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en The Role of Cymodocea nodosa and Caulerpa prolifera Meadows as Nitrogen Sinks in Temperate Coastal Lagoons -
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) en The Role of Cymodocea nodosa and Caulerpa prolifera Meadows as Nitrogen Sinks in Temperate Coastal Lagoons
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| 102 | the availability of this nutrient for opportunistic organisms. The | 112 | the availability of this nutrient for opportunistic organisms. The | ||
| 103 | role of nitrogen sinks for two dominant macrophyte species of | 113 | role of nitrogen sinks for two dominant macrophyte species of | ||
| 104 | Mediterranean coastal lagoons, the seagrass Cymodocea nodosa and the | 114 | Mediterranean coastal lagoons, the seagrass Cymodocea nodosa and the | ||
| 105 | seaweed Caulerpa prolifera, was analysed by two different approaches: | 115 | seaweed Caulerpa prolifera, was analysed by two different approaches: | ||
| 106 | (i) studying nitrate (NO3-) and ammonium (NH4+) uptake kinetics of | 116 | (i) studying nitrate (NO3-) and ammonium (NH4+) uptake kinetics of | ||
| 107 | aboveground tissues in a laboratory and (ii) estimating nitrogen | 117 | aboveground tissues in a laboratory and (ii) estimating nitrogen | ||
| 108 | stocks and demands of meadows under natural conditions. The studies | 118 | stocks and demands of meadows under natural conditions. The studies | ||
| 109 | were carried out in the coastal lagoon of the Mar Menor, which has | 119 | were carried out in the coastal lagoon of the Mar Menor, which has | ||
| 110 | been subjected to high anthropogenic nitrogen inputs for decades. | 120 | been subjected to high anthropogenic nitrogen inputs for decades. | ||
| 111 | While both macrophytes were efficient in exploiting NH4+ from the | 121 | While both macrophytes were efficient in exploiting NH4+ from the | ||
| 112 | water column, only C. prolifera showed a high NO3- uptake capacity. | 122 | water column, only C. prolifera showed a high NO3- uptake capacity. | ||
| 113 | Large N pools in the C. nodosa and C. prolifera meadows of the Mar | 123 | Large N pools in the C. nodosa and C. prolifera meadows of the Mar | ||
| 114 | Menor were detected, suggesting that these habitats may have the | 124 | Menor were detected, suggesting that these habitats may have the | ||
| 115 | potential to be essential reservoirs for this nutrient. However, the | 125 | potential to be essential reservoirs for this nutrient. However, the | ||
| 116 | major role of belowground tissues of the seagrasses in nitrogen | 126 | major role of belowground tissues of the seagrasses in nitrogen | ||
| 117 | accumulation may determine important differences between the two | 127 | accumulation may determine important differences between the two | ||
| 118 | species in temporary N storage and sequestration. The data on N | 128 | species in temporary N storage and sequestration. The data on N | ||
| 119 | demands for the meadows of both macrophytes in the Mar Menor suggest | 129 | demands for the meadows of both macrophytes in the Mar Menor suggest | ||
| 120 | an important contribution of these habitats in controlling the inputs | 130 | an important contribution of these habitats in controlling the inputs | ||
| 121 | of this nutrient into the lagoon. We conclude that C. nodosa and C. | 131 | of this nutrient into the lagoon. We conclude that C. nodosa and C. | ||
| 122 | prolifera meadows can play a key role as a sink for dissolved | 132 | prolifera meadows can play a key role as a sink for dissolved | ||
| 123 | inorganic nitrogen in temperate coastal lagoons, being an important | 133 | inorganic nitrogen in temperate coastal lagoons, being an important | ||
| 124 | mechanism of resistance to eutrophication.", | 134 | mechanism of resistance to eutrophication.", | ||
| 125 | "notes_translated": { | 135 | "notes_translated": { | ||
| 126 | "es": "In coastal lagoons, marine benthic macrophyte meadows can | 136 | "es": "In coastal lagoons, marine benthic macrophyte meadows can | ||
| 127 | be an important element in the resistance to eutrophication of the | 137 | be an important element in the resistance to eutrophication of the | ||
| 128 | ecosystem, as they can function as temporary nitrogen sinks, limiting | 138 | ecosystem, as they can function as temporary nitrogen sinks, limiting | ||
| 129 | the availability of this nutrient for opportunistic organisms. The | 139 | the availability of this nutrient for opportunistic organisms. The | ||
| 130 | role of nitrogen sinks for two dominant macrophyte species of | 140 | role of nitrogen sinks for two dominant macrophyte species of | ||
| 131 | Mediterranean coastal lagoons, the seagrass Cymodocea nodosa and the | 141 | Mediterranean coastal lagoons, the seagrass Cymodocea nodosa and the | ||
| 132 | seaweed Caulerpa prolifera, was analysed by two different approaches: | 142 | seaweed Caulerpa prolifera, was analysed by two different approaches: | ||
| 133 | (i) studying nitrate (NO3-) and ammonium (NH4+) uptake kinetics of | 143 | (i) studying nitrate (NO3-) and ammonium (NH4+) uptake kinetics of | ||
| 134 | aboveground tissues in a laboratory and (ii) estimating nitrogen | 144 | aboveground tissues in a laboratory and (ii) estimating nitrogen | ||
| 135 | stocks and demands of meadows under natural conditions. The studies | 145 | stocks and demands of meadows under natural conditions. The studies | ||
| 136 | were carried out in the coastal lagoon of the Mar Menor, which has | 146 | were carried out in the coastal lagoon of the Mar Menor, which has | ||
| 137 | been subjected to high anthropogenic nitrogen inputs for decades. | 147 | been subjected to high anthropogenic nitrogen inputs for decades. | ||
| 138 | While both macrophytes were efficient in exploiting NH4+ from the | 148 | While both macrophytes were efficient in exploiting NH4+ from the | ||
| 139 | water column, only C. prolifera showed a high NO3- uptake capacity. | 149 | water column, only C. prolifera showed a high NO3- uptake capacity. | ||
| 140 | Large N pools in the C. nodosa and C. prolifera meadows of the Mar | 150 | Large N pools in the C. nodosa and C. prolifera meadows of the Mar | ||
| 141 | Menor were detected, suggesting that these habitats may have the | 151 | Menor were detected, suggesting that these habitats may have the | ||
| 142 | potential to be essential reservoirs for this nutrient. However, the | 152 | potential to be essential reservoirs for this nutrient. However, the | ||
| 143 | major role of belowground tissues of the seagrasses in nitrogen | 153 | major role of belowground tissues of the seagrasses in nitrogen | ||
| 144 | accumulation may determine important differences between the two | 154 | accumulation may determine important differences between the two | ||
| 145 | species in temporary N storage and sequestration. The data on N | 155 | species in temporary N storage and sequestration. The data on N | ||
| 146 | demands for the meadows of both macrophytes in the Mar Menor suggest | 156 | demands for the meadows of both macrophytes in the Mar Menor suggest | ||
| 147 | an important contribution of these habitats in controlling the inputs | 157 | an important contribution of these habitats in controlling the inputs | ||
| 148 | of this nutrient into the lagoon. We conclude that C. nodosa and C. | 158 | of this nutrient into the lagoon. We conclude that C. nodosa and C. | ||
| 149 | prolifera meadows can play a key role as a sink for dissolved | 159 | prolifera meadows can play a key role as a sink for dissolved | ||
| 150 | inorganic nitrogen in temperate coastal lagoons, being an important | 160 | inorganic nitrogen in temperate coastal lagoons, being an important | ||
| 151 | mechanism of resistance to eutrophication." | 161 | mechanism of resistance to eutrophication." | ||
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| 333 | Meadows as Nitrogen Sinks in Temperate Coastal Lagoons", | 343 | Meadows as Nitrogen Sinks in Temperate Coastal Lagoons", | ||
| 334 | "title_translated": { | 344 | "title_translated": { | ||
| 335 | "es": "The Role of Cymodocea nodosa and Caulerpa prolifera Meadows | 345 | "es": "The Role of Cymodocea nodosa and Caulerpa prolifera Meadows | ||
| 336 | as Nitrogen Sinks in Temperate Coastal Lagoons" | 346 | as Nitrogen Sinks in Temperate Coastal Lagoons" | ||
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| 345 | } | 355 | } | ||
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