SciELO - Scientific Electronic Library Online

 
vol.38 número4Evaluación del golfo de California como una fuente potencial de actinobacterias marinas bioactivasEvaluación de la estructura genética poblacional de Sphyrna lewini para la identificación de unidades de conservación en el Pacífico mexicano índice de autoresíndice de assuntospesquisa de artigos
Home Pagelista alfabética de periódicos  

Serviços Personalizados

Journal

Artigo

Indicadores

Links relacionados

  • Não possue artigos similaresSimilares em SciELO

Compartilhar


Ciencias marinas

versão impressa ISSN 0185-3880

Resumo

KORHONEN, LK et al. Effects of sulfide concentration, pH, and anoxia on photosynthesis and respiration of Zostera marina. Cienc. mar [online]. 2012, vol.38, n.4, pp.625-633. ISSN 0185-3880.  https://doi.org/10.7773/cm.v38i4.2034.

Sulfide produced in marine sediments by sulfate reduction is toxic for several macrophytes, and high sediment sulfide concentrations have been associated with seagrass die-off events. Sulfide has been shown to reduce growth in a number of seagrasses, but little is known about its effect on the photosynthetic and respiratory metabolism. Consequently, the aim of this research was to evaluate the effect of sulfide on photosynthesis and respiration of the seagrass Zostera marina. Photosynthetic oxygen evolution and respiration were determined polarographically, while the optimum quantum yield was used as a measure of the photosynthetic performance of photosystem II in the leaves of Z. marina. The results showed that sulfide concentrations of approximately 1000 μM could be considered an upper threshold limit for the survival of Z. marina in the coastal lagoons of Baja California (Mexico) studied. Respiration was not inhibited by sulfide concentrations up to 1000 μM during 48-h incubations, while photosynthetic performance was reduced by short exposure to sulfide concentrations of 25 μM but also by long exposure to concentrations as low as 50 μM. This is the first study that shows that the photosynthetic capacity of Z. marina is not recovered once the sulfide-free conditions have been re-established.

Palavras-chave : aerobic respiration; optimum quantum yield; sulfide; photosynthesis; Zostera marina.

        · resumo em Espanhol     · texto em Espanhol     · Espanhol ( pdf )

 

Creative Commons License Todo o conteúdo deste periódico, exceto onde está identificado, está licenciado sob uma Licença Creative Commons