Changes
On November 30, 2024 at 2:28:31 PM UTC, admin:
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Moved Seawater carbonate chemistry and biological processes during experiments with a Sea Star Crassaster papposus, 2010 from organization PANGAEA (Biosphere) to organization PANGAEA (Biological Classification)
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Removed the following tags from Seawater carbonate chemistry and biological processes during experiments with a Sea Star Crassaster papposus, 2010
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Added the following tags to Seawater carbonate chemistry and biological processes during experiments with a Sea Star Crassaster papposus, 2010
f | 1 | { | f | 1 | { |
2 | "author": "Dupont, Sam", | 2 | "author": "Dupont, Sam", | ||
3 | "author_email": "", | 3 | "author_email": "", | ||
4 | "citation": [], | 4 | "citation": [], | ||
5 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | 5 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | ||
6 | "doi": "10.1594/PANGAEA.757990", | 6 | "doi": "10.1594/PANGAEA.757990", | ||
7 | "doi_date_published": "2010", | 7 | "doi_date_published": "2010", | ||
8 | "doi_publisher": "", | 8 | "doi_publisher": "", | ||
9 | "doi_status": "True", | 9 | "doi_status": "True", | ||
10 | "extra_authors": [ | 10 | "extra_authors": [ | ||
11 | { | 11 | { | ||
12 | "extra_author": "Lundve, Bengt", | 12 | "extra_author": "Lundve, Bengt", | ||
13 | "familyName": "Lundve", | 13 | "familyName": "Lundve", | ||
14 | "givenName": "Bengt", | 14 | "givenName": "Bengt", | ||
15 | "orcid": "" | 15 | "orcid": "" | ||
16 | }, | 16 | }, | ||
17 | { | 17 | { | ||
18 | "extra_author": "Thorndyke, Mike", | 18 | "extra_author": "Thorndyke, Mike", | ||
19 | "familyName": "Thorndyke", | 19 | "familyName": "Thorndyke", | ||
20 | "givenName": "Mike", | 20 | "givenName": "Mike", | ||
21 | "orcid": "" | 21 | "orcid": "" | ||
22 | } | 22 | } | ||
23 | ], | 23 | ], | ||
24 | "familyName": "Dupont", | 24 | "familyName": "Dupont", | ||
25 | "givenName": "Sam", | 25 | "givenName": "Sam", | ||
26 | "groups": [], | 26 | "groups": [], | ||
27 | "id": "3e2369fd-bb6a-48d6-a89c-755ef993069a", | 27 | "id": "3e2369fd-bb6a-48d6-a89c-755ef993069a", | ||
28 | "isopen": false, | 28 | "isopen": false, | ||
29 | "license_id": "CC-BY-3.0", | 29 | "license_id": "CC-BY-3.0", | ||
30 | "license_title": "CC-BY-3.0", | 30 | "license_title": "CC-BY-3.0", | ||
31 | "metadata_created": "2024-11-29T11:34:18.026237", | 31 | "metadata_created": "2024-11-29T11:34:18.026237", | ||
n | 32 | "metadata_modified": "2024-11-29T11:34:18.026243", | n | 32 | "metadata_modified": "2024-11-30T14:28:31.063047", |
33 | "name": "png-doi-10-1594-pangaea-757990", | 33 | "name": "png-doi-10-1594-pangaea-757990", | ||
34 | "notes": "Ocean acidification (OA) is believed to be a major threat | 34 | "notes": "Ocean acidification (OA) is believed to be a major threat | ||
35 | for near-future marine ecosystems, and that the most sensitive | 35 | for near-future marine ecosystems, and that the most sensitive | ||
36 | organisms will be calcifying organisms and the free-living larval | 36 | organisms will be calcifying organisms and the free-living larval | ||
37 | stages produced by most benthic marine species. In this respect, | 37 | stages produced by most benthic marine species. In this respect, | ||
38 | echinoderms are one of the taxa most at risk. Earlier research on the | 38 | echinoderms are one of the taxa most at risk. Earlier research on the | ||
39 | impact of near-future OA on echinoderm larval stages showed negative | 39 | impact of near-future OA on echinoderm larval stages showed negative | ||
40 | effects, such as a decreased growth rate, increased mortality, and | 40 | effects, such as a decreased growth rate, increased mortality, and | ||
41 | developmental abnormalities. However, all the long-term studies were | 41 | developmental abnormalities. However, all the long-term studies were | ||
42 | performed on planktotrophic larvae while alternative life-history | 42 | performed on planktotrophic larvae while alternative life-history | ||
43 | strategies, such as nonfeeding lecithotrophy, were largely ignored. | 43 | strategies, such as nonfeeding lecithotrophy, were largely ignored. | ||
44 | Here, we show that lecithotrophic echinoderm larvae and juveniles are | 44 | Here, we show that lecithotrophic echinoderm larvae and juveniles are | ||
45 | positively impacted by ocean acidification. When cultured at low pH, | 45 | positively impacted by ocean acidification. When cultured at low pH, | ||
46 | larvae and juveniles of the sea star Crossaster papposus grow faster | 46 | larvae and juveniles of the sea star Crossaster papposus grow faster | ||
47 | with no visible affects on survival or skeletogenesis. This suggests | 47 | with no visible affects on survival or skeletogenesis. This suggests | ||
48 | that in future oceans, lecithotrophic species may be better adapted to | 48 | that in future oceans, lecithotrophic species may be better adapted to | ||
49 | deal with the threat of OA compared with planktotrophic ones with | 49 | deal with the threat of OA compared with planktotrophic ones with | ||
50 | potentially important consequences at the ecosystem level. For | 50 | potentially important consequences at the ecosystem level. For | ||
51 | example, an increase in populations of the top predator C. papposus | 51 | example, an increase in populations of the top predator C. papposus | ||
52 | will likely have huge consequences for community structure. Our | 52 | will likely have huge consequences for community structure. Our | ||
53 | results also highlight the importance of taking varying life-history | 53 | results also highlight the importance of taking varying life-history | ||
54 | strategies into account when assessing the impacts of climate change, | 54 | strategies into account when assessing the impacts of climate change, | ||
55 | an approach that also provides insight into understanding the | 55 | an approach that also provides insight into understanding the | ||
56 | evolution of life-history strategies.", | 56 | evolution of life-history strategies.", | ||
57 | "num_resources": 0, | 57 | "num_resources": 0, | ||
n | 58 | "num_tags": 13, | n | 58 | "num_tags": 16, |
59 | "orcid": "", | 59 | "orcid": "", | ||
60 | "organization": { | 60 | "organization": { | ||
61 | "approval_status": "approved", | 61 | "approval_status": "approved", | ||
n | 62 | "created": "2024-11-29T11:32:00.143130", | n | 62 | "created": "2024-11-30T14:19:14.458899", |
63 | "description": "PANGAEA (Data Publisher for Earth & Environmental | 63 | "description": "PANGAEA (Data Publisher for Earth & Environmental | ||
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65 | library aimed at archiving, publishing and distributing georeferenced | 65 | library aimed at archiving, publishing and distributing georeferenced | ||
66 | data from earth system research. PANGAEA guarantees long-term | 66 | data from earth system research. PANGAEA guarantees long-term | ||
67 | availability (greater than 10 years) of its content. PANGAEA is open | 67 | availability (greater than 10 years) of its content. PANGAEA is open | ||
68 | to any project, institution, or individual scientist to use or to | 68 | to any project, institution, or individual scientist to use or to | ||
69 | archive and publish data. PANGAEA focuses on georeferenced | 69 | archive and publish data. PANGAEA focuses on georeferenced | ||
70 | observational data, experimental data, and models/simulations. | 70 | observational data, experimental data, and models/simulations. | ||
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72 | data and metadata, a high degree of structural and semantic | 72 | data and metadata, a high degree of structural and semantic | ||
73 | harmonization of the data inventory as well as the commitment of the | 73 | harmonization of the data inventory as well as the commitment of the | ||
74 | hosting institutions ensures FAIRness of archived data.", | 74 | hosting institutions ensures FAIRness of archived data.", | ||
n | 75 | "id": "3226ef9c-20d1-43fd-ba8f-fa35c8c9fb5d", | n | 75 | "id": "e4c6c709-6080-430f-8979-e57014b1b0ee", |
76 | "image_url": "pangaea_topicbiosphere.png", | 76 | "image_url": "pangaea_topicbiologicalclassification.png", | ||
77 | "is_organization": true, | 77 | "is_organization": true, | ||
n | 78 | "name": "pangaea_biosphere", | n | 78 | "name": "pangaea_biologicalclassification", |
79 | "state": "active", | 79 | "state": "active", | ||
n | 80 | "title": "PANGAEA (Biosphere)", | n | 80 | "title": "PANGAEA (Biological Classification)", |
81 | "type": "organization" | 81 | "type": "organization" | ||
82 | }, | 82 | }, | ||
n | 83 | "owner_org": "3226ef9c-20d1-43fd-ba8f-fa35c8c9fb5d", | n | 83 | "owner_org": "e4c6c709-6080-430f-8979-e57014b1b0ee", |
84 | "private": false, | 84 | "private": false, | ||
85 | "publication_year": "2010", | 85 | "publication_year": "2010", | ||
86 | "related_identifiers": [ | 86 | "related_identifiers": [ | ||
87 | { | 87 | { | ||
88 | "authors": "Dupont Sam,Lundve Bengt,Thorndyke Mike", | 88 | "authors": "Dupont Sam,Lundve Bengt,Thorndyke Mike", | ||
89 | "email_authors": "sam.dupont@bioenv.gu.se,,", | 89 | "email_authors": "sam.dupont@bioenv.gu.se,,", | ||
90 | "identifier": "https://doi.org/10.1002/jez.b.21342", | 90 | "identifier": "https://doi.org/10.1002/jez.b.21342", | ||
91 | "identifier_type": "DOI", | 91 | "identifier_type": "DOI", | ||
92 | "orcid_authors": ",,", | 92 | "orcid_authors": ",,", | ||
93 | "relation_type": "IsSupplementTo", | 93 | "relation_type": "IsSupplementTo", | ||
94 | "source": "Journal of Experimental Zoology Part B-Molecular and | 94 | "source": "Journal of Experimental Zoology Part B-Molecular and | ||
95 | Developmental Evolution", | 95 | Developmental Evolution", | ||
96 | "title": "Near Future Ocean Acidification Increases Growth Rate | 96 | "title": "Near Future Ocean Acidification Increases Growth Rate | ||
97 | of the Lecithotrophic Larvae and Juveniles of the Sea Star Crossaster | 97 | of the Lecithotrophic Larvae and Juveniles of the Sea Star Crossaster | ||
98 | papposus", | 98 | papposus", | ||
99 | "year": "2010" | 99 | "year": "2010" | ||
100 | } | 100 | } | ||
101 | ], | 101 | ], | ||
102 | "relationships_as_object": [], | 102 | "relationships_as_object": [], | ||
103 | "relationships_as_subject": [], | 103 | "relationships_as_subject": [], | ||
104 | "repository_name": "PANGAEA (Data Publisher for Earth & | 104 | "repository_name": "PANGAEA (Data Publisher for Earth & | ||
105 | Environmental Science)", | 105 | Environmental Science)", | ||
106 | "resource_type": "text/tab-separated-values - filename: | 106 | "resource_type": "text/tab-separated-values - filename: | ||
107 | Dupont_2010_JEZB", | 107 | Dupont_2010_JEZB", | ||
108 | "resources": [], | 108 | "resources": [], | ||
109 | "source_metadata_created": "2010", | 109 | "source_metadata_created": "2010", | ||
110 | "source_metadata_modified": "", | 110 | "source_metadata_modified": "", | ||
111 | "state": "active", | 111 | "state": "active", | ||
112 | "subject_areas": [ | 112 | "subject_areas": [ | ||
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114 | "subject_area_additional": "", | 114 | "subject_area_additional": "", | ||
115 | "subject_area_name": "BiologicalClassification" | 115 | "subject_area_name": "BiologicalClassification" | ||
116 | }, | 116 | }, | ||
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120 | }, | 120 | }, | ||
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123 | "subject_area_name": "Chemistry" | 123 | "subject_area_name": "Chemistry" | ||
124 | } | 124 | } | ||
125 | ], | 125 | ], | ||
126 | "tags": [ | 126 | "tags": [ | ||
127 | { | 127 | { | ||
128 | "display_name": "Animalia", | 128 | "display_name": "Animalia", | ||
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140 | }, | ||||
141 | { | ||||
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140 | }, | 147 | }, | ||
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146 | "vocabulary_id": null | 153 | "vocabulary_id": null | ||
147 | }, | 154 | }, | ||
148 | { | 155 | { | ||
n | 149 | "display_name": "Bottles or small containers-Aquaria 20 L", | n | 156 | "display_name": "Bottles or small containers", |
150 | "id": "be154617-73a3-4ed4-b54f-69e22323c12a", | 157 | "id": "ba227243-af91-4efc-8086-790112e90e09", | ||
151 | "name": "Bottles or small containers-Aquaria 20 L", | 158 | "name": "Bottles or small containers", | ||
152 | "state": "active", | 159 | "state": "active", | ||
153 | "vocabulary_id": null | 160 | "vocabulary_id": null | ||
154 | }, | 161 | }, | ||
155 | { | 162 | { | ||
156 | "display_name": "Coast and continental shelf", | 163 | "display_name": "Coast and continental shelf", | ||
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159 | "state": "active", | 166 | "state": "active", | ||
160 | "vocabulary_id": null | 167 | "vocabulary_id": null | ||
161 | }, | 168 | }, | ||
162 | { | 169 | { | ||
163 | "display_name": "Crossaster papposus", | 170 | "display_name": "Crossaster papposus", | ||
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175 | }, | 182 | }, | ||
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t | t | 222 | "state": "active", | ||
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226 | "display_name": "Survival", | ||||
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228 | "name": "Survival", | ||||
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209 | "vocabulary_id": null | 230 | "vocabulary_id": null | ||
210 | }, | 231 | }, | ||
211 | { | 232 | { | ||
212 | "display_name": "Temperate", | 233 | "display_name": "Temperate", | ||
213 | "id": "31aaeb0c-a4a5-4a8e-9c90-be1eff0cac91", | 234 | "id": "31aaeb0c-a4a5-4a8e-9c90-be1eff0cac91", | ||
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215 | "state": "active", | 236 | "state": "active", | ||
216 | "vocabulary_id": null | 237 | "vocabulary_id": null | ||
217 | } | 238 | } | ||
218 | ], | 239 | ], | ||
219 | "title": "Seawater carbonate chemistry and biological processes | 240 | "title": "Seawater carbonate chemistry and biological processes | ||
220 | during experiments with a Sea Star Crassaster papposus, 2010", | 241 | during experiments with a Sea Star Crassaster papposus, 2010", | ||
221 | "type": "vdataset", | 242 | "type": "vdataset", | ||
222 | "url": "https://doi.org/10.1594/PANGAEA.757990" | 243 | "url": "https://doi.org/10.1594/PANGAEA.757990" | ||
223 | } | 244 | } |