INVESTIGADORES
PERILLO Gerardo Miguel E.
congresos y reuniones científicas
Título:
Belowground biomass of Spartina alterniflora and its nutrients contribution in a salt marsh from Bahia Blanca Estuary, Argentina.
Autor/es:
NEGRIN, V.L.; VILLALOBOS, A.E.; BOTTÉ, S.E.; GONZÁLEZ TRILLA, G.; MARCOVECCHIO, J O; PERILLO G.M.E.
Lugar:
Bahía Blanca
Reunión:
Congreso; ECSA 44: SCIENCE AND MANAGEMENT OF ESTUARIES AND COASTS: A TALE OF TWO HEMISPHERES; 2008
Institución organizadora:
Estuarine Coastal Science Association-Instituto Argentino de Oceanografía
Resumen:
By most estimates, belowground production of Spartina alterniflora exceeds that of aboveground components, and its accumulationin the marsh plays an important role in nutrient cycling. In spite of that, it has not been extensively studied. So, the productivity andseasonal dynamics of belowground biomass of S. alterniflora, in both low and high marsh, were evaluated in this work, as well astheir inputs of N and P to the system. Sediment corers were collected in low and high marsh from November 2006 to December2007. Belowground material was appropriately separated, washed and dried. According to two-way ANOVA, there were nosignificant differences in belowground biomass between high and low marsh, but there were differences along the year. Biomassshowed two peaks, one in late spring (733±198 g m-2) and another in April (612±147g m-2), and a minimum value in February(304±76 g m-2). By subtracting the minimum belowground biomass from the maximum belowground biomass, we found that annuproduction was 744 and 400 g m-2 for high and low marsh, respectively. Turnover rates were 0.54 y-1 for low marsh and 0.80 y-1 forhigh marsh. No differences were found, in average for the whole year, between both sites in the concentration of N and P. The inputof these elements to the system was 4.41 and 0.22 g m-2 y-1, respectively, for the low marsh, and 6.66 and 0.41 for the high marsh.The seasonal changes in belowground biomass could be linked to translocation of photosynthates between aboveground andbelowground parts, associated to flowering. Low turnover rates suggest a great accumulation of organic matter in marsh sediments