| f | { | f | { |
| "author": null, | | "author": null, |
| "author_email": null, | | "author_email": null, |
| "code": "7b.b.gb", | | "code": "7b.b.gb", |
| "contributor": "NIOZ Royal Netherlands Institute for Sea Research", | | "contributor": "NIOZ Royal Netherlands Institute for Sea Research", |
| "creator_user_id": "2c6f917c-52b6-45e0-9a2e-1464049fc055", | | "creator_user_id": "2c6f917c-52b6-45e0-9a2e-1464049fc055", |
| "creators": | | "creators": |
| stname\":\"Alexander\",\"lastname\":\"Lubsch\",\"affiliation\":\"Royal | | stname\":\"Alexander\",\"lastname\":\"Lubsch\",\"affiliation\":\"Royal |
| Netherlands Institute for Sea | | Netherlands Institute for Sea |
| stname\":\"Klaas\",\"lastname\":\"Timmermans\",\"affiliation\":\"Royal | | stname\":\"Klaas\",\"lastname\":\"Timmermans\",\"affiliation\":\"Royal |
| Netherlands Institute for Sea | | Netherlands Institute for Sea |
| :\"\",\"contactemailaddress\":\"\",\"iscorrespondingauthor\":false}]", | | :\"\",\"contactemailaddress\":\"\",\"iscorrespondingauthor\":false}]", |
| "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.gb", | | "dataset_persistent_id": "DOI:10.25850/nioz/7b.b.gb", |
| "deposit_date": "2020-11-16", | | "deposit_date": "2020-11-16", |
| "depositor": "Leonne van der Weegen", | | "depositor": "Leonne van der Weegen", |
| "distribution_date": "2020-11-16", | | "distribution_date": "2020-11-16", |
| "distributor": "Research Data Management(NIOZ Royal Netherlands | | "distributor": "Research Data Management(NIOZ Royal Netherlands |
| Institute for Sea Research)", | | Institute for Sea Research)", |
| "doi_date_published": "2020-11-16", | | "doi_date_published": "2020-11-16", |
| "groups": [], | | "groups": [], |
| "id": "00c7c088-6691-4a18-822f-ee7f061e975c", | | "id": "00c7c088-6691-4a18-822f-ee7f061e975c", |
| "isopen": true, | | "isopen": true, |
| "license_id": "CC0-1.0", | | "license_id": "CC0-1.0", |
| "license_title": "CC0 1.0", | | "license_title": "CC0 1.0", |
| "license_url": "https://creativecommons.org/publicdomain/zero/1.0/", | | "license_url": "https://creativecommons.org/publicdomain/zero/1.0/", |
| "maintainer": null, | | "maintainer": null, |
| "maintainer_email": null, | | "maintainer_email": null, |
| "metadata_created": "2024-10-22T09:44:06.478055", | | "metadata_created": "2024-10-22T09:44:06.478055", |
| n | "metadata_modified": "2024-10-22T20:35:06.821244", | n | "metadata_modified": "2024-10-22T20:35:07.074323", |
| "name": "7bbgb", | | "name": "7bbgb", |
| "notes": "Uptake dynamics of dissolved inorganic phosphate (DIP) and | | "notes": "Uptake dynamics of dissolved inorganic phosphate (DIP) and |
| dissolved inorganic nitrate (DIN) in young <i>Palmaria palmata</i> (n | | dissolved inorganic nitrate (DIN) in young <i>Palmaria palmata</i> (n |
| n | = 49), cultivated in a range of DIP concentrations (0.0???6.0 ??mol ?? | n | = 49), cultivated in a range of DIP concentrations (0.0 6.0 mol |
| L<sup>???1</sup>) and nonlimiting DIN concentration (50 ??mol ?? | | L<sup>1</sup>) and nonlimiting DIN concentration (50 mol |
| L<sup>???1</sup>) under fully controlled laboratory conditions, were | | L<sup>1</sup>) under fully controlled laboratory conditions, were |
| quantified in a ???pulse???and???chase??? approach over 5 weeks. Two | | quantified in a pulse-and-chase approach over 5 weeks. Two different |
| different uptake rates were specified: (1) surge uptake (VS) after | | uptake rates were specified: (1) surge uptake (VS) after starvation |
| starvation and (2) maintenance uptake with filled nutrient pools | | and (2) maintenance uptake with filled nutrient pools (V<SUB>M</SUB>). |
| (V<SUB>M</SUB>). V<SUB>S</SUB> for DIP of 1.57 ?? 0.29 ??mol ?? | | V<SUB>S</SUB> for DIP of 1.57 0.29 mol cm<sup>2</sup> d<sup>1</sup> |
| cm<sup>???2</sup> ?? d<sup>???1</sup> and DIN of 15.6 ?? 4.3 ??mol ?? | | and DIN of 15.6 4.3 mol cm<sup>2</sup> d<sup></sup> , as well as |
| cm<sup>???2</sup> ?? d<sup>???1</sup> , as well as V<SUB>M</SUB> for | | |
| DIP of 0.57 ?? 0.22 ??mol ?? cm<sup>???2</sup> ?? d<sup>???1</sup> | | V<SUB>M</SUB> for DIP of 0.57 0.22 mol cm<sup>2</sup> d<sup>1</sup> |
| and DIN of 5.6 ?? 2.1 ??mol ?? cm<sup>???2</sup> ?? d<sup>???1</sup> | | and DIN of 5.6 2.1 mol cm<sup>2</sup> d<sup>1</sup> were |
| were calculated. In addition, an absolute size of the internal storage | | calculated. In addition, an absolute size of the internal storage |
| capacity (ISC) for DIP of 22 ??mol ?? cm<sup>2</sup> and DIN of 222 | | capacity (ISC) for DIP of 22 mol cm<sup>2</sup> and DIN of 222 mol |
| ??mol ?? cm2 was determined. A DIP???to???DIN uptake ratio of 1:10 | | cm2 was determined. A DIPtoDIN uptake ratio of 1:10 under |
| under V<SUB>M</SUB> showed a weekly rhythmic uptake pattern, | | V<SUB>M</SUB> showed a weekly rhythmic uptake pattern, highlighted by |
| highlighted by a high correlation between DIP and DIN uptake (R = | | a high correlation between DIP and DIN uptake (R = 0.943). |
| 0.943). V<sub>S</SUB> for DIN did not occur under DIP depletion, but | | V<sub>S</SUB> for DIN did not occur under DIP depletion, but uptake |
| uptake rates increased with increasing DIP availability. Hence, DIP | | rates increased with increasing DIP availability. Hence, DIP |
| availability limited access to DIN, which was also reflected by total | | availability limited access to DIN, which was also reflected by total |
| dissolvable protein concentrations in sporophytes, which ranged from | | dissolvable protein concentrations in sporophytes, which ranged from |
| n | 10.2 ?? 2.5% to 24.6 ?? 8.0% dry weight depending on DIP availability. | n | 10.2 2.5% to 24.6 8.0% dry weight depending on DIP availability. |
| Similarly, total dissolvable carbohydrate concentration ranged from | | Similarly, total dissolvable carbohydrate concentration ranged from |
| n | 22.1 ?? 3.6% to 54.3 ?? 12.3% dry weight. The data presented in this | n | 22.1 3.6% to 54.3 12.3% dry weight. The data presented in this study |
| study open further insight into ecological and physiological aspects | | open further insight into ecological and physiological aspects of |
| of nutrient availability in <i>P. palmata</i> and allow for an | | nutrient availability in <i>P. palmata</i> and allow for an |
| optimization in cultivation.", | | optimization in cultivation.", |
| "num_resources": 0, | | "num_resources": 0, |
| "num_tags": 1, | | "num_tags": 1, |
| "organization": { | | "organization": { |
| "approval_status": "approved", | | "approval_status": "approved", |
| "created": "2024-10-22T06:06:56.074257", | | "created": "2024-10-22T06:06:56.074257", |
| "description": "", | | "description": "", |
| "id": "bed2a893-3895-450b-bf4b-c74318003b1b", | | "id": "bed2a893-3895-450b-bf4b-c74318003b1b", |
| "image_url": | | "image_url": |
| z.nl/application/files/1216/8924/5333/NIOZ-logo_witte_randi-2023.svg", | | z.nl/application/files/1216/8924/5333/NIOZ-logo_witte_randi-2023.svg", |
| "is_organization": true, | | "is_organization": true, |
| "name": "nioz", | | "name": "nioz", |
| "state": "active", | | "state": "active", |
| "title": "Royal Netherlands Institute for Sea Research", | | "title": "Royal Netherlands Institute for Sea Research", |
| "type": "organization" | | "type": "organization" |
| }, | | }, |
| "owner_org": "bed2a893-3895-450b-bf4b-c74318003b1b", | | "owner_org": "bed2a893-3895-450b-bf4b-c74318003b1b", |
| "private": false, | | "private": false, |
| "production_date": "2020-11-16", | | "production_date": "2020-11-16", |
| "relationships_as_object": [], | | "relationships_as_object": [], |
| "relationships_as_subject": [], | | "relationships_as_subject": [], |
| "resources": [], | | "resources": [], |
| "state": "active", | | "state": "active", |
| "subject": "Earth and Environmental Sciences", | | "subject": "Earth and Environmental Sciences", |
| "tags": [ | | "tags": [ |
| { | | { |
| "display_name": "carbohydrate content circadian rhythm coupled | | "display_name": "carbohydrate content circadian rhythm coupled |
| uptake nitrate uptake Palmariapalmata phosphate uptak", | | uptake nitrate uptake Palmariapalmata phosphate uptak", |
| "id": "39c69da3-ae6a-4997-b677-f7fc4a9386f9", | | "id": "39c69da3-ae6a-4997-b677-f7fc4a9386f9", |
| "name": "carbohydrate content circadian rhythm coupled uptake | | "name": "carbohydrate content circadian rhythm coupled uptake |
| nitrate uptake Palmariapalmata phosphate uptak", | | nitrate uptake Palmariapalmata phosphate uptak", |
| "state": "active", | | "state": "active", |
| "vocabulary_id": null | | "vocabulary_id": null |
| } | | } |
| ], | | ], |
| "title": "Data-set for the papere \"Phosphate and Nitrate Uptake | | "title": "Data-set for the papere \"Phosphate and Nitrate Uptake |
| Dynamics in Palmaria palmata (Rhodophyceae): Ecological and | | Dynamics in Palmaria palmata (Rhodophyceae): Ecological and |
| Physiological Aspects of Nutrient Availability\"", | | Physiological Aspects of Nutrient Availability\"", |
| "type": "dataset", | | "type": "dataset", |
| "url": "https://dataportal.nioz.nl/doi/10.25850/nioz/7b.b.gb", | | "url": "https://dataportal.nioz.nl/doi/10.25850/nioz/7b.b.gb", |
| t | "version": "2" | t | "version": "3" |
| } | | } |