936 resultados para 251001 Oceanografía biológica


Relevância:

100.00% 100.00%

Publicador:

Resumo:

[ES]Los misidáceos son pequeños crustáceos que se encuentran en muchas regiones costeras del mundo. Leptomysis lingvura se encuentra en la costa este de Gran Canaria (España) asociada a los fondos arenosos de profundidades entre 5 y 15 metros. Son un importante componente en la cadena trófica como alimento de muchos peces costeros y podrían ser un potencial alimento para ser utilizado en acuicultura. Se ha estudiado su supervivencia y reproducción en cautividad para su utilización en estudios de laboratorio, y han resultado ser una especie apta que se adapta bien a las condiciones de cultivo. En el presente estudio se pretende dilucidar como influyen en la tasa respiratoria y en la tasa de respiración potencial (actividad ETS) las condiciones fisiológicas en que se encuentran los organismos. Se han llevado a cabo dos experimentos, uno de ellos tiene como objetivo el estudio de organismos adultos de similar talla en diferentes períodos de inanición para determinar su efecto en la respiración y en la actividad ETS; el segundo experimento pretende determinar como influyen las condiciones de alimentación en la relación respiración-biomasa. En el primer caso se observa un descenso de la tasa respiratoria en función del aumento del período de inanición, mientras que la respiración potencial no muestra esta relación, siendo más conservativa, lo que se da como resultado una disminución del cociente R/ETS a medida que aumenta el período de inanición. También se observa un aumento de la tasa respiratoria al comienzo de la noche que puede tener relación con ritmos circadianos endógenos de esta especie. El coeficiente de la relación exponencial R-biomasa que presentan los organismos que fueron sometidos durante 7 días a condiciones límite de alimentación son inferiores a 0.75 que establece la ley de Kleiber, mientras que los organismos en buenas condiciones de alimentación muestran un coeficiente muy cercano o superior a 0.75.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[ES]La respiración es un proceso fisiológico común a todos los organismos marinos. En los estudios oceanográficos se ha determinado, comúnmente, mediante la cuantificación del consumo de oxígeno de organismos incubados en botellas. Esta metodología es tediosa y lenta, por lo que Packard et al. (1971) propusieron el uso del análisis bioquímico basado en la actividad de las enzimas implicadas en la respiración, el Sistema de Transporte de Electrones (ETS). Este análisis mide la velocidad máxima que dichas enzimas pueden tener, determinando la respiración potencial de los organismos. Dicha velocidad estará controlada por la disponibilidad intracelular de sus sustratos, los piridín nucleótidos (NADH y NADPH). En el presente trabajo, se ha analizado el metabolismo respiratorio, a través de medidas del ETS y de los piridín nucleótidos, tanto en el dinoflagelado Oxyrrhis marina en estudios de laboratorio, como en organismos recogidos del medio marino durante la campaña de circunnavegación MALASPINA 2010

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Programa de Doctorado en Oceanografía

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Institut de Ciències del Mar (ICM-CSIC). Doctorado en oceanografía. Con mención de Calidad de la ANECA

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[EN] Seamounts are considered to be ??hotspots?? of marine life but, their role in oceans primary productivity is still under discussion. We have studied the microbial community structure and biomass of the epipelagic zone (0?150 m) at two northeast Atlantic seamounts (Seine and Sedlo) and compared those with the surrounding ocean. Results from two cruises to Sedlo and three to Seine are presented. Main results show large temporal and spatial microbial community variability on both seamounts. Both Seine and Sedlo heterotrophic community (abundance and biomass) dominate during winter and summer months, representing 75% (Sedlo, July) to 86% (Seine, November) of the total plankton biomass. In Seine, during springtime the contribution to total plankton biomass is similar (47% autotrophic and 53% heterotrophic). Both seamounts present an autotrophic community structure dominated by small cells (nano and picophytoplankton). It is also during spring that a relatively important contribution (26%) of large cells to total autotrophic biomass is found. In some cases, a ??seamount effect?? is observed on Seine and Sedlo microbial community structure and biomass. In Seine this is only observed during spring through enhancement of large autotrophic cells at the summit and seamount stations. In Sedlo, and despite the observed low biomasses, some clear peaks of picoplankton at the summit or at stations within the seamount area are also observed during summer. Our results suggest that the dominance of heterotrophs is presumably related to the trapping effect of organic matter by seamounts. Nevertheless, the complex circulation around both seamounts with the presence of different sources of mesoscale variability (e.g. presence of meddies, intrusion of African upwelling water) may have contributed to the different patterns of distribution, abundances and also changes observed in the microbial community.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[EN] Migrant biota transports carbon to the mesopelagic zone due to their feeding at the shallower layers and their defecation, respiration, excretion and mortality at depth. The so-called active flux has been considered a small number compared to gravitational sinking. Recent assessments in subtropical waters show an important effect due to predation by interzonal diel vertical migrants (DVMs). The consumption and subsequent transport of epipelagic zooplankton by DVMs (mainly micronekton) to the mesopelagic zone seemed similar to the mean gravitational export. However, the consequences of this active transport to the bathypelagic zone are almost unknown. Here, we show the effect of the Atlantic and Pacific equatorial upwelling systems on the vertical distribution of acoustic backscatter from the surface to bathypelagic depths. The enhancement of the acoustic signal below the upwelling zone was observed to reach 4000 m depth, coinciding with high abundances and activity of bacteria at those depths. The results suggest an active carbon transport from the epipelagic driven by zooplankton and micronekton, enhancing the efficiency of the biological pump and giving an insight about the fate of an increased productivity at the shallower layers of the ocean

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[ES] Se plantea la cuestión de las prospecciones petrolíferas en aguas de Canarias desde el punto de vista de la geología del petróleo como recurso mineral, como fuente de energía y energías alternativas y el impacto que para la vida marina tendría la posible explotación del petróleo en aguas de Canarias

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[EN] The in situ activity of the enzymes aminoacyl-tRNA synthetases (AARS) and the growth rates of naupliar stages of the planktonic marine copepod Paracartia grani were measured in the laboratory under different temperature and food concentrations. We assessed the effect of these parameters on growth and protein synthesis rates of P. grani nauplii. Growth and protein synthesis rates of P. grani nauplii depended on temperature and food concentration. AARS activity is valid as an index of somatic growth for P. grani nauplii when growth is not limited by food availability. However, the relationship between protein-specific AARS activity and nauplii growth varied according to food availability levels. The degradation of proteins during starvation and/or the ß-oxidation of fatty acids affected the relationship between specific AARS activity and growth rates. The results presented here add to previous studies showing that the AARS activity is a useful tool for estimating somatic growth of this and other key copepod species. Nevertheless, further research is required to elucidate the validity of AARS activity as a universal proxy for growth.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[EN] Size-abundance spectra (SAS) were analyzed in different phytoplankton assemblages of the Alborán Sea collected in areas with contrasting hydrological features (upwelling areas and anticyclonic gyre). Abundance of micro-plankton cells decreased following the hydrological gradient from the most productive stations towards offshore stations. This size-fraction of phytoplankton was dominated by diatoms. Pico-plankton followed an opposite gradient. Concordantly, the slope of the SAS trended to decrease from coastal areas (upwelling) towards the anticyclonic gyre. However, phytoplankton assemblages featuring similar SAS values presented a quite different taxonomical composition of their diatom communities. According to the previous available information about the taxonomical composition of the phytoplankton communities in the Alborán Sea, these differences in diatom composition are indicative of differences in productivity of the phytoplankton. Consequently, the utility of phytoplankton SAS as an indicator of changes in the phytoplankton communities of the Alborán Sea is discussed.

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Máster en Oceanografía

Relevância:

100.00% 100.00%

Publicador:

Resumo:

Programa de doctorado en Oceanografía

Relevância:

100.00% 100.00%

Publicador:

Resumo:

[EN] Many ecologically important chemical transformations in the ocean are controlled by biochemical enzyme reactions in plankton. Nitrogenase regulates the transformation of N2 to ammonium in some cyanobacteria and serves as the entryway for N2 into the ocean biosphere. Nitrate reductase controls the reduction of NO3 to NO2 and hence new production in phytoplankton. The respiratory electron transfer system in all organisms links the carbon oxidation reactions of intermediary metabolism with the reduction of oxygen in respiration. Rubisco controls the fixation of CO2 into organic matter in phytoplankton and thus is the major entry point of carbon into the oceanic biosphere. In addition to these, there are the enzymes that control CO2 production, NH4 excretion and the fluxes of phosphate. Some of these enzymes have been recognized and researched by marine scientists in the last thirty years. However, until recently the kinetic principles of enzyme control have not been exploited to formulate accurate mathematical equations of the controlling physiological expressions. Were such expressions available they would increase our power to predict the rates of chemical transformations in the extracellular environment of microbial populations whether this extracellular environment is culture media or the ocean. Here we formulate from the principles of bisubstrate enzyme kinetics, mathematical expressions for the processes of NO3 reduction, O2 consumption, N2 fixation, total nitrogen uptake.