1000 resultados para acúmulo de P
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A preocupação com o aumento da concentração de gases de efeito estufa (GEE - CO2, CH4 e N2O) na atmosfera fez com que a comunidade científica quantificasse a emissão destes pelas diversas atividades antrópicas, para melhor entendimento do impacto de cada uma neste processo. Nesses levantamentos, a atividade agropecuária mundial é considerada como responsável por 25% dos GEE emitidos no planeta (IPCC, 2001), e esta percentagem também é a mesma observada no setor agropecuário brasileiro. Os solos representam o terceiro maior compartimento de carbono (C) terrestre, por isso são crescentes os esforços em identificar práticas agropecuárias que promovam o acúmulo ou a manutenção da matéria orgânica do solo (MOS). No entanto, estudos sobre a dinâmica deste elemento são realizados, geralmente, sem levar em consideração a sua interação com outros nutrientes. Deve-se considerar que no solo, o C encontra-se em forma orgânica, formando compostos de natureza variável.
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O objetivo deste trabalho é avaliar a produção e qualidade de sementes de feijão-de-metro em relação à adubação fosfatada e determinar a curva de acúmulo de nutrientes.
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A vegetação de pousio é um dos principais componentes dos sistemas agroflorestais sequenciais de derrubada e queima, praticados tradicionalmente pela agricultura familiar na Amazônia. A remoção progressiva de nutrientes do solo por essa prática implica em reduções contínuas nos estoques de carbono e nutrientes, causando declínio da produtividade do solo, perda da capacidade regeneração e diminuição da diversidade de espécies da vegetação. O melhoramento de pousio com espécies leguminosas fixadoras do nitrogênio atmosférico pode contribuir para uma maior produção de biomassa e acúmulo de nutrientes em comparação com a vegetação espontânea, atendendo à demanda nutricional das culturas subsequentes, podendo ser considerada como uma tecnologia de produção sustentável. Esse trabalho avaliou o efeito da adubação fosfatada de baixa solubilidade no acúmulo de biomassa e nutrientes da parte aérea de leguminosas arbóreas utilizadas em enriquecimento de vegetação de pousio. O experimento foi conduzido por 23 meses, em um sistema agroflorestal de ?corte e trituração? em Marapanim, Pará. Foram utilizadas as espécies tachi-branco - Sclerolobium paniculatum Vogel e ingá - Inga edulis Mart e foram estimados biomassa, teor e estoque de nutrientes dos compartimentos folha, galho e tronco. Houve acúmulo de biomassa, estoques de P, Ca e Mg nas folhas, estoque de P nos galhos e o teor de cálcio nas folhas das leguminosas é limitado por fósforo, segundo os resultados encontrados. A espécie Inga edulis apresentou maiores teores de potássio, cálcio e magnésio nos compartimentos folha, galho e tronco, enquanto que a espécie Sclerolobium paniculatum apresentou maiores acúmulos de biomassa e estoques de nitrogênio, fósforo, potássio, cálcio e magnésio nos compartimentos folha, galho e tronco.
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As aplicações sucessivas de fungicidas e caldas via foliar em videiras para o controle preventivo de doenças fúngicas, aumenta o teor de cobre (Cu) e zinco (Zn) nas camadas mais superficiais do solo. O trabalho objetivou avaliar os teores de Cu e Zn no perfil de solos com textura argilosa e com histórico de aplicação de fungicidas cúpricos na região Meio Oeste de SC. Em outubro de 2010, foram selecionados três vinhedos com idades de 4, 6 e 10 anos de idade, no município de Água Doce (SC). Em novembro de 2010 foram coletadas amostras de solo nas camadas de 0-5, 5-10, 10-15, 15-20 e 20-40 cm. Também foi coletado solo em uma área de mata nativa, adjacente aos vinhedos. Os solos foram secos, moídos, passados em peneira e submetidos as análises de Cu e Zn extraídos pelos métodos de EDTA (Na2-EDTA 0,01 mol L-1+acetato de amônio 1,0 mol L-1) com pH ajustado para 7,0. Os teores de Cu e Zn extraídos por HCl 0,1 mol L-1 e EDTA foram maiores nas camadas superficiais do solo, especialmente, no vinhedo mais antigo, onde o Cu migrou até 20 cm e o Zn até 15 cm.
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2016
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As pastagens naturais do Rio Grande do Sul tem sido consideradas como importante base forrageira para a produção animal em sistemas de produção de base familiar.
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Pyrimidine-5'-nucleotidase type I (P5'NI) deficiency is an autosomal recessive condition that causes nonspherocytic hemolytic anemia, characterized by marked basophilic stippling and pyrimidine nucleotide accumulation in erythrocytes. We herein present two African descendant patients, father and daughter, with P5'N deficiency, both born from first cousins. Investigation of the promoter polymorphism of the uridine diphospho glucuronosyl transferase 1A (UGT1A) gene revealed that the father was homozygous for the allele (TA7) and the daughter heterozygous (TA6/TA7). P5'NI gene (NT5C3) gene sequencing revealed a further change in homozygosity at amino acid position 56 (p.R56G), located in a highly conserved region. Both patients developed gallstones; however the father, who had undergone surgery for the removal of stones, had extremely severe intrahepatic cholestasis and, liver biopsy revealed fibrosis and siderosis grade III, leading us to believe that the homozygosity of the UGT1A polymorphism was responsible for the more severe clinical features in the father. Moreover, our results show how the clinical expression of hemolytic anemia is influenced by epistatic factors and we describe a new mutation in the P5'N gene associated with enzyme deficiency, iron overload, and severe gallstone formation. To our knowledge, this is the first description of P5'N deficiency in South Americans.
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The androgen insensitivity syndrome (AIS) is described as a dysfunction of the androgen receptor (AR) in 46,XY individuals, which can be associated with mutations in the AR gene or can be due to unknown mechanisms. Different mutations in AIS generally cause variable phenotypes that range from a complete hormone resistance to a mild form usually associated with male infertility. The purpose of this study was to search for mutations in the AR gene in a fertile man with gynecomastia and to evaluate the influence of the mutation on the AR transactivation ability. Sequencing of the AR gene revealed the p.Pro695Ser mutation. It is located within the AR ligand-binding domain. Bioinformatics analysis indicated a deleterious role, which was verified after testing transactivation activity and N-/C-terminal (N/C) interaction by in vitro expression of a reporter gene and 2-hybrid assays. p.Pro695Ser showed low levels of both transactivation activity and N/C interaction at low dihydrotestosterone (DHT) conditions. As the ligand concentration increased, both transactivation activity and N/C interaction also increased and reached normal levels. Therefore, this study provides functional insights for the p.Pro695Ser mutation described here for the first time in a patient with mild AIS. The expression profile of p.Pro695Ser not only correlates to the patient's phenotype, but also suggests that a high-dose DHT therapy may overcome the functional deficit of the mutant AR.
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Multidrug resistance, MDR is a major obstacle for cancer chemotherapy. MDR can be reversed by drugs that vary in their chemical structure and main biological activity. Many efforts have been done to overcome MDR based on studies of structure-activity relationships and in this review we summarize some aspects of MDR mediated by P-glycoprotein (P-gp), as the most experimentally and clinically tested form of drug resistance. The most significant MDR mechanisms revealed until now are shortly discussed. Physicochemical and structural properties of MDR modulators, measures of the MDR reversal, and QSAR studies are included.
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The research approaches recycling of urban waste compost (UWC) as an alternative fertilizer for sugarcane crop and as a social and environmental solution to the solids residuals growth in urban centers. A mathematical model was used in order to know the metal dynamics as decision support tool, aiming to establish of criteria and procedures for UWC's safe use, limited by the amount of heavy metal. A compartmental model was developed from experimental data in controlled conditions and partially checked with field data. This model described the heavy metal transference in the system soil-root-aerial portion of sugarcane plants and concluded that nickel was metal to be concern, since it takes approximately three years to be attenuated in the soil, reaching the aerial portions of the plant at high concentrations. Regarding factors such as clay content, oxide level and soil pH, it was observed that for soil with higher buffering capacity, the transfer of the majority of the metals was slower. This model may become an important tool for the attainment of laws regarding the UWC use, aiming to reduce environment contamination the waste accumulation and production costs.
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Annatto seeds do not germinate during early stages of their development because of insufficient reserve substances. In situ analysis showed that the principal reserves are proteins and starch, deposited in endosperm cells. During the early stages of development, the starch grains were elliptic, because amylose was the minor component. During development, these grains became more spherical due to an increase in amylose relative to amylopectin. Endosperm cells do not contain protein bodies, but they accumulate proteins dispersed in the cytoplasm. At the final stage of development the proteins became compacted due to the dehydration of the seeds wich is part of the global process of orthodox seeds maturation. Natural fluorescence revealed aromatic amino acids, principally tryptophan and tyrosine in the proteins. The seeds reached their maximum dry weight after moisture contents had declined to around 60%. At this point the seeds presented maximum germination capacity.
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The objective of the work was to evaluate the effects of environment, recipients, and substrate compositions in passion fruit (Passiflora edulis Sims f. flavicarpa Deg.) seedlings biomass production in Pantanal region from September to November of 2006. Experimental trials were conducted in four protected environments, in two types of containers and three different substrate compositions. The environments were: A1 (greenhouse covered with low-density, 150-microns-thick polyethylene film), A2 (monofilament black screened with mesh for 50% of shade), A3 (aluminized screened with mesh for 50% of shade) and A4 (environment covered with straw of native coconut palm); the recipients were: polyethylene bags (R1) (15 x 25 cm) and polystyrene trays (R2) (with 72 cells). There substrates were: S1 (soil + organic compost + vermiculite, 1:1: 1 v/v), S2 (soil + organic compost + sawdust, 1:1: 1 v/v) and S3 (soil + organic compost + vermiculite + sawdust, 1:1: 1/2: 1/2 v/v). The experimental design was completely randomized statistical analysis in split-split-plot, with fifteen replications. The treatments in the plot were environments, in the subplots were pots, and subsubplots were substrates (4 x 2 x 3 = 24 treatments). Fresh and dry mass of aerial and root system parts were evaluated. Environments with screen showed better results for seedlings of yellow passion fruit biomass in polyethylene bags. Polyethylene bags promoted higher biomasses. The substrate with vermiculite showed better results for both types of containers. The substrate with a higher percentage of sawdust showed the worst result.
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The effects of aluminum (Al) on the activities of antioxidant enzymes and ferritin expression were studied in cell suspension cultures of two varieties of Coffea arabica, Mundo Novo and Icatu, in medium with pH at 5.8. The cells were incubated with 300 µM Al3+, and the Al speciation as Al3+ was 1.45% of the mole fraction. The activities of superoxide dismutase (SOD), catalase (CAT), and glutathione S-transferase (GST) were increased in Mundo Novo, whereas glutathione reductase (GR) and guaiacol peroxidase (GPOX) activities remained unchanged. SOD, GR, and GST activities were increased in Icatu, while CAT activity was not changed, and GPOX activity decreased. The expression of two ferritin genes (CaFer1 and CaFer2) were analyzed by Real-Time PCR. Al caused a downregulation of CaFER1 expression and no changes of CaFER2 expression in both varieties. The Western blot showed no alteration in ferritin protein levels in Mundo Novo and a decrease in Icatu. The differential enzymes responses indicate that the response to Al is variety-dependent.
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Type II 3β-hydroxysteroid dehydrogenase/Δ5-Δ4-isomerase (3β-HSD2), encoded by the HSD3B2 gene, is a key enzyme involved in the biosynthesis of all the classes of steroid hormones. Deleterious mutations in the HSD3B2 gene cause the classical deficiency of 3β-HSD2, which is a rare autosomal recessive disease that leads to congenital adrenal hyperplasia (CAH). CAH is the most frequent cause of ambiguous genitalia and adrenal insufficiency in newborn infants with variable degrees of salt losing. Here we report the molecular and structural analysis of the HSD3B2 gene in a 46,XY child, who was born from consanguineous parents, and presented with ambiguous genitalia and salt losing. The patient carries a homozygous nucleotide c.665C>A change in exon 4 that putatively substitutes the proline at codon 222 for glutamine. Molecular homology modeling of normal and mutant 3β-HSD2 enzymes emphasizes codon 222 as an important residue for the folding pattern of the enzyme and validates a suitable model for analysis of new mutations.
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Neuronal ceroid-lipofuscinosis (NCL) is a recent term, proposed for acurate designation of the late-onset types of Amaurotic Family Idiocy (AFI). Histopathology shows ubiquitous intraneuronal accumulation of lipopigments, being the most important factor for characterization of the entity at present time. Biochemical changes and pathogenesis are obscure. NCL is in contrast to the infantile type of AFI (Tay-Sachs disease), in which intraneuronal accumulation of gangliosides (sphingolipids) is due to the well known deficiency of a lysosomal enzyme. The authors report on four cases of NCL, two brothers of the late infantile (Jansky-Bielschowsky) type and a brother and a sister of the juvenile (Spielmeyer-Sjögren) type. One autopsy and three cortical biopsies revealed moderate to severe distention of the neurons by lipopigment, with nerve cell loss, gliosis and cerebral atrophy. Lipopigment was also increased in liver, heart and spleen. The patients were the first in Brazilian literature in whom the storage material was identified as lipopigment by histochemical methods. A brief summary of the clinical features of NCL is presented, and relevant problems are discussed, concerning interpretation of the nature of the storage material, and significance of the disease for gerontological research.