981 resultados para insect-plant interactions


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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Ciências Biológicas (Zoologia) - IBRC

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A criação da Usina Hidrelétrica de Tucuruí em 1985, inundou uma área de 2.400 Km² de floresta, originando centenas de ilhas de tamanhos diferentes, onde diversos organismos, dentre eles os cuxiús (Chiropotes spp.), tiveram suas populações fragmentadas. A área de estudo, ilha de Gennoplasrna, possui 129 ha e abriga uma população de Chiropotes utahickae, atualmente com 23 membros, já estudada por Santos (2002). O objetivo principal deste estudo foi descrever aspectos da ecologia do cuxiú de Uta Hick e caracterizar a exploração alimentar de espécies arbóreas. A metodologia utilizada foi baseada em oito dias de coleta mensal de dados, utilizando-se o método de varredura instantânea de um minuto de duração e cinco de intervalo, aplicado paralelamente ás amostragens de árvore-focal e fruto-focal, intercalando-se estes dois tipos. As principais categorias comportamentais foram alimentação, deslocamento, forrageio, repouso e interação social. Foram obtidos 11.277 registros de varredura, 259 de árvore-focal e 711 de fruto-focal durante o período de março a agosto de 2004. Foram gastos 50,6% do tempo em deslocamento, 31,9% em alimentação, 10,6% em repouso, 5,4% em forrageio e 1,2% em interação social. A dieta foi composta principalmente de semente imatura (31,7%), mesocarpo imaturo (21,2%), fruto maduro (18,3%) e flores (14,4%). A comparação com o estudo de Santos (2002) sugere diferenças longitudinais e sazonais. Os frutos explorados variaram de 0,4 cm a 15,3 cm de comprimento e as sementes, de 0,1cm a 2,3 cm. Os cuxiús foram considerados predadores para 74,2% das 31 espécies analisadas. Não houve relação significativa entre o tamanho das sementes e o tipo de interação. Também não existiu relação significativa entre a distância de deposição das sementes e o tamanho destas, sugerindo que o transporte de sementes pelos cuxiús pode estar ligado a outros fatores (dimensão da copa, tamanho do subagrupamento). Após vinte anos de isolamento, os cuxiús pareceram apresentar um padrão comportamental típico do gênero Chiropotes. Esta tolerância ao ambiente fragmentado, pareceu ser evidenciada nesse estudo, pelo intenso consumo do mesocarpo imaturo de ingás (Inga spp.) e de flores de castanheira (Bertholletia excelsa). Flores parecem ser um recurso importante para os cuxiús da área de influência do reservatório de Tucuruí (Santos, 2002; Silva, 2003). Este trabalho vem contribuir para o conhecimento da ecologia da espécie, ressaltando que o monitoramento das populações nas áreas do reservatório de Tucuruí, precisa ser continuado a fim de que se reúna mais informações a respeito da sua organização social, dieta e interferência na comunidade vegetal, necessárias para o planejamento de medidas de manejo e conservação.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Pós-graduação em Ciências Biológicas (Zoologia) - IBRC

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Background: Sugarcane is one of the most important crops in Brazil, mainly because of its use in biofuel production. Recent studies have sought to determine the role of sugarcane endophytic microbial diversity in microorganism-plant interactions, and their biotechnological potential. Epicoccum nigrum is an important sugarcane endophytic fungus that has been associated with the biological control of phytopathogens, and the production of secondary metabolites. In spite of several studies carried out to define the better conditions to use E. nigrum in different crops, little is known about the establishment of an endophytic interaction, and its potential effects on plant physiology. Methodology/Principal Findings: We report an approach based on inoculation followed by re-isolation, molecular monitoring, microscopic analysis, plant growth responses to fungal colonization, and antimicrobial activity tests to study the basic aspects of the E. nigrum endophytic interaction with sugarcane, and the effects of colonization on plant physiology. The results indicate that E. nigrum was capable of increasing the root system biomass and producing compounds that inhibit the in vitro growth of sugarcane pathogens Fusarium verticillioides, Colletotrichum falcatum, Ceratocystis paradoxa, and Xanthomomas albilineans. In addition, E. nigrum preferentially colonizes the sugarcane surface and, occasionally, the endophytic environment. Conclusions/Significance: Our work demonstrates that E. nigrum has great potential for sugarcane crop application because it is capable of increasing the root system biomass and controlling pathogens. The study of the basic aspects of the interaction of E. nigrum with sugarcane demonstrated the facultative endophytism of E. nigrum and its preference for the phylloplane environment, which should be considered in future studies of biocontrol using this species. In addition, this work contributes to the knowledge of the interaction of this ubiquitous endophyte with the host plant, and also to a better use of microbial endophytes in agriculture.

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Alpine snowbeds are characterised by a very short growing season. However, the length of the snow-free period is increasingly prolonged due to climate change, so that snowbeds become susceptible to invasions from neighbouring alpine meadow communities. We hypothesised that spatial distribution of species generated by plant interactions may indicate whether snowbed species will coexist with or will be out-competed by invading alpine species – spatial aggregation or segregation will point to coexistence or competitive exclusion, respectively. We tested this hypothesis in snowbeds of the Swiss Alps using the variance ratio statistics. We focused on the relationships between dominant snowbed species, subordinate snowbed species, and potentially invading alpine grassland species. Subordinate snowbed species were generally spatially aggregated with each other, but were segregated from alpine grassland species. Competition between alpine grassland and subordinate snowbed species may have caused this segregation. Segregation between these species groups increased with earlier snowmelt, suggesting an increasing importance of competition with climate change. Further, a dominant snowbed species (Alchemilla pentaphyllea) was spatially aggregated with subordinate snowbed species, while two other dominants (Gnaphalium supinum and Salix herbacea) showed aggregated patterns with alpine grassland species. These dominant species are known to show distinct microhabitat preferences suggesting the existence of hidden microhabitats with different susceptibility to invaders. These results allow us to suggest that alpine snowbed areas are likely to be reduced as a consequence of climate change and that invading species from nearby alpine grasslands could outcompete subordinate snowbed species. On the other hand, microhabitats dominated by Gnaphalium or Salix seem to be particularly prone to invasions by non-snowbed species.

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Leaf-herbivory can lead to systemic changes in root metabolism and resistance. As yet, it is unknown if these changes affect the whole root system, or if they are more pronounced in the upper root parts, which are closer to the actual site of attack. As this spatial aspect may be an important determinant of the interactions that can be expected to occur within the rhizosphere, we investigated if leaf-herbivore induced root resistance differs between upper and lower roots of maize. We also tested if the density of leaf-herbivores correlates with intensity of the root response. The systemic increase in resistance was found to be more pronounced in the upper than the lower roots and was independent of leaf herbivore density. The results suggest that there is a vertical gradient in the strength of the root response following leaf-herbivory, and that soil organisms living closer to the surface may be more affected by leaf-attack than the ones living in deeper soil layers.

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Positive plant interactions have strong effects on plant diversity at several spatial scales, expanding species distribution under stressful conditions. We evaluated the joint effect of climate and grazing on the nurse effect of Croton wagneri, by monitoring several community attributes at two spatial scales: microhabitat and plant community. Two very close locations that only differed in grazing intensity were surveyed in an Ecuadorian dry scrub ecosystem. At each location, two 30 × 30-m plots were established at four altitudinal levels (1500, 2630, 1959 and 2100 m asl) and 40 microsites were surveyed in each plot. Croton wagneri acted as community hubs, increasing species richness and plant cover at both scales. Beneath nurses mean richness and cover values were 3.4 and 21.9%, and in open areas 2.3 and 4.5%, respectively. Magnitude of nurse effect was dependent on climate and grazing conditions. In ungrazed locations, cover increased and diversity reduced with altitude, while grazed locations showed the opposite trend. In ungrazed plots the interactions shifted from positive to negative with altitude, in grazed locations interactions remained positive. We conclude that the nurse effect is a key mechanism regulating community properties not only at microsite but also at the entire community scale.