977 resultados para Bomberos - Fisiología


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Facultad de Ciencias del Mar, Departamento de Biología

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Programa de doctorado: Avances en Traumatología, Medicina del deporte, ciudados de heridas.

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Se estudia el papel de la poliaminas durante la reproducción de las algas rojas , en particular la de las enzimas reguladoras de su síntesis ornitina descarboxilasa y arginina descarboxilasa

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Se evalúa el papel de las enzimas transglutaminasas en la organización de la antena colectora de luz en algas rojas

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Valoración de la cantidad y calidad de la carragena de cultivares de Panamá

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Papel de las poliaminas en la precipitación del carbonato en algas

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[EN] In the frame of the restoration of natural populations of Cymodocea nodosa of the Canary Islands, seeds are being collected at natural populations where germination is rather scarce and seasonal after dormancy. We have developed techniques of propagation in vitro of collected seeds, consisting in forced seed germination and seedlings propagation to obtain mature 20-30 cm plantlet, which eventually are being used for restoration. In order to improve the developed methodology, several experiments were conducted to adjust conditions for seed storage under different regimes of temperature without loosing germinative potential, fertilize during propagation with controlled released NPK fertilizers, and increase growth by dipping seedlings in solutions of the most common plant hormones.

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[EN] The seagrass Cymodocea nodosa (Ucria) Ascherson is the most abundant seagrass species in the Canary Islands (Spain), where it forms dense submerged, ecologically relevant communities as stable and protected habitats. As with other seagrasses, concern has arisen due to a decline in the number and extension of the communities as the result of adverse activities in coastal areas. Seed germination and planting are assumed as cost-effective method for restoration. In the frame of the restoration of natural populations of Cymodocea nodosa, pilot experiences not tested so far in the Canary Islands have been carried out to developed in vitro techniques to produce viable seedlings and its transference to the natural environment.

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[EN] Plant Tissue Culture, also called “micropropagation”, is the propagation of plants from different tissues (or explants) in a shorter time than conventional propagation, making use of the ability that many plant cells have to regenerate a whole plant (totipotency).There are two alternative mechanisms by which an explant can regenerate an entire plant, namely organogenesis and somatic embryogenesis. Since the last decades, the number of higher terrestrial plants species from which these techniques have been successfully applied has continually increased. However, few attempts have been carried out in marine plants. Previous seagrasses authors have focused their studies on i) vegetative propagation of rhizome fragments as explants in Ruppia maritima, Halophila engelmannii, Cymodocea nodosa and Posidonia oceanica; ii) culture of meristems in Heterozostera tasmanica, C. nodosa or P. oceanica; and iii) culture of germinated seeds on aseptic conditions, in Thalassia testudinum, H. ovalis, P. coriacea, P. oceanica, and H. decipiens. All these studies determine the most adequate culture medium for each species (seawater, nutrients, vitamins, carbon sources, etc...), often supplemented with different plant growth regulators and the necessary conditions for the culture maintenance, such as light and temperature. On the other hand, several studies have previously established protocols for cell or protoplast isolation in the species Zostera marina, Z. muelleri, P. oceanica, and C. nodosa, using shoots collected from natural meadows as original vegetal source, but further cell growth was never accomplished. Due to the absence of somatic embryogenesis or organogenetic studies in seagrasses we wonder: IS THE SUCCESSFUL APPLICATION OF TISSUE CULTURE TECHNIQUES POSSIBLE IN SEAGRASSES?

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[ES] Cymodocea nodosa (Ucria) Ascherson es una fanerógama marina que crece en fondos arenosos bien iluminados, dando lugar a las praderas submarinas (sebadales), hábitat que tiene una importante función ecológica y repercusiones económicas, por su beneficio para las poblaciones de peces. Las actividades humanas en el litoral amenazan a las comunidades de fanerógamas marinas, lo que ha llevado a la regresión de estos ecosistemas y al detrimento de la calidad de sus aguas. De forma natural, la especie sólo responde mediante la propagación vegetativa a estas alteraciones, ya que, estudios sobre la germinación de las semillas en Cymodocea nodosa muestran que, en relación con el alto número de frutos generalmente encontrados en el sedimento, sólo son detectadas un bajo número de plántulas con un rizoma desarrollado, y la viabilidad natural de estas nuevas plántulas es, además, baja. Ante tal situación natural, el empleo de técnicas de micropropagación puede contribuir a las labores que se realizan para la restauración o reimplantación de sebadales. Habiéndose comprobado que existen limitaciones para la propagación in vitro a partir de fragmentos de la planta (ej. rizoma, se ha pensado en incrementar la capacidad germinativa, venciendo i) la dormancia que presenta la semilla, aclimatando en acuarios y transplantando al mar nuevas plántulas, como primera medida, y ii) la inducción de embriogénesis somática, como segunda medida estratégica que asegure la provisión permanente de nuevas plántulas.

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Premio extraordinario de doctorado 2011. Premio a la mejor tesis doctoral (Ciencias Sociales y Jurídicas) 2011.