Article ID Journal Published Year Pages File Type
4550013 Journal of Sea Research 2011 8 Pages PDF
Abstract

The study aimed at examining the relationship between epiphyte dynamics and carbon metabolism in seagrass ecosystems under nutrient enrichment. Temporal variability of epiphytes and factors controlling their dynamics (i.e. environmental conditions, substratum availability, substratum stability and herbivore pressure) were assessed in a fish farm impacted and an unaffected Mediterranean seagrass (Posidonia oceanica) meadow in the Aegean Sea (Greece). The factors controlling epiphyte dynamics responded differently to nutrient enrichment and partly interacted, rendering their cumulative effect on epiphyte load difficult to elucidate. Yet epiphytes accumulated on seagrass leaves near to the fish farm throughout the year, contributing 2 times more in above-ground biomass at cages than the control station. Reduction in substratum availability (i.e. decrease in leaf biomass) and increase in herbivore pressure affected epiphyte load, albeit their effects were not strong enough to counterbalance the effect of nutrient input from fish farm effluents. Moderate yet continuous nutrient input possibly stimulated epiphyte growth in excess of herbivory, shifting the control of epiphytes from top-down to bottom-up. Epiphyte accumulation affected carbon metabolism in the seagrass ecosystem by contributing to enhanced dissolved organic carbon (DOC) release, but seagrass loss was so acute that increased epiphyte cover could not counterbalance the decrease in community carbon production which was mainly driven by seagrass decline.

Research highlights► Epiphyte load increased by 165% at impacted compared to pristine meadow. ► Epiphyte load was negatively correlated with leaf biomass. ► Nutrient input from fish farm stimulated epiphyte growth in excess of herbivory. ► Epiphytes contributed to enhanced DOC release in impacted meadow. ► Epiphytes did not counterbalance decrease in community production.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Oceanography
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