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| f | 1 | { | f | 1 | { |
| 2 | "author": "Rosa Jolma (Royal Netherlands Institute for Sea | 2 | "author": "Rosa Jolma (Royal Netherlands Institute for Sea | ||
| 3 | Research)", | 3 | Research)", | ||
| 4 | "author_email": "rosa.jolma@nioz.nl", | 4 | "author_email": "rosa.jolma@nioz.nl", | ||
| 5 | "code": "7b.b.4g", | 5 | "code": "7b.b.4g", | ||
| 6 | "contributor": "Royal Netherlands Institute for Sea Research | 6 | "contributor": "Royal Netherlands Institute for Sea Research | ||
| 7 | (NIOZ)", | 7 | (NIOZ)", | ||
| 8 | "creator_user_id": "afdc51f4-a66f-48b5-bd52-ed6e744b3ec3", | 8 | "creator_user_id": "afdc51f4-a66f-48b5-bd52-ed6e744b3ec3", | ||
| 9 | "creators": | 9 | "creators": | ||
| 10 | \":\"Jolma\",\"orcid\":\"0000-0002-9356-2891\",\"affiliation\":\"Royal | 10 | \":\"Jolma\",\"orcid\":\"0000-0002-9356-2891\",\"affiliation\":\"Royal | ||
| 11 | Netherlands Institute for Sea | 11 | Netherlands Institute for Sea | ||
| 12 | ondingauthor\":true,\"contactemailaddress\":\"rosa.jolma@nioz.nl\"}]", | 12 | ondingauthor\":true,\"contactemailaddress\":\"rosa.jolma@nioz.nl\"}]", | ||
| 13 | "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.4g", | 13 | "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.4g", | ||
| 14 | "deposit_date": "2024-02-02", | 14 | "deposit_date": "2024-02-02", | ||
| 15 | "depositor": "Rosa Jolma (rosa.jolma@nioz.nl)", | 15 | "depositor": "Rosa Jolma (rosa.jolma@nioz.nl)", | ||
| 16 | "distribution_date": "2024-02-02", | 16 | "distribution_date": "2024-02-02", | ||
| 17 | "distributor": "Research Data Management(NIOZ Royal Netherlands | 17 | "distributor": "Research Data Management(NIOZ Royal Netherlands | ||
| 18 | Institute for Sea Research)", | 18 | Institute for Sea Research)", | ||
| 19 | "doi_date_published": "2024-04-08T11:18:34.3334922", | 19 | "doi_date_published": "2024-04-08T11:18:34.3334922", | ||
| 20 | "groups": [], | 20 | "groups": [], | ||
| 21 | "id": "f6a57165-8bef-41ab-9806-6cb6dd348ef8", | 21 | "id": "f6a57165-8bef-41ab-9806-6cb6dd348ef8", | ||
| 22 | "isopen": true, | 22 | "isopen": true, | ||
| 23 | "license_id": "CC0-1.0", | 23 | "license_id": "CC0-1.0", | ||
| 24 | "license_title": "CC0 1.0", | 24 | "license_title": "CC0 1.0", | ||
| 25 | "license_url": "https://creativecommons.org/publicdomain/zero/1.0/", | 25 | "license_url": "https://creativecommons.org/publicdomain/zero/1.0/", | ||
| 26 | "maintainer": "Rosa", | 26 | "maintainer": "Rosa", | ||
| 27 | "maintainer_email": "rosa.jolma@nioz.nl", | 27 | "maintainer_email": "rosa.jolma@nioz.nl", | ||
| 28 | "metadata_created": "2024-10-22T18:00:01.533634", | 28 | "metadata_created": "2024-10-22T18:00:01.533634", | ||
| n | 29 | "metadata_modified": "2026-07-21T13:31:09.312988", | n | 29 | "metadata_modified": "2026-09-14T12:25:21.908097", |
| 30 | "name": | 30 | "name": | ||
| 31 | s-on-the-life-cycles-of-two-parasitic-copepods-with-different-invasi", | 31 | s-on-the-life-cycles-of-two-parasitic-copepods-with-different-invasi", | ||
| 32 | "notes": "Climate change may exacerbate the impact of invasive | 32 | "notes": "Climate change may exacerbate the impact of invasive | ||
| 33 | parasites from warmer climates through pre-existing temperature | 33 | parasites from warmer climates through pre-existing temperature | ||
| 34 | adaptations. We investigated temperature impacts on two closely | 34 | adaptations. We investigated temperature impacts on two closely | ||
| 35 | related marine parasitic copepod species that share the blue mussel | 35 | related marine parasitic copepod species that share the blue mussel | ||
| 36 | (Mytilus edulis) as host; Mytilicola orientalis has invaded the system | 36 | (Mytilus edulis) as host; Mytilicola orientalis has invaded the system | ||
| 37 | from a warmer climate <20 years ago, while its established congener | 37 | from a warmer climate <20 years ago, while its established congener | ||
| 38 | Mytilicola intestinalis has had >90 years to adapt. In laboratory | 38 | Mytilicola intestinalis has had >90 years to adapt. In laboratory | ||
| 39 | experiments with temperatures 10\u00b0C-26\u00b0C, representing | 39 | experiments with temperatures 10\u00b0C-26\u00b0C, representing | ||
| 40 | current and future temperatures, the development of both life cycle | 40 | current and future temperatures, the development of both life cycle | ||
| 41 | stages of both species accelerated with increasing temperature. In the | 41 | stages of both species accelerated with increasing temperature. In the | ||
| 42 | free living infective stages of both species the development speed | 42 | free living infective stages of both species the development speed | ||
| 43 | increase was largest between the two lowest temperatures (10\u00b0C | 43 | increase was largest between the two lowest temperatures (10\u00b0C | ||
| 44 | and 14\u00b0C), with the small increases across the higher | 44 | and 14\u00b0C), with the small increases across the higher | ||
| 45 | temperatures (18\u00b0C-26\u00b0C) being larger for the recent | 45 | temperatures (18\u00b0C-26\u00b0C) being larger for the recent | ||
| 46 | invader. In the parasitic stages, the growth of the established | 46 | invader. In the parasitic stages, the growth of the established | ||
| 47 | invader increased evenly from 10\u00b0C to 22\u00b0C, while the recent | 47 | invader increased evenly from 10\u00b0C to 22\u00b0C, while the recent | ||
| 48 | invader barely grew at 10\u00b0C gaining its maximum growth speed | 48 | invader barely grew at 10\u00b0C gaining its maximum growth speed | ||
| 49 | already at 18\u00b0C. In contrast, temperature had little effect on | 49 | already at 18\u00b0C. In contrast, temperature had little effect on | ||
| 50 | the transition success between life cycle stages. However, the highest | 50 | the transition success between life cycle stages. However, the highest | ||
| 51 | temperature (26\u00b0C) limited the egg development success of the | 51 | temperature (26\u00b0C) limited the egg development success of the | ||
| 52 | established invader and the host entry success of both species, | 52 | established invader and the host entry success of both species, | ||
| 53 | whereas the infection success of the established invader increased at | 53 | whereas the infection success of the established invader increased at | ||
| 54 | 18\u00b0C and 22\u00b0C. Based on long-term temperature data and | 54 | 18\u00b0C and 22\u00b0C. Based on long-term temperature data and | ||
| 55 | predictions, the numbers of completed life cycles per year will | 55 | predictions, the numbers of completed life cycles per year will | ||
| 56 | increase for both parasites. Overall, our experiments indicate that | 56 | increase for both parasites. Overall, our experiments indicate that | ||
| 57 | the main effect of temperature on both species is through development | 57 | the main effect of temperature on both species is through development | ||
| 58 | speed and not life cycle stage transition success. While the | 58 | speed and not life cycle stage transition success. While the | ||
| 59 | established invader seems better adapted for low current temperatures | 59 | established invader seems better adapted for low current temperatures | ||
| 60 | (around 10\u00b0C), the more recent invader barely develops at these | 60 | (around 10\u00b0C), the more recent invader barely develops at these | ||
| 61 | temperatures but can cope in high temperatures (around 26\u00b0C). | 61 | temperatures but can cope in high temperatures (around 26\u00b0C). | ||
| 62 | Hence, pre-existing temperature adaptations of the recent invader may | 62 | Hence, pre-existing temperature adaptations of the recent invader may | ||
| 63 | allow the species to better cope with heat waves.", | 63 | allow the species to better cope with heat waves.", | ||
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| 68 | "created": "2024-10-22T06:06:56.074257", | 68 | "created": "2024-10-22T06:06:56.074257", | ||
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| 215 | 36f9b-f0b1-4355-af90-a6ba2524f459/download/database-key-02022024.csv", | 215 | 36f9b-f0b1-4355-af90-a6ba2524f459/download/database-key-02022024.csv", | ||
| 216 | "url_type": "upload" | 216 | "url_type": "upload" | ||
| 217 | } | 217 | } | ||
| 218 | ], | 218 | ], | ||
| 219 | "state": "active", | 219 | "state": "active", | ||
| 220 | "subject": "Earth and Environmental Sciences", | 220 | "subject": "Earth and Environmental Sciences", | ||
| 221 | "tags": [ | 221 | "tags": [ | ||
| 222 | { | 222 | { | ||
| 223 | "display_name": "Mytilicola intestinalis", | 223 | "display_name": "Mytilicola intestinalis", | ||
| 224 | "id": "9d3033ec-c6c7-4075-b688-a4be1cb6aafa", | 224 | "id": "9d3033ec-c6c7-4075-b688-a4be1cb6aafa", | ||
| 225 | "name": "Mytilicola intestinalis", | 225 | "name": "Mytilicola intestinalis", | ||
| 226 | "state": "active", | 226 | "state": "active", | ||
| 227 | "vocabulary_id": null | 227 | "vocabulary_id": null | ||
| 228 | }, | 228 | }, | ||
| 229 | { | 229 | { | ||
| 230 | "display_name": "Mytilicola orientalis", | 230 | "display_name": "Mytilicola orientalis", | ||
| 231 | "id": "c0d2e5f9-8cc1-4d98-bb8e-1d239e64820b", | 231 | "id": "c0d2e5f9-8cc1-4d98-bb8e-1d239e64820b", | ||
| 232 | "name": "Mytilicola orientalis", | 232 | "name": "Mytilicola orientalis", | ||
| 233 | "state": "active", | 233 | "state": "active", | ||
| 234 | "vocabulary_id": null | 234 | "vocabulary_id": null | ||
| 235 | }, | 235 | }, | ||
| 236 | { | 236 | { | ||
| 237 | "display_name": "Mytilus edulis", | 237 | "display_name": "Mytilus edulis", | ||
| 238 | "id": "f4ff8119-90bd-4ef9-80c3-8e2e4da96833", | 238 | "id": "f4ff8119-90bd-4ef9-80c3-8e2e4da96833", | ||
| 239 | "name": "Mytilus edulis", | 239 | "name": "Mytilus edulis", | ||
| 240 | "state": "active", | 240 | "state": "active", | ||
| 241 | "vocabulary_id": null | 241 | "vocabulary_id": null | ||
| 242 | }, | 242 | }, | ||
| 243 | { | 243 | { | ||
| 244 | "display_name": "climate change", | 244 | "display_name": "climate change", | ||
| 245 | "id": "38efd8a1-603f-4a2c-9bba-fc59e59ac414", | 245 | "id": "38efd8a1-603f-4a2c-9bba-fc59e59ac414", | ||
| 246 | "name": "climate change", | 246 | "name": "climate change", | ||
| 247 | "state": "active", | 247 | "state": "active", | ||
| 248 | "vocabulary_id": null | 248 | "vocabulary_id": null | ||
| 249 | }, | 249 | }, | ||
| 250 | { | 250 | { | ||
| 251 | "display_name": "copepod", | 251 | "display_name": "copepod", | ||
| 252 | "id": "73b8208e-0f76-4335-8166-c4599c0adfe7", | 252 | "id": "73b8208e-0f76-4335-8166-c4599c0adfe7", | ||
| 253 | "name": "copepod", | 253 | "name": "copepod", | ||
| 254 | "state": "active", | 254 | "state": "active", | ||
| 255 | "vocabulary_id": null | 255 | "vocabulary_id": null | ||
| 256 | }, | 256 | }, | ||
| 257 | { | 257 | { | ||
| 258 | "display_name": "invasive species", | 258 | "display_name": "invasive species", | ||
| 259 | "id": "19c5c387-4173-426d-82b8-8b3bace46544", | 259 | "id": "19c5c387-4173-426d-82b8-8b3bace46544", | ||
| 260 | "name": "invasive species", | 260 | "name": "invasive species", | ||
| 261 | "state": "active", | 261 | "state": "active", | ||
| 262 | "vocabulary_id": null | 262 | "vocabulary_id": null | ||
| 263 | }, | 263 | }, | ||
| 264 | { | 264 | { | ||
| 265 | "display_name": "mytilicola intestinalis", | 265 | "display_name": "mytilicola intestinalis", | ||
| 266 | "id": "df002054-d31f-4885-bc78-0eb5ef96f441", | 266 | "id": "df002054-d31f-4885-bc78-0eb5ef96f441", | ||
| 267 | "name": "mytilicola intestinalis", | 267 | "name": "mytilicola intestinalis", | ||
| 268 | "state": "active", | 268 | "state": "active", | ||
| 269 | "vocabulary_id": null | 269 | "vocabulary_id": null | ||
| 270 | }, | 270 | }, | ||
| 271 | { | 271 | { | ||
| 272 | "display_name": "mytilicola orientalis", | 272 | "display_name": "mytilicola orientalis", | ||
| 273 | "id": "ade6c18f-d1d0-4c10-bb30-ac5d0240ebc3", | 273 | "id": "ade6c18f-d1d0-4c10-bb30-ac5d0240ebc3", | ||
| 274 | "name": "mytilicola orientalis", | 274 | "name": "mytilicola orientalis", | ||
| 275 | "state": "active", | 275 | "state": "active", | ||
| 276 | "vocabulary_id": null | 276 | "vocabulary_id": null | ||
| 277 | }, | 277 | }, | ||
| 278 | { | 278 | { | ||
| 279 | "display_name": "mytilus edulis", | 279 | "display_name": "mytilus edulis", | ||
| 280 | "id": "1028d754-6e91-47c5-8590-717f8d6435b6", | 280 | "id": "1028d754-6e91-47c5-8590-717f8d6435b6", | ||
| 281 | "name": "mytilus edulis", | 281 | "name": "mytilus edulis", | ||
| 282 | "state": "active", | 282 | "state": "active", | ||
| 283 | "vocabulary_id": null | 283 | "vocabulary_id": null | ||
| 284 | }, | 284 | }, | ||
| 285 | { | 285 | { | ||
| 286 | "display_name": "parasite", | 286 | "display_name": "parasite", | ||
| 287 | "id": "62f01c8f-c041-495c-8592-e785eec46e0d", | 287 | "id": "62f01c8f-c041-495c-8592-e785eec46e0d", | ||
| 288 | "name": "parasite", | 288 | "name": "parasite", | ||
| 289 | "state": "active", | 289 | "state": "active", | ||
| 290 | "vocabulary_id": null | 290 | "vocabulary_id": null | ||
| 291 | } | 291 | } | ||
| 292 | ], | 292 | ], | ||
| 293 | "title": "Data and code for \"Warming effects on the life cycles of | 293 | "title": "Data and code for \"Warming effects on the life cycles of | ||
| 294 | two parasitic copepods with different invasion histories\"", | 294 | two parasitic copepods with different invasion histories\"", | ||
| 295 | "type": "dataset", | 295 | "type": "dataset", | ||
| 296 | "url": "https://doi.org/10.25850/nioz/7b.b.4g", | 296 | "url": "https://doi.org/10.25850/nioz/7b.b.4g", | ||
| t | 297 | "version": "1" | t | 297 | "version": "9" |
| 298 | } | 298 | } |