955 resultados para Citrate-nitrate route
Resumo:
Nitrogen and K deficiency are among the most yield limiting factors in Brazilian pastures. The lack of these nutrients can hamper the chlorophyll biosynthesis and N content in plant tissues. A greenhouse experiment was carried out to evaluate the relationship among N and K concentrations, the indirect determination of chlorophyll content (SPAD readings), nitrate reductase activity (RNO3-) in newly expanded leaf lamina (NL) and the dry matter yield for plant tops of Mombaça grass (Panicum maximum Jacq.). A fractionated 5² factorial design was used, with 13 combinations of N and K rates in the nutrient solution. The experimental units were arranged in a randomized block design, with four replications. Plants were harvested twice. The first harvest occurred 36 days after seedling transplanting and the second 29 days after the first. Significance occurred for the interaction between the N and K rates to SPAD readings and to RNO3- assessment taken on the NL during the first growth. Besides, RNO3- and SPAD readings increased only with the NL N concentration, reaching the highest values of both variables up to about 25 g kg-1, but were ratively constant at higher leaf N. Significant relationships either between SPAD readings or RNO3- activity and shoot dry mass weight were also observed. The critical levels of N concentration in the NL were, respectively, 22 and 17g kg-1 in the first and second harvest. Thus, SPAD instrument and RNO3- assessment can be used as complementary tools to evaluate the N status in forage grass.
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Especially under no-tillage, subsuface soil acidity has been a problem, because it depends on base leaching, which has been associated with the presence of low molecular weigth organic acids and companion anions. The objective of this study was to evaluate exchangeable base cation leaching as affected by surface liming along with annual urea side-dressing of maize and upland rice. Treatments consisted of four lime rates (0, 1500, 3000, and 6000 kg ha-1) combined with four nitrogen rates (0, 50, 100, and 150 kg ha-1) applied to maize (Zea mays) and upland rice (Oryza sativa), in two consecutive years. Maize was planted in December, three months after liming. In September of the following year, pearl millet (Pennisetum glaucum) was planted without fertilization and desiccated 86 days after plant emergence. Afterwards, upland rice was grown. Immediately after upland rice harvest, 18 months after surface liming, pH and N-NO3-, N-NH4+, K, Ca, and Mg levels were evaluated in soil samples taken from the layers 0-5, 5-10, 10-20 and 20-40 cm. Higher maize yields were obtained at higher N rates and 3000 kg ha-1 lime. Better results for upland rice and pearl millet yields were also obtained with this lime rate, irrespective of N levels. The vertical mobility of K, Ca and Mg was higher in the soil profiles with N fertilization. Surface liming increased pH in the upper soil layers causing intense nitrate production, which was leached along with the base cations.
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Peroxynitrite is a potent oxidant and nitrating species formed from the reaction between the free radicals nitric oxide and superoxide. An excessive formation of peroxynitrite represents an important mechanism contributing to cell death and dysfunction in multiple cardiovascular pathologies, such as myocardial infarction, heart failure and atherosclerosis. Whereas initial works focused on direct oxidative biomolecular damage as the main route of peroxynitrite toxicity, more recent evidence, mainly obtained in vitro, indicates that peroxynitrite also behaves as a potent modulator of various cell signal transduction pathways. Due to its ability to nitrate tyrosine residues, peroxynitrite affects cellular processes dependent on tyrosine phosphorylation. Peroxynitrite also exerts complex effects on the activity of various kinases and phosphatases, resulting in the up- or downregulation of signalling cascades, in a concentration- and cell-dependent manner. Such roles of peroxynitrite in the redox regulation of key signalling pathways for cardiovascular homeostasis, including protein kinase B and C, the MAP kinases, Nuclear Factor Kappa B, as well as signalling dependent on insulin and the sympatho-adrenergic system are presented in detail in this review.
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Le projet s'intéresse aux socialisations des jeunes cyclistes sur route dans la phase de la carrière où ils deviennent des espoirs nationaux. Pour certains, cela correspond au passage d'une structure sportive amateur de haut niveau vers une équipe professionnelle. Cette phase semble constituer un moment clé de la consommation de produits dopants. Ces espoirs sont exposés à un nouvel environnement et une nouvelle logique professionnelle s'impose à eux, avec ses espoirs de carrière et de profits et ses risques. Ils sont confrontés à de nouveaux groupes sociaux avec lesquels s'établit un système d'interactions. Avec le temps, ces groupes vont notamment inculquer aux jeunes coureurs de nouvelles normes en matière de santé, de fatigue, d'expériences, d'éthique et d'entraînement.Il s'agit plus particulièrement d'observer les modes de socialisation des jeunes espoirs du cyclisme pour comprendre comment s'immiscent les pratiques de dopage dans les biographies des sportifs. Dans une optique de prévention, ce travail se propose d'étudier les effets de la socialisation. Comme le souligne H. Becker (1985), la déviance est le fruit d'un acte collectif. Il s'agit alors de comprendre comment, au contact de divers groupes encadrants (pairs, entraîneurs, dirigeants, médecins), les savoir-faire mais aussi les normes, les valeurs se construisent au cours de la phase de socialisation professionnelle. Il est important de comprendre les effets des interactions entre ces groupes et le jeune espoir. Cette socialisation semble correspondre à l'inculcation d'une culture cycliste qu'il s'agira de décrire en prenant en compte deux formes de transmission des normes : une explicite, à certains moments de la journée, où sont abordées les techniques de course, les tactiques, les modes d'entraînement et une implicite, pendant laquelle sont diffusées des valeurs qui conduisent le sportif à faire le choix du dopage. Dans le cas du dopage, nous nous intéresserons notamment aux normes de santé, d'éthique, aux conceptions de la pratique sportive en adéquation avec le suivi médical pendant la phase amateur puis néo-professionnelle. La formation, ou transformation, de ces représentations sera appréhendée à travers les interactions entre coureurs et encadrement lors des différents moments de leur quotidien. Il s'agira également d'étudier le cadre social de ces interactions. A partir des récits de vie collectés, nous essayerons de déterminer les moments où les choix s'opèrent et nous y analyserons les conduites.L'acquisition des représentations associées au dopage est le produit du double mouvement de l'action sociale des individus et des effets des structures organisationnelles et institutionnelles. En conséquence, nous nous intéresserons également à l'influence des différents dispositifs tels que la famille, l'école, le club, la structure médicale, la fédération nationale, sur les représentations des coureurs.Cette étude reposera sur une analyse comparée des cyclistes belges, français et suisses. Les carrières seront analysées à partir d'entretiens semi-directifs (75) auprès de (1) jeunes athlètes (18-23 ans) qui vivent les phases de professionnalisation, (2) d'anciens cyclistes ayant vécu les normes de socialisation du milieu et (3) des acteurs clefs de l'organisation des différents dispositifs (entraîneurs, dirigeants, médecins). Notre démarche méthodologique s'adosse à celles déjà expérimentées dans des travaux antérieurs (notamment, Brissonneau, 2003).
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Leaching of nitrate (NO3-) can increase the groundwater concentration of this anion and reduce the agronomical effectiveness of nitrogen fertilizers. The main soil property inversely related to NO3- leaching is the anion exchange capacity (AEC), whose determination is however too time-consuming for being carried out in soil testing laboratories. For this reason, this study evaluated if more easily measurable soil properties could be used to estimate the resistance of subsoils to NO3- leaching. Samples from the subsurface layer (20-40 cm) of 24 representative soils of São Paulo State were characterized for particle-size distribution and for chemical and electrochemical properties. The subsoil content of adsorbed NO3- was calculated from the difference between the NO3- contents extracted with 1 mol L-1 KCl and with water; furthermore, NO3- leaching was studied in miscible displacement experiments. The results of both adsorption and leaching experiments were consistent with the well-known role exerted by AEC on the nitrate behavior in weathered soils. Multiple regression analysis indicated that in subsoils with (i) low values of remaining phosphorus (Prem), (ii) low soil pH values measured in water (pH H2O), and (iii) high pH values measured in 1 moL L-1 KCl (pH KCl), the amounts of surface positive charges tend to be greater. For this reason, NO3- leaching tends to be slower in these subsoils, even under saturated flow condition.
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The increase of organic acids in soils can reduce phosphorus sorption. The objective of the study was to evaluate the competitive sorption of P and citrate in clayey and sandy loam soils, using a stirred-flow system. Three experiments were performed with soil samples (0-20 cm layer) of clayey (RYL-cl) and sandy loam (RYL-sl) Red Yellow Latosols (Oxisols). In the first study, the treatments were arranged in a 2 × 5 factorial design, with two soil types and five combinations of phosphorus and citrate application (only P; P + citrate; and citrate applied 7, 22, 52 min before P); in the second, the treatments were arranged in a 2 × 2 factorial design, corresponding to two soils and two forms of P and citrate application (only citrate and citrate + P); and in the third study, the treatments in a 2 × 2 × 6 factorial design consisted of two soils, two extractors (citrate and water) and six incubation times. In the RYL-cl and RYL-sl, P sorption was highest (44 and 25 % of P application, respectively), in the absence of citrate application. Under citrate application, P sorption was reduced in all treatments. The combined application of citrate and P reduced P sorption to 25.8 % of the initially applied P in RYL-cl and to 16.7 % in RYL-sl, in comparison to P without citrate. Citrate sorption in RYL-cl and RYL-sl was highest in the absence of P application, corresponding to 32.0 and 30.2 % of the citrate applied, respectively. With P application, citrate sorption was reduced to 26.4 and 19.7 % of the initially applied citrate in RYL-cl and RYL-sl, respectively. Phosphorus desorption was greater when citrate was used. Phosphorus desorption with citrate and water was higher in the beginning (until 24 h of incubation of P) in RYL-cl and RYL-sl, indicating a rapid initial phase, followed by a slow release phase. This suggests that according to the contact time of P with the soil colloids, the previously adsorbed P can be released to the soil solution in the presence of competing ligands such as citrate. In conclusion, a soil management with continuous input of organic acids is desirable, in view of their potential to compete for P sorption sites, especially in rather weathered soils.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
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Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.
Resumo:
Interstate Route Flow represented on this map are annual average daily traffic volumes between major traffic.