724 resultados para Ampulex compressa


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Ampulex compressa is a cockroach-hunting ampulicid wasp. In this survey we describe its egg, mature larva, along with the 1st and 2nd larval instars and cocoon, with emphasis on the characters considered important to the phylogeny of apoid wasps. It shares the following traits with the Sphecidae: reduced head setae, absence of antennal papilla, three antennal sensilla on antennal orbit, broad and strongly emarginate labrum, and spinneret with prominent raised lips. In common with other Ampulicidae, it has integument of the body granulose and without setae, mandibles with four or five teeth and lacking basal setae, maxillary palp larger than galea and discrete parietal bands. Distinct from the other Ampulicidae, it has a deep median longitudinal groove in the area above the salivary lips, a distinct group of five sensilla on the subgenal area, and lacks spines on the spiracular peritreme. Copyright © 2006 Magnolia Press.

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Aconophora compressa (Hemiptera: Membracidae), a biological control agent introduced against the weed Lantana camara (Verbenaceae) in Australia, has since been observed on several non-target plant species, including native mangrove Avicennia marina (Acanthaceae). In this study we evaluated the suitability of two native mangroves, A. marina and Aegiceras corniculatum (Myrsinaceae), for the survival and development of A. compressa through no-choice field cage studies. The longevity of females was significantly higher on L. camara (57.7 ± 3.8 days) than on A. marina (43.3 ± 3.3 days) and A. corniculatum (45.7 ± 3.8 days). The proportion of females laying eggs was highest on L. camara (72%) followed by A. marina (36%) and A. corniculatum (17%). More egg batches per female were laid on L. camara than on A. marina and A. corniculatum. Though more nymphs per shoot emerged on L. camara (29.9 ± 2.8) than on A. marina (13 ± 4.8) and A. corniculatum (10 ± 5.3), the number of nymphs that developed through to adults was not significantly different. The duration of nymphal development was longer on A. marina (67 ± 5.8 days) than on L. camara (48 ± 4 days) and A. corniculatum (43 ± 4.6 days). The results, which are in contrast to those from previous glasshouse and quarantine trials, provide evidence that A. compressa adults can survive, lay eggs and complete nymphal development on the two non-target native mangroves in the field under no-choice condition.

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The membracid Aconophora compressa Walker, a biological control agent released in 1995 to control Lantana camara (Verbenaceae) in Australia, has since been collected on several nontarget plant species. Our survey suggests that sustained populations of A. compressa are found only on the introduced nontarget ornamental Citharexylum spinosum (Verbenaceae) and the target weed L. camara. It is found on other nontarget plant species only when populations on C. spinosum and L. camara are high, suggesting that the presence of populations on nontarget species may be a spill-over effect. Some of the incidence and abundance on nontarget plants could have been anticipated from host specificity studies done on this agent before release, whereas others could not. This raises important issues about predicting risks posed by weed biological control agents and the need for long-term postintroduction monitoring on nontarget species.

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The plant phenotypic preference and performance of Aconophora compressa, a biocontrol agent for Lantana camara in Australia, were assessed. Overall, there were no significant trends of A. compressa favouring any one particular phenotype. However, there was a gradual decrease in performance through subsequent generations, with populations of A. compressa dying out on two phenotypes. Females did not show preference for any particular lantana phenotype, ovipositing similarly on all five phenotypes presented in choice trials and all 16 phenotypes in no-choice trials. Nymphs developed on all 16 phenotypes tested. Percent development and time to complete development were not significant in the first generation but were significant in the second generation. There was a general decrease in performance with generation. However, this was probably due to rising temperatures with season rather than an effect of phenotype. These results suggest that A. compressa should establish on all phenotypes within its geographic range.

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Aconophora compressa Walker (Hemiptera: Membracidae) was released in 1995 against the weed lantana in Australia, and is now found on multiple host plant species. The intensity and regularity at which A. compressa uses different host species was quantified in its introduced Australian range and also its native Mexican range. In Australia, host plants fell into three statistically defined categories, as indicated by the relative rates and intensities at which they were used in the field. Fiddlewood (Citharexylum spinosum L.: Verbenaceae) was used much more regularly and at higher densities than any other host sampled, and alone made up the first group. The second group, lantana (Lantana camara L.: Verbenaceae; pink variety) and geisha girl (Duranta erecta L.: Verbenaceae), were used less regularly and at much lower densities than fiddlewood. The third group, Sheena’s gold (another variety of D. erecta), jacaranda (Jacaranda mimosifolia D. Don: Bignoniaceae) and myoporum (Myoporum acuminatum R. Br.: Myoporaceae), were used infrequently and at even lower densities. In Mexico, the insect was found at relatively low densities on all hosts relative to those in Australia. Densities were highest on L. urticifolia, D. erecta and Tecoma stans (L.) Juss. ex Kunth (Bignoniaceae), which were used at similar rates to one another. It was found also on a few other verbenaceous and non-verbenaceous host species but at even lower densities. The relative rate at which Citharexylum spp. and L. urticifolia were used could not be assessed in Mexico because A. compressa was found on only one plant of each species in areas where these host species co-occurred. The low rate at which A. compressa occurred on fiddlewood in Mexico is likely to be an artefact of the short-term nature of the surveys or differences in the suites of Citharexylum and Lantana species available there. These results provide further incentive to insist on structured and quantified surveys of non-target host use in the native range of potential biological control agents prior to host testing studies in quarantine.

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Abstract In weed biocontrol, similarity of abiotic factors between the native and introduced range of a biocontrol agent is critical to its establishment and effectiveness. This is particularly the case for weeds that have a wide geographical distribution in the native range. For such weeds, the choice of a specialist insect that has narrow tolerance limits to important abiotic factors can diminish its ability to be an effective biocontrol agent. The membracid Aconophora compressa was introduced in Australia from Mexico for biocontrol of Lantana camara, a plant with a wide climatic tolerance. In this study we investigated the effect of constant and alternating temperatures on A. compressa survival. Longevity of adults and nymphs declined with increasing temperatures, and at 39°C individuals survived for less than a day. At lower temperatures, nymphs survived longer than adults. Survival at alternating temperatures was longer than at constant temperatures, but the general trend of lower survival at higher temperatures remained. Spatially and temporally, the climatic tolerance of A. compressa appears to be a subset of that of lantana, thereby limiting its potential impact.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Nel corso degli ultimi decenni, ha assunto importanza crescente il tema della sicurezza e dell’affidabilità degli impianti dell’industria di processo. Tramite l’analisi di affidabilità è possibile individuare i componenti critici di un impianto più a rischio. Nel presente lavoro di tesi è stata eseguita l’analisi di affidabilità di tre impianti dello stabilimento SOL di Mantova: l’impianto di vaporizzazione azoto a bassa pressione, l’impianto di vaporizzazione azoto a media pressione e l’impianto di produzione di aria sintetica. A partire dai diagrammi P&ID degli impianti si è effettuata l’analisi delle possibili modalità di guasto degli impianti stessi tramite la tecnica FMECA, acronimo di Failure Modes & Effects Criticality Analisys. Una volta definite le modalità di guasto degli impianti, si è proceduto a quantificarne l’affidabilità utilizzando la tecnica FTA, acronimo di Fault Tree Analisys. I risultati ottenuti dall’analisi degli alberi dei guasti, hanno permesso di individuare gli eventi primari che maggiormente contribuiscono al fallimento dei sistemi studiati, consentendo di formulare ipotesi per l’incremento di affidabilità degli impianti.

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Progetto di un sistema di controllo della pressione dellʼaria compressa in un serbatoio. In particolare, dopo aver introdotto gli impianti ad aria compressa e mostrato i vari parametri di tali impianti, si vedrà̀ un modo di progettare un sistema di controllo che permetta di inviare allʼutenza una portata di aria che consenta di mantenere costante la pressione nel serbatoio di accumulo, dal quale lʼutenza preleva la portata. Il sistema permetterà di variare allʼoccorrenza lo spazio nocivo (o volume nocivo) del compressore volumetrico dellʼimpianto, in base a quanto volume dʼaria viene richiesto ad ogni ciclo di mandata dallʼutenza (volume dʼaria per ciclo o portata dʼaria); in generale i compressori di questo tipo di impianti possono essere o volumetrici o rotativi, ma in questo lavoro di tesi ci si concentrerà su compressori volumetrici. Il sistema servirà a fare in modo di mantenere la pressione nel serbatoio costante, per evitare dannose sovrappressioni al suo interno (o al contrario pressioni troppo basse), che con lʼausilio di pressostati inducono lo spegnimento del compressore (pressioni troppo basse al contrario ne inducono lʼaccensione se spento), con successivo riavviamento. Quindi il sistema aiuterà a limitare il più possibile il numero di avviamenti, riducendo il consumo energetico dovuto alle correnti di spunto ed evitando di danneggiare il compressore. Per verificare il corretto funzionamento del sistema si utilizzerà un modello simulato del sistema di controllo della pressione nel serbatoio realizzato in ambiente software Simulink. Verrà infine anche quantificato il risparmio economico che si ottiene con lʼintroduzione del sistema.