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en Genetic diversity and connectivity remain high in Holothuria polii (Delle Chiaje 1823) across a coastal lagoon-open sea environmental gradient -
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del recurso Distribución HTML a2026-06-25
(anteriormente2026-06-23
) en Genetic diversity and connectivity remain high in Holothuria polii (Delle Chiaje 1823) across a coastal lagoon-open sea environmental gradient
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| 94 | "notes": "Coastal lagoons represent habitats with widely | 104 | "notes": "Coastal lagoons represent habitats with widely | ||
| 95 | heterogeneous environmental conditions, particularly as regards | 105 | heterogeneous environmental conditions, particularly as regards | ||
| 96 | salinity and temperature, which fluctuate in both space and time. | 106 | salinity and temperature, which fluctuate in both space and time. | ||
| 97 | These characteristics suggest that physical and ecological factors | 107 | These characteristics suggest that physical and ecological factors | ||
| 98 | could contribute to the genetic divergence among populations occurring | 108 | could contribute to the genetic divergence among populations occurring | ||
| 99 | in coastal lagoon and open-coast environments. This study investigates | 109 | in coastal lagoon and open-coast environments. This study investigates | ||
| 100 | the genetic structure of Holothuria polii at a micro-geographic scale | 110 | the genetic structure of Holothuria polii at a micro-geographic scale | ||
| 101 | across the Mar Menor coastal lagoon and nearby marine areas, | 111 | across the Mar Menor coastal lagoon and nearby marine areas, | ||
| 102 | estimating the mitochondrial DNA variation in two gene fragments, | 112 | estimating the mitochondrial DNA variation in two gene fragments, | ||
| 103 | cytochrome oxidase I (COI) and 16S rRNA (16S). Dataset of | 113 | cytochrome oxidase I (COI) and 16S rRNA (16S). Dataset of | ||
| 104 | mitochondrial sequences was also used to test the influence of | 114 | mitochondrial sequences was also used to test the influence of | ||
| 105 | environmental differences between coastal lagoon and marine waters on | 115 | environmental differences between coastal lagoon and marine waters on | ||
| 106 | population genetic structure. All sampled locations exhibited high | 116 | population genetic structure. All sampled locations exhibited high | ||
| 107 | levels of haplotype diversity and low values of nucleotide diversity. | 117 | levels of haplotype diversity and low values of nucleotide diversity. | ||
| 108 | Both genes showed contrasting signals of genetic differentiation | 118 | Both genes showed contrasting signals of genetic differentiation | ||
| 109 | (non-significant differences using COI and slight differences using | 119 | (non-significant differences using COI and slight differences using | ||
| 110 | 16S, which could due to different mutation rates or to differential | 120 | 16S, which could due to different mutation rates or to differential | ||
| 111 | number of exclusive haplotypes. We detected an excess of recent | 121 | number of exclusive haplotypes. We detected an excess of recent | ||
| 112 | mutations and exclusive haplotypes, which can be generated as a result | 122 | mutations and exclusive haplotypes, which can be generated as a result | ||
| 113 | of population growth. However, selective processes can be also acting | 123 | of population growth. However, selective processes can be also acting | ||
| 114 | on the gene markers used; highly significant generalized additive | 124 | on the gene markers used; highly significant generalized additive | ||
| 115 | models have been obtained considering genetic data from 16S gene and | 125 | models have been obtained considering genetic data from 16S gene and | ||
| 116 | independent variables such as temperature and salinity.", | 126 | independent variables such as temperature and salinity.", | ||
| 117 | "notes_translated": { | 127 | "notes_translated": { | ||
| 118 | "es": "Coastal lagoons represent habitats with widely | 128 | "es": "Coastal lagoons represent habitats with widely | ||
| 119 | heterogeneous environmental conditions, particularly as regards | 129 | heterogeneous environmental conditions, particularly as regards | ||
| 120 | salinity and temperature, which fluctuate in both space and time. | 130 | salinity and temperature, which fluctuate in both space and time. | ||
| 121 | These characteristics suggest that physical and ecological factors | 131 | These characteristics suggest that physical and ecological factors | ||
| 122 | could contribute to the genetic divergence among populations occurring | 132 | could contribute to the genetic divergence among populations occurring | ||
| 123 | in coastal lagoon and open-coast environments. This study investigates | 133 | in coastal lagoon and open-coast environments. This study investigates | ||
| 124 | the genetic structure of Holothuria polii at a micro-geographic scale | 134 | the genetic structure of Holothuria polii at a micro-geographic scale | ||
| 125 | across the Mar Menor coastal lagoon and nearby marine areas, | 135 | across the Mar Menor coastal lagoon and nearby marine areas, | ||
| 126 | estimating the mitochondrial DNA variation in two gene fragments, | 136 | estimating the mitochondrial DNA variation in two gene fragments, | ||
| 127 | cytochrome oxidase I (COI) and 16S rRNA (16S). Dataset of | 137 | cytochrome oxidase I (COI) and 16S rRNA (16S). Dataset of | ||
| 128 | mitochondrial sequences was also used to test the influence of | 138 | mitochondrial sequences was also used to test the influence of | ||
| 129 | environmental differences between coastal lagoon and marine waters on | 139 | environmental differences between coastal lagoon and marine waters on | ||
| 130 | population genetic structure. All sampled locations exhibited high | 140 | population genetic structure. All sampled locations exhibited high | ||
| 131 | levels of haplotype diversity and low values of nucleotide diversity. | 141 | levels of haplotype diversity and low values of nucleotide diversity. | ||
| 132 | Both genes showed contrasting signals of genetic differentiation | 142 | Both genes showed contrasting signals of genetic differentiation | ||
| 133 | (non-significant differences using COI and slight differences using | 143 | (non-significant differences using COI and slight differences using | ||
| 134 | 16S, which could due to different mutation rates or to differential | 144 | 16S, which could due to different mutation rates or to differential | ||
| 135 | number of exclusive haplotypes. We detected an excess of recent | 145 | number of exclusive haplotypes. We detected an excess of recent | ||
| 136 | mutations and exclusive haplotypes, which can be generated as a result | 146 | mutations and exclusive haplotypes, which can be generated as a result | ||
| 137 | of population growth. However, selective processes can be also acting | 147 | of population growth. However, selective processes can be also acting | ||
| 138 | on the gene markers used; highly significant generalized additive | 148 | on the gene markers used; highly significant generalized additive | ||
| 139 | models have been obtained considering genetic data from 16S gene and | 149 | models have been obtained considering genetic data from 16S gene and | ||
| 140 | independent variables such as temperature and salinity." | 150 | independent variables such as temperature and salinity." | ||
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| 236 | 37.38]]]}", | 246 | 37.38]]]}", | ||
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| 243 | 38.07]}", | 253 | 38.07]}", | ||
| 244 | "text": "Regi\u00f3n de Murcia", | 254 | "text": "Regi\u00f3n de Murcia", | ||
| 245 | "uri": | 255 | "uri": | ||
| 246 | atos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia" | 256 | atos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia" | ||
| 247 | } | 257 | } | ||
| 248 | ], | 258 | ], | ||
| 249 | "spatial_uri": | 259 | "spatial_uri": | ||
| 250 | tos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia", | 260 | tos.gob.es/recurso/sector-publico/territorio/Autonomia/Region-Murcia", | ||
| 251 | "state": "active", | 261 | "state": "active", | ||
| 252 | "study_variables": { | 262 | "study_variables": { | ||
| 253 | "es": "" | 263 | "es": "" | ||
| 254 | }, | 264 | }, | ||
| 255 | "tag_uri": [ | 265 | "tag_uri": [ | ||
| 256 | 266 | ||||
| 257 | tp://inspire.ec.europa.eu/metadata-codelist/TopicCategory/environment" | 267 | tp://inspire.ec.europa.eu/metadata-codelist/TopicCategory/environment" | ||
| 258 | ], | 268 | ], | ||
| 259 | "tags": [ | 269 | "tags": [ | ||
| 260 | { | 270 | { | ||
| 261 | "display_name": "dinamica_poblacional", | 271 | "display_name": "dinamica_poblacional", | ||
| 262 | "id": "34eaa302-b375-4f32-8959-147cb0a7345d", | 272 | "id": "34eaa302-b375-4f32-8959-147cb0a7345d", | ||
| 263 | "name": "dinamica_poblacional", | 273 | "name": "dinamica_poblacional", | ||
| 264 | "state": "active", | 274 | "state": "active", | ||
| 265 | "vocabulary_id": null | 275 | "vocabulary_id": null | ||
| 266 | }, | 276 | }, | ||
| 267 | { | 277 | { | ||
| 268 | "display_name": "distribucion", | 278 | "display_name": "distribucion", | ||
| 269 | "id": "00f1c689-883f-44f3-a6ba-7b7901acf822", | 279 | "id": "00f1c689-883f-44f3-a6ba-7b7901acf822", | ||
| 270 | "name": "distribucion", | 280 | "name": "distribucion", | ||
| 271 | "state": "active", | 281 | "state": "active", | ||
| 272 | "vocabulary_id": null | 282 | "vocabulary_id": null | ||
| 273 | }, | 283 | }, | ||
| 274 | { | 284 | { | ||
| 275 | "display_name": "diversidad_genetica", | 285 | "display_name": "diversidad_genetica", | ||
| 276 | "id": "36b1105b-eac3-4355-a30c-57c1a0a3e973", | 286 | "id": "36b1105b-eac3-4355-a30c-57c1a0a3e973", | ||
| 277 | "name": "diversidad_genetica", | 287 | "name": "diversidad_genetica", | ||
| 278 | "state": "active", | 288 | "state": "active", | ||
| 279 | "vocabulary_id": null | 289 | "vocabulary_id": null | ||
| 280 | }, | 290 | }, | ||
| 281 | { | 291 | { | ||
| 282 | "display_name": "gradiente_termico", | 292 | "display_name": "gradiente_termico", | ||
| 283 | "id": "6f6a93d2-3b9d-49ce-bd99-d38372f6b273", | 293 | "id": "6f6a93d2-3b9d-49ce-bd99-d38372f6b273", | ||
| 284 | "name": "gradiente_termico", | 294 | "name": "gradiente_termico", | ||
| 285 | "state": "active", | 295 | "state": "active", | ||
| 286 | "vocabulary_id": null | 296 | "vocabulary_id": null | ||
| 287 | }, | 297 | }, | ||
| 288 | { | 298 | { | ||
| 289 | "display_name": "lagunas-costeras-salobres-saladas", | 299 | "display_name": "lagunas-costeras-salobres-saladas", | ||
| 290 | "id": "92dd4d50-2752-4df9-8eeb-64128064bda8", | 300 | "id": "92dd4d50-2752-4df9-8eeb-64128064bda8", | ||
| 291 | "name": "lagunas-costeras-salobres-saladas", | 301 | "name": "lagunas-costeras-salobres-saladas", | ||
| 292 | "state": "active", | 302 | "state": "active", | ||
| 293 | "vocabulary_id": null | 303 | "vocabulary_id": null | ||
| 294 | }, | 304 | }, | ||
| 295 | { | 305 | { | ||
| 296 | "display_name": "marino", | 306 | "display_name": "marino", | ||
| 297 | "id": "004084d1-68d8-46ca-842a-c10278540bc9", | 307 | "id": "004084d1-68d8-46ca-842a-c10278540bc9", | ||
| 298 | "name": "marino", | 308 | "name": "marino", | ||
| 299 | "state": "active", | 309 | "state": "active", | ||
| 300 | "vocabulary_id": null | 310 | "vocabulary_id": null | ||
| 301 | } | 311 | } | ||
| 302 | ], | 312 | ], | ||
| 303 | "thematic_area": [ | 313 | "thematic_area": [ | ||
| 304 | "espacios_protegidos" | 314 | "espacios_protegidos" | ||
| 305 | ], | 315 | ], | ||
| 306 | "theme_es": [ | 316 | "theme_es": [ | ||
| 307 | "http://datos.gob.es/kos/sector-publico/sector/medio-ambiente" | 317 | "http://datos.gob.es/kos/sector-publico/sector/medio-ambiente" | ||
| 308 | ], | 318 | ], | ||
| 309 | "title": "Genetic diversity and connectivity remain high in | 319 | "title": "Genetic diversity and connectivity remain high in | ||
| 310 | Holothuria polii (Delle Chiaje 1823) across a coastal lagoon-open sea | 320 | Holothuria polii (Delle Chiaje 1823) across a coastal lagoon-open sea | ||
| 311 | environmental gradient", | 321 | environmental gradient", | ||
| 312 | "title_translated": { | 322 | "title_translated": { | ||
| 313 | "es": "Genetic diversity and connectivity remain high in | 323 | "es": "Genetic diversity and connectivity remain high in | ||
| 314 | Holothuria polii (Delle Chiaje 1823) across a coastal lagoon-open sea | 324 | Holothuria polii (Delle Chiaje 1823) across a coastal lagoon-open sea | ||
| 315 | environmental gradient" | 325 | environmental gradient" | ||
| 316 | }, | 326 | }, | ||
| 317 | "topic": | 327 | "topic": | ||
| 318 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | 328 | "http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/biota", | ||
| 319 | "type": "dataset", | 329 | "type": "dataset", | ||
| 320 | "url": | 330 | "url": | ||
| 321 | //iepnb.es:443/catalogo/dataset/c93d7cf9-628c-5fc0-bc62-b6e878f7f167", | 331 | //iepnb.es:443/catalogo/dataset/c93d7cf9-628c-5fc0-bc62-b6e878f7f167", | ||
| 322 | "version_notes": { | 332 | "version_notes": { | ||
| 323 | "es": "" | 333 | "es": "" | ||
| 324 | } | 334 | } | ||
| 325 | } | 335 | } |