Changes
On October 22, 2024, 4:57:54 PM UTC,
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Changed the source URL of Chapter 4 - Algal-induced biogeomorphic feedbacks lay the groundwork for coastal wetland development from https://dataportal.nioz.nl/doi/10.33591/nioz/7b.b.sc to https://dataportal.nioz.nl/doi/10.25850/nioz/7b.b.sc
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Changed the version of Chapter 4 - Algal-induced biogeomorphic feedbacks lay the groundwork for coastal wetland development to 1 (previously 2)
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Changed value of field
dataset_persistent_id
toDOI:10.25850/nioz/7b.b.sc
in Chapter 4 - Algal-induced biogeomorphic feedbacks lay the groundwork for coastal wetland development
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| 7 | "creators": "[{\"firstname\":\"Roeland C.\",\"lastname\":\"van de | 7 | "creators": "[{\"firstname\":\"Roeland C.\",\"lastname\":\"van de | ||
| 8 | Vijsel\",\"affiliation\":\"Royal Netherlands Institute for Sea | 8 | Vijsel\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 9 | scorrespondingauthor\":true},{\"firstname\":\"Jim\",\"lastname\":\"van | 9 | scorrespondingauthor\":true},{\"firstname\":\"Jim\",\"lastname\":\"van | ||
| 10 | Belzen\",\"affiliation\":\"Royal Netherlands Institute for Sea | 10 | Belzen\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 11 | ddress\":\"\",\"iscorrespondingauthor\":false},{\"firstname\":\"Tjeerd | 11 | ddress\":\"\",\"iscorrespondingauthor\":false},{\"firstname\":\"Tjeerd | ||
| 12 | J.\",\"lastname\":\"Bouma\",\"affiliation\":\"Royal Netherlands | 12 | J.\",\"lastname\":\"Bouma\",\"affiliation\":\"Royal Netherlands | ||
| 13 | Institute for Sea | 13 | Institute for Sea | ||
| 14 | respondingauthor\":false},{\"firstname\":\"Daphne\",\"lastname\":\"van | 14 | respondingauthor\":false},{\"firstname\":\"Daphne\",\"lastname\":\"van | ||
| 15 | der Wal\",\"affiliation\":\"Royal Netherlands Institute for Sea | 15 | der Wal\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 16 | rrespondingauthor\":false},{\"firstname\":\"Johan\",\"lastname\":\"van | 16 | rrespondingauthor\":false},{\"firstname\":\"Johan\",\"lastname\":\"van | ||
| 17 | de Koppel\",\"affiliation\":\"Royal Netherlands Institute for Sea | 17 | de Koppel\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
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| 20 | "dates": | 20 | "dates": | ||
| 21 | 021-04-23T22:00:00.000Z\",\"type\":\"collected\",\"information\":\"The | 21 | 021-04-23T22:00:00.000Z\",\"type\":\"collected\",\"information\":\"The | ||
| 22 | dataset supporting Chapter 4 of the PhD Thesis of Roeland C. van de | 22 | dataset supporting Chapter 4 of the PhD Thesis of Roeland C. van de | ||
| 23 | Vijsel (https://doi.org/10.33612/diss.160081233).\"}]", | 23 | Vijsel (https://doi.org/10.33612/diss.160081233).\"}]", | ||
| 24 | "deposit_date": "2021-07-13", | 24 | "deposit_date": "2021-07-13", | ||
| 25 | "depositor": "Roeland van de Vijsel", | 25 | "depositor": "Roeland van de Vijsel", | ||
| 26 | "distribution_date": "2021-07-13", | 26 | "distribution_date": "2021-07-13", | ||
| 27 | "distributor": "Research Data Management(NIOZ Royal Netherlands | 27 | "distributor": "Research Data Management(NIOZ Royal Netherlands | ||
| 28 | Institute for Sea Research)", | 28 | Institute for Sea Research)", | ||
| 29 | "doi_date_published": "2023-11-22", | 29 | "doi_date_published": "2023-11-22", | ||
| 30 | "funding_references": "[{\"name\":\"Netherlands Organisation for | 30 | "funding_references": "[{\"name\":\"Netherlands Organisation for | ||
| 31 | Scientific Research | 31 | Scientific Research | ||
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| 35 | modelling HPP\"}]", | 35 | modelling HPP\"}]", | ||
| 36 | "groups": [], | 36 | "groups": [], | ||
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| 42 | "metadata_created": "2024-10-22T11:44:14.023092", | 42 | "metadata_created": "2024-10-22T11:44:14.023092", | ||
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| 44 | "name": "7bbsc", | 44 | "name": "7bbsc", | ||
| 45 | "notes": "Coastal wetlands provide valuable ecosystem services, | 45 | "notes": "Coastal wetlands provide valuable ecosystem services, | ||
| 46 | including biodiverse habitats, carbon sequestration potential and | 46 | including biodiverse habitats, carbon sequestration potential and | ||
| 47 | nature-based flood defense. The establishment of saltmarsh vegetation | 47 | nature-based flood defense. The establishment of saltmarsh vegetation | ||
| 48 | and other key wetland species on bare tidal flats relies on windows of | 48 | and other key wetland species on bare tidal flats relies on windows of | ||
| 49 | opportunity, which are traditionally linked to physical factors such | 49 | opportunity, which are traditionally linked to physical factors such | ||
| 50 | as hydrodynamic conditions, substrate stability and drainage. However, | 50 | as hydrodynamic conditions, substrate stability and drainage. However, | ||
| 51 | observations on tidal flats suggest that plant seedlings settle in | 51 | observations on tidal flats suggest that plant seedlings settle in | ||
| 52 | high densities on raised sedimentary ridges colonized by mats of | 52 | high densities on raised sedimentary ridges colonized by mats of | ||
| 53 | primitive filamentous algae (Vaucheria sp.). Such algal-covered ridges | 53 | primitive filamentous algae (Vaucheria sp.). Such algal-covered ridges | ||
| 54 | were previously shown to have higher sediment strength than substrate | 54 | were previously shown to have higher sediment strength than substrate | ||
| 55 | without algae. Here, we investigated whether these measurements can be | 55 | without algae. Here, we investigated whether these measurements can be | ||
| 56 | explained by physical processes only, or that biological | 56 | explained by physical processes only, or that biological | ||
| 57 | (Vaucheria-induced) processes influence early saltmarsh establishment | 57 | (Vaucheria-induced) processes influence early saltmarsh establishment | ||
| 58 | through the formation of stabilized bedforms. We performed two | 58 | through the formation of stabilized bedforms. We performed two | ||
| 59 | experiments under controlled mesocosm conditions, to test the | 59 | experiments under controlled mesocosm conditions, to test the | ||
| 60 | hypotheses that i) Vaucheria grows better on elevated topographic | 60 | hypotheses that i) Vaucheria grows better on elevated topographic | ||
| 61 | relief, ii) the binding force of their algal filaments increases | 61 | relief, ii) the binding force of their algal filaments increases | ||
| 62 | sediment strength, which consequently iii) maintains and creates | 62 | sediment strength, which consequently iii) maintains and creates | ||
| 63 | elevated topographic relief on which algal growth is further | 63 | elevated topographic relief on which algal growth is further | ||
| 64 | facilitated. The existence of this algal-induced biogeomorphic | 64 | facilitated. The existence of this algal-induced biogeomorphic | ||
| 65 | feedback cycle was confirmed in our experiments. Our findings reveal | 65 | feedback cycle was confirmed in our experiments. Our findings reveal | ||
| 66 | that halophytic plants are not the only important ecosystem engineer | 66 | that halophytic plants are not the only important ecosystem engineer | ||
| 67 | in coastal wetlands, but that fast-growing, mat- forming species like | 67 | in coastal wetlands, but that fast-growing, mat- forming species like | ||
| 68 | Vaucheria also play a major role by creating stable and elevated | 68 | Vaucheria also play a major role by creating stable and elevated | ||
| 69 | sedimentary relief. Our study indicates that biota can widen the | 69 | sedimentary relief. Our study indicates that biota can widen the | ||
| 70 | windows of opportunity for ecosystem establishment, which can be | 70 | windows of opportunity for ecosystem establishment, which can be | ||
| 71 | utilized to optimally design managed coastal realignment projects that | 71 | utilized to optimally design managed coastal realignment projects that | ||
| 72 | aim at the restoration of coastal ecosystems.", | 72 | aim at the restoration of coastal ecosystems.", | ||
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| 76 | "approval_status": "approved", | 76 | "approval_status": "approved", | ||
| 77 | "created": "2024-10-22T06:06:56.074257", | 77 | "created": "2024-10-22T06:06:56.074257", | ||
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| 83 | "name": "nioz", | 83 | "name": "nioz", | ||
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| 85 | "title": "Royal Netherlands Institute for Sea Research", | 85 | "title": "Royal Netherlands Institute for Sea Research", | ||
| 86 | "type": "organization" | 86 | "type": "organization" | ||
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| 90 | "production_date": "2023-11-22", | 90 | "production_date": "2023-11-22", | ||
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| 119 | "subject": "Earth and Environmental Sciences", | 119 | "subject": "Earth and Environmental Sciences", | ||
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| 122 | "display_name": "The dataset supporting Chapter 4 of the PhD | 122 | "display_name": "The dataset supporting Chapter 4 of the PhD | ||
| 123 | Thesis of Roeland C. van de Vijsel httpsdoi.org10.33612", | 123 | Thesis of Roeland C. van de Vijsel httpsdoi.org10.33612", | ||
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| 125 | "name": "The dataset supporting Chapter 4 of the PhD Thesis of | 125 | "name": "The dataset supporting Chapter 4 of the PhD Thesis of | ||
| 126 | Roeland C. van de Vijsel httpsdoi.org10.33612", | 126 | Roeland C. van de Vijsel httpsdoi.org10.33612", | ||
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| 131 | "title": "Chapter 4 - Algal-induced biogeomorphic feedbacks lay the | 131 | "title": "Chapter 4 - Algal-induced biogeomorphic feedbacks lay the | ||
| 132 | groundwork for coastal wetland development", | 132 | groundwork for coastal wetland development", | ||
| 133 | "type": "dataset", | 133 | "type": "dataset", | ||
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| 135 | "version": "2" | 135 | "version": "1" | ||
| 136 | } | 136 | } |