309 resultados para 12C


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Un aspecto clave para lograr la regeneración de dehesas y montes bajos, los sistemas más extensos de aprovechamiento de la encina en España, son las características fisiológicas de la bellota. Se analizó la capacidad germinativa de bellotas procedentes de 15 encinas (familias) en dehesa y 15 familias en monte bajo de la misma finca, tras someterlas en laboratorio a heladas de distinta intensidad (-3ºC, -6ºC, -9ºC, -12ºC, -15ºC). Las bellotas procedentes de dehesa tuvieron una capacidad germinativa menor y con mayor variabilidad entre familias, aunque heladas incluso moderadas (-6ºC) afectaron en mayor medida a la germinación de las bellotas de montes bajos, si bien la reducción fue ya generalizada (60% en todas las familias); tras la exposición a -12ºC o inferior, la germinación fue residual en todos los casos. Se concluye que bajas temperaturas son un factor limitante para la regeneración de la encina en el interior de la península Ibérica.

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A review of the experimental data for natC(n,c) and 12C(n,c) was made to identify the origin of the natC capture cross sections included in evaluated data libraries and to clarify differences observed in neutronic calculations for graphite moderated reactors using different libraries. The performance of the JEFF-3.1.2 and ENDF/B-VII.1 libraries was verified by comparing results of criticality calculations with experimental results obtained for the BR1 reactor. This reactor is an air-cooled reactor with graphite as moderator and is located at the Belgian Nuclear Research Centre SCK-CEN in Mol (Belgium). The results of this study confirm conclusions drawn from neutronic calculations of the High Temperature Engineering Test Reactor (HTTR) in Japan. Furthermore, both BR1 and HTTR calculations support the capture cross section of 12C at thermal energy which is recommended by Firestone and Révay. Additional criticality calculations were carried out in order to illustrate that the natC thermal capture cross section is important for systems with a large amount of graphite. The present study shows that only the evaluation carried out for JENDL-4.0 reflects the current status of the experimental data.

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El aceite de pescado ha sido la principal fuente de grasa incluida en la dieta de salmón Atlántico ya que su uso optimiza el crecimiento y aporta grandes cantidades de ácidos grasos poliinsaturados (PUFA) omega 3, principalmente los ácidos eicosapentaenoico (EPA) y docosahexaenoico (DHA). En los años 90 se utilizaba un 24% de aceite de pescado en los piensos para salmón, sin embargo la escasez del recurso y la presión comercial sobre su demanda por parte de distintos sectores ha dado lugar a una progresiva reducción de su inclusión teniendo la industria como objetivo llegar a utilizar en 2020 tan sólo un 8%. Al reducir los niveles de aceite de pescado disminuye el contenido de EPA y DHA aportado, por lo que se hace necesario diseñar estrategias que permitan maximizar la retención de EPA y DHA en los tejidos del animal. De esta forma, la optimización del uso de antioxidantes para prevenir la peroxidación lipídica de los ácidos grasos poliinsaturados de cadena larga (LC-PUFA), puede ser una estrategia a seguir. Entre los antioxidantes empleados en acuicultura destaca la vitamina E. Aunque el α-tocoferol es el isómero principal de la vitamina E, estudios recientes sugieren que el γ-tocoferol presenta igualmente una potente actividad antioxidante. Sin embargo, hasta la fecha no hay muchos estudios con salmón Atlántico empleando γ-tocoferol como principal isómero añadido en la dieta. Además de su función como antioxidante, en investigaciones recientes la vitamina E ha mostrado capacidad para inducir de manera directa o indirecta la expresión de genes que codifican enzimas implicadas en el metabolismo de los ácidos grasos. Con esta perspectiva el presente trabajo tiene como principal objetivo determinar si la incorporación de 300 ppm de γ-tocoferol a la dieta del salmón da lugar a una mayor capacidad antioxidante en los tejidos del animal, disminuyendo la oxidación lipídica in vivo y afectando tanto a la composición como al metabolismo lipídico. Un total de 180 esguines de salmón Atlántico (Salmo Salar) con un peso inicial de 137,4 ± 1g fueron distribuidos al azar y uniformemente en 6 tanques y fueron alimentados con una de las tres dietas experimentales. Se aportó agua salada a los tanques y la temperatura se mantuvo a 12°C. Las dietas experimentales se formularon para tener: bajo contenido en EPA y DHA (CB); alto en EPA y DHA (CA); y con bajos niveles de EPA y DHA pero con un suplemento de 300 ppm de γ-tocoferol como antioxidante (CB+γtoc). Las dietas fueron suministradas en tanques duplicados durante 14 semanas. Al final del experimento, se sacrificaron 4 peces de cada tanque y se tomaron muestras de hígado y filete izquierdo para realizar el análisis de ácidos grasos y de expresión génica. A pesar de que los peces alimentados con la dieta CB+γtoc presentaron 3 veces más concentración de γ-tocoferol en los tejidos, la administración de esta dieta no tuvo un efecto significativo (P>0.05) sobre la composición de EPA, DHA y ácido araquidónico (ARA) en los tejidos del salmón. Los resultados del análisis de expresión de genes mostraron que la incorporación de 300 ppm de γ-tocoferol dio lugar a una cierta inhibición del metabolismo lipídico tanto de genes relacionados con la β-oxidación como de aquellos relacionados con la síntesis de LC-PUFA. En cuanto al sistema de defensa antioxidante GPx4, los resultados indicaron que no hubo efecto estimulatorio del γ-tocoferol sobre el mismo. Sin embargo, se observó un aumento de omega 3 totales (P<0.05) en el músculo del animal. La incorporación de 300 ppm de γ-tocoferol tuvo un efecto limitado sobre la composición lipídica y un efecto inhibitorio del metabolismo lipídico a nivel de expresión.

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It is known that a green wall brings some advantages to a building. It constitutes a barrier against solar radiation, thus decreasing and delaying the incoming heat flux. The aim of this study is to quantify such advantages through analytical comparison between two facades, a vegetal facade and a conventional facade. Both were highly insulated (U-value = 0.3 W/m2K) and installed facing south on the same building in the central territory of Spain. In order to compare their thermal trend, a series of sensors were used to register superficial and indoor air temperature. The work was carried out between 17th August 2012 and 1st October 2012, with a temperature range of 12°C-36°C and a maximum horizontal radiation of 1020 W/m2. Results show that the indoor temperature of the green wall module was lower than the other. Besides, comparing superficial outdoor and indoor temperatures of the two walls to outdoor air temperatures, it was noticed that, due to the shading plants, the green wall superficial temperature was 5 °C lower on the facade, while the bare wall temperature was 15 °C higher. The living wall module temperature was 1.6 °C lower than the outdoor, while the values of the conventional one were similar to the outdoor air temperature.

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Glucose production by liver is a major physiological function, which is required to prevent development of hypoglycemia in the postprandial and fasted states. The mechanism of glucose release from hepatocytes has not been studied in detail but was assumed instead to depend on facilitated diffusion through the glucose transporter GLUT2. Here, we demonstrate that in the absence of GLUT2 no other transporter isoforms were overexpressed in liver and only marginally significant facilitated diffusion across the hepatocyte plasma membrane was detectable. However, the rate of hepatic glucose output was normal. This was evidenced by (i) the hyperglycemic response to i.p. glucagon injection; (ii) the in vivo measurement of glucose turnover rate; and (iii) the rate of release of neosynthesized glucose from isolated hepatocytes. These observations therefore indicated the existence of an alternative pathway for hepatic glucose output. Using a [14C]-pyruvate pulse-labeling protocol to quantitate neosynthesis and release of [14C]glucose, we demonstrated that this pathway was sensitive to low temperature (12°C). It was not inhibited by cytochalasin B nor by the intracellular traffic inhibitors brefeldin A and monensin but was blocked by progesterone, an inhibitor of cholesterol and caveolae traffic from the endoplasmic reticulum to the plasma membrane. Our observations thus demonstrate that hepatic glucose release does not require the presence of GLUT2 nor of any plasma membrane glucose facilitative diffusion mechanism. This implies the existence of an as yet unsuspected pathway for glucose release that may be based on a membrane traffic mechanism.

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The quantitative significance of reserves and current assimilates in regrowing tillers of severely defoliated plants of perennial ryegrass (Lolium perenne L.) was assessed by a new approach, comprising 13C/12C and 15N/14N steady-state labeling and separation of sink and source zones. The functionally distinct zones showed large differences in the kinetics of currently assimilated C and N. These are interpreted in terms of ”substrate” and ”tissue” flux among zones and C and N turnover within zones. Tillers refoliated rapidly, although C and N supply was initially decreased. Rapid refoliation was associated with (a) transient depletion of water-soluble carbohydrates and dilution of structural biomass in the immature zone of expanding leaves, (b) rapid transition to current assimilation-derived growth, and (c) rapid reestablishment of a balanced C:N ratio in growth substrate. This balance (C:N, approximately 8.9 [w/w] in new biomass) indicated coregulation of growth by C and N supply and resulted from complementary fluxes of reserve- and current assimilation-derived C and N. Reserves were the dominant N source until approximately 3 d after defoliation. Amino-C constituted approximately 60% of the net influx of reserve C during the first 2 d. Carbohydrate reserves were an insignificant source of C for tiller growth after d 1. We discuss the physiological mechanisms contributing to defoliation tolerance.

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The chemical and isotopic compositions of oceanic biogenic and authigenic minerals contain invaluable information on the evolution of seawater, hence on the history of interaction between tectonics, climate, ocean circulation, and the evolution of life. Important advances and greater understanding of (a) key minor and trace element cycles with various residence times, (b) isotopic sources and sinks and fractionation behaviors, and (c) potential diagenetic problems, as well as developments in high-precision instrumentation, recently have been achieved. These advances provided new compelling evidence that neither gradualism nor uniformitarianism can explain many of the new important discoveries obtained from the chemistry and isotopic compositions of oceanic minerals. Presently, the best-developed geochemical proxies in biogenic carbonates are 18O/16O and Sr/Ca ratios (possibly Mg/Ca) for temperature; 87Sr/86Sr for input sources, Cd/Ca and Ba/Ca ratios for phosphate and alkalinity concentrations, respectively, thus also for ocean circulation; 13C/12C for ocean productivity; B isotopes for seawater pH;, U, Th isotopes, and 14C for dating; and Sr and Mn concentrations for diagenesis. The oceanic authigenic minerals most widely used for chemical paleoceanography are barite, evaporite sulfates, and hydrogenous ferromanganese nodules. Marine barite is an effective alternative monitor of seawater 87Sr/86Sr, especially where carbonates are diagenetically altered or absent. It also provides a high-resolution record of seawater sulfate S isotopes, (evaporite sulfates only carry an episodic record), with new insights on factors affecting the S and C cycles and atmospheric oxygen. High-resolution studies of Sr, Nd, and Pb isotopes of well-dated ferromanganese nodules contain invaluable records on climate driven changes in oceanic circulation.

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To investigate the intracellular transport of sterols in etiolated leek (Allium porrum L.) seedlings, in vivo pulse-chase experiments with [1-14C]acetate were performed. Then, endoplasmic reticulum-, Golgi-, and plasma membrane (PM)-enriched fractions were prepared and analyzed for the radioactivity incorporated into free sterols. In leek seedlings sterols are present as a mixture in which (24R)-24-ethylcholest-5-en-3β-ol is by far the major compound (around 60%). The other sterols are represented by cholest-5-en-3β-ol, 24-methyl-cholest-5-en-3β-ol, (24S)-24-ethylcholesta-5,22E-dien-3β-ol, and stigmasta-5,24(241)Z-dien-3β-ol. These compounds are shown to reside mainly in the PM. Our results clearly indicate that free sterols are actively transported from the endoplasmic reticulum to the PM during the first 60 min of chase, with kinetics very similar to that of phosphatidylserine. Such a transport was found to be decreased at low temperature (12°C) and following treatment with monensin and brefeldin A. These data are consistent with a membrane-mediated process for the intracellular transport of sterols to the PM, which likely involves the Golgi apparatus.

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Endosperm development in Zea mays is characterized by a period of intense mitotic activity followed by a period in which mitosis is essentially eliminated and the cell cycle becomes one of alternating S and G phases, leading to endoreduplication of the nuclear DNA. The endosperm represents a significant contribution to the grain yield of maize; thus, methods that facilitate the study of cellular kinetics may be useful in discerning cellular and molecular components of grain yield. Two mathematical models have been developed to describe the kinetics of endosperm growth. The first describes the kinetics of mitosis during endosperm development; the second describes the kinetics of DNA endoreduplication during endosperm development. The mitotic model is a modification of standard growth curves. The endoreduplication model is composed of six differential equations that represent the progression of nuclei from one DNA content to another during the endoreduplication process. Total nuclei number per endosperm and the number of 3C, 6C, 12C, 24C, 48C, and 96C nuclei per endosperm (C is the haploid DNA content per nucleus) for inbred W64A from 8 to 18 days after pollination were determined by flow cytometry. The results indicate that the change in number of nuclei expressed as a function of the number of days after pollination is the same from one yearly crop to another. These data were used in the model to determine the endosperm growth rate, the maximum nuclei number per endosperm, and transition rates from one C value to the next higher C value. The kinetics of endosperm development are reasonably well represented by the models. Thus, the models provide a means to quantify the complex pattern of endosperm development.