190 resultados para Isoptera


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Caste polyethism has been recorded in some termite species, however the foraging behavior of subterranean termites remains poorly known. Heterotermes tenuis Hagen (Isoptera: Rhinotermitidae) is a subterranean termite that is native to Brazil and is an agricultural and urban pest. The aim of this study was to investigate which caste acts as scouts when searching for food sources and determinate the percentages of each caste present in the foraging territories of field colonies of H. tenuis. Our results showed no significant differences among the caste proportions present in the foraging territories of the three colonies studied in the field. Laboratory experiments showed that minor soldiers were the most frequent initiators of foraging activities. This result suggests that the exploratory phase of the foraging behavior may be regulated by the number of soldiers present in the foraging territories of each colony.

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Significantly more individuals and biomass of flying insects were present at the forest edge than in the understory throughout the year, as monitored by flight interception traps, in Central Amazonia. Numbers and biomass of flying insects increased at higher rates at the edge with rainfall, associated with termite swarming behavior and increased Homopteran density. The most abundant insects were Diptera, Coleoptera, Hymenoptera and Isoptera, whose ranked abundances varied with respect to forest edge and understory, as well as with season.

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In this paper we examine the potential of the termites Armitermes euamignathus Silvestri: 1901 and Embiratermes festivellus (Silvestri, 1901) (Isoptera, Termitidae, Nasutitermitinae) to produce neotenics experimentally. Three nests of the mound-building termite A. euamignathus, from the Brazilian cerrado, had their primary queens removed in August 1994. After 12 months, only one mound survived; it had a normal appearance. In this healthy, orphaned colony we found the primary king, six physogastric nymphoid female replacement reproductives, two ergatoid female replacement reproductives, 46 nymphs, several presoldiers, soldiers, workers, larvae and many eggs. These data show that neotenics in A. euamignathus may originate from both workers and nymphs, but nymphoids are produced in larger numbers. The biometric study of nymphs and nymphoids suggests that these brachypterous neotenics were derived from third instar nymphs after a single moult or from four instar nymphs after a reduction of wing bud length. A piece of an E. festivellus nest with some third instar nymphs, soldiers and workers was kept under laboratory conditions. After 12 months, the whole experimental subcolony was examined and appeared to contain two pigmented nymphoid females, two pigmented nymphoid males, only one larva, seven nymphs of the same instar, 148 workers, five soldiers and many eggs. These results also indicate the capacity of the termite E. festivellus to produce nymphoid neotenics. These neotenic females were laying eggs, but they were not physogastric after a year, unlike some nymphoids of the same species collected from natural colonies.

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The termite problem in eucalyptus forest plantations in Brazil has been registered since 1908. The main termite pests can be separated in four groups: a) seedling/sapling termites; b) heartwood termites; c) bark termites and d) wood termites. The termites in the first group attack root and stalk bases of young eucalyptus plants. The most common species are Syntermes spp. and Cornitermes spp. and they are a serious obstacle to early eucalyptus developing. The heartwood termites attack formed trees destroying eucalyptus heartwood. Coptotermes testaceus is the most cited species in reports, but more species probably occur. Plant mortality caused by seedling/sapling termites vary of 10-70 %. There are not effective control methods to heartwood termites. The main seedling/sapling termite control strategy is the chemical barrier around root systems of plants. Nowadays, studies are being carried out to determine monitoring systems to termite infestations. Early results indicate that proportionally, few areas really need insecticide application, due to spatial distribution of termites to be aggregated. Therefore, it is necessary to develope techniques rationalizing insecticide utilization in eucalyptus plantations, to keep production systems feasible and to be suitable for environmental exigencies.

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We evaluated the reciprocal effects between foragers of the ants Camponotus crassus and of the stingless bees Trigona hyalinata on aggregations of the honeydew-producing treehopper Aetalion reticulatum. The interactions were observed in Bauhinia variegata (Caesalpiniaceae) and Mangifera indica (Anacardiaceae) trees. We recorded the presence/absence of each attendant species in homopteran aggregations to test if the observed co-occurrence is lower than that expected by chance. An exclusion experiment was performed in which each attendant species was excluded from aggregations in order to test if an attendant species is more likely to occupy aggregations where the other attendant is not present. We also recorded the number of individuals of each attendant species in homopteran aggregations to search for any correlation between homopteran and attendant abundances. Additionally, we performed experiments using termites (Termitidae, Isoptera) as models to verify if the attendant species have the potential to defend A. reticulatum against natural enemies. The co-occurrence of attendant species was lower than that expected by chance. Homopteran aggregations without stingless bees were more visited by ants than those in which T. hyalinata was present, and vice-versa. The abundance of stingless bees was proportional to homopteran abundance, while ants abundance was not correlated to homopteran abundance. Both attendant species attacked the natural enemies models when we glued the termites ca. 1 cm away from homopteran aggregations, but only ants removed termites glued 5-7 cm away from aggregations. We suggest that the effects of non-formicid attendants should be included as another factor influencing the costs and benefits of ant-homopteran interactions, since honeydew availability for ants also depends on the presence and behavior of interspecific attendants.

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Studies on pheromone specificity are of ecological interest in termite biology where different species share the same habitat. In this work we evaluated the role of the trail pheromones as a mechanism for the isolation of sympatric populations of Coptotermes gestroi and Heterotermes tenuis (Rhinotermitidae) in Brazil. Based on our results, we conclude that trail pheromones are potentially capable of separating sympatric colonies of these species. Furthermore, the trail-pheromone specificity found in these species could be explained by quantitative differences of the common component of the trail pheromone. However, secondary components on the trail pheromone may neutralize the quantitative differences of a common component. Activity bioassays showed that synthetic (Z,Z,E) 3,6,8-dodecatrien-1-ol may act as the common component of the trail pheromone of these species. Further studies should focus on the chemical identification of the trails laid by the termites.

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Procornitermes araujoi is a mandibulate termite of the Nasutitermitinae subfamily that builds mounds in savannas of the Central and Southeastern regions of Brazil. This paper reports the occurrence of three imaginai queens in the same nest of this termite located in Rio Claro, (SP), Brazil. The associated queens were similar in size, degree of physogastry, and pigmentation. The king was not found. The polygyny and nest architecture of P. araujoi are discussed.

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Feeding, seasonal changes in visceral fat and condition factor were compared in two species of characidiin fishes, Characidium lauroi and C. alipioi from Ribeirão Grande system, southeastern Brazil. Five streams of Ribeirão Grande system were sampled (22° 47' 08 S, 45° 28' 17W). The samples were taken four times per site, from July, 2001 to April, 2002: winter (July 2001), spring (October 2001), summer (February 2002) and autumn (April 2002). Quantitative collections were made with an electro-fishing device powered by a generator with maximum capacity of 1,500 V and 8.7 A of 60 Hz alternating current. Ephemeroptera nymphs, Diptera larvae (Chironomidae, Simuliidae), Plecoptera nymphs, Trichoptera larvae (Hydroptilidae, Psychoyiidae), terrestrial insects (Coleoptera, Isoptera, Hemiptera [Heteroptera, Homoptera]), Megaloptera larvae (Corydalidae), Arachnida, Ostracoda and vegetal debris were found in both species' diets. Visceral fat declined in February, coinciding with the decline of the condition factor in both species. The increased feeding from summer to fall provides fat accumulation. During subsequent seasons, fish may utilize visceral fat reserves for maintenance and reproduction.

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Background and aimsThe protocarnivorous plant Paepalanthus bromelioides (Eriocaulaceae) is similar to bromeliads in that this plant has a rosette-like structure that allows rainwater to accumulate in leaf axils (i.e. phytotelmata). Although the rosettes of P. bromelioides are commonly inhabited by predators (e.g. spiders), their roots are wrapped by a cylindrical termite mound that grows beneath the rosette. In this study it is predicted that these plants can derive nutrients from recycling processes carried out by termites and from predation events that take place inside the rosette. It is also predicted that bacteria living in phytotelmata can accelerate nutrient cycling derived from predators.MethodsThe predictions were tested by surveying plants and animals, and also by performing field experiments in rocky fields from Serra do Cipó, Brazil, using natural abundance and enriched isotopes of 15N. Laboratory bioassays were also conducted to test proteolytic activities of bacteria from P. bromelioides rosettes.Key ResultsAnalyses of 15N in natural nitrogen abundances showed that the isotopic signature of P. bromelioides is similar to that of carnivorous plants and higher than that of non-carnivorous plants in the study area. Linear mixing models showed that predatory activities on the rosettes (i.e. spider faeces and prey carcass) resulted in overall nitrogen contributions of 26·5 % (a top-down flux). Although nitrogen flux was not detected from termites to plants via decomposition of labelled cardboard, the data on 15N in natural nitrogen abundance indicated that 67 % of nitrogen from P. bromelioides is derived from termites (a bottom-up flux). Bacteria did not affect nutrient cycling or nitrogen uptake from prey carcasses and spider faeces.ConclusionsThe results suggest that P. bromelioides derive nitrogen from associated predators and termites, despite differences in nitrogen cycling velocities, which seem to have been higher in nitrogen derived from predators (leaves) than from termites (roots). This is the first study that demonstrates partitioning effects from multiple partners in a digestion-based mutualism. Despite most of the nitrogen being absorbed through their roots (via termites), P. bromelioides has all the attributes necessary to be considered as a carnivorous plant in the context of digestive mutualism. © 2012 The Author. Published by Oxford University Press on behalf of the Annals of Botany Company. All rights reserved.

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The functions of the fat body in the different castes of termites, and accumulation of energy reserves, proteins and urates within this organ, are reviewed. The termite fat body is involved in multiple metabolic activities, including recycling of nitrogen. Termite fat body showed three different types of cells: adipocytes, urocytes and mycetocytes, the latter restricted to the species Mastotermes darwiniensis. Adipocytes synthesize and store lipids, glycogen and several proteins. These cells also elaborate important peptides, including some that act in immune processes. Urocytes are responsible for the storage of spherocrystals of urates, which vary quantitatively among the termite castes. The different metabolic functions of the fat body in the several castes and stages of termites are associated with specific adipocyte morphologies. The synthesis and storage of different compounds modify the structure of the fat body; this differentiation is coordinated by hormones involved with molting and reproductive cycles. © 2013 Elsevier Ltd.

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Em geral, espécies próximas filogeneticamente usam recursos similares e podem ser potenciais competidores. No entanto, elas podem divergir em um dos três eixos que norteiam o seu nicho, temporal, espacial e trófico. Essas diferenças podem ser determinantes para a coexistência de populações. Pressupondo que as populações de Arthrosaura interagem, e pode ocorrer sobreposição de nicho, quais estratégias elas adotaram para minimizar a competição permitindo a convivência de ambas? O presente estudo tem como objetivo investigar o nicho espacial, temporal e trófico de Arthrosaura kockii e A. reticulata na Amazônia oriental (01°42'30"S, 51°31'45" W), localizada nos municípios de Melgaço e Portel, Pará, Brasil, onde foram realizadas três expedições. Os animais foram coletados através do método de Procura Ativa, iniciando as 06h e finalizando às 18h. Foram analisados 107 A. kockii e 115 A. reticulata, desses, 107 e 113 respectivamente, apresentaram itens alimentares. Foram contabilizados 26 itens, destes 25 itens foram consumidos por A. reticulata e 14 foram consumidos por A. kockii. A espécie A. reticulata apresentou uma maior amplitude trófica nos meses chuvosos e na maior parte do período seco, enquanto que A. kockii apresentou uma maior amplitude no início do período seco. Os itens mais importantes (IA%), para A. reticulata foram Araneae=0,64, Blattaria=0,17, Orthoptera-Gryllidae=0,09 e Homoptera=0,05, já para A. kockii foram Araneae=0,66, Blattaria=0,19, Orthoptera-Gryllidae=0,04 e Isoptera=0,04. Arthrosaura reticulata apresentou um maior período de atividade, iniciando as 07h: 50min e terminando às 17h: 00min, concentrando o seu pico de atividade no intervalo das 09h às 14h: 30min, esta espécie foi considerada não heliotémica. A. kockii, teve um menor período de atividade, iniciado as 08h:40min e finalizando as 15:h25min, seu pico de atividade ficou concentrado no intervalo das 10h as 14h:30min, esta espécie foi considerada heliotémica. A altura de serapilheira e a distância do corpo d’água foram significativas na distribuição das espécies, A. reticulata foi encontrado em serapilheira com alturas que variaram de 2,5 cm até 13 cm, já A. kockii ocorreu em intervalos de 1,5 cm até 10 cm,. A. reticulata ocorreu em diversos ambientes da floresta, sendo encontrado dentro de corpos d’água até a terra firme, por isso ocorreu em alturas de serapilheira maiores do que A. kockii que ficou limitado à terra firme. Duas espécies mostraram distinções no nicho espacial, temporal e trófico, que provavelmente está permitindo a coexistência das duas populações.

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Este estudo explora aspectos da dieta, área de uso e transporte dos girinos de Ameerega trivittata em uma região de floresta de terra firme na Amazônia Oriental. Nós coletamos 56 espécimes no total (48 machos e oito fêmeas), e destes 44 indivíduos de A. trivittata tiveram aferidos o seu conteúdo estomacal onde, formigas da Subfamília Myrmicinae, foi o táxon mais consumido pelos machos, e Isoptera pelas fêmeas. Isso provavelmente se deve à necessidade da aquisição de alcaloides pelos machos, presentes em formigas, que lhes dá um alto grau de toxicidade, e consequentemente, proteção, já que são os machos que realizam o cuidado parental nessa espécie, transportando os girinos para as poças. Estimamos a área de uso de quatro machos, sendo estas, em média, duas vezes maiores do que a encontrada para a mesma espécie na Amazônia Peruana. Não houve relação entre o tamanho dos machos e abundância e/ou tamanho médio dos girinos carregados e não houve relação entre a área das poças e a abundância de girinos, porém houve uma diminuição na abundância de girinos em relação à abundância de ninfas de Odonata, o que corrobora com outros trabalhos feitos para dendrobatídeos, já que estas são conhecidas por regular as populações de girinos.

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