Changes
On July 27, 2022 at 2:36:34 PM UTC, 87c31ae9-4db0-41e4-958b-b38aa813b77a:
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Added the following fields to resource Biodiversity Prey Recovery.csv in Effects of predator density and diversity on trophic interactions of coastal nekton, a mesocosm study from August-October, 2016
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resource_id with value
ignore_hash with value
set_url_type with value
task_created with value
ckan_url with value
original_url with value
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Changed value of field
datastore_active
toTrue
in resource Biodiversity Prey Recovery.csv in Effects of predator density and diversity on trophic interactions of coastal nekton, a mesocosm study from August-October, 2016 -
Changed value of field
datastore_contains_all_records_of_source_file
toTrue
in resource Biodiversity Prey Recovery.csv in Effects of predator density and diversity on trophic interactions of coastal nekton, a mesocosm study from August-October, 2016
f | 1 | { | f | 1 | { |
2 | "author": "John Valentine", | 2 | "author": "John Valentine", | ||
3 | "author_email": "jvalentine@disl.org", | 3 | "author_email": "jvalentine@disl.org", | ||
4 | "creator_user_id": "851c91e4-6343-45af-967a-20a33797707e", | 4 | "creator_user_id": "851c91e4-6343-45af-967a-20a33797707e", | ||
5 | "extras": [ | 5 | "extras": [ | ||
6 | { | 6 | { | ||
7 | "key": "DOI", | 7 | "key": "DOI", | ||
8 | "value": "doi:10.7266/n7-72q1-eh80" | 8 | "value": "doi:10.7266/n7-72q1-eh80" | ||
9 | }, | 9 | }, | ||
10 | { | 10 | { | ||
11 | "key": "ISO.pointOfContact", | 11 | "key": "ISO.pointOfContact", | ||
12 | "value": "John Valentine <jvalentine@disl.org>" | 12 | "value": "John Valentine <jvalentine@disl.org>" | ||
13 | }, | 13 | }, | ||
14 | { | 14 | { | ||
15 | "key": "Theme Keywords", | 15 | "key": "Theme Keywords", | ||
16 | "value": "Biodiversity, Multiple Predator Effects, Emergent | 16 | "value": "Biodiversity, Multiple Predator Effects, Emergent | ||
17 | Effects, Predator Diversity, Additive and Replacement Design, red | 17 | Effects, Predator Diversity, Additive and Replacement Design, red | ||
18 | drum, Gulf killifish, Gulf toadfish, Atlantic blue crab, diamond | 18 | drum, Gulf killifish, Gulf toadfish, Atlantic blue crab, diamond | ||
19 | killifish, grass shrimp" | 19 | killifish, grass shrimp" | ||
20 | } | 20 | } | ||
21 | ], | 21 | ], | ||
22 | "groups": [], | 22 | "groups": [], | ||
23 | "id": "046376c1-241b-4405-9b05-e3aad4dd36a1", | 23 | "id": "046376c1-241b-4405-9b05-e3aad4dd36a1", | ||
24 | "isopen": false, | 24 | "isopen": false, | ||
25 | "license_id": null, | 25 | "license_id": null, | ||
26 | "license_title": null, | 26 | "license_title": null, | ||
27 | "maintainer": "data@disl.org", | 27 | "maintainer": "data@disl.org", | ||
28 | "maintainer_email": "data@disl.org", | 28 | "maintainer_email": "data@disl.org", | ||
29 | "metadata_created": "2022-07-27T14:34:08.136556", | 29 | "metadata_created": "2022-07-27T14:34:08.136556", | ||
n | 30 | "metadata_modified": "2022-07-27T14:34:13.776805", | n | 30 | "metadata_modified": "2022-07-27T14:36:34.216726", |
31 | "name": | 31 | "name": | ||
32 | diversity-on-trophic-interactions-of-coastal-nekton-a-men7-72q1-eh80", | 32 | diversity-on-trophic-interactions-of-coastal-nekton-a-men7-72q1-eh80", | ||
33 | "notes": "### Abstract\nThese datasets were generated from mesocosm | 33 | "notes": "### Abstract\nThese datasets were generated from mesocosm | ||
34 | experiments conducted from August to October 2016 to examine the | 34 | experiments conducted from August to October 2016 to examine the | ||
35 | effects of predator density and diversity on trophic interactions of | 35 | effects of predator density and diversity on trophic interactions of | ||
36 | common coastal fish and crustacean species of the Gulf of Mexico. Four | 36 | common coastal fish and crustacean species of the Gulf of Mexico. Four | ||
37 | predator species were used in this experiment: red drum (Sciaenops | 37 | predator species were used in this experiment: red drum (Sciaenops | ||
38 | ocellatus), Gulf killifish (Fundulus grandis), Gulf toadfish (Opsanus | 38 | ocellatus), Gulf killifish (Fundulus grandis), Gulf toadfish (Opsanus | ||
39 | beta), and adult Atlantic blue crabs (Callinectes sapidus). Prey | 39 | beta), and adult Atlantic blue crabs (Callinectes sapidus). Prey | ||
40 | assemblages composed of 3 common prey species: diamond killifish | 40 | assemblages composed of 3 common prey species: diamond killifish | ||
41 | (Fundulus xenicus), juvenile blue crabs (C. sapidus), and grass shrimp | 41 | (Fundulus xenicus), juvenile blue crabs (C. sapidus), and grass shrimp | ||
42 | (Palaemonetes spp.) were exposed to predator monocultures (single | 42 | (Palaemonetes spp.) were exposed to predator monocultures (single | ||
43 | species) ranging from low to high density (1 to 4 individuals, | 43 | species) ranging from low to high density (1 to 4 individuals, | ||
44 | respectively) to test for predator density effects. Prey assemblages | 44 | respectively) to test for predator density effects. Prey assemblages | ||
45 | were also exposed to predator polycultures composed of 4 individuals | 45 | were also exposed to predator polycultures composed of 4 individuals | ||
46 | from either 2 species or all 4 species to test for effects of predator | 46 | from either 2 species or all 4 species to test for effects of predator | ||
47 | diversity.\n\n### Purpose\nThese datasets show the results of an | 47 | diversity.\n\n### Purpose\nThese datasets show the results of an | ||
48 | experiment examining effects of predator density and diversity on prey | 48 | experiment examining effects of predator density and diversity on prey | ||
49 | populations. Analysis of these data will examine emergent multiple | 49 | populations. Analysis of these data will examine emergent multiple | ||
50 | predator effects and potential effects of environmental factors | 50 | predator effects and potential effects of environmental factors | ||
51 | associated with mesocosms that may translate to differential survival | 51 | associated with mesocosms that may translate to differential survival | ||
52 | of prey individuals.\n\n**DOI: | 52 | of prey individuals.\n\n**DOI: | ||
53 | .7266/n7-72q1-eh80](https://www.doi.org/10.7266/n7-72q1-eh80)**\n\n### | 53 | .7266/n7-72q1-eh80](https://www.doi.org/10.7266/n7-72q1-eh80)**\n\n### | ||
54 | Suggested Citation\nValentine, John F.; Martin, Charles W.; Alford, | 54 | Suggested Citation\nValentine, John F.; Martin, Charles W.; Alford, | ||
55 | Scott B.. 2018. Effects of predator density and diversity on trophic | 55 | Scott B.. 2018. Effects of predator density and diversity on trophic | ||
56 | interactions of coastal nekton, a mesocosm study from August-October, | 56 | interactions of coastal nekton, a mesocosm study from August-October, | ||
57 | 2016. Distributed by: Gulf of Mexico Research Initiative Information | 57 | 2016. Distributed by: Gulf of Mexico Research Initiative Information | ||
58 | and Data Cooperative (GRIIDC), Harte Research Institute, Texas A&M | 58 | and Data Cooperative (GRIIDC), Harte Research Institute, Texas A&M | ||
59 | University\u2013Corpus Christi. doi:10.7266/n7-72q1-eh80\n\n**Funded | 59 | University\u2013Corpus Christi. doi:10.7266/n7-72q1-eh80\n\n**Funded | ||
60 | by:** Gulf of Mexico Research Initiative (GoMRI)\n\n**Funding cycle:** | 60 | by:** Gulf of Mexico Research Initiative (GoMRI)\n\n**Funding cycle:** | ||
61 | RFP-IV\n\n**Research group:** Alabama Center for Ecological Resilience | 61 | RFP-IV\n\n**Research group:** Alabama Center for Ecological Resilience | ||
62 | (ACER)\n\n", | 62 | (ACER)\n\n", | ||
63 | "num_resources": 10, | 63 | "num_resources": 10, | ||
64 | "num_tags": 11, | 64 | "num_tags": 11, | ||
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67 | "created": "2022-07-22T03:25:13.329710", | 67 | "created": "2022-07-22T03:25:13.329710", | ||
68 | "description": "The Dauphin Island Sea Lab organization.", | 68 | "description": "The Dauphin Island Sea Lab organization.", | ||
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73 | "state": "active", | 73 | "state": "active", | ||
74 | "title": "Dauphin Island Sea Lab", | 74 | "title": "Dauphin Island Sea Lab", | ||
75 | "type": "organization" | 75 | "type": "organization" | ||
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