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Long-term effect of beach replenishment on natural recovery of shallow Posidonia oceanica meadows
Authors:Jos M Gonzlez-Correa  Yolanda Fernndez Torquemada  Jos Luis Snchez Lizaso
Institution:aCentro de Investigación Marina de Santa Pola, CIMAR, Ayto. de Santa Pola y Univ. de Alicante, Torre d'Enmig s/n, Cabo de Santa Pola, Alicante, Spain;bDepartamento de Ciencias del mar y Biología Aplicada, Universidad de Alicante, POB 99, E-03080 Alicante, Spain
Abstract:The recovery capacity of shallow Posidonia oceanica meadows degraded by beach replenishment eighteen years before was assessed in two impacted meadows and compared with other two undisturbed localities. Inside each locality, we selected randomly three sites separated by 500–1000 m. At site level we study the vitality of P. oceanica meadow assessing the vegetative growth, leaf characteristics, and non-structural carbohydrates of the plants. Additionally, at locality level, silt-clay fraction, organic matter, pH and light intensity incident on the sea bottom were measured to evaluate the environmental conditions. Covering of P. oceanica was significantly lower at the impacted localities while amount of dead “matte” was higher. Leaf production of horizontal rhizomes (14.6 ± 1.11 vs 19.47 ± 1.45 leaves y−1), net total rhizomes recruitment (2.33 ± 0.17 vs 4.3 ± 0.33 branches y−1) and starch concentration (43.625 ± 0.67 vs 54.45 ± 0.74 mg per g of rhizome) at impacted meadows were significantly lower than controls. Leaf features, epiphytes biomass, colonization, elongation and horizontal and vertical rhizome production did not show significant differences. Sediments at impacted localities contained higher silt-clay fraction and higher organic matter load while pH was lower. Light intensity on the sea bottom measured at all localities was over the minimum light requirements estimated for P. oceanica. Our results show that the press impact produced by beach replenishment was enduring in the time slowing natural recovery by 45%. This impact may be related with changes in the sediment features.
Keywords:recovery  beach replenishment  long-term impact  light  siltation  press impact  Posidonia oceanica
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