Changes
On July 27, 2022 at 2:34:34 PM UTC, 851c91e4-6343-45af-967a-20a33797707e:
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Added resource Mesocosm_qPCRcopies.PC.v2.csv to Quantifying denitrifier functional marker gene abundance from sediments associated with genotypically diverse plant types: A mesocosms study in April and September 2016
f | 1 | { | f | 1 | { |
2 | "author": "Patricia Sobecky", | 2 | "author": "Patricia Sobecky", | ||
3 | "author_email": "psobecky@ua.edu", | 3 | "author_email": "psobecky@ua.edu", | ||
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6 | { | 6 | { | ||
7 | "key": "DOI", | 7 | "key": "DOI", | ||
8 | "value": "doi:10.7266/VGZXJT9F" | 8 | "value": "doi:10.7266/VGZXJT9F" | ||
9 | }, | 9 | }, | ||
10 | { | 10 | { | ||
11 | "key": "ISO.pointOfContact", | 11 | "key": "ISO.pointOfContact", | ||
12 | "value": "Patricia Sobecky <psobecky@ua.edu>" | 12 | "value": "Patricia Sobecky <psobecky@ua.edu>" | ||
13 | }, | 13 | }, | ||
14 | { | 14 | { | ||
15 | "key": "Theme Keywords", | 15 | "key": "Theme Keywords", | ||
16 | "value": "denitrification, functional marker gene abundance, | 16 | "value": "denitrification, functional marker gene abundance, | ||
17 | mesocosm, oil contamination" | 17 | mesocosm, oil contamination" | ||
18 | } | 18 | } | ||
19 | ], | 19 | ], | ||
20 | "groups": [], | 20 | "groups": [], | ||
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24 | "license_title": null, | 24 | "license_title": null, | ||
25 | "maintainer": "data@disl.org", | 25 | "maintainer": "data@disl.org", | ||
26 | "maintainer_email": "data@disl.org", | 26 | "maintainer_email": "data@disl.org", | ||
27 | "metadata_created": "2022-07-27T14:34:33.856771", | 27 | "metadata_created": "2022-07-27T14:34:33.856771", | ||
n | 28 | "metadata_modified": "2022-07-27T14:34:34.307145", | n | 28 | "metadata_modified": "2022-07-27T14:34:34.748674", |
29 | "name": | 29 | "name": | ||
30 | al-marker-gene-abundance-from-sediments-associated-with-genovgzxjt9f", | 30 | al-marker-gene-abundance-from-sediments-associated-with-genovgzxjt9f", | ||
31 | "notes": "### Abstract\nThis data was generated from a a mesocosm | 31 | "notes": "### Abstract\nThis data was generated from a a mesocosm | ||
32 | project to examine the effect of oil exposure on denitrifier | 32 | project to examine the effect of oil exposure on denitrifier | ||
33 | functional abundance within sediments associated with genotypically | 33 | functional abundance within sediments associated with genotypically | ||
34 | diverse plant species. Sediments samples were collected from control | 34 | diverse plant species. Sediments samples were collected from control | ||
35 | and oil-amended mesocosms set up at Dauphin Island Sea Lab that | 35 | and oil-amended mesocosms set up at Dauphin Island Sea Lab that | ||
36 | consisted of Avicennia germinans (black mangrove) co-occurring with | 36 | consisted of Avicennia germinans (black mangrove) co-occurring with | ||
37 | mono- or polycultures of Spartina alterniflora (smooth cord grass). | 37 | mono- or polycultures of Spartina alterniflora (smooth cord grass). | ||
38 | Data were collected in triplicates from control and amended mesocosms | 38 | Data were collected in triplicates from control and amended mesocosms | ||
39 | at three time points, before treatment in September 2015, 6 months | 39 | at three time points, before treatment in September 2015, 6 months | ||
40 | after treatment in April 2016, and 11 months after treatment in | 40 | after treatment in April 2016, and 11 months after treatment in | ||
41 | September 2016. Additional data from this mesocosm study can be found | 41 | September 2016. Additional data from this mesocosm study can be found | ||
42 | in GRIIDC datasets R4.x262.000:0021, R4.x262.000:0026, and | 42 | in GRIIDC datasets R4.x262.000:0021, R4.x262.000:0026, and | ||
43 | R4.x262.000:0034.\n\n### Purpose\nThe purpose of this study was to | 43 | R4.x262.000:0034.\n\n### Purpose\nThe purpose of this study was to | ||
44 | enumerate genes involved in denitrification from mesocosm sediment | 44 | enumerate genes involved in denitrification from mesocosm sediment | ||
45 | samples associated with mono- and polycultures of Spartina | 45 | samples associated with mono- and polycultures of Spartina | ||
46 | alterniflora co-occuring with Avicennia germinans that either were or | 46 | alterniflora co-occuring with Avicennia germinans that either were or | ||
47 | weren\u2019t exposed to oiling.\n\n**DOI: | 47 | weren\u2019t exposed to oiling.\n\n**DOI: | ||
48 | [doi:10.7266/VGZXJT9F](https://www.doi.org/10.7266/VGZXJT9F)**\n\n### | 48 | [doi:10.7266/VGZXJT9F](https://www.doi.org/10.7266/VGZXJT9F)**\n\n### | ||
49 | Suggested Citation\nPatrice Crawford, Nikaela Flournoy. 2019. | 49 | Suggested Citation\nPatrice Crawford, Nikaela Flournoy. 2019. | ||
50 | Quantifying denitrifier functional marker gene abundance from | 50 | Quantifying denitrifier functional marker gene abundance from | ||
51 | sediments associated with genotypically diverse plant types: A | 51 | sediments associated with genotypically diverse plant types: A | ||
52 | mesocosms study in April and September 2016. Distributed by: Gulf of | 52 | mesocosms study in April and September 2016. Distributed by: Gulf of | ||
53 | Mexico Research Initiative Information and Data Cooperative (GRIIDC), | 53 | Mexico Research Initiative Information and Data Cooperative (GRIIDC), | ||
54 | Harte Research Institute, Texas A&M University\u2013Corpus Christi. | 54 | Harte Research Institute, Texas A&M University\u2013Corpus Christi. | ||
55 | doi:10.7266/VGZXJT9F\n\n**Funded by:** Gulf of Mexico Research | 55 | doi:10.7266/VGZXJT9F\n\n**Funded by:** Gulf of Mexico Research | ||
56 | Initiative (GoMRI)\n\n**Funding cycle:** RFP-IV\n\n**Research group:** | 56 | Initiative (GoMRI)\n\n**Funding cycle:** RFP-IV\n\n**Research group:** | ||
57 | Alabama Center for Ecological Resilience (ACER)\n\n", | 57 | Alabama Center for Ecological Resilience (ACER)\n\n", | ||
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62 | "created": "2022-07-22T03:25:13.329710", | 62 | "created": "2022-07-22T03:25:13.329710", | ||
63 | "description": "The Dauphin Island Sea Lab organization.", | 63 | "description": "The Dauphin Island Sea Lab organization.", | ||
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103 | "tags": [ | 127 | "tags": [ | ||
104 | { | 128 | { | ||
105 | "display_name": "denitrification", | 129 | "display_name": "denitrification", | ||
106 | "id": "ef3cdb87-1cb1-463e-b2d0-5d94ea0794b0", | 130 | "id": "ef3cdb87-1cb1-463e-b2d0-5d94ea0794b0", | ||
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109 | "vocabulary_id": null | 133 | "vocabulary_id": null | ||
110 | }, | 134 | }, | ||
111 | { | 135 | { | ||
112 | "display_name": "functional marker gene abundance", | 136 | "display_name": "functional marker gene abundance", | ||
113 | "id": "cbabab4f-207f-45ba-9623-0bbaba1f047e", | 137 | "id": "cbabab4f-207f-45ba-9623-0bbaba1f047e", | ||
114 | "name": "functional marker gene abundance", | 138 | "name": "functional marker gene abundance", | ||
115 | "state": "active", | 139 | "state": "active", | ||
116 | "vocabulary_id": null | 140 | "vocabulary_id": null | ||
117 | }, | 141 | }, | ||
118 | { | 142 | { | ||
119 | "display_name": "mesocosm", | 143 | "display_name": "mesocosm", | ||
120 | "id": "9333be78-cf5d-4704-80af-eb8209dc6428", | 144 | "id": "9333be78-cf5d-4704-80af-eb8209dc6428", | ||
121 | "name": "mesocosm", | 145 | "name": "mesocosm", | ||
122 | "state": "active", | 146 | "state": "active", | ||
123 | "vocabulary_id": null | 147 | "vocabulary_id": null | ||
124 | }, | 148 | }, | ||
125 | { | 149 | { | ||
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130 | "vocabulary_id": null | 154 | "vocabulary_id": null | ||
131 | } | 155 | } | ||
132 | ], | 156 | ], | ||
133 | "title": "Quantifying denitrifier functional marker gene abundance | 157 | "title": "Quantifying denitrifier functional marker gene abundance | ||
134 | from sediments associated with genotypically diverse plant types: A | 158 | from sediments associated with genotypically diverse plant types: A | ||
135 | mesocosms study in April and September 2016", | 159 | mesocosms study in April and September 2016", | ||
136 | "type": "dataset", | 160 | "type": "dataset", | ||
137 | "url": null, | 161 | "url": null, | ||
138 | "version": null | 162 | "version": null | ||
139 | } | 163 | } |