998 resultados para submontane rain forest
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Several small isolates of rainforest situated on the central eastern coast of Australia are home to a rich herpetofauna, including four endemic species of leaftail geckos (Phyllurus spp.) and two skinks (Eulamprus spp.). To examine the extent and geographic pattern of historical subdivision among isolates, we assayed mtDNA variation in two species endemic to rainforests of this region (Phyllurus ossa and Eulamprus amplus) and, for comparison, a more widespread and less specialised lizard, Carlia rhomboidalis. There is a clear genetic signature of historical changes in population size and distribution in P. ossa that is consistent with Pleistocene (or earlier) rainforest contraction and subsequent expansion. Although more pronounced in the gecko, phylogeographic structure was congruent between E. amplus and P. ossa. In contrast to the saxicolous, rainforest-restricted P. ossa and E. amplus, the rainforest-generalist species, C. rhomboidalis, does not display strong geographic population structure. The differences in genetic population structure exhibited by the three species are consistent with species-specific differences in ecology.
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This study examines the level and pattern of endemism among 274 flightless rainforest insects found in the Wet Tropics region of Australia. Endemism is measured at two nested scales: (1) those confined to the Wet Tropics, termed 'regional endemics'; and (2) the subset of those species confined to a single subregion of the Wet Tropics, termed 'subregional endemics'. Fifty per cent of the regional endemic flightless insects are also subregional endemics compared with 15% of the known regional endemic vertebrates. The four subregions with the most endemic flightless insect species are the uplands of Mt Finnigan, Carbine, Bellenden-Ker/Bartle Frere and Atherton. Multiple regression suggests that the combination of rainforest area and shape explain the most variance (R-2 = 0.603) in the numbers of species of regional endemic insects. However, subregional endemism is not closely correlated with the size or shape of the subregions in which they occur, or a combination of these factors. Candidate refugial and recolonised subregions are identified, and are consistent with data from palaeoclimatic models and refugia identified using other taxa. We group upland subregions into larger areas of endemism using parsimony analysis of endemism. These groupings are consistent with our understanding of the history of the Wet Tropics rainforests.
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Comparative phylogeography has proved useful for investigating biological responses to past climate change and is strongest when combined with extrinsic hypotheses derived from the fossil record or geology. However, the rarity of species with sufficient, spatially explicit fossil evidence restricts the application of this method. Here, we develop an alternative approach in which spatial models of predicted species distributions under serial paleoclimates are compared with a molecular phylogeography, in this case for a snail endemic to the rainforests of North Queensland, Australia. We also compare the phylogeography of the snail to those from several endemic vertebrates and use consilience across all of these approaches to enhance biogeographical inference for this rainforest fauna. The snail mtDNA phylogeography is consistent with predictions from paleoclimate modeling in relation to the location and size of climatic refugia through the late Pleistocene-Holocene and broad patterns of extinction and recolonization. There is general agreement between quantitative estimates of population expansion from sequence data (using likelihood and coalescent methods) vs. distributional modeling. The snail phylogeography represents a composite of both common and idiosyncratic patterns seen among vertebrates, reflecting the geographically finer scale of persistence and subdivision in the snail. In general, this multifaceted approach, combining spatially explicit paleoclimatological models and comparative phylogeography, provides a powerful approach to locating historical refugia and understanding species' responses to them.
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This study presents novel evidence that N-15 natural abundance can be used as a robust indicator to detect pollutant nitrogen in natural plant communities. Vegetation from the heavily polluted industrial area of Cubatao in Sao Paulo State, SE Brazil, was strongly N-15 depleted compared to plants at remote sites. Historic herbarium samples from Cubatao were significantly less N-15 depleted than extant plants, indicating that N-15 depletion of vegetation is associated with present-day nitrogen pollution in Cubatao. The heavy load of nitrogenous atmospheric pollutants in Cubatao provides a nitrogen source for plants, and strongly N-15 depleted air NH3 is likely to contribute to plant and soil N-15 depletion. Epiphytic plants from Cubatao were extremely N-15 depleted (average -10.9parts per thousand) contrasting with epiphytes at remote sites (averages -1.0parts per thousand and -3.0parts per thousand). Nitrogen isotope composition of vegetation provides a tool to determine input of pollutant nitrogen into plant communities. The strong isotopic change of epiphytes suggests that epiphytes are particularly sensitive biomonitors for atmospheric pollutant nitrogen.
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The drosophilid fauna is well documented in eastern Australia but is poorly known in other parts of the continent. This paper summarises what is known of this fauna in the Northern Territory (NT), and includes results from banana trapping in the humid and arid zones. The 42 recorded species include species that breed in fruit, fungi and/or flowers, and a larval predator of scale insects. Drosophilids occur in all three major climate zones (humid, semiarid and arid) but predominate in the humid zone. Banana-attracted species in the humid zone (wet-dry tropics) were common in all sampled habitats: urban, rainforest and open woodland. They included predominantly urban and/or rainforest species. Of the species collected in open woodland, some are likely to be breeding there, whereas others may have been intercepted during movement across the area. The semiarid fauna is a depauperate version of that found in the humid region. Only three species have been recorded in the arid region: an endemic arid specialist, and two cosmopolitan species (D. simulans and D. melanogaster ) in urban Alice Springs. Overall, the NT drosophilid fauna represents a depauperate version of that found in eastern Australia, probably because of climatic factors and natural barriers to range expansion. There is little evidence of regional endemism, with probably only one (and at most three) species endemic to the NT, and no evidence of independent, natural dispersion from nearby Indonesia.
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The measurement of natural N-15 abundance is a well-established technique for the identification and quantification of biological N-2 fixation in plants. Associative N-2 fixing bacteria have been isolated from sugarcane and reported to contribute potentially significant amounts of N to plant growth and development. It has not been established whether Australian commercial sugarcane receives significant input from biological N-2 fixation, even though high populations of N-2 fixing bacteria have been isolated from Australian commercial sugarcane fields and plants. In this study, delta(15)N measurements were used as a primary measure to identify whether Australian commercial sugarcane was obtaining significant inputs of N via biological N-2 fixation. Quantification of N input, via biological N-2 fixation, was not possible since suitable non-N-2 fixing reference plants were not present in commercial cane fields. The survey of Australian commercially grown sugarcane crops showed the majority had positive leaf delta(15)N values (73% >3.00parts per thousand, 63% of which were
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Little is known about causes of endemic rarity in plants. This study pioneered an approach that determined environmental variables in the rainforest habitat and generated physiological profiles for light, water, and nutrient relations for three endemically restricted versus widespread congeneric species' pairs. We found no overall consistent differences in the physiological variables between the group of restricted species and the group of widespread species, and congeneric species pairs were therefore examined individually. Availability of soil nutrients did not differ between restricted-widespread species sites suggesting that species grow under comparable nutrient conditions. Under ambient and manipulated higher light conditions, widespread Gardenia ovularis had a greater photosynthetic activity than restricted Gardenia actinocarpa suggesting that the two species differ in their photosynthetic abilities. Differences between Xanthostemon species included lower photosynthetic activity, higher transpiration rate, and a higher foliar manganese concentration in restricted Xanthostemon formosus compared to widespread Xanthostemon chrysanthus. It is suggested that X. formosus is restricted by its high water use to its current rainforest creek edge habitat, while X. chrysanthus grows in a range of environments, although naturally found in riparian rainforest. Restricted Archidendron kanisii had higher electron transport rates, greater dissipative capacity for removal of excess light, and more efficient investment of nitrogen into photosynthetic components, than its widespread relative Archidendron whitei. These observations and previous research suggest that restricted Archidendron kanisii is in the process of expanding its range. Physiological profiles suggest a different cause of rarity for each species. This has implications for the conservation strategies required for each species. (C) 2002 Elsevier Science Ltd. All rights reserved.
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The Caridina indistincta complex is a group of closely related atyid shrimps that inhabit coastal freshwater streams throughout north-eastern Australia. Using mitochondrial DNA sequence data (cytochrome oxidase 1, CO1), we (1) inferred the timing of speciation in the C. indistincta group and (2) examined the intraspecific phylogeographic patterns within the group. Assuming a shrimp-specific rate of CO1 evolution, the level of sequence divergence among species suggests that speciation took place during the Miocene epoch. Within one widespread mainland species, phylogeographic patterns suggest strong geographic 'regionalisation' of mtDNA lineages that are most likely of Pleistocene origin. By contrast, another species comprises two highly divergent mtDNA lineages that occur in sympatry. We suggest that although Pleistocene sea-level regressions appear important in generating population-level phylogeographic patterns, these events were largely unimportant in the formation of species in this group.
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A survey of Monomachidae species was carried out in anarea of Atlantic rain forest of the Biological Reserve of Duas Bocas, Espírito Santo State, Brazil between September, 1996 and August, 1997. Two species of Mollomachus Klug, 1841, M. fuscator Perty, 1833 and M. eurycephalus Schletterer, 1890 were collected from May to September. Both species are typical of winter time and showed the same parttern of seasonality.
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Sistemática, Morfologia e Biogeografia
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Foram estudadas as espécies de Anisepyris Kieffer, 1905, coletadas em 31 localidades ao longo da Mata Atlântica Brasileira. Foram descritas e ilustradas as seguintes espécies novas: A. basilongus Santos sp. nov., A. foveapertus Santos sp. nov., A. artus Santos sp. nov., A. basilargus Santos sp. nov., A. cepus Santos sp. nov. e A. ramosus Santos sp. nov.. Foram examinados espécimes adicionais de dezesseis espécies previamente descritas: A. amazonicus Westwood, 1874, A. bifidus Evans, 1966, A. bipartitus Santos & Azevedo, 2000, A. delicatus Evans, 1966, A. dentatus Santos & Azevedo, 2000, A. divisus Santos, 2002, A. inconspicuus Santos, 2002, A. lobatus Santos & Azevedo, 2000, A. longimerus Santos & Azevedo, 2000, A. nigripes Evans, 1966, A. proteus Evans, 1966, A. rotundus Santos, 2002, A. similis Santos & Azevedo, 2000, A. triangularis Moreira & Azevedo, 2003, A. trinitatis Evans, 1966 e A. tuberosus Santos & Azevedo, 2000, incluindo citações geográficas novas e suas variações taxonômicas, sendo o primeiro registro de A. bipartitus, A. dentatus, A. similis e A. trinitatis para a Mata Atlântica.
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Foram estudadas as espécies de Apenesia Westwood, coletadas em 29 localidades ao longo de um gradiente latitudinal na Mata Atlântica. Foram descritas e ilustradas as sete espécies novas seguintes: Apenesia pectinata sp. nov., A. atlantica sp. nov., A. perlonga sp. nov., A. exigua sp. nov., A. patens sp. nov., A. simplex sp. nov., A. hepatica sp. nov.. Foi descoberta e descrita a fêmea de Apenesia elongata Evans, 1963. Foram adicionados registros novos de distribuição geográfica de quatorze espécies previamente descritas: A. apicilata Azevedo & Batista, A. aurita Waichert & Azevedo, A. clypeata Leal & Azevedo, A. concavata Corrêa & Azevedo, A. crenutala (Kieffer), A. distincta Corrêa & Azevedo, A. elongata Evans, A. inca Evans, A. neotropica (Kieffer), A. photophila (Ogloblin), A. quadrata Evans, A. spinipes Evans, A. stricta Corrêa & Azevedo e A. transversa Evans. Apenesia é registrada pela primeira vez para os estados de Paraíba, Pernambuco, Alagoas, Sergipe e Bahia.
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Foram realizadas coletas padronizadas em 18 pontos ao longo da Mata Atlântica Brasileira no escopo do Programa BIOTA/FAPESP usando-se varredura de vegetação, e armadilhas Malaise e Möricke. Foi coletado um total de 2.811 exemplares de Dissomphalus. Foram reconhecidas 30 espécies descritas, a saber: Dissomphalus conicus Azevedo, 2003, D. h-ramus Redighieri & Azevedo, 2004, D. laminaris Redighieri & Azevedo, 2004, D. manus Azevedo, 2003, D. umbilicus Azevedo, 2003, D. verrucosus Redighieri & Azevedo, 2004, D. alticlypeatus Azevedo, 2003, D. bicerutus Azevedo, 2003, D. gilvipes Evans, 1979, D. krombeini Azevedo, 1999, D. gordus Azevedo, 2003, D. undatus Azevedo, 2003, D. cristatus Redighieri & Azevedo, 2004, D. laticephalus Azevedo, 2003, D. lobicephalus Azevedo, 2003, D. completus Azevedo, 1999, D. gigantus Azevedo, 1999, D. scamatus Azevedo, 1999, D. napo Evans, 1979, D. punctatus (Kieffer, 1910), D. infissus Evans, 1969, D. plaumanni Evans, 1964, D. concavatus Azevedo, 1999, D. rectilineus Azevedo, 1999, D. bifurcatus Azevedo, 1999, D. extrarramis Azevedo, 1999, D. strictus Azevedo, 1999, D. connubialis Evans, 1966, D. microstictus Evans, 1969, D. scopatus Redighieri & Azevedo, 2004. Além disso, foram descritas e ilustradas 23 espécies novas: Dissomphalus inclinatus sp. nov., D. divisus sp. nov., D. distans sp. nov., D. crassus sp. nov., D. filiformis sp. nov., D. inflexus sp. nov., D. spissus sp. nov., D. firmus sp. nov., D. setosus sp. nov., D. tubulatus sp. nov., D. differens sp. nov., D. lamellatus sp. nov., D. fimbriatus sp. nov., D. magnus sp. nov., D. trilobatus sp. nov., D. amplifoveatus sp. nov., D. personatus sp. nov., D. excellens sp. nov., D. peculiaris sp. nov., D. bahiensis sp. nov., D. amplexus sp. nov., D. elegans sp. nov. e D. amplus sp. nov.. Foram propostos 2 grupos novos de espécies, brasiliensis com duas espécies e setosus com oito espécies. Dissomphalus connubialis Evans, 1966 foi revalidado a partir de D. brasiliensis Kieffer, 1910. Dissomphalus bispinulatus Evans, 1969 foi considerado sinônimo junior de D. brasiliensis. Foi proposto para o gênero uma chave de espécies Neotropicais baseada em machos. Algumas espécies como Dissomphalus rectilineus, D. plaumanni, D. connubialis e D. gigantus são amplamente distribuídos ao longo deste bioma. Por outro lado, espécies como Dissomphalus completus, D. bifurcatus, D. napo, D. gilvipes, D. microstictus, D. brasiliensis, D. scamatus, D. strictus, D. undatus, D. alticlypeatus, D. laticephalus, D. verrucosus, D. extrarramis, D. concavatus, D. krombeini, D. gordus, D. lobicephalus e 13 espécies novas são restritas a regiões específicas, apresentando congruência com os subcentros deste bioma.
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Estudou-se a riqueza e abundância de gêneros de Bethylidae coletados em quatro áreas de mata de encosta da Mata Atlântica do Espírito Santo, com estados de preservação diferentes: Santa Maria de Jetibá (SMJ), Domingos Martins (DM), Pancas (P) e Atílio Vivácqua (AV). Foram coletados 2.840 espécimes alocados em 12 gêneros, sendo Lepidosternopsis Ogloblin e Bakeriella Kieffer citados pela primeira vez para esse estado. A riqueza dos táxons foi obtida através do procedimento Jackknife com auxílio do programa EstimateS. Curvas de acumulação de gêneros foram construídas para avaliar o esforço amostral. Os dados se ajustaram à distribuição geométrica e calculou-se o parâmetro k para comparar as localidades. O perfil genérico não foi equivalente em todas as localidades, e todas foram consideradas perturbadas. SMJ e DM apresentaram riqueza de gêneros maior em comparação com P e AV. As diferenças relatadas neste estudo para as áreas amostradas refletem o grau diferente de preservação das matas. Pseudisobrachium Kieffer e Dissomphalus Ashmead foram os gêneros mais abundantes em SMJ, DM e P e Anisepyris Kieffer em AV. Este estudo reforça o fato de Dissomphalus ser mais abundante em florestas tropicais úmidas e que o perfil genérico encontrado em AV assemelha-se a dados publicados para o cerrado.
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Sistemática, morfologia e biogeografia