1000 resultados para Microbiota do solo


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Diversos fatores ambientais, como pH, temperatura e umidade do solo influenciam a densidade e a atividade dos microorganismos. É possível que o equilíbrio da biosfera esteja sendo modificado pelas mudanças globais de origem natural e/ou antrôpica e influenciando os fatores ambientais que determinam o comportamento da microbiota edáfica. Afim de verificar a influencia dessas alterações, foi desenvolvido o presente estudo na área do experimento ESECAFLOR, que simula a ocorrência de fenômenos extremos, como o evento El Niño e na área do Programa PPBio (área de Floresta Primária), que visa estudar a Biodiversidade da Amazônia, sendo está última usada para fins comparativos (Testemunha). As amostras de solo para as análises químicas, física e biológicas foram coletadas nas profundidades: 00 – 05, 05 -10, 10 – 20 e 20 – 30 cm, nos períodos sazonais Chuvoso, Transição e Menos Chuvoso. Também foi determinado a Temperatura do solo nas mesmas profundidades. Os métodos utilizados foram os descritos por Embrapa (1997), Clark (1965), Gerhardt (1994), Yang et al. (1998) e Keeney (1982). O tratamento dos dados e os testes estatísticos (ANOVA: dois critério, Teste de Tukey e Correlação Linear Simples) foram realizados por meio do programa estatísticos Bioestat 5.0. Os maiores teores de macro e micro nutrientes foram encontrados na área de floresta primária natural (PPBio). Os maiores valores de Unidades Formadoras de Colônias (196 x 104 UFC/g de solo e 124 x 102 UFC/g de solo) para a população de Bactérias e Fungos, respectivamente, foram identificados também na área do PPBio e nos períodos chuvoso e intermediário, respectivamente. Foi identificado diferença significativa entre os dados obtidos para ambas as áreas e também houve diferença significativa dos dados de cada área em relação aos períodos sazonais e as profundidades estudados. A área que sofreu alteração antrópica (ESECAFLOR) apresentou os menores teores para os macro e micronutrientes, evidenciando a influência do processo de exclusão das águas pluviais na disponibilidade desses elementos no solo.

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Pós-graduação em Microbiologia Agropecuária - FCAV

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Petroleum and its subproducts are considered a treat for the environmental quality because of the many environmental accidents that may occur during exploitation, transport and storage. A common remediation technique used in the contaminated areas is based on the use of surfactants, mainly the chemical ones, because they have low production costs. In the other hand, some microorganisms have indicate capacities of producing surfactants that emulsify substances and as result, offer a bigger contact surface for the microbiota degradation. This biossurfactants stand out in comparison with the chemical surfactants because they present lower micelar concentration values, are more tolerant for temperature and pH variation, because they are biodegradable, have low toxicity, higher emulsification and hydrocarbon solubilization index. In this way, after the surfactant application, a toxicity evaluation have to be made to identify the treatment effects. In soil, the activity of some microbial enzymes can show the environmental behavior of the contaminant under different treatment conditions. Dehydrogenase is one example of those enzymes that can demonstrate indirectly the effect of the pollutant on the soil microorganisms. The aim of this paper was to evaluate the toxicity after the addition of a surfactant and/or Pseudomonas aeruginosa LBI in soil contaminated by a mineral automotive lubricant. The previous mentioned bacteria are a potential biossurfactant (rhamnolipid) producer. In order to evaluate the toxicity, the dehydrogenase test was run. In this test, trifeniltetrazolium compound (TTC) after utilized as an electron acceptor, turns into trifenil formazan (TPF), that can be indirectly quantified using the absorbance measured by the spectrophotometer UV-visible. In this way, it was possible to quantify the dehydrogenase activity from the contaminated soil samples... (Complete abstract click electronic access below)

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Il consumo di prodotti da forno lievitati in Italia, è rilevante in occasione di alcune feste religiose quali Pasqua e Natale. Prodotti come il Panettone e Colomba hanno acquisito una diffusione nazionale ed internazionale. Questi prodotti sono ottenuti mediante procedure specifiche caratterizzate da passaggi simili. In ogni caso la loro preparazione parte dall’utilizzo di un lievito madre continuamente rinfrescato. Il lievito madre (o impasto acido) è una miscela di acqua e farina fermentata da un microbiota complesso che include LAB, che producono acido lattico, e lieviti fermentativi che producono CO2 ed etanolo con conseguenze sulle caratteristiche reologiche e organolettiche, soprattutto per il profilo aromatico del prodotto finale. In questo lavoro mi sono occupato di valutare l’evoluzione della composizione microbica della Colomba nelle diverse fasi del processo produttivo, cercando di individuare le relazioni fra il microbiota e alcune caratteristiche chimico-fisiche del prodotto. Il lavoro di caratterizzazione del microbiota del prodotto, effettuato nelle diverse fasi del processo produttivo, ha mostrato come l’impasto madre sia caratterizzato da una bassa biodiversità sia di LAB che di lieviti. I microorganismi dominanti risultano essere due biotipi della specie L. sanfranciscensis e, per i lieviti, un solo biotipo della specie T. delbrueckii, con la comparsa di C. humilis solo in un campione con una frequenza relativa molto bassa. Per quel che riguarda l’evoluzione del microbiota durante il processo produttivo, l’aggiunta del lievito commerciale altera i rapporti tra LAB/ lieviti dove le concentrazioni dei LAB, durante impastamento, si riducono incidendo sulle caratteristiche chimico-fisiche degli impasti stessi in termini di maggiori valori di pH e ridotto contenuto in acido lattico. L’aggiunta di S. cerevisiae e successiva lievitazione incidono significativamente sul profilo aromatico del prodotto, in termini di riduzione di acidi (acido acetico) e di esteri ed aumento di molecole: etanolo, alcol fenetilico, acetaldeide ed acetoino, derivanti del lievito commerciale.

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The screening for genes in metagenomic libraries from soil creates opportunities to explore the enormous genetic and metabolic diversity of microorganisms. Rivers are ecosystems with high biological diversity, but few were examined using the metagenomic approach. With this objective, a metagenomic library was constructed from DNA soil samples collected at three different points along the Jundiaí-river (Rio Grande do Norte-Brazil). The points sampled are from open area, rough terrain and with the direct incidence of sunlight. This library was analyzed functionally and based in sequence. For functional analysis Luria-Bertani solid medium (LB) with NaCl concentration varied from 0.17M to 0.85M was used for functional analysis. Positives clones resistant to hypersaline medium were obtained. The recombinant DNAs were extracted and transformed into Escherichia coli strain DH10B and survival curves were obtained for quantification of abiotic stress resistance. The sequences of clones were obtained and submitted to the BLASTX tool. Some clones were found to hypothetical proteins of microorganisms from both Archaea and Bacteria division. One of the clones showed a complete ORF with high similarity to glucose-6-phosphate isomerase which participates in the synthesis of glycerol pathway and serves as a compatible solute to balance the osmotic pressure inside and outside of cells. Subsequently, in order to identify genes encoding osmolytes or enzymes related halotolerance, environmental DNA samples from the river soil, from the water column of the estuary and ocean were collected and pyrosequenced. Sequences of osmolytes and enzymes of different microorganisms were obtained from the UniProt and used as RefSeqs for homology identification (TBLASTN) in metagenomic databases. The sequences were submitted to HMMER for the functional domains identification. Some enzymes were identified: alpha-trehalose-phosphate synthase, L-ectoina synthase (EctC), transaminase L-2 ,4-diaminobutyric acid (EctB), L-2 ,4-diaminobutyric acetyltransferase (EctA), L-threonine 3 dehydrogenase (sorbitol pathway), glycerol-3-phosphate dehydrogenase, inositol 3-phosphate dehydrogenase, chaperones, L-proline, glycine betaine binding ABC transporter, myo-inositol-1-phosphate synthase protein of proline simportadora / PutP sodium-and trehalose-6-phosphate phosphatase These proteins are commonly related to saline environments, however the identification of them in river environment is justified by the high salt concentration in the soil during prolonged dry seasons this river. Regarding the richness of the microbiota the river substrate has an abundance of halobacteria similar to the sea and more than the estuary. These data confirm the existence of a specialized response against salt stress by microorganisms in the environment of the Jundiaí river

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Os microrganismos do solo são componentes essenciais na manutenção do equilíbrio físico-químico e biológico do mesmo e exercem importante função que inclui a degradação de resíduos de plantas e animais e a liberação de nutrientes na cadeia alimentar. Este trabalho teve como objetivo comparar a microbiota de um solo com cobertura de mata (SMS) e outro cultivado com hortaliças (SHC), supressivos ou não a Rhizoctonia solani. Foram feitas extrações do DNA total dos solos e a partir dos mesmos, amplificação por PCR dos genes 16S rDNA, clonagem dos fragmentos e seqüenciamento dos genes do RNA ribossomal. A análise dos resultados demonstrou que essa metodologia foi eficiente para avaliação de bactérias. No solo supressivo de mata os filos mais encontrados pertencem aos das Acidobactérias, Verrucomicrobia e Actinobactérias e no solo conducente cultivado com hortaliças a maioria pertence aos filos das Proteobactérias, Firmicutes e Bacteroidetes.

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Gaseous mercury sampling conditions were optimized and a dynamic flux chamber was used to measure the air/surface exchange of mercury in some areas of the Negro river basin with different vegetal coverings. At the two forest sites (flooding and non-flooding), low mercury fluxes were observed: maximum of 3 pmol m-2 h-1 - day and minimum of -1 pmol m-2 h-1 - night. At the deforested site, the mercury fluxes were higher and always positive: maximum of 26 pmol m-2 h-1 - day and 17 pmol m-2 h-1 - night. Our results showed that deforestation could be responsible for significantly increasing soil Hg emissions, mainly because of the high soil temperatures reached at deforested sites.

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The objectives of this work was to estimate the number of soil subsamples considering the classical statistics and geostatistics and determine the spatial variability of soil fertility attributes of an Ultisol, with clay texture, in an area of regenerating natural vegetation in Alegre - ES. Soil samples were collected in a depth of 0.0-0.2 m, at the crossing points of a regular grid, comprising a total of 64 points located at 10 m-intervals. The area presented low fertility soil. Considering a variation of 5% around the mean in the classic statistics, it is necessary a larger number of samples in relation to geostatistics. All the chemical attributes showed moderate to high spatial dependence, except for the effective cation exchange capacity (CECe), which showed pure nugget effect. The spherical semivariogram model gave the best fit to the data. Isoline maps allowed visualizing the differentiated spatial distribution of the contents of soil chemical attributes.

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This work was done with the objective of studying some physical and mechanical characteristics of the sugarcane bagasse ash added to a soil-cement mixture, in order to obtain an alternative construction material. The sugarcane bagasse ash pre-treatment included both sieving and grinding, before mixing with soil and cement. Different proportions of cement-ash were tested by determining its standard consistence and its compressive resistance at 7 and 28 days age. The various treatments were subsequently applied to the specimens molded with different soil-cement-ash mixtures which in turns were submitted to compaction, unconfined compression and water absorption laboratory tests. The results showed that it is possible to replace up to 20% of Portland cement by sugarcane bagasse ash without any damage to the mixture's compressive strength.

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The physical model was based on the method of Newton-Euler. The model was developed by using the scientific computer program Mathematica®. Several simulations where tried varying the progress speeds (0.69; 1.12; 1.48; 1.82 and 2.12 m s-1); soil profiles (sinoidal, ascending and descending ramp) and height of the profile (0.025 and 0.05 m) to obtain the normal force of soil reaction. After the initial simulations, the mechanism was optimized using the scientific computer program Matlab® having as criterion (function-objective) the minimization of the normal force of reaction of the profile (FN). The project variables were the lengths of the bars (L1y, L2, l3 and L4), height of the operation (L7), the initial length of the spring (Lmo) and the elastic constant of the spring (k t). The lack of robustness of the mechanism in relation to the variable height of the operation was outlined by using a spring with low rigidity and large length. The results demonstrated that the mechanism optimized showed better flotation performance in relation to the initial mechanism.

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The covering of the soil is an agricultural practice that intends to control the harmful herbs, to reduce the losses of water by evaporation of the soil, and to facilitate the harvest and the commercialization, once the product is cleaner and healthier. However, when the soil is covered important microclimatic parameters are also altered, and consequently the germination of seeds, the growth of roots, the absorption of water and nutrients, the metabolic activity of the plants and the carbohydrates storage. The current trial intended to evaluate the effect of soil covering with blue colored film on consumptive water-use in a lettuce crop (Lactuca sativa, L.). The experiment was carried out in a plastic greenhouse in Araras - São Paulo State, Brazil from March 3rd, 2001 to May 5th, 2001. The consumptive water-use was measured through two weighing lysimeter installed inside the greenhouse. Crop spacing was 0.25 m x 0.25 m and the color of the film above soil was blue. Leaf area index (IAF), was measured six times (7; 14; 21; 28; 35; 40 days after transplant) and the water-use efficiency (EU) was measured at the end. The experimental design was subdivided portions with two treatments, bare soil and covered soil. The average consumptive water-use was 4.17 mm day-1 to the bare soil treatment and 3.11 mm day-1 to the covered soil treatment. The final leaf area index was 25.23 to the bare soil treatment and 24.39 to the covered soil treatment, and there was no statistical difference between then.

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The main objective of this work is the study of the effect of rice husk addition on the physical and mechanical properties of soil-cement, in order to obtain an alternative construction material. The rice husk preparation consisted of grinding, sieving, and the pre-treatment with lime solution. The physical characteristics of the soil and of the rice husk were determined. Different amounts of soil, cement and rice husk were tested by compaction and unconfined compression. The specimens molded according to the treatments applied to the mixtures were subsequently submitted to compression testing and to tensile splitting cylinder testing at 7 and 28 days of age and to water absorption testing. After determining its physical and mechanical characteristics, the best results were obtained for the soil + 12% (cement + rice husk) mixture. The results showed a promising use as an alternative construction material.