12 resultados para OSCILLATORIALES
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Geitlerinema amphibium (C. Agardh ex Gomont) Anagn. and G. unigranulatum (Rama N. Singh) Komarek et M. T. P. Azevedo are morphologically close species with characteristics frequently overlapping. Ten strains of Geitlerinema (six of G. amphibium and four of G. unigranulatum) were analyzed by DNA sequencing and transmission electronic and optical microscopy. Among the investigated strains, the two species were not separated with respect to cellular dimensions, and cellular width was the most varying characteristic. The number and localization of granules, as well as other ultrastructural characteristics, did not provide a means to discriminate between the two species. The two species were not separated either by geography or environment. These results were further corroborated by the analysis of the cpcB-cpcA intergenic spacer (PC-IGS) sequences. Given the fact that morphology is very uniform, plus the coexistence of these populations in the same habitat, it would be nearly impossible to distinguish between them in nature. On the other hand, two of the analyzed strains were distinct from all others based on the PC-IGS sequences, in spite of their morphological similarity. PC-IGS sequences indicate that these two strains could be a different species of Geitlerinema. Using morphology, cell ultrastructure, and PC-IGS sequences, it is not possible to distinguish G. amphibium and G. unigranulatum. Therefore, they should be treated as one species, G. unigranulatum as a synonym of G. amphibium.
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Because algae are primarily aquatic, it seems almost paradoxical that there Should exist a relatively diversified soil flora where aerophytic cyanoprokaryotes are especially abundant. However, there appear to be relatively few studies oil this topic. This paper aims to improve the taxonomic knowledge oil the chroococcalean and oscillatorialean cyanoprokaryote flora in tropical regions. Samples of cyanoprokaryotes were collected in the rainforest region of the São Paulo State, Brazil. Data oil cyanoprokaryote mass type and color, substratum type, air and mass temperature and humidity, pH and absolute and relative irradiance were collected. The study revealed the presence of 24 species belonging to the orders Chroococcales and Oscillatoriales (12 species each). Aphanothece (four species) was the most species-rich genus. Overall, taxonomic resolution at the species level based oil morphological and morphometric data can still be problematic.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Cyanobacteria are important primary producers, and many are able to fix atmospheric nitrogen playing a key role in the marine environment. However, not much is known about the diversity of cyanobacteria in Portuguese marine waters. This paper describes the diversity of 60 strains isolated from benthic habitats in 9 sites (intertidal zones) on the Portuguese South and West coasts. The strains were characterized by a morphological study (light and electron microscopy) and by a molecular characterization (partial 16S rRNA, nifH, nifK, mcyA, mcyE/ndaF, sxtI genes). The morphological analyses revealed 35 morphotypes (15 genera and 16 species) belonging to 4 cyanobacterial Orders/Subsections. The dominant groups among the isolates were the Oscillatoriales. There is a broad congruence between morphological and molecular assignments. The 16S rRNA gene sequences of 9 strains have less than 97% similarity compared to the sequences in the databases, revealing novel cyanobacterial diversity. Phylogenetic analysis, based on partial 16S rRNA gene sequences showed at least 12 clusters. One-third of the isolates are potential N2-fixers, as they exhibit heterocysts or the presence of nif genes was demonstrated by PCR. Additionally, no conventional freshwater toxins genes were detected by PCR screening.
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As lagoas Clara e das Garças são ambientes lênticos inseridos na planície de inundação do alto Rio Paraná. Foram descritos 36 táxons distribuídos em quatro ordens (Chroococcales, Nostocales, Oscillatoriales e Stigonematales) e dez famílias (Synechococcaceae, Chroococcaceae, Merismopediaceae, Nostocaceae, Rivulariaceae, Borziaceae, Pseudanabaenaceae, Oscillatoriaceae, Phormidiaceae e Mastigocladaceae) de cianobactérias. A família de maior representatividade foi Pseudanabaenaceae, com sete táxons, seguida de Oscillatoriaceae e Nostocaceae, ambas com seis táxons. Dos 36 táxons, 22 são descritos pela primeira vez para a planície de inundação do alto Rio Paraná.
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O grupo das cianobactérias marinhas bentônicas vem sendo freqüentemente excluído dos levantamentos taxonômicos da costa brasileira, com exceção de alguns trabalhos para o litoral paulista. Para o ambiente de ilhas, apenas é conhecido um trabalho para a Ilha do Cardoso. Assim, o objetivo deste estudo consiste em ampliar o conhecimento da riqueza das cianobactérias marinhas bentônicas de ilhas do litoral paulista. Os resultados obtidos mostram a ocorrência de 24 espécies de cianobactérias em ilhas do litoral paulista. A ordem Oscillatoriales foi representada por 12 espécies (50%), Nostocales por 6 espécies (25%) e Chrooccoccales por seis espécies (25%). Entre as espécies identificadas, quatro são novas ocorrências para o litoral Atlântico sul: Cyanodermatium gonzaliensis H. Leon-Tejera et al., Xenococcus pallidus (Hansg.) Komárek & Anagn., Microchaete aeruginea Batters and Hydrocoryne spongiosa Bornet & Flahault e uma nova referência para o litoral brasileiro: Rivularia atra Roth. Atualizações nomenclaturais foram adotadas de acordo com o sistema de classificação mais atual de Komarek & Agnostidis.
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Considering the great ecological and sanitary importance of the cyanobacteria and the need of detailed information about these organisms in Brazilian water bodies, the present study aims at contributing towards the knowledge of the cyanobacterial flora of five reservoirs belonging to the upper Tietê Basin, São Paulo: Billings, Guarapiranga, Jundiaí, Pirapora, Ponte Nova and Taiaçupeba. In the past several years, these reservoirs have been submitted to severe environmental deterioration and have repeatedly presented cyanobacterial blooms, including those of toxic species. The samples were collected between 1997 and 2003 either with plankton net (20 µm mesh) or van Dorn's bottle, and preserved with lugol solution or formaldehyde. Some species were isolated and maintained in culture. Forty-eight species of cyanobacteria were identified, with predominance of the order Chroococcales (58%), followed by the orders Oscillatoriales (21%) and Nostocales (21%). Among the 48 studied species, 17 (35%) were considered potentially toxic. The occurrence and biodiversity of the cyanobacteria in each reservoir depend on the environmental conditions. Among the five water bodies, Billings Reservoir presented the most adequate situation for the development of a greater number of species (34), probably due to its high pH values (around 8). Pirapora Reservoir on the other hand, with highest conductivity (445.0 µS cm-1) and lowest Secchi depth values (0.2 m), presented the lowest cyanobacterial biodiversity (14 species).
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Diante da importância ecológica das cianobactérias e da escassez de informações mais detalhadas sobre estes organismos nos diversos sistemas aquáticos do Pantanal brasileiro, o objetivo deste trabalho foi estudar a flora de cianobactérias de três lagoas do Pantanal da Nhecolândia. As lagoas estudadas são corpos d'água naturais, rasos (profundidade máxima 1,1 m), aproximadamente circulares e apresentam características limnológicas distintas. As amostras foram coletadas em períodos de seca e de cheia, entre 2004 e 2007. Foram identificadas 21 espécies de cianobactérias, com predominância da ordem Oscillatoriales (24% do total de espécies), seguida das ordens Synechococcales, Pseudanabaenales, Chroococcales e Nostocales, cada uma contribuindo com 19%. A lagoa Salina do Meio, de condições ambientais extremas, apresentou maior número de espécies de cianobactérias, 13 (62%). Nesta lagoa, florações de Anabaenopsis elenkinii Miller foram observadas principalmente nos períodos de seca. As lagoas Salitrada Campo Dora (9 espécies) e Baía da Sede Nhumirim (9) apresentaram riqueza de espécies iguais entre si, porém com composição distinta, provavelmente relacionada às diferentes condições ambientais das lagoas. Todas as espécies são citadas pela primeira vez para o Pantanal brasileiro.
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Macroalgal communities and environmental variables were analyzed seasonally along a polluted tropical stream in São Paulo State, Brazil, We aimed to improve the knowledge of tropical macroalgal communities, to study the longitudinal and seasonal dynamics of these communities in influenced environments, to evaluate the relationship of algal frequency and abundance with selected environmental variables, and to look for potential macroalgal species indicators. The seasonal abundance pattern was similar to natural or low influenced systems and was mainly determined by rainfall regime. However, community composition was closely related to some chemical water pollution indicators, such as phosphorus and nitrogen compounds. Some species are suggested as potential indicators of organic pollution (e.g. Oscillatoria ornata, Stigeoclonium helveticum and Schizomeris leibleinii), but more detailed studies have to be developed to determine the tolerance limits of these species. on the basis of our results and literature data, the use of occurrence of Oscillatoriales in relation to other orders of Cyanoprokaryota is suggested to be a good indicator of organic pollution in tropical lotic ecosystems.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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The cyanobacterial community colonizing phyllosphere in a well-preserved Brazilian mangrove ecosystem was assessed using cultivation-independent molecular approaches. Leaves of trees that occupy this environment (Rhizophora mangle, Avicennia schaueriana and Laguncularia racemosa) were collected along a transect beginning at the margin of the bay and extending upland. The results demonstrated that the phyllosphere of R.similar to mangle and L.similar to racemosa harbor similar assemblages of cyanobacteria at each point along the transect. A.similar to schaueriana, found only in the coastal portions of the transect, was colonized by assemblages with lower richness than the other trees. However, the results indicated that spatial location was a stronger driver of cyanobacterial community composition than plant species. Distinct cyanobacterial communities were observed at each location along the coast-to-upland transect. Clone library analysis allowed identification of 19 genera of cyanobacteria and demonstrated the presence of several uncultivated taxa. A predominance of sequences affiliated with the orders Nostocales and Oscillatoriales was observed, with a remarkable number of sequences similar to genera Symphyonemopsis/Brasilonema (order Nostocales). The results demonstrated that phyllosphere cyanobacteria in this mangrove forest ecosystem are influenced by environmental conditions as the primary driver at the ecosystem scale, with tree species exerting some effect on community structure at the local scale.
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Environmental conditions favor the predominance of dense populations of cyanobacteria in reservoirs in northeastern Brazil. The aim of this study was to understand cyanobacterial population dynamics in the rainy and dry seasons at two depths in the Arcoverde reservoir. Microalgae and cyanobacteria samples were collected during 24 hours with intervals of 4 hours (nycthemeral) at sub-surface and 10 m using a van Dorn bottle and a determined biomass. Physical and chemical variables were obtained and the data were analyzed using the principal component analysis (PCA). No nycthemeral variations in the taxonomic composition or distribution of the populations of cyanobacteria were found between the different times of day in either the rainy or dry season. In both seasons, the greatest biomass of the phytoplankton community was made up of cyanobacteria at two depths and all times of the day. Cylindrospermopsis raciborskii (Woloszynska) Seenayya et Subba Raju was dominant at all times of the day on both the surface and at the bottom. In the rainy season, the differences in cyanobacterial biomass between the surface and bottom were less significant than in the dry season. The differences in cyanobacterial biomass between surface and bottom were less pronounced than those found in the dry season. We concluded that a) physical variables better explain the alterations of species in the phytoplankton community in an environment dominated by cyanobacteria throughout the year; b) seasonal climatic factors associated to periods of stratification and de-stratification are important for alterations in the community and variations in biomass and, c) the turbidity caused by rainfall favored the emergence and establishment of other cyanobacteria, especially Planktothrix agardhii (Gomont) Anagnostidis & Komarek.