados para o controle do inseto, o controle biológico com o uso de Trichogramma pode ser uma alternativa para eliminar os dois problemas. Neste trabalho foi avaliada em bioensaios de laboratório a eficiência da dose recomendada de inseticidas do grupo químico dos organofosforados, piretróides e benzoiluréia para o controle da traça-do-tomateiro. Foi também avaliada a ocorrência natural de Trichogramma sp. em áreas pulverizadas ou não pulverizadas com inseticidas. A ocorrência do parasitismo natural foi determinada por meio da coleta de folhas em campo contendo ovos de traça-do-tomateiro, a fim de determinar, em avaliações de laboratório, a percentagem de ovos parasitados. Os resultados mostraram que todos os inseticidas testados causaram uma mortalidade de larvas menor que 70%, o que sugere uma eficiência reduzida dos produtos. O parasitóide Trichogramma sp. ocorreu naturalmente em todas as áreas, mas a percentagem de parasitismo foi menor nas áreas pulverizadas. Outros estudos devem ser realizados a fim de avaliar o potencial dos parasitóides locais, provavelmente mais bem adaptados as condições locais, para o controle da traça-do-tomateiro. Se esses organismos forem efetivos, o uso de inseticidas em lavouras de tomate pode ser reduzido.

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Esta publicação tem como objetivo disponibilizar informações acerca da seletividade de alguns agrotóxicos recomendados e utilizados no controle de insetos-praga da cultura do tomateiro sobre o parasitoide de ovos Trichogramma pretiosum, importante agente de controle biológico de lepidópteros-praga dessa cultura, de modo que se possam compatibilizar os métodos biológico e químico de controle de pragas na tomaticultura.

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Fertility life tables were developed for both Trichogramma pretiosum and Trichogramma acacioi reared on Sitotroga cerealella eggs as an alternative host at five different temperatures. The egg parasitoids were first collected from Nipteria panacea eggs, a lepidopterous pest of avocado. Egg parasitoid females were individualized in small glass vials along with 40 eggs of the host during 24 h for parasitization. For evaluation of the parasitism capacity, a similar procedure was adopted, but cardboards with eggs were replaced every day. The net reproductive rate (Ro), intrinsic rate of increase (rm), finite rate of increase (lambda), and mean generation time (T) were estimated. Temperature affected all parameters for both Trichogramma species. The highest fecundity for both species was observed at 25degreesC. Extreme temperatures such as 15degreesC or 35degreesC negatively affect the development rate of both species.

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The aim of this paper was to evaluate the biological aspects of Plutella xylostella and Trichogramma pretiosum in eggs of the F2 generation of P. xylostella under the influence of Bacillus thuringiensis in laboratory conditions. The experiment was conducted in the Laboratorio de Biologia and Criacao de Insetos of Faculdade de Ciencias Agrarias e Veterinarias de Jaboticabal - UNESP reen collars contaminated with strains and commercial product based on B. thuringiensis in the laboratory. The eggs obtained from the F2 generation of P. xylostella evaluated the biological parameters of T. pretiosum. It was observed that some biological characteristics of P. xylostella showed changes by the treatment with B. thuringiensis. The viability of the larvae and pupae stages, pupae weight were the biological parameters more influenced by treatments, with values significantly reduced when compared to control. However, the larvae length and pupae stages and sex ratio were similar in all treatments, with no significant biological variations. Thus, this bacterium isolated from this behavior may provide greater exposure of larvae to other natural enemies as well as generation of adults less viable, which makes them potential programs in pest control, since the interaction of the methods of control is one of the main ways to enhance the biological control of insect pests. It was observed sublethal effects on P. xylostella biology, and B. thuringiensis negative influence on the parasitism capacity and emergency of T. pretiosum.

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The cotton can be damaged by many pests, standing out among them cotton leafworm, responsible for major losses in production, if not controlled properly. A group of natural enemies is the most studied of the family Trichogrammatidae, mainly species of the genus Trichogramma, because of its importance in biological control at the initial stage of development of their hosts. In order to study the natural egg parasitism of Alabama argillacea (Hubner, 1818) (Lepidoptera: Noctuidae) by Trichogramma pretiosum Riley, 1879 (Hymenoptera: Trichogrammatidae) in different phenological stages of transgenic and conventional varieties of cotton (Gossypium hirsutum L.) in the region of Ipameri, GO, it was carried out this experiment from december 2007 to april 2008, in the UEG, State of Goias. The experimental design was in randomized blocks with five treatments consisting of the conventional varieties DeltaOPAL, FMX 966, FMX 993, FMX 910 and NuOPAL transgenic variety, in four replications. In the beginning of oviposition of the A. argillacea it was started the 27 old days plant and the parasitism increased as the availability of eggs of the host, regardless of variety. It was found that the varieties over the vegetative cycle did not show statistical differences on the preference for oviposition by the moth neither on the parasitism. The level of parasitism of eggs of A. argillacea by T. pretiosum varied depending on the density of eggs on plants, not in terms of varieties and phenological stages.

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The introduction of new cotton cultivars in the Midwest region of Brazil resulted in a significant increase in productivity, but the use of inappropriate farming techniques brought many problems to field, as the higher incidence of pests, diseases and weeds. The aim of this work was to study the population dynamics of eggs and larvae of cotton leafworm and natural egg parasitism of the pest by Trichogramma pretiosum Riley (Hymenoptera: Trichogrammatidae) at different phenological stages of conventional and transgenic cultivars (Bollgard I) of cotton was carried out this experiment from December 2007 to April 2008 in Ipameri, Goias State, Brazil. The experimental design was a randomized blocks with five trataments and four replications. The treatments consisting of the conventional cotton cultivars DeltaOPAL, FMX 966, FMX 993, FMX 910 and the cultivar transgenic NuOPAL. Allabama argillacea Hubner (Lepidoptera: Noctuidae) oviposited on all cultivars, not presented differences in relation to oviposition preference. Compared to the average number of eggs of A. argillacea parasitized by T. pretiosum, there were no differences between cultivars. In conventional cultivars, small, medium and large larvae occurred from 34 days after plant emergence until the end of the cycle, while in the transgenic cultivar were found only small caterpillars. Cultivar NuOPAL control cotton leafworm since the first larval stage, and does not interfere in egg parasitism by T. pretiosum compared with other cultivars.

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Two bioassays were performed to evaluate the effect of two biopesticides based on Beauveria bassiana (Bals.) Vuillemin and Metarhizium anisopliae (Metsch.) Sorokin on the biological parameters of Trichogramma atopovirilia Oatman & Platner, 1983. In the first one, displays with S. frugiperda, 1797 eggs were dropped into the biopesticide suspension and offered to the parasitoid females for 24 hours. In the second one, parasitoid females were fed with a suspension containing honey and biopesticide suspension. In both cases, after the parasitoid death they were mantained into a humid chamber to observe fungus sporulation. The experiments were maintained in a climatized chamber at 25 +/- 1 degrees C, RH 70 +/- 10%, and photophase of 14 hours. The longevity and adult mortality, total parasitism, progeny emergency, number of individuals per egg and sexual ratio were analyzed. The biopesticides did not affect the evaluated parameters and no fungus sporulation was observed in dead females. It is possible to assert that the entomopathogenic fungi B. bassiana and M. anisopliae can be used with T. atopovirilia in IPM S. frugiperda systems.

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The aim of this study was to evaluate the selectivity of pesticides to T. pretiosum and T. exiguum in different hosts. The tests were carried out using the LBCI (Laboratorio de Biologia e Criacao de Insetos) methodology based on the IOBC/WPRS methodology for selectivity studies. The hosts used were Anagasta kuehniella, Spodoptera frugiperda and Plutella xylostella eggs. The analysis of the selectivity was carried out for the products triflumuron (20 mL/100 L), etofenproxi (47 mL/100 L) and endosulfan (750 mL/100 L), with distilled water used as a control. Parasitized eggs, percentage of parasitism, percentage of emergence, longevity and sex ratio were evaluated in generations F1 and F2. Endosulfan was the most harmful, inhibiting the parasitism in all hosts. Etofenproxi showed low selectivity to parasitoids. Triflumuron was selective to parasitoid species when eggs of natural hosts were used.