Changes
On July 23, 2022 at 3:04:07 AM UTC, 851c91e4-6343-45af-967a-20a33797707e:
-
Added resource 21.html to How do piscivorous fish assemblage, species richness, and density impact indirectly invertebrate prey consumption by invertivores in coral reef environment?
f | 1 | { | f | 1 | { |
2 | "author": "Dr John Valentine or Riikka Puntila", | 2 | "author": "Dr John Valentine or Riikka Puntila", | ||
3 | "author_email": "jvalentine@disl.org", | 3 | "author_email": "jvalentine@disl.org", | ||
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5 | "extras": [ | 5 | "extras": [ | ||
6 | { | 6 | { | ||
7 | "key": "Access_Constraints", | 7 | "key": "Access_Constraints", | ||
8 | "value": "Permission to access these data must be given by Dr. | 8 | "value": "Permission to access these data must be given by Dr. | ||
9 | John Valentine or Riikka Puntila of the Dauphin Island Sea Lab." | 9 | John Valentine or Riikka Puntila of the Dauphin Island Sea Lab." | ||
10 | }, | 10 | }, | ||
11 | { | 11 | { | ||
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18 | Florida, Key Largo, Dry Rocks Reef, Grecian Rocks Reef, White Banks, | 18 | Florida, Key Largo, Dry Rocks Reef, Grecian Rocks Reef, White Banks, | ||
19 | Little Grecian Reef" | 19 | Little Grecian Reef" | ||
20 | }, | 20 | }, | ||
21 | { | 21 | { | ||
22 | "key": "Theme Keywords", | 22 | "key": "Theme Keywords", | ||
23 | "value": "piscivorous fish assemblage, species richness, | 23 | "value": "piscivorous fish assemblage, species richness, | ||
24 | density, invertebrate, prey consumption, invertivore, coral reef, | 24 | density, invertebrate, prey consumption, invertivore, coral reef, | ||
25 | predation, ecosystem structure, trophic cascade, tethered | 25 | predation, ecosystem structure, trophic cascade, tethered | ||
26 | invertebrates, tethering" | 26 | invertebrates, tethering" | ||
27 | }, | 27 | }, | ||
28 | { | 28 | { | ||
29 | "key": "Use_Constraints", | 29 | "key": "Use_Constraints", | ||
30 | "value": "Acknowledgment of the DISL: Valentine Lab, The | 30 | "value": "Acknowledgment of the DISL: Valentine Lab, The | ||
31 | National Oceanographic and Atmospheric Administration (NOAA), and the | 31 | National Oceanographic and Atmospheric Administration (NOAA), and the | ||
32 | National Undersea Research Center (NURC) would be appreciated in | 32 | National Undersea Research Center (NURC) would be appreciated in | ||
33 | products developed from these data, and such acknowledgment as is | 33 | products developed from these data, and such acknowledgment as is | ||
34 | standard for citation and legal practices for data source is expected | 34 | standard for citation and legal practices for data source is expected | ||
35 | by users of these data. Users should be aware that comparison with | 35 | by users of these data. Users should be aware that comparison with | ||
36 | other data sets for the same area from other time periods may be | 36 | other data sets for the same area from other time periods may be | ||
37 | inaccurate due to inconsistencies resulting from changes in mapping | 37 | inaccurate due to inconsistencies resulting from changes in mapping | ||
38 | conventions, data collection, and computer processes over time. The | 38 | conventions, data collection, and computer processes over time. The | ||
39 | distributor shall not be liable for improper or incorrect use of these | 39 | distributor shall not be liable for improper or incorrect use of these | ||
40 | data, based on the description of appropriate/inappropriate uses | 40 | data, based on the description of appropriate/inappropriate uses | ||
41 | described in the metadata document. These data are not legal documents | 41 | described in the metadata document. These data are not legal documents | ||
42 | and are not to be used as such." | 42 | and are not to be used as such." | ||
43 | }, | 43 | }, | ||
44 | { | 44 | { | ||
45 | "key": "dc.coverage.placeName", | 45 | "key": "dc.coverage.placeName", | ||
46 | "value": "Florida Keys National Marine Sanctuary FKNMS Florida | 46 | "value": "Florida Keys National Marine Sanctuary FKNMS Florida | ||
47 | Key Largo Dry Rocks Reef Grecian Rocks Reef White Banks Little Grecian | 47 | Key Largo Dry Rocks Reef Grecian Rocks Reef White Banks Little Grecian | ||
48 | Reef" | 48 | Reef" | ||
49 | }, | 49 | }, | ||
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76 | "value": "Dauphin Island Sea Lab: Valentine Lab" | 76 | "value": "Dauphin Island Sea Lab: Valentine Lab" | ||
77 | }, | 77 | }, | ||
78 | { | 78 | { | ||
79 | "key": "dc.date", | 79 | "key": "dc.date", | ||
80 | "value": "Unpublished material" | 80 | "value": "Unpublished material" | ||
81 | }, | 81 | }, | ||
82 | { | 82 | { | ||
83 | "key": "dc.description", | 83 | "key": "dc.description", | ||
84 | "value": "While numerous studies have noted the potential for | 84 | "value": "While numerous studies have noted the potential for | ||
85 | cascading impacts resulting from piscivorous fish depletion from coral | 85 | cascading impacts resulting from piscivorous fish depletion from coral | ||
86 | reef food webs (Jackson 2001, Jackson et al. 2001, Bascompte et al. | 86 | reef food webs (Jackson 2001, Jackson et al. 2001, Bascompte et al. | ||
87 | 2005), few have been able to detect the hypothesized cascading impacts | 87 | 2005), few have been able to detect the hypothesized cascading impacts | ||
88 | of piscivore depletion (Jennings and Polunin 1997). I hypothesize | 88 | of piscivore depletion (Jennings and Polunin 1997). I hypothesize | ||
89 | that this lack of evidence can be the cumulative result of the | 89 | that this lack of evidence can be the cumulative result of the | ||
90 | emergent properties of diverse predator and prey assemblages in these | 90 | emergent properties of diverse predator and prey assemblages in these | ||
91 | habitats, which has been shown to weaken trophic cascades in some | 91 | habitats, which has been shown to weaken trophic cascades in some | ||
92 | occasions (Finke and Denno 2004, Duffy et al. 2005) or that | 92 | occasions (Finke and Denno 2004, Duffy et al. 2005) or that | ||
93 | inappropriate scale (Levin 1992) or metrics used in previous studies | 93 | inappropriate scale (Levin 1992) or metrics used in previous studies | ||
94 | may have biased the results. Combining traditional community ecology | 94 | may have biased the results. Combining traditional community ecology | ||
95 | metrics and experimental measurements of foraging efficiency, I | 95 | metrics and experimental measurements of foraging efficiency, I | ||
96 | evaluate the direct impacts piscivore richness and density on the | 96 | evaluate the direct impacts piscivore richness and density on the | ||
97 | composition and relative abundances on midlevel consumers and | 97 | composition and relative abundances on midlevel consumers and | ||
98 | indirectly on the survival of their potential invertebrate prey. This | 98 | indirectly on the survival of their potential invertebrate prey. This | ||
99 | approach conducted on a previously untested fore-back reef scale, as | 99 | approach conducted on a previously untested fore-back reef scale, as | ||
100 | well as combining traditional community measures to a process, may be | 100 | well as combining traditional community measures to a process, may be | ||
101 | more suitable for studying top-down impacts in diverse communities | 101 | more suitable for studying top-down impacts in diverse communities | ||
102 | with numerous trophic linkages, such as coral reefs." | 102 | with numerous trophic linkages, such as coral reefs." | ||
103 | }, | 103 | }, | ||
104 | { | 104 | { | ||
105 | "key": "dc.language", | 105 | "key": "dc.language", | ||
106 | "value": "en" | 106 | "value": "en" | ||
107 | }, | 107 | }, | ||
108 | { | 108 | { | ||
109 | "key": "dc.source", | 109 | "key": "dc.source", | ||
110 | "value": "Florida Keys invertivore prey consumption data" | 110 | "value": "Florida Keys invertivore prey consumption data" | ||
111 | }, | 111 | }, | ||
112 | { | 112 | { | ||
113 | "key": "dc.subject", | 113 | "key": "dc.subject", | ||
114 | "value": "piscivorous fish assemblage species richness density | 114 | "value": "piscivorous fish assemblage species richness density | ||
115 | invertebrate prey consumption invertivore coral reef predation | 115 | invertebrate prey consumption invertivore coral reef predation | ||
116 | ecosystem structure trophic cascade tethered invertebrates tethering" | 116 | ecosystem structure trophic cascade tethered invertebrates tethering" | ||
117 | }, | 117 | }, | ||
118 | { | 118 | { | ||
119 | "key": "dc.title", | 119 | "key": "dc.title", | ||
120 | "value": "How do piscivorous fish assemblage, species richness, | 120 | "value": "How do piscivorous fish assemblage, species richness, | ||
121 | and density impact indirectly invertebrate prey consumption by | 121 | and density impact indirectly invertebrate prey consumption by | ||
122 | invertivores in coral reef environment?" | 122 | invertivores in coral reef environment?" | ||
123 | }, | 123 | }, | ||
124 | { | 124 | { | ||
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126 | "value": "database" | 126 | "value": "database" | ||
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146 | "notes": "While numerous studies have noted the potential for | 146 | "notes": "While numerous studies have noted the potential for | ||
147 | cascading impacts resulting from piscivorous fish depletion from coral | 147 | cascading impacts resulting from piscivorous fish depletion from coral | ||
148 | reef food webs (Jackson 2001, Jackson et al. 2001, Bascompte et al. | 148 | reef food webs (Jackson 2001, Jackson et al. 2001, Bascompte et al. | ||
149 | 2005), few have been able to detect the hypothesized cascading impacts | 149 | 2005), few have been able to detect the hypothesized cascading impacts | ||
150 | of piscivore depletion (Jennings and Polunin 1997). I hypothesize | 150 | of piscivore depletion (Jennings and Polunin 1997). I hypothesize | ||
151 | that this lack of evidence can be the cumulative result of the | 151 | that this lack of evidence can be the cumulative result of the | ||
152 | emergent properties of diverse predator and prey assemblages in these | 152 | emergent properties of diverse predator and prey assemblages in these | ||
153 | habitats, which has been shown to weaken trophic cascades in some | 153 | habitats, which has been shown to weaken trophic cascades in some | ||
154 | occasions (Finke and Denno 2004, Duffy et al. 2005) or that | 154 | occasions (Finke and Denno 2004, Duffy et al. 2005) or that | ||
155 | inappropriate scale (Levin 1992) or metrics used in previous studies | 155 | inappropriate scale (Levin 1992) or metrics used in previous studies | ||
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159 | composition and relative abundances on midlevel consumers and | 159 | composition and relative abundances on midlevel consumers and | ||
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161 | approach conducted on a previously untested fore-back reef scale, as | 161 | approach conducted on a previously untested fore-back reef scale, as | ||
162 | well as combining traditional community measures to a process, may be | 162 | well as combining traditional community measures to a process, may be | ||
163 | more suitable for studying top-down impacts in diverse communities | 163 | more suitable for studying top-down impacts in diverse communities | ||
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235 | { | 260 | { | ||
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242 | { | 267 | { | ||
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247 | "vocabulary_id": null | 272 | "vocabulary_id": null | ||
248 | }, | 273 | }, | ||
249 | { | 274 | { | ||
250 | "display_name": "Little Grecian Reef", | 275 | "display_name": "Little Grecian Reef", | ||
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272 | "id": "324cd3f8-8291-476a-b4c6-e8d75eafd894", | 297 | "id": "324cd3f8-8291-476a-b4c6-e8d75eafd894", | ||
273 | "name": "coral reef", | 298 | "name": "coral reef", | ||
274 | "state": "active", | 299 | "state": "active", | ||
275 | "vocabulary_id": null | 300 | "vocabulary_id": null | ||
276 | }, | 301 | }, | ||
277 | { | 302 | { | ||
278 | "display_name": "density", | 303 | "display_name": "density", | ||
279 | "id": "0811d5f3-bdfa-4ea5-be8e-f4e46348f1d4", | 304 | "id": "0811d5f3-bdfa-4ea5-be8e-f4e46348f1d4", | ||
280 | "name": "density", | 305 | "name": "density", | ||
281 | "state": "active", | 306 | "state": "active", | ||
282 | "vocabulary_id": null | 307 | "vocabulary_id": null | ||
283 | }, | 308 | }, | ||
284 | { | 309 | { | ||
285 | "display_name": "ecosystem structure", | 310 | "display_name": "ecosystem structure", | ||
286 | "id": "35eda9f7-62fb-4e04-b6a4-b2b708fac541", | 311 | "id": "35eda9f7-62fb-4e04-b6a4-b2b708fac541", | ||
287 | "name": "ecosystem structure", | 312 | "name": "ecosystem structure", | ||
288 | "state": "active", | 313 | "state": "active", | ||
289 | "vocabulary_id": null | 314 | "vocabulary_id": null | ||
290 | }, | 315 | }, | ||
291 | { | 316 | { | ||
292 | "display_name": "environment", | 317 | "display_name": "environment", | ||
293 | "id": "c1a667ee-c399-4f70-a7cb-449fb05391a4", | 318 | "id": "c1a667ee-c399-4f70-a7cb-449fb05391a4", | ||
294 | "name": "environment", | 319 | "name": "environment", | ||
295 | "state": "active", | 320 | "state": "active", | ||
296 | "vocabulary_id": null | 321 | "vocabulary_id": null | ||
297 | }, | 322 | }, | ||
298 | { | 323 | { | ||
299 | "display_name": "invertebrate", | 324 | "display_name": "invertebrate", | ||
300 | "id": "8e80a4f5-f083-4a52-9fec-118920a2a70a", | 325 | "id": "8e80a4f5-f083-4a52-9fec-118920a2a70a", | ||
301 | "name": "invertebrate", | 326 | "name": "invertebrate", | ||
302 | "state": "active", | 327 | "state": "active", | ||
303 | "vocabulary_id": null | 328 | "vocabulary_id": null | ||
304 | }, | 329 | }, | ||
305 | { | 330 | { | ||
306 | "display_name": "invertivore", | 331 | "display_name": "invertivore", | ||
307 | "id": "2d38f39d-85f5-4539-9939-3894d8669a6e", | 332 | "id": "2d38f39d-85f5-4539-9939-3894d8669a6e", | ||
308 | "name": "invertivore", | 333 | "name": "invertivore", | ||
309 | "state": "active", | 334 | "state": "active", | ||
310 | "vocabulary_id": null | 335 | "vocabulary_id": null | ||
311 | }, | 336 | }, | ||
312 | { | 337 | { | ||
313 | "display_name": "oceans", | 338 | "display_name": "oceans", | ||
314 | "id": "a6963a6f-1b79-4724-a263-d5f1bebec382", | 339 | "id": "a6963a6f-1b79-4724-a263-d5f1bebec382", | ||
315 | "name": "oceans", | 340 | "name": "oceans", | ||
316 | "state": "active", | 341 | "state": "active", | ||
317 | "vocabulary_id": null | 342 | "vocabulary_id": null | ||
318 | }, | 343 | }, | ||
319 | { | 344 | { | ||
320 | "display_name": "piscivorous fish assemblage", | 345 | "display_name": "piscivorous fish assemblage", | ||
321 | "id": "6c054098-8fc6-4934-9fa6-47a38ba645c5", | 346 | "id": "6c054098-8fc6-4934-9fa6-47a38ba645c5", | ||
322 | "name": "piscivorous fish assemblage", | 347 | "name": "piscivorous fish assemblage", | ||
323 | "state": "active", | 348 | "state": "active", | ||
324 | "vocabulary_id": null | 349 | "vocabulary_id": null | ||
325 | }, | 350 | }, | ||
326 | { | 351 | { | ||
327 | "display_name": "predation", | 352 | "display_name": "predation", | ||
328 | "id": "aa090027-2f68-46a2-abdc-d280af70487e", | 353 | "id": "aa090027-2f68-46a2-abdc-d280af70487e", | ||
329 | "name": "predation", | 354 | "name": "predation", | ||
330 | "state": "active", | 355 | "state": "active", | ||
331 | "vocabulary_id": null | 356 | "vocabulary_id": null | ||
332 | }, | 357 | }, | ||
333 | { | 358 | { | ||
334 | "display_name": "prey consumption", | 359 | "display_name": "prey consumption", | ||
335 | "id": "33f1b2c2-1ce4-449c-9a5b-c18732a5b8bd", | 360 | "id": "33f1b2c2-1ce4-449c-9a5b-c18732a5b8bd", | ||
336 | "name": "prey consumption", | 361 | "name": "prey consumption", | ||
337 | "state": "active", | 362 | "state": "active", | ||
338 | "vocabulary_id": null | 363 | "vocabulary_id": null | ||
339 | }, | 364 | }, | ||
340 | { | 365 | { | ||
341 | "display_name": "species richness", | 366 | "display_name": "species richness", | ||
342 | "id": "58635e5c-13cf-4e48-a930-491d9efe806b", | 367 | "id": "58635e5c-13cf-4e48-a930-491d9efe806b", | ||
343 | "name": "species richness", | 368 | "name": "species richness", | ||
344 | "state": "active", | 369 | "state": "active", | ||
345 | "vocabulary_id": null | 370 | "vocabulary_id": null | ||
346 | }, | 371 | }, | ||
347 | { | 372 | { | ||
348 | "display_name": "tethered invertebrates", | 373 | "display_name": "tethered invertebrates", | ||
349 | "id": "504bd1d2-4e87-4f05-b085-24c6b77e1120", | 374 | "id": "504bd1d2-4e87-4f05-b085-24c6b77e1120", | ||
350 | "name": "tethered invertebrates", | 375 | "name": "tethered invertebrates", | ||
351 | "state": "active", | 376 | "state": "active", | ||
352 | "vocabulary_id": null | 377 | "vocabulary_id": null | ||
353 | }, | 378 | }, | ||
354 | { | 379 | { | ||
355 | "display_name": "tethering", | 380 | "display_name": "tethering", | ||
356 | "id": "7653ac14-ba7c-4e7d-ac8a-393da4710859", | 381 | "id": "7653ac14-ba7c-4e7d-ac8a-393da4710859", | ||
357 | "name": "tethering", | 382 | "name": "tethering", | ||
358 | "state": "active", | 383 | "state": "active", | ||
359 | "vocabulary_id": null | 384 | "vocabulary_id": null | ||
360 | }, | 385 | }, | ||
361 | { | 386 | { | ||
362 | "display_name": "trophic cascade", | 387 | "display_name": "trophic cascade", | ||
363 | "id": "b00da0c0-4423-4d01-9ab2-2446261a24aa", | 388 | "id": "b00da0c0-4423-4d01-9ab2-2446261a24aa", | ||
364 | "name": "trophic cascade", | 389 | "name": "trophic cascade", | ||
365 | "state": "active", | 390 | "state": "active", | ||
366 | "vocabulary_id": null | 391 | "vocabulary_id": null | ||
367 | } | 392 | } | ||
368 | ], | 393 | ], | ||
369 | "title": "How do piscivorous fish assemblage, species richness, and | 394 | "title": "How do piscivorous fish assemblage, species richness, and | ||
370 | density impact indirectly invertebrate prey consumption by | 395 | density impact indirectly invertebrate prey consumption by | ||
371 | invertivores in coral reef environment?", | 396 | invertivores in coral reef environment?", | ||
372 | "type": "dataset", | 397 | "type": "dataset", | ||
373 | "url": null, | 398 | "url": null, | ||
374 | "version": null | 399 | "version": null | ||
375 | } | 400 | } |