Identificador persistente para citar o vincular este elemento:
http://hdl.handle.net/10553/1185
Título: | Light control of the respiration of exogenous glycerol in the red macroalga Grateloupia doryphora | Autores/as: | Robaina, R. R. García-Jiménez, P. Brito, Isidro Luque-Escalona, Angel |
Palabras clave: | Algas rojas | Fecha de publicación: | 1995 | Publicación seriada: | European Journal of Phycology | Resumen: | Heterotrophic activity in macroalgae has been little studied, but the red macroalga Grateloupia doryphora is known to grow in light at a higher rate in a glycerol-containing medium than in seawater. The effects of 0.1 IM exogenous glycerol in seawater (SW90-gly) on the respiration rate of G. doryphora and the role played by light were investigated The algae pretreated for 2h in the light and in SW90-gly evolved oxygen and fixed carbon dioxide ((HCO3-)-C-14), but also evolved radioactive (CO2)-C-14 from [C-14]glycerol. The rate of oxygen evolution was lower than that of samples in seawater, due to a high respiration rate and/or a partial inhibition of photosynthesis induced by glycerol. In contrast, the rate of inorganic carbon fixation was higher in SW90-gly than in control samples in seawater, suggesting that non-photosynthetic patterns were operating. In darkness, after pretreatment in the light in SW90-gly, samples showed a high oxygen uptake rate just after the light was turned off. Twenty minutes of darkness were enough to decrease this high respiration rate to that of samples in seawater. The oxygen uptake observed in all experiments with glycerol was mitochondrial as it was inhibited by potassium cyanide and salicylhydroxamic acid (SHAM). Pretreatment of samples in the light in SW90-gly with the photosynthetic inhibitor DCMU did not inhibit ensuing dark respiration, thus providing evidence for a non-photosynthetic effect of the light. The highest dark respiration rate was observed after the samples were pretreated in monochromatic blue light in glycerol-containing media. | URI: | http://hdl.handle.net/10553/1185 | ISSN: | 0967-0262 | DOI: | 10.1080/09670269500650841 | Fuente: | European Journal of Phycology[ISSN 0967-0262],v. 30, p. 81-86 |
Colección: | Artículos |
Citas SCOPUSTM
14
actualizado el 17-nov-2024
Citas de WEB OF SCIENCETM
Citations
13
actualizado el 17-nov-2024
Visitas
114
actualizado el 06-jul-2024
Descargas
227
actualizado el 06-jul-2024
Google ScholarTM
Verifica
Altmetric
Comparte
Exporta metadatos
Los elementos en ULPGC accedaCRIS están protegidos por derechos de autor con todos los derechos reservados, a menos que se indique lo contrario.