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En el instante 23 de junio de 2026, 16:06:53 UTC,
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Modificado el valor del campo
spatial_coverage
a[{'bbox': '{"type": "Polygon", "coordinates": [[[-2.34, 37.38], [-0.69, 37.38], [-0.69, 38.76], [-2.34, 38.76], [-2.34, 37.38]]]}', 'centroid': '{"type": "Point", "coordinates": [-1.515, 38.07]}', 'text': 'Región de Murcia', 'uri': 'http://datos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia'}]
en Can an oligotrophic coastal lagoon support high biological productivity? Sources and pathways of primary production
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| 8 | "author": "Perez-Ruzafa, A., Morkune, R., Marcos, C., Perez-Ruzafa, | 8 | "author": "Perez-Ruzafa, A., Morkune, R., Marcos, C., Perez-Ruzafa, | ||
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| 84 | "miteco_data_population": { | 84 | "miteco_data_population": { | ||
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| 93 | "modified": "2026-06-23", | 93 | "modified": "2026-06-23", | ||
| 94 | "name": "6752280a-5ab3-5a38-aeb4-163b0f5370eb", | 94 | "name": "6752280a-5ab3-5a38-aeb4-163b0f5370eb", | ||
| 95 | "notes": "Coastal lagoons are among the most productive systems in | 95 | "notes": "Coastal lagoons are among the most productive systems in | ||
| 96 | the world. Many marine species make use of this by entering the | 96 | the world. Many marine species make use of this by entering the | ||
| 97 | lagoons as juveniles for nursery and growth before returning to the | 97 | lagoons as juveniles for nursery and growth before returning to the | ||
| 98 | sea for reproduction. Humans take advantage of such fish migration | 98 | sea for reproduction. Humans take advantage of such fish migration | ||
| 99 | processes by fishing, and exploit the high productivity for | 99 | processes by fishing, and exploit the high productivity for | ||
| 100 | aquaculture activities. The Mar Menor is one of the largest coastal | 100 | aquaculture activities. The Mar Menor is one of the largest coastal | ||
| 101 | lagoons in the Mediterranean, sustaining relatively high fishing | 101 | lagoons in the Mediterranean, sustaining relatively high fishing | ||
| 102 | intensity despite the fact that it has traditionally been | 102 | intensity despite the fact that it has traditionally been | ||
| 103 | characterized as highly oligotrophic. However, in the last decades, | 103 | characterized as highly oligotrophic. However, in the last decades, | ||
| 104 | this lagoon has suffered drastic changes induced by human activities. | 104 | this lagoon has suffered drastic changes induced by human activities. | ||
| 105 | This has led to eutrophication, which started mainly as a consequence | 105 | This has led to eutrophication, which started mainly as a consequence | ||
| 106 | of changes in agricultural practices in the lagoon watershed, and | 106 | of changes in agricultural practices in the lagoon watershed, and | ||
| 107 | triggered such fundamental changes in the system, as the mass | 107 | triggered such fundamental changes in the system, as the mass | ||
| 108 | development of jellyfish. The aim of this work is to capture and | 108 | development of jellyfish. The aim of this work is to capture and | ||
| 109 | analyse the structure and functioning of the trophic web of the Mar | 109 | analyse the structure and functioning of the trophic web of the Mar | ||
| 110 | Menor when it was still, in contrast to other coastal lagoons, | 110 | Menor when it was still, in contrast to other coastal lagoons, | ||
| 111 | oligotrophic, to provide a start point for analysing the consequences | 111 | oligotrophic, to provide a start point for analysing the consequences | ||
| 112 | of changes in the distribution of macrophyte meadows and of | 112 | of changes in the distribution of macrophyte meadows and of | ||
| 113 | eutrophication. We have compiled a detailed trophic model of this | 113 | eutrophication. We have compiled a detailed trophic model of this | ||
| 114 | lagoon, comprising 94 compartments, using an ECOPATH model to capture | 114 | lagoon, comprising 94 compartments, using an ECOPATH model to capture | ||
| 115 | the period 1980-1995. At this time the lagoon was an autotrophic | 115 | the period 1980-1995. At this time the lagoon was an autotrophic | ||
| 116 | system with a high net surplus of production that reached | 116 | system with a high net surplus of production that reached | ||
| 117 | 9124.31gC/m(2)/year, while the production/biomass (P/B) ratio reached | 117 | 9124.31gC/m(2)/year, while the production/biomass (P/B) ratio reached | ||
| 118 | 34.56 and the total primary production/total respiration ratio was | 118 | 34.56 and the total primary production/total respiration ratio was | ||
| 119 | 7.01. The lagoon exported a 38.46% of total flows, including the catch | 119 | 7.01. The lagoon exported a 38.46% of total flows, including the catch | ||
| 120 | by fishing, and 44.40% went to detritus. The primary production was | 120 | by fishing, and 44.40% went to detritus. The primary production was | ||
| 121 | mainly benthic (99.4%) due to the microphytobenthos and macrophytes. | 121 | mainly benthic (99.4%) due to the microphytobenthos and macrophytes. | ||
| 122 | However, despite the fact that total fishery landings in the study | 122 | However, despite the fact that total fishery landings in the study | ||
| 123 | period ranged between 144,835.5 and 346,708.5 kg, the gross efficiency | 123 | period ranged between 144,835.5 and 346,708.5 kg, the gross efficiency | ||
| 124 | was low, making up only 0.005% of the net primary production. This | 124 | was low, making up only 0.005% of the net primary production. This | ||
| 125 | could partly be explained by the high trophic level of the fish catch | 125 | could partly be explained by the high trophic level of the fish catch | ||
| 126 | (2.9), but mainly because most of the primary production (10,532.06 | 126 | (2.9), but mainly because most of the primary production (10,532.06 | ||
| 127 | gC/m(2)/year) went directly to the detritus pool and was accumulated | 127 | gC/m(2)/year) went directly to the detritus pool and was accumulated | ||
| 128 | in the sediment in the Caulerpa prolifera meadows.", | 128 | in the sediment in the Caulerpa prolifera meadows.", | ||
| 129 | "notes_translated": { | 129 | "notes_translated": { | ||
| 130 | "es": "Coastal lagoons are among the most productive systems in | 130 | "es": "Coastal lagoons are among the most productive systems in | ||
| 131 | the world. Many marine species make use of this by entering the | 131 | the world. Many marine species make use of this by entering the | ||
| 132 | lagoons as juveniles for nursery and growth before returning to the | 132 | lagoons as juveniles for nursery and growth before returning to the | ||
| 133 | sea for reproduction. Humans take advantage of such fish migration | 133 | sea for reproduction. Humans take advantage of such fish migration | ||
| 134 | processes by fishing, and exploit the high productivity for | 134 | processes by fishing, and exploit the high productivity for | ||
| 135 | aquaculture activities. The Mar Menor is one of the largest coastal | 135 | aquaculture activities. The Mar Menor is one of the largest coastal | ||
| 136 | lagoons in the Mediterranean, sustaining relatively high fishing | 136 | lagoons in the Mediterranean, sustaining relatively high fishing | ||
| 137 | intensity despite the fact that it has traditionally been | 137 | intensity despite the fact that it has traditionally been | ||
| 138 | characterized as highly oligotrophic. However, in the last decades, | 138 | characterized as highly oligotrophic. However, in the last decades, | ||
| 139 | this lagoon has suffered drastic changes induced by human activities. | 139 | this lagoon has suffered drastic changes induced by human activities. | ||
| 140 | This has led to eutrophication, which started mainly as a consequence | 140 | This has led to eutrophication, which started mainly as a consequence | ||
| 141 | of changes in agricultural practices in the lagoon watershed, and | 141 | of changes in agricultural practices in the lagoon watershed, and | ||
| 142 | triggered such fundamental changes in the system, as the mass | 142 | triggered such fundamental changes in the system, as the mass | ||
| 143 | development of jellyfish. The aim of this work is to capture and | 143 | development of jellyfish. The aim of this work is to capture and | ||
| 144 | analyse the structure and functioning of the trophic web of the Mar | 144 | analyse the structure and functioning of the trophic web of the Mar | ||
| 145 | Menor when it was still, in contrast to other coastal lagoons, | 145 | Menor when it was still, in contrast to other coastal lagoons, | ||
| 146 | oligotrophic, to provide a start point for analysing the consequences | 146 | oligotrophic, to provide a start point for analysing the consequences | ||
| 147 | of changes in the distribution of macrophyte meadows and of | 147 | of changes in the distribution of macrophyte meadows and of | ||
| 148 | eutrophication. We have compiled a detailed trophic model of this | 148 | eutrophication. We have compiled a detailed trophic model of this | ||
| 149 | lagoon, comprising 94 compartments, using an ECOPATH model to capture | 149 | lagoon, comprising 94 compartments, using an ECOPATH model to capture | ||
| 150 | the period 1980-1995. At this time the lagoon was an autotrophic | 150 | the period 1980-1995. At this time the lagoon was an autotrophic | ||
| 151 | system with a high net surplus of production that reached | 151 | system with a high net surplus of production that reached | ||
| 152 | 9124.31gC/m(2)/year, while the production/biomass (P/B) ratio reached | 152 | 9124.31gC/m(2)/year, while the production/biomass (P/B) ratio reached | ||
| 153 | 34.56 and the total primary production/total respiration ratio was | 153 | 34.56 and the total primary production/total respiration ratio was | ||
| 154 | 7.01. The lagoon exported a 38.46% of total flows, including the catch | 154 | 7.01. The lagoon exported a 38.46% of total flows, including the catch | ||
| 155 | by fishing, and 44.40% went to detritus. The primary production was | 155 | by fishing, and 44.40% went to detritus. The primary production was | ||
| 156 | mainly benthic (99.4%) due to the microphytobenthos and macrophytes. | 156 | mainly benthic (99.4%) due to the microphytobenthos and macrophytes. | ||
| 157 | However, despite the fact that total fishery landings in the study | 157 | However, despite the fact that total fishery landings in the study | ||
| 158 | period ranged between 144,835.5 and 346,708.5 kg, the gross efficiency | 158 | period ranged between 144,835.5 and 346,708.5 kg, the gross efficiency | ||
| 159 | was low, making up only 0.005% of the net primary production. This | 159 | was low, making up only 0.005% of the net primary production. This | ||
| 160 | could partly be explained by the high trophic level of the fish catch | 160 | could partly be explained by the high trophic level of the fish catch | ||
| 161 | (2.9), but mainly because most of the primary production (10,532.06 | 161 | (2.9), but mainly because most of the primary production (10,532.06 | ||
| 162 | gC/m(2)/year) went directly to the detritus pool and was accumulated | 162 | gC/m(2)/year) went directly to the detritus pool and was accumulated | ||
| 163 | in the sediment in the Caulerpa prolifera meadows." | 163 | in the sediment in the Caulerpa prolifera meadows." | ||
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