Changes
On July 23, 2022 at 3:04:37 AM UTC, 851c91e4-6343-45af-967a-20a33797707e:
-
Added resource 42.html to Production of phenolics by seagrasses: patterns and ecological significance
f | 1 | { | f | 1 | { |
2 | "author": "Dr John Valentine or LaTina Steele", | 2 | "author": "Dr John Valentine or LaTina Steele", | ||
3 | "author_email": "jvalentine@disl.org", | 3 | "author_email": "jvalentine@disl.org", | ||
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5 | "extras": [ | 5 | "extras": [ | ||
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7 | "key": "Access_Constraints", | 7 | "key": "Access_Constraints", | ||
8 | "value": "Permission to access these data must be given by John | 8 | "value": "Permission to access these data must be given by John | ||
9 | Valentine or LaTina Steele." | 9 | Valentine or LaTina Steele." | ||
10 | }, | 10 | }, | ||
11 | { | 11 | { | ||
12 | "key": "ISO 19115 Topic Categories", | 12 | "key": "ISO 19115 Topic Categories", | ||
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17 | "value": "St. Joseph's Bay, Port St. Joe, Perdido Bay, | 17 | "value": "St. Joseph's Bay, Port St. Joe, Perdido Bay, | ||
18 | Pensacola, St. Andrew's Bay, Panama City, Florida, Gulf of Mexico" | 18 | Pensacola, St. Andrew's Bay, Panama City, Florida, Gulf of Mexico" | ||
19 | }, | 19 | }, | ||
20 | { | 20 | { | ||
21 | "key": "Theme Keywords", | 21 | "key": "Theme Keywords", | ||
22 | "value": "phenolics, seagrass, herbivory, chemical defense, | 22 | "value": "phenolics, seagrass, herbivory, chemical defense, | ||
23 | grazing, pathogens, inducible defense, inducible resistance, Thalassia | 23 | grazing, pathogens, inducible defense, inducible resistance, Thalassia | ||
24 | testudinum, turtle grass, Halodule wrightii, shoalgrass, condensed | 24 | testudinum, turtle grass, Halodule wrightii, shoalgrass, condensed | ||
25 | tannins, eutrophication, pink sea urchin, Lytechinus variegatus, | 25 | tannins, eutrophication, pink sea urchin, Lytechinus variegatus, | ||
26 | mesograzers, ecology" | 26 | mesograzers, ecology" | ||
27 | }, | 27 | }, | ||
28 | { | 28 | { | ||
29 | "key": "Use_Constraints", | 29 | "key": "Use_Constraints", | ||
30 | "value": "Acknowledgment of the DISL: Valentine Lab and | 30 | "value": "Acknowledgment of the DISL: Valentine Lab and | ||
31 | University of South Alabama, Department of Marine Sciences would be | 31 | University of South Alabama, Department of Marine Sciences would be | ||
32 | appreciated in products developed from these data, and such | 32 | appreciated in products developed from these data, and such | ||
33 | acknowledgment as is standard for citation and legal practices for | 33 | acknowledgment as is standard for citation and legal practices for | ||
34 | data source is expected by users of these data. Users should be aware | 34 | data source is expected by users of these data. Users should be aware | ||
35 | that comparison with other data sets for the same area from other time | 35 | that comparison with other data sets for the same area from other time | ||
36 | periods may be inaccurate due to inconsistencies resulting from | 36 | periods may be inaccurate due to inconsistencies resulting from | ||
37 | changes in mapping conventions, data collection, and computer | 37 | changes in mapping conventions, data collection, and computer | ||
38 | processes over time. The distributor shall not be liable for improper | 38 | processes over time. The distributor shall not be liable for improper | ||
39 | or incorrect use of these data, based on the description of | 39 | or incorrect use of these data, based on the description of | ||
40 | appropriate/inappropriate uses described in the metadata document. | 40 | appropriate/inappropriate uses described in the metadata document. | ||
41 | These data are not legal documents and are not to be used as such." | 41 | These data are not legal documents and are not to be used as such." | ||
42 | }, | 42 | }, | ||
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45 | "value": "St. Joseph's Bay Port St. Joe Perdido Bay Pensacola | 45 | "value": "St. Joseph's Bay Port St. Joe Perdido Bay Pensacola | ||
46 | St. Andrew's Bay Panama City Florida Gulf of Mexico" | 46 | St. Andrew's Bay Panama City Florida Gulf of Mexico" | ||
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78 | "value": "Unpublished material" | 78 | "value": "Unpublished material" | ||
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81 | "key": "dc.description", | 81 | "key": "dc.description", | ||
82 | "value": "A change in the production of chemical deterrents by a | 82 | "value": "A change in the production of chemical deterrents by a | ||
83 | plant following herbivory that reduces future incidences of grazing is | 83 | plant following herbivory that reduces future incidences of grazing is | ||
84 | referred to as inducible resistance. Most of our current knowledge of | 84 | referred to as inducible resistance. Most of our current knowledge of | ||
85 | inducible resistance comes from terrestrial ecosystems, and the few | 85 | inducible resistance comes from terrestrial ecosystems, and the few | ||
86 | studies of inducible resistance in marine systems use macroalgae as | 86 | studies of inducible resistance in marine systems use macroalgae as | ||
87 | their plant model. Phenolic compounds are a class of phytochemicals | 87 | their plant model. Phenolic compounds are a class of phytochemicals | ||
88 | often involved in inducible resistance in terrestrial plants and | 88 | often involved in inducible resistance in terrestrial plants and | ||
89 | macroalgae, and their production is thought to be metabolically costly | 89 | macroalgae, and their production is thought to be metabolically costly | ||
90 | to these plants. These compounds are found in seagrasses, but their | 90 | to these plants. These compounds are found in seagrasses, but their | ||
91 | role is not understood. Seagrasses are marine vascular plants that | 91 | role is not understood. Seagrasses are marine vascular plants that | ||
92 | provide habitat for ecologically and economically important fish and | 92 | provide habitat for ecologically and economically important fish and | ||
93 | invertebrate species. Seagrasses are in decline worldwide, and many | 93 | invertebrate species. Seagrasses are in decline worldwide, and many | ||
94 | researchers attribute this to increases in nutrient loading in coastal | 94 | researchers attribute this to increases in nutrient loading in coastal | ||
95 | areas. Among other effects, increased nutrients can change the rate | 95 | areas. Among other effects, increased nutrients can change the rate | ||
96 | of production of phenolic compounds in seagrasses, although the | 96 | of production of phenolic compounds in seagrasses, although the | ||
97 | specific effects of nutrient levels on seagrass phenolic production | 97 | specific effects of nutrient levels on seagrass phenolic production | ||
98 | are unclear. Though they are in decline, seagrasses persist in areas | 98 | are unclear. Though they are in decline, seagrasses persist in areas | ||
99 | of high grazing pressure and are known to possess the most common | 99 | of high grazing pressure and are known to possess the most common | ||
100 | class of inducible chemical deterrents, which makes them excellent | 100 | class of inducible chemical deterrents, which makes them excellent | ||
101 | candidates for the study of inducible resistance. Here, I propose a | 101 | candidates for the study of inducible resistance. Here, I propose a | ||
102 | study that will expand our understanding of the role of inducible | 102 | study that will expand our understanding of the role of inducible | ||
103 | resistance in seagrass systems. This study will determine if | 103 | resistance in seagrass systems. This study will determine if | ||
104 | production of phenolic compounds is induced in two seagrasses | 104 | production of phenolic compounds is induced in two seagrasses | ||
105 | (Thalassia testudinum and Halodule wrightii) by grazing by three | 105 | (Thalassia testudinum and Halodule wrightii) by grazing by three | ||
106 | grazers (a sea urchin, a limpet, and an amphipod). It will also | 106 | grazers (a sea urchin, a limpet, and an amphipod). It will also | ||
107 | determine if production of phenolics by these seagrasses is costly to | 107 | determine if production of phenolics by these seagrasses is costly to | ||
108 | the plants and how nutrient additions affect production of phenolics | 108 | the plants and how nutrient additions affect production of phenolics | ||
109 | by these seagrasses." | 109 | by these seagrasses." | ||
110 | }, | 110 | }, | ||
111 | { | 111 | { | ||
112 | "key": "dc.language", | 112 | "key": "dc.language", | ||
113 | "value": "en" | 113 | "value": "en" | ||
114 | }, | 114 | }, | ||
115 | { | 115 | { | ||
116 | "key": "dc.subject", | 116 | "key": "dc.subject", | ||
117 | "value": "phenolics seagrass herbivory chemical defense grazing | 117 | "value": "phenolics seagrass herbivory chemical defense grazing | ||
118 | pathogens inducible defense inducible resistance Thalassia testudinum | 118 | pathogens inducible defense inducible resistance Thalassia testudinum | ||
119 | turtle grass Halodule wrightii shoalgrass condensed tannins | 119 | turtle grass Halodule wrightii shoalgrass condensed tannins | ||
120 | eutrophication pink sea urchin Lytechinus variegatus mesograzers | 120 | eutrophication pink sea urchin Lytechinus variegatus mesograzers | ||
121 | ecology" | 121 | ecology" | ||
122 | }, | 122 | }, | ||
123 | { | 123 | { | ||
124 | "key": "dc.title", | 124 | "key": "dc.title", | ||
125 | "value": "Production of phenolics by seagrasses: patterns and | 125 | "value": "Production of phenolics by seagrasses: patterns and | ||
126 | ecological significance" | 126 | ecological significance" | ||
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147 | "notes": "A change in the production of chemical deterrents by a | 147 | "notes": "A change in the production of chemical deterrents by a | ||
148 | plant following herbivory that reduces future incidences of grazing is | 148 | plant following herbivory that reduces future incidences of grazing is | ||
149 | referred to as inducible resistance. Most of our current knowledge of | 149 | referred to as inducible resistance. Most of our current knowledge of | ||
150 | inducible resistance comes from terrestrial ecosystems, and the few | 150 | inducible resistance comes from terrestrial ecosystems, and the few | ||
151 | studies of inducible resistance in marine systems use macroalgae as | 151 | studies of inducible resistance in marine systems use macroalgae as | ||
152 | their plant model. Phenolic compounds are a class of phytochemicals | 152 | their plant model. Phenolic compounds are a class of phytochemicals | ||
153 | often involved in inducible resistance in terrestrial plants and | 153 | often involved in inducible resistance in terrestrial plants and | ||
154 | macroalgae, and their production is thought to be metabolically costly | 154 | macroalgae, and their production is thought to be metabolically costly | ||
155 | to these plants. These compounds are found in seagrasses, but their | 155 | to these plants. These compounds are found in seagrasses, but their | ||
156 | role is not understood. Seagrasses are marine vascular plants that | 156 | role is not understood. Seagrasses are marine vascular plants that | ||
157 | provide habitat for ecologically and economically important fish and | 157 | provide habitat for ecologically and economically important fish and | ||
158 | invertebrate species. Seagrasses are in decline worldwide, and many | 158 | invertebrate species. Seagrasses are in decline worldwide, and many | ||
159 | researchers attribute this to increases in nutrient loading in coastal | 159 | researchers attribute this to increases in nutrient loading in coastal | ||
160 | areas. Among other effects, increased nutrients can change the rate | 160 | areas. Among other effects, increased nutrients can change the rate | ||
161 | of production of phenolic compounds in seagrasses, although the | 161 | of production of phenolic compounds in seagrasses, although the | ||
162 | specific effects of nutrient levels on seagrass phenolic production | 162 | specific effects of nutrient levels on seagrass phenolic production | ||
163 | are unclear. Though they are in decline, seagrasses persist in areas | 163 | are unclear. Though they are in decline, seagrasses persist in areas | ||
164 | of high grazing pressure and are known to possess the most common | 164 | of high grazing pressure and are known to possess the most common | ||
165 | class of inducible chemical deterrents, which makes them excellent | 165 | class of inducible chemical deterrents, which makes them excellent | ||
166 | candidates for the study of inducible resistance. Here, I propose a | 166 | candidates for the study of inducible resistance. Here, I propose a | ||
167 | study that will expand our understanding of the role of inducible | 167 | study that will expand our understanding of the role of inducible | ||
168 | resistance in seagrass systems. This study will determine if | 168 | resistance in seagrass systems. This study will determine if | ||
169 | production of phenolic compounds is induced in two seagrasses | 169 | production of phenolic compounds is induced in two seagrasses | ||
170 | (Thalassia testudinum and Halodule wrightii) by grazing by three | 170 | (Thalassia testudinum and Halodule wrightii) by grazing by three | ||
171 | grazers (a sea urchin, a limpet, and an amphipod). It will also | 171 | grazers (a sea urchin, a limpet, and an amphipod). It will also | ||
172 | determine if production of phenolics by these seagrasses is costly to | 172 | determine if production of phenolics by these seagrasses is costly to | ||
173 | the plants and how nutrient additions affect production of phenolics | 173 | the plants and how nutrient additions affect production of phenolics | ||
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265 | }, | 290 | }, | ||
266 | { | 291 | { | ||
267 | "display_name": "Port St. Joe", | 292 | "display_name": "Port St. Joe", | ||
268 | "id": "c3996279-094e-483b-977f-83d92590f95a", | 293 | "id": "c3996279-094e-483b-977f-83d92590f95a", | ||
269 | "name": "Port St. Joe", | 294 | "name": "Port St. Joe", | ||
270 | "state": "active", | 295 | "state": "active", | ||
271 | "vocabulary_id": null | 296 | "vocabulary_id": null | ||
272 | }, | 297 | }, | ||
273 | { | 298 | { | ||
274 | "display_name": "St. Andrews Bay", | 299 | "display_name": "St. Andrews Bay", | ||
275 | "id": "235d8470-451d-4111-9171-cc10ff8a3363", | 300 | "id": "235d8470-451d-4111-9171-cc10ff8a3363", | ||
276 | "name": "St. Andrews Bay", | 301 | "name": "St. Andrews Bay", | ||
277 | "state": "active", | 302 | "state": "active", | ||
278 | "vocabulary_id": null | 303 | "vocabulary_id": null | ||
279 | }, | 304 | }, | ||
280 | { | 305 | { | ||
281 | "display_name": "St. Josephs Bay", | 306 | "display_name": "St. Josephs Bay", | ||
282 | "id": "e9bb8cb0-ebc1-4539-a1f6-350a261876ff", | 307 | "id": "e9bb8cb0-ebc1-4539-a1f6-350a261876ff", | ||
283 | "name": "St. Josephs Bay", | 308 | "name": "St. Josephs Bay", | ||
284 | "state": "active", | 309 | "state": "active", | ||
285 | "vocabulary_id": null | 310 | "vocabulary_id": null | ||
286 | }, | 311 | }, | ||
287 | { | 312 | { | ||
288 | "display_name": "Thalassia testudinum", | 313 | "display_name": "Thalassia testudinum", | ||
289 | "id": "69c2ecd3-b5d2-4908-9ab2-c0026283bc9d", | 314 | "id": "69c2ecd3-b5d2-4908-9ab2-c0026283bc9d", | ||
290 | "name": "Thalassia testudinum", | 315 | "name": "Thalassia testudinum", | ||
291 | "state": "active", | 316 | "state": "active", | ||
292 | "vocabulary_id": null | 317 | "vocabulary_id": null | ||
293 | }, | 318 | }, | ||
294 | { | 319 | { | ||
295 | "display_name": "biota", | 320 | "display_name": "biota", | ||
296 | "id": "8697f957-08f7-4539-8025-fcb58cb28994", | 321 | "id": "8697f957-08f7-4539-8025-fcb58cb28994", | ||
297 | "name": "biota", | 322 | "name": "biota", | ||
298 | "state": "active", | 323 | "state": "active", | ||
299 | "vocabulary_id": null | 324 | "vocabulary_id": null | ||
300 | }, | 325 | }, | ||
301 | { | 326 | { | ||
302 | "display_name": "chemical defense", | 327 | "display_name": "chemical defense", | ||
303 | "id": "77703765-af58-4c42-b57a-97825bbc23e9", | 328 | "id": "77703765-af58-4c42-b57a-97825bbc23e9", | ||
304 | "name": "chemical defense", | 329 | "name": "chemical defense", | ||
305 | "state": "active", | 330 | "state": "active", | ||
306 | "vocabulary_id": null | 331 | "vocabulary_id": null | ||
307 | }, | 332 | }, | ||
308 | { | 333 | { | ||
309 | "display_name": "condensed tannins", | 334 | "display_name": "condensed tannins", | ||
310 | "id": "45b9ad59-ddc8-415f-bbac-83e345cf51b4", | 335 | "id": "45b9ad59-ddc8-415f-bbac-83e345cf51b4", | ||
311 | "name": "condensed tannins", | 336 | "name": "condensed tannins", | ||
312 | "state": "active", | 337 | "state": "active", | ||
313 | "vocabulary_id": null | 338 | "vocabulary_id": null | ||
314 | }, | 339 | }, | ||
315 | { | 340 | { | ||
316 | "display_name": "ecology", | 341 | "display_name": "ecology", | ||
317 | "id": "3263b834-e762-4d38-aa1a-240acccef27c", | 342 | "id": "3263b834-e762-4d38-aa1a-240acccef27c", | ||
318 | "name": "ecology", | 343 | "name": "ecology", | ||
319 | "state": "active", | 344 | "state": "active", | ||
320 | "vocabulary_id": null | 345 | "vocabulary_id": null | ||
321 | }, | 346 | }, | ||
322 | { | 347 | { | ||
323 | "display_name": "environment", | 348 | "display_name": "environment", | ||
324 | "id": "c1a667ee-c399-4f70-a7cb-449fb05391a4", | 349 | "id": "c1a667ee-c399-4f70-a7cb-449fb05391a4", | ||
325 | "name": "environment", | 350 | "name": "environment", | ||
326 | "state": "active", | 351 | "state": "active", | ||
327 | "vocabulary_id": null | 352 | "vocabulary_id": null | ||
328 | }, | 353 | }, | ||
329 | { | 354 | { | ||
330 | "display_name": "eutrophication", | 355 | "display_name": "eutrophication", | ||
331 | "id": "010f4113-6711-4ac3-9f62-e763ee1892d9", | 356 | "id": "010f4113-6711-4ac3-9f62-e763ee1892d9", | ||
332 | "name": "eutrophication", | 357 | "name": "eutrophication", | ||
333 | "state": "active", | 358 | "state": "active", | ||
334 | "vocabulary_id": null | 359 | "vocabulary_id": null | ||
335 | }, | 360 | }, | ||
336 | { | 361 | { | ||
337 | "display_name": "grazing", | 362 | "display_name": "grazing", | ||
338 | "id": "d67d1c84-6168-40b5-8cb2-1956ce38fd90", | 363 | "id": "d67d1c84-6168-40b5-8cb2-1956ce38fd90", | ||
339 | "name": "grazing", | 364 | "name": "grazing", | ||
340 | "state": "active", | 365 | "state": "active", | ||
341 | "vocabulary_id": null | 366 | "vocabulary_id": null | ||
342 | }, | 367 | }, | ||
343 | { | 368 | { | ||
344 | "display_name": "herbivory", | 369 | "display_name": "herbivory", | ||
345 | "id": "5a306f68-de3a-47a3-bcd2-a1ec732b4210", | 370 | "id": "5a306f68-de3a-47a3-bcd2-a1ec732b4210", | ||
346 | "name": "herbivory", | 371 | "name": "herbivory", | ||
347 | "state": "active", | 372 | "state": "active", | ||
348 | "vocabulary_id": null | 373 | "vocabulary_id": null | ||
349 | }, | 374 | }, | ||
350 | { | 375 | { | ||
351 | "display_name": "inducible defense", | 376 | "display_name": "inducible defense", | ||
352 | "id": "5740b076-ff53-4d3c-9edf-66c65c698547", | 377 | "id": "5740b076-ff53-4d3c-9edf-66c65c698547", | ||
353 | "name": "inducible defense", | 378 | "name": "inducible defense", | ||
354 | "state": "active", | 379 | "state": "active", | ||
355 | "vocabulary_id": null | 380 | "vocabulary_id": null | ||
356 | }, | 381 | }, | ||
357 | { | 382 | { | ||
358 | "display_name": "inducible resistance", | 383 | "display_name": "inducible resistance", | ||
359 | "id": "d29831e8-8737-4b8e-89bf-e718142f1bfd", | 384 | "id": "d29831e8-8737-4b8e-89bf-e718142f1bfd", | ||
360 | "name": "inducible resistance", | 385 | "name": "inducible resistance", | ||
361 | "state": "active", | 386 | "state": "active", | ||
362 | "vocabulary_id": null | 387 | "vocabulary_id": null | ||
363 | }, | 388 | }, | ||
364 | { | 389 | { | ||
365 | "display_name": "mesograzers", | 390 | "display_name": "mesograzers", | ||
366 | "id": "a2402014-7e31-4135-afcd-97c6c1b11a09", | 391 | "id": "a2402014-7e31-4135-afcd-97c6c1b11a09", | ||
367 | "name": "mesograzers", | 392 | "name": "mesograzers", | ||
368 | "state": "active", | 393 | "state": "active", | ||
369 | "vocabulary_id": null | 394 | "vocabulary_id": null | ||
370 | }, | 395 | }, | ||
371 | { | 396 | { | ||
372 | "display_name": "oceans", | 397 | "display_name": "oceans", | ||
373 | "id": "a6963a6f-1b79-4724-a263-d5f1bebec382", | 398 | "id": "a6963a6f-1b79-4724-a263-d5f1bebec382", | ||
374 | "name": "oceans", | 399 | "name": "oceans", | ||
375 | "state": "active", | 400 | "state": "active", | ||
376 | "vocabulary_id": null | 401 | "vocabulary_id": null | ||
377 | }, | 402 | }, | ||
378 | { | 403 | { | ||
379 | "display_name": "pathogens", | 404 | "display_name": "pathogens", | ||
380 | "id": "1517b790-7253-496b-bc97-e8bd3e746180", | 405 | "id": "1517b790-7253-496b-bc97-e8bd3e746180", | ||
381 | "name": "pathogens", | 406 | "name": "pathogens", | ||
382 | "state": "active", | 407 | "state": "active", | ||
383 | "vocabulary_id": null | 408 | "vocabulary_id": null | ||
384 | }, | 409 | }, | ||
385 | { | 410 | { | ||
386 | "display_name": "phenolics", | 411 | "display_name": "phenolics", | ||
387 | "id": "5891e18e-6685-4ea2-8831-d4848eaece80", | 412 | "id": "5891e18e-6685-4ea2-8831-d4848eaece80", | ||
388 | "name": "phenolics", | 413 | "name": "phenolics", | ||
389 | "state": "active", | 414 | "state": "active", | ||
390 | "vocabulary_id": null | 415 | "vocabulary_id": null | ||
391 | }, | 416 | }, | ||
392 | { | 417 | { | ||
393 | "display_name": "pink sea urchin", | 418 | "display_name": "pink sea urchin", | ||
394 | "id": "f279d8ee-7d3c-4592-aa0c-506ce9147e90", | 419 | "id": "f279d8ee-7d3c-4592-aa0c-506ce9147e90", | ||
395 | "name": "pink sea urchin", | 420 | "name": "pink sea urchin", | ||
396 | "state": "active", | 421 | "state": "active", | ||
397 | "vocabulary_id": null | 422 | "vocabulary_id": null | ||
398 | }, | 423 | }, | ||
399 | { | 424 | { | ||
400 | "display_name": "seagrass", | 425 | "display_name": "seagrass", | ||
401 | "id": "5824ced6-3e9f-41c8-abac-b98bcff0e203", | 426 | "id": "5824ced6-3e9f-41c8-abac-b98bcff0e203", | ||
402 | "name": "seagrass", | 427 | "name": "seagrass", | ||
403 | "state": "active", | 428 | "state": "active", | ||
404 | "vocabulary_id": null | 429 | "vocabulary_id": null | ||
405 | }, | 430 | }, | ||
406 | { | 431 | { | ||
407 | "display_name": "shoalgrass", | 432 | "display_name": "shoalgrass", | ||
408 | "id": "b7d80b54-a67d-498f-9f7b-81733dca76a1", | 433 | "id": "b7d80b54-a67d-498f-9f7b-81733dca76a1", | ||
409 | "name": "shoalgrass", | 434 | "name": "shoalgrass", | ||
410 | "state": "active", | 435 | "state": "active", | ||
411 | "vocabulary_id": null | 436 | "vocabulary_id": null | ||
412 | }, | 437 | }, | ||
413 | { | 438 | { | ||
414 | "display_name": "turtle grass", | 439 | "display_name": "turtle grass", | ||
415 | "id": "38f551d2-3ae9-4f58-ba4f-417b8a9448a7", | 440 | "id": "38f551d2-3ae9-4f58-ba4f-417b8a9448a7", | ||
416 | "name": "turtle grass", | 441 | "name": "turtle grass", | ||
417 | "state": "active", | 442 | "state": "active", | ||
418 | "vocabulary_id": null | 443 | "vocabulary_id": null | ||
419 | } | 444 | } | ||
420 | ], | 445 | ], | ||
421 | "title": "Production of phenolics by seagrasses: patterns and | 446 | "title": "Production of phenolics by seagrasses: patterns and | ||
422 | ecological significance", | 447 | ecological significance", | ||
423 | "type": "dataset", | 448 | "type": "dataset", | ||
424 | "url": null, | 449 | "url": null, | ||
425 | "version": null | 450 | "version": null | ||
426 | } | 451 | } |