851 resultados para MYTILUS-EDULIS


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Über die Verbreitung, Gliederung und Ausbildung des Jungtertiärs im westlichen Schleswig-Holstein war bisher nicht viel bekannt. Am besten bearbeitet sind die glazial gestauchten Schollen von Morsum/Sylt. Eine Aufzählung erbohrter Miozänvorkommen mit nicht immer überzeugender Begründung lieferte H.-L. HECK 1935. S. THIELE (1941) hat die ihm bekannten Vorkommen hauptsächlich nach faziellen und petrographischen Gesichtspunkten bearbeitet. Er erkannte richtig die Stellung der Braunkohlensande. Die angekündigte palaeontologische Bearbeitung ist nicht erschienen. Eine allgemeine Übersicht über die Entwicklung des Jungtertiärs bringen W. WOLFE und H.-L. HECK 1949. W. HINSCH lieferte wertvolle Beiträge zur Molluskenfauna und zur Gliederung des Miozäns (1952, 1955). Über neue Vorkommen von Braunkohlen-Sanden berichtete E. DITTMER(1 956), eine erste Übersicht über neue Vorkommen der Hemmoorer Stufe gab derselbe Verfasser 1957.

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Dataset containing macrobenthos data for samples collected during April 2008 in the North-West Black Sea (between 44°46' - 43°45' N latitude and 30° 11' - 29°35' E longitude). Macrobenthos sampling was done in 4 stations using a 0.14 m**2 Van Veen grab. Washing of the sample through two sieves - 1 mm and 0.25 mm mesh size; the material retained by the two sieves was examined at the binocular microscope; all animals were extracted, using fine tweezers and the species or group of species were identified and counted (in order to determine the density of populations); the larger organisms were measured and weighed (structure and biomass); for smaller organisms, the average wet weights inscribed in standard tables were used to calculate the biomass. Taxonomic identification was done at the GeoEcoMar by A. Teaca and T. Begun using the relevant taxonomic literature (Key-book for the identification of the Black Sea and Sea of Azov Fauna, 1968 -1972, Kiev - in Russian, V 1-4; BACESCU, M.C., MÜLLER, G. I., GOMOIU, M.-T., 1971 and BACESCU, M.C., MÜLLER, G. I., GOMOIU, M.-T., 1971-Benthic ecological research to Black Sea. Comparative quantitative and qualitative analyse of pontic benthic fauna. Marine Ecology, 4, 1-357 (in Romanian).

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As the ocean undergoes acidification, marine organisms will become increasingly exposed to reduced pH, yet variability in many coastal settings complicates our ability to accurately estimate pH exposure for those organisms that are difficult to track. Here we present shell-based geochemical proxies that reflect pH exposure from laboratory and field settings in larvae of the mussels Mytilus californianus and M. galloprovincialis. Laboratory-based proxies were generated from shells precipitated at pH 7.51 to 8.04. U/Ca, Sr/Ca, and multielemental signatures represented as principal components varied with pH for both species. Of these, U/Ca was the best predictor of pH and did not vary with larval size, with semidiurnal pH fluctuations, or with oxygen concentration. Field applications of U/Ca were tested with mussel larvae reared in situ at both known and unknown pH conditions. Larval shells precipitated in a region of greater upwelling had higher U/Ca, and these U/Ca values corresponded well with the laboratory-derived U/Ca-pH proxy. Retention of the larval shell after settlement in molluscs allows use of this geochemical proxy to assess ocean acidification effects on marine populations.

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Anthropogenic emissions of carbon dioxide are leading to decreases in pH and changes in the carbonate chemistry of seawater. Ocean acidification may negatively affect the ability of marine organisms to produce calcareous structures while also influencing their physiological responses and growth. The aim of this study was to evaluate the effects of reduced pH on the survival, growth and shell integrity of juveniles of two marine bivalves from the Northern Adriatic sea: the Mediterranean mussel Mytilus galloprovincialis and the striped venus clam Chamelea gallina. An outdoor flow-through plant was set up and two pH levels (natural seawater pH as a control, pH 7.4 as the treatment) were tested in long-term experiments. Mortality was low throughout the first experiment for both mussels and clams, but a significant increase, which was sensibly higher in clams, was observed at the end of the experiment (6 months). Significant decreases in the live weight (-26%) and, surprisingly, in the shell length (-5%) were observed in treated clams, but not in mussels. In the controls of both species, no shell damage was ever recorded; in the treated mussels and clams, damage proceeded via different modes and to different extents. The severity of shell injuries was maximal in the mussels after just 3 months of exposure to a reduced pH, whereas it progressively increased in clams until the end of the experiment. In shells of both species, the damaged area increased throughout the experiment, peaking at 35% in mussels and 11% in clams. The shell thickness of the treated and control animals significantly decreased after 3 months in clams and after 6 months in mussels. In the second experiment (3 months), only juvenile mussels were exposed to a reduced pH. After 3 months, the mussels at a natural pH level or pH 7.4 did not differ in their survival, shell length or live weight. Conversely, shell damage was clearly visible in the treated mussels from the 1st month onward. Monitoring the chemistry of seawater carbonates always showed aragonite undersaturation at 7.4 pH, whereas calcite undersaturation occurred in only 37% of the measurements. The present study highlighted the contrasting effects of acidification in two bivalve species living in the same region, although not exactly in the same habitat.

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Dataset containing macrobenthos data for samples collected during September 2008 in the North-West Black Sea (between 44°46' - 43°45' N latitude and 30° 11' - 29°35' E longitude). Macrobenthos sampling was done in 4 stations using a 0.14 m**2 Van Veen grab. Washing of the sample through two sieves - 1 mm and 0.25 mm mesh size; the material retained by the two sieves was examined at the binocular microscope; all animals were extracted, using fine tweezers and the species or group of species were identified and counted (in order to determine the density of populations); the larger organisms were measured and weighed (structure and biomass); for smaller organisms, the average wet weights inscribed in standard tables were used to calculate the biomass. Taxonomic identification was done at the GeoEcoMar by A. Teaca and T. Begun using the relevant taxonomic literature ( "Key-book for the identification of the Black Sea and Sea of Azov Fauna, 1968 -1972, Kiev - in Russian, V 1-4; BACESCU, M.C., MÜLLER, G. I., GOMOIU, M.-T., 1971). BACESCU, M.C., MÜLLER, G. I., GOMOIU, M.-T., 1971-Benthic ecological research to Black Sea. Comparative quantitative and qualitative analyse of pontic benthic fauna. Marine Ecology, 4, 1-357 (in Romanian). Key-book for the identification of the Black Sea and Sea of Azov Fauna, 1968 -1972, Kiev, V. 1-4 (in Russian).

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El presente proyecto, enmarcado dentro del Programa INIAP/SENESCYT “Conservación y Uso Sostenible de Recursos Genéticos Forestales en áreas críticas de bosques húmedos y secos de los Andes y Amazonía”, a cargo del Departamento de Forestería del INIAP, nace de la necesidad de generar información sobre la pérdida de la biodiversidad de diversos ecosistemas de Ecuador. En concreto, de aquellos bosques de gran complejidad y elevada susceptibilidad como son los que se encuentran en la sub-cuenca del río Quijos: bosques húmedos de la región amazónica, fuentes de biodiversidad y sumideros de carbono, que se están viendo fuertemente amenazados por el cambio climático y por el cambio en el uso del suelo derivada de la intensa actividad humana que sufre la región desde hace décadas. Debido a esta complejidad, el proyecto se centra en las dos especies forestales más valoradas por los habitantes, aplicando metodología de Diagnóstico Rural Participativo, haciéndoles partícipes de esta forma de las decisiones y actuaciones de su región. Una vez determinadas las dos especies a estudiar (Cedrela montana y Erythrina edulis), se evaluó qué efectos tendrán las principales amenazas: el cambio climático y el cambio de uso del suelo, en las poblaciones de ambas. Para el estudio climático se han utilizado Modelos de Distribución de Especie, en concreto el programa Maxent, con el que se han modelizado dos situaciones: la probabilidad de idoneidad de hábitat actual y la probabilidad de idoneidad de hábitat futuro. Por comparación de ambos mapas se obtuvo una primera visión de cómo podría variar para el año 2070 la distribución potencial de ambas especies debido al cambio de las condiciones climáticas. Así mismo, se pudo determinar cuál de estas variables climáticas influye más en el modelo y, por lo tanto, en la distribución potencial. En el caso de Cedrela montana, en el año 2070 se prevé la desaparición total de hábitat idóneo en la zona de estudio, mientras que en Erythrina edulis, la reducción prevista es también casi total, de un 99,99%. A continuación, aplicando los Criterios de la Lista Roja de la UICN sobre los modelos, se ha determinado el estado de conservación de ambas especies, obteniendo el grado de amenaza que soportan, que en ambos casos es En Peligro Crítico (CR). Para el análisis del efecto del uso del suelo se procedió a la realización de muestreos en zonas con distinto grado antropogénico: el bosque natural y el bosque intervenido. Mediante comparación de las abundancias relativas y las distintas distribuciones diamétricas se han sacado conclusiones de cómo afecta la actividad humana a las poblaciones de ambas especies. Cedrela montana, por su excelente condición de maderable, desaparece en los bosques intervenidos y, si permanece, lo hace sólo con representación de diámetros bastante inferiores al de cortabilidad. Sin embargo, Erythrina edulis, por su condición de comestible, parece verse incluso beneficiada por la acción antrópica: desaparece con la eliminación del bosque, pero parece mantener o incrementar su abundancia en bosque intervenidos, en los que la curva de distribución diamétrica de la especie parece no variar con respecto al bosque primario. Con estas actividades se consigue comprender un poco más cómo sería la evolución de estas especies y el grado de amenaza a el que están sometidas, lo que constituye una fuente valiosa de información en la que basar futuras actividades de conservación de la biodiversidad y manejo sostenible del suelo.

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The objective of this work was to evaluate the use of the conductivity test as a means of predicting seed viability in seven Passiflora species: P. alata, P. cincinnata, P. edulis f. edulis, P. edulis f. flavicarpa, P. morifolia, P. mucronata, and P. nitida. Conductivity of non?desiccated (control), desiccated, and non?desiccated cryopreserved seeds was determined and related to their germination percentage. The obtained results suggest that the electrical conductivity test has potential as a germination predictor for P. edulis f. flavicarpa seed lots, but not for the other tested species. Index terms: Passiflora, seed cryopreservation, seed desiccation, seed viability.