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En el instante 23 de junio de 2026, 16:13:25 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 The emergent fouling population after severe eutrophication in the Mar Menor coastal lagoon
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| 8 | "author": "Sandonnini, J., Del Pilar Ruso, Y., Cortes Melendreras, | 8 | "author": "Sandonnini, J., Del Pilar Ruso, Y., Cortes Melendreras, | ||
| 9 | E., Barbera, C., Hendriks, I.E., Kurt Kersting, D. y Gimenez | 9 | E., Barbera, C., Hendriks, I.E., Kurt Kersting, D. y Gimenez | ||
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| 12 | "author_name": "Sandonnini, J., Del Pilar Ruso, Y., Cortes | 12 | "author_name": "Sandonnini, J., Del Pilar Ruso, Y., Cortes | ||
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| 43 | "name": "Sandonnini, J., Del Pilar Ruso, Y., Cortes Melendreras, | 43 | "name": "Sandonnini, J., Del Pilar Ruso, Y., Cortes Melendreras, | ||
| 44 | E., Barbera, C., Hendriks, I.E., Kurt Kersting, D. y Gimenez | 44 | E., Barbera, C., Hendriks, I.E., Kurt Kersting, D. y Gimenez | ||
| 45 | Casalduero, F." | 45 | Casalduero, F." | ||
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| 66 | "diversidad", | 66 | "diversidad", | ||
| 67 | "especies_protegidas", | 67 | "especies_protegidas", | ||
| 68 | "eutrofizacion", | 68 | "eutrofizacion", | ||
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| 78 | "Regional Studies in Marine Science", | 78 | "Regional Studies in Marine Science", | ||
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| 89 | "miteco_data_population": { | 89 | "miteco_data_population": { | ||
| 90 | "es": "" | 90 | "es": "" | ||
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| 92 | "miteco_data_territory": { | 92 | "miteco_data_territory": { | ||
| 93 | "es": "" | 93 | "es": "" | ||
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| 95 | "miteco_dataset_type": | 95 | "miteco_dataset_type": | ||
| 96 | //publications.europa.eu/resource/authority/dataset-type/STATISTICAL", | 96 | //publications.europa.eu/resource/authority/dataset-type/STATISTICAL", | ||
| 97 | "miteco_geo_level": "1", | 97 | "miteco_geo_level": "1", | ||
| 98 | "modified": "2026-06-23", | 98 | "modified": "2026-06-23", | ||
| 99 | "name": "120bc55b-fb15-5ffd-a1bd-041e589e910e", | 99 | "name": "120bc55b-fb15-5ffd-a1bd-041e589e910e", | ||
| 100 | "notes": "Mar Menor is one of the largest coastal lagoons in the | 100 | "notes": "Mar Menor is one of the largest coastal lagoons in the | ||
| 101 | Mediterranean basin. Over the years, Mar Menor has suffered a | 101 | Mediterranean basin. Over the years, Mar Menor has suffered a | ||
| 102 | significant environmental degradation due to multiple factors with | 102 | significant environmental degradation due to multiple factors with | ||
| 103 | anthropogenic origin. The transformation from a rain-fed basin to | 103 | anthropogenic origin. The transformation from a rain-fed basin to | ||
| 104 | intensive irrigated agriculture has led to an rise in the water inflow | 104 | intensive irrigated agriculture has led to an rise in the water inflow | ||
| 105 | and nutrients in the basin, which has provoked severe eutrophication. | 105 | and nutrients in the basin, which has provoked severe eutrophication. | ||
| 106 | The increase in nutrients led to changes in the structure and function | 106 | The increase in nutrients led to changes in the structure and function | ||
| 107 | of the lagoon ecosystems. The epibenthic and suspension feeder | 107 | of the lagoon ecosystems. The epibenthic and suspension feeder | ||
| 108 | organisms have benefited from this imbalance, proliferating and | 108 | organisms have benefited from this imbalance, proliferating and | ||
| 109 | reaching a high population density. The composition and abundance of | 109 | reaching a high population density. The composition and abundance of | ||
| 110 | the species assemblage found in the sub-coastal bottoms of the coastal | 110 | the species assemblage found in the sub-coastal bottoms of the coastal | ||
| 111 | lagoon after the environmental crisis occurred in 2016, using | 111 | lagoon after the environmental crisis occurred in 2016, using | ||
| 112 | artificial settlement structures. The variation in community density | 112 | artificial settlement structures. The variation in community density | ||
| 113 | and affinity between sampling sites in 2017 and 2018, were determined. | 113 | and affinity between sampling sites in 2017 and 2018, were determined. | ||
| 114 | A total of 31 species belonging to 27 genera and 7 phyla were observed | 114 | A total of 31 species belonging to 27 genera and 7 phyla were observed | ||
| 115 | in 11 samples. The best represented class are polychaeta (Phylum | 115 | in 11 samples. The best represented class are polychaeta (Phylum | ||
| 116 | Annelida) with 11 identified species. The genus with the greatest | 116 | Annelida) with 11 identified species. The genus with the greatest | ||
| 117 | species richness was Hydroides with two species: H. dianthus (Verrill, | 117 | species richness was Hydroides with two species: H. dianthus (Verrill, | ||
| 118 | 1873), and H. elegans (Haswell, 1883), both of them considered | 118 | 1873), and H. elegans (Haswell, 1883), both of them considered | ||
| 119 | potentially invasive and opportunistic species followed by the genus | 119 | potentially invasive and opportunistic species followed by the genus | ||
| 120 | Serpula, with two species: S. vermicularis (Linnaeus, 1767), and S. | 120 | Serpula, with two species: S. vermicularis (Linnaeus, 1767), and S. | ||
| 121 | concharum (Langerhans, 1880) and the genus Branchiomma was represented | 121 | concharum (Langerhans, 1880) and the genus Branchiomma was represented | ||
| 122 | with another exotic invasive species, B. boholense (Grube, 1878), | 122 | with another exotic invasive species, B. boholense (Grube, 1878), | ||
| 123 | which is only found in collectors in 2018. These results have allowed | 123 | which is only found in collectors in 2018. These results have allowed | ||
| 124 | to increase the knowledge about the effect of eutrophication in the | 124 | to increase the knowledge about the effect of eutrophication in the | ||
| 125 | structure of the fouling community in the assemblage succession in the | 125 | structure of the fouling community in the assemblage succession in the | ||
| 126 | Mar Menor coastal lagoon.", | 126 | Mar Menor coastal lagoon.", | ||
| 127 | "notes_translated": { | 127 | "notes_translated": { | ||
| 128 | "es": "Mar Menor is one of the largest coastal lagoons in the | 128 | "es": "Mar Menor is one of the largest coastal lagoons in the | ||
| 129 | Mediterranean basin. Over the years, Mar Menor has suffered a | 129 | Mediterranean basin. Over the years, Mar Menor has suffered a | ||
| 130 | significant environmental degradation due to multiple factors with | 130 | significant environmental degradation due to multiple factors with | ||
| 131 | anthropogenic origin. The transformation from a rain-fed basin to | 131 | anthropogenic origin. The transformation from a rain-fed basin to | ||
| 132 | intensive irrigated agriculture has led to an rise in the water inflow | 132 | intensive irrigated agriculture has led to an rise in the water inflow | ||
| 133 | and nutrients in the basin, which has provoked severe eutrophication. | 133 | and nutrients in the basin, which has provoked severe eutrophication. | ||
| 134 | The increase in nutrients led to changes in the structure and function | 134 | The increase in nutrients led to changes in the structure and function | ||
| 135 | of the lagoon ecosystems. The epibenthic and suspension feeder | 135 | of the lagoon ecosystems. The epibenthic and suspension feeder | ||
| 136 | organisms have benefited from this imbalance, proliferating and | 136 | organisms have benefited from this imbalance, proliferating and | ||
| 137 | reaching a high population density. The composition and abundance of | 137 | reaching a high population density. The composition and abundance of | ||
| 138 | the species assemblage found in the sub-coastal bottoms of the coastal | 138 | the species assemblage found in the sub-coastal bottoms of the coastal | ||
| 139 | lagoon after the environmental crisis occurred in 2016, using | 139 | lagoon after the environmental crisis occurred in 2016, using | ||
| 140 | artificial settlement structures. The variation in community density | 140 | artificial settlement structures. The variation in community density | ||
| 141 | and affinity between sampling sites in 2017 and 2018, were determined. | 141 | and affinity between sampling sites in 2017 and 2018, were determined. | ||
| 142 | A total of 31 species belonging to 27 genera and 7 phyla were observed | 142 | A total of 31 species belonging to 27 genera and 7 phyla were observed | ||
| 143 | in 11 samples. The best represented class are polychaeta (Phylum | 143 | in 11 samples. The best represented class are polychaeta (Phylum | ||
| 144 | Annelida) with 11 identified species. The genus with the greatest | 144 | Annelida) with 11 identified species. The genus with the greatest | ||
| 145 | species richness was Hydroides with two species: H. dianthus (Verrill, | 145 | species richness was Hydroides with two species: H. dianthus (Verrill, | ||
| 146 | 1873), and H. elegans (Haswell, 1883), both of them considered | 146 | 1873), and H. elegans (Haswell, 1883), both of them considered | ||
| 147 | potentially invasive and opportunistic species followed by the genus | 147 | potentially invasive and opportunistic species followed by the genus | ||
| 148 | Serpula, with two species: S. vermicularis (Linnaeus, 1767), and S. | 148 | Serpula, with two species: S. vermicularis (Linnaeus, 1767), and S. | ||
| 149 | concharum (Langerhans, 1880) and the genus Branchiomma was represented | 149 | concharum (Langerhans, 1880) and the genus Branchiomma was represented | ||
| 150 | with another exotic invasive species, B. boholense (Grube, 1878), | 150 | with another exotic invasive species, B. boholense (Grube, 1878), | ||
| 151 | which is only found in collectors in 2018. These results have allowed | 151 | which is only found in collectors in 2018. These results have allowed | ||
| 152 | to increase the knowledge about the effect of eutrophication in the | 152 | to increase the knowledge about the effect of eutrophication in the | ||
| 153 | structure of the fouling community in the assemblage succession in the | 153 | structure of the fouling community in the assemblage succession in the | ||
| 154 | Mar Menor coastal lagoon." | 154 | Mar Menor coastal lagoon." | ||
| 155 | }, | 155 | }, | ||
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