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1,478 results for “coral reefs”

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Linked collectors and determiners for: Cryptobiont assemblages's dataset of coral reefs using ARMS in B10 Reef and Mahahual Reef of the Great Caribbean.

Natural history specimen data linked to collectors and determiners held within, "Cryptobiont assemblages's dataset of coral reefs using ARMS in B10 Reef and Mahahual Reef of the Great Caribbean". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04">https://bionomia.net/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04">https://gbif.org/dataset/054cfdf9-ccff-4eb3-a815-ee934cf11e04</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →
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FIG. 9. — Liotipoma magna n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 9. — Liotipoma magna n. sp., female shells: A-D, paratype (MNHN 24768, stn DS105), off NW side Tutuba Island, Espiritu Santo, Vanuatu, 92 m, H 3.6, D 5.7 mm; E-G, paratype, off W side Tutuba Island (MNHN 24769, stn DS105), off NW side Tutuba Island, Espiritu Santo, Vanuatu, 92 m, H 3.4, D 5.3 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 13. — A-D, Liotipoma splendida n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 13. — A-D, Liotipoma splendida n. sp. holotype, male shell (MNHN 24772, stn 1269), Doiman Reef, Touhou Sector, New Caledonia, 15-20 m, H 3.2, D 5.1 mm; E-H, Liotipoma clausa n. sp. Holotype, immature male shell (LACM 3110, stn 91-189), Herald Pass, Great Astrolabe Reef, Fiji, 15 m, H 3.0, D 4.2 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 2 in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 2. — Opercula of three immature, sexually indeterminate species of Liotipoma McLean &amp; Kiel, 2007; opercula wedged in place in all three specimens; A, B, L. wallisensis McLean &amp; Kiel, 2007, off Wallis Island (MNHN, stn DW523), H 1.9, D 3.5 mm; C, D, inner and outer views of same operculum from immature specimen from Wallis Island, showing attached portion of columella, after breaking it free in order to show interior view; diameter of operculum 1.2 mm; E, F, L. solaris n. sp., Herald Pass, Great Astrolabe Reef, Fiji (LACM, stn 85-135), H 1.5, D 1.9 mm (SEM views of tilted specimen with operculum; apertural view is photo of coated specimen); G, Liotipoma sp., off Pointe Lefèvre, Santal Bay, Lifou, Loyalty Islands (MNHN, stn 1435), H 2.4, D 3.7 mm (specimen missing apical whorl). Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 10. — Liotipoma lifouensis n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 10. — Liotipoma lifouensis n. sp., male shells: A-D, holotype (MNHN 24770, stn 1434), male shell, Santal Bay, Lifou, Loyalty Islands, 5-20 m, H 2.6, D 4.3 mm; E-H, paratype (MNHN 24771, stn 1432), male shell, Shelter Reef, Santal Bay, Lifou, Loyalty Islands, 12-32 m, H 2.9, D 4.3 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 7. — Liotipoma dimorpha n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 7. — Liotipoma dimorpha n. sp., female shells: A-D, paratype (MNHN 24764, stn 1442), Santal Bay, Lifou, Loyalty Islands, 47 m, H 3.0, D 5.1 mm; E-H, paratype (MNHN 24765, stn 1450), Santal Bay, Lifou, Loyalty Islands,27-31 m, H 2.5, D 4.5 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 15. — A-C, Rhombipoma rowleyana n. gen, n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 15. — A-C, Rhombipoma rowleyana n. gen, n. sp. holotype (AMS C.212474, ex LACM stn 86-250), N end of Mermaid Reef, Rowley Shoals, off northern Western Australia,18-20 m, H 1.5, D 3.2 mm (base of shell broken and filled with agglutinated sand); D-F, Paraliotipoma sirenkoi n. gen., n. sp. holotype (ZISP 61624/1), Sea Horse Shoal, South China Sea, 10-320 m, H. 2.7, D 4.2 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 1 in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 1. — Protoconchs of Liotipoma McLean &amp; Kiel, 2007 spp.: A, B, juvenile shell from Santal Bay, Lifou, Loyalty Islands (MNHN, stn 1434), shell diameter 2.4 mm: protoconch (A) and early whorls (B); C, protoconch of Liotipoma solaris n. sp., Cape Washington, western end of Kandavu, Fiji (LACM 85-138). Scale bars: A, 0.1 mm; B, 0.5 mm; C, 0.1 mm.

opencc-zeroJun 2012View details →
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FIG. 11. — Liotipoma solaris n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 11. — Liotipoma solaris n. sp., male shells: A-D, holotype (LACM 3107, stn 91-188), Diamond Seamount, Great Astrolabe Reef, Fiji, 20-25 m, H 2.5, D 4.0 mm; E-H, paratype (LACM 3108, stn 91-188), Diamond Seamount, Great Astrolabe Reef, Fiji, 20-25 m, H 2.1, D 3.5 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 12. — Liotipoma solaris n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 12. — Liotipoma solaris n. sp., male shells: A-D, paratype (LACM 3109), Horseshoe Reef, Bootless Bay, Port Moresby, Papua New Guinea, 25 m, H 2.4, D 3.9 mm; E-G, SEM of immature male shell (LACM stn 85-138), Cape Washington, westernmost end of Kandavu, Fiji, 18 m, H 1.5, D 3.3 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 6. — Liotipoma dimorpha n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 6. — Liotipoma dimorpha n. sp., male shells: A-D, holotype (MNHN 24761, stn 1442), Santal Bay, Lifou, Loyalty Islands, 47 m, H 3.0, D 4.3 mm; E-H, paratype (MNHN 24763, stn 1331), Grand Koumac Reef, Koumac Sector, New Caledonia, 55-57 m, H 2.6, D 4.0 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 14. — A-C, Depressipoma kwajaleina n. gen., n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 14. — A-C, Depressipoma kwajaleina n. gen., n. sp. holotype (LACM 3213), Kwajalein Atoll, Marshall Islands, 20 m, H 1.7, D 3.2 mm; D-F, Depressipoma laddi n. gen., n. sp. holotype (USNM 648301), Elugelab Islet, Eniwetok Atoll, Marshall Islands, H 1.4, D 3.3 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 3 in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 3. — Type species of Liotipoma McLean &amp; Kiel, 2007, L. wallisensis McLean &amp; Kiel, 2007, male and female shells: A-D, holotype, male shell (MNHN 24754, stn DW523), off Wallis Island, NE of Fiji, 455-515 m (depth for this and the following specimen probably represents down slope fall from shallow water), H 2.0, D 4.1 mm; E-H, paratype, female shell (MNHN 24756, stn DW601), off Wallis Island, 350 m, H 2.6, D 4.4 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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FIG. 4. — Liotipoma mutabilis n in New species and genera of colloniids from Indo-Pacific coral reefs, with the definition of a new subfamily Liotipomatinae n. subfam. (Turbinoidea, Colloniidae)

FIG. 4. — Liotipoma mutabilis n. sp., male shells: A-D, holotype (MNHN 24757, stn 1435), Pointe Lefèvre, Santal Bay, Lifou, Loyalty Islands, 5-30 m, H 3.4, D 5.7 mm; E-H, paratype (MNHN 24758, stn 1436), Gaatcha Bay, Santal Bay, Lifou, Loyalty Islands, 10-20 m, H 3.0, D 5.1 mm. Scale bars: 1 mm.

opencc-zeroJun 2012View details →
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Figure 3 in Corals and reefs of Cosmoledo and Aldabra atolls: Extent of damage, assemblage shifts and recovery following the severe mortality of 1998

Figure 3. Visual estimates of coral cover at various depths on seaward slopes (diamonds) and lagoon patch reefs (open circles). The dotted curve indicates hypothetical or possible approximate maximum pre-bleaching coral cover with depth, based on maximum values found in patches here at shallow and intermediate depths. The solid curve is a third-order polynomial fit of the seaward reef cover values. Average seaward reef mortality is suggested by the gap between the two curves. The arrow marks the approximate transition depth.

opencc-by-4.0Dec 2010View details →
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Figure 2 in Corals and reefs of Cosmoledo and Aldabra atolls: Extent of damage, assemblage shifts and recovery following the severe mortality of 1998

Figure 2. (a) Seaward reef slope of West Cosmoledo. This is typical of shallow seaward slopes of south, through west to the north, showing very limited coral growth, but presence of algae. (b) Dead Millepora colonies in the lagoon are extensive, without sign of live growth and few new recruits. (c) Acropora palifera, showing recovery on shallow seaward slopes. It is growing on the side of a large dead colony of the same species. (d) Dead Acropora cytherea, eroded but still standing. Most examples in November 2002 were remnants of stumps. A new Acropora has since settled on the table. The yellow device is a newly installed temperature logger.

opencc-by-4.0Dec 2010View details →
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Figure 1 in Corals and reefs of Cosmoledo and Aldabra atolls: Extent of damage, assemblage shifts and recovery following the severe mortality of 1998

Figure 1. The Aldabra group of atolls, showing survey sites. Top left: location map, rectangle shows location of the four components of the Aldabra group; top right: World Vector Shoreline outline of the four groups; lower right: Cosmoledo Atoll (scanned image from map); lower left: Aldabra (from a Landsat MSS). On lower maps, dots indicate sample sites in lagoon and seaward sites, rectangles indicate sample sites in main channels. In Cosmoledo, lagoon sites are pooled. On seaward side of Cosmoledo, sites were West (Menai Island), North (North Island) and North-West (midway between the two). Seaward site in Aldabra was 300–500 m north of the field station (marked by ×). All sites in Cosmoledo lagoon had radii of at least 100 m, or, on seaward sites, along at least 200 m of reef between 0 and 30 m depth.

opencc-by-4.0Dec 2010View details →
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Data and scripts from "Congruent trophic pathways underpin global coral reef food webs"

<p>Ecological interactions uphold ecosystem structure and functioning. However, as species richness increases, the number of possible interactions rises exponentially. More than 6,000 species of coral reef fishes exist across the world&rsquo;s tropical oceans, resulting in an almost innumerable array of possible trophic interactions. Distilling general patterns in these interactions across different bioregions stands to improve our understanding of the processes that govern coral reef functioning. Here, we show that across bioregions, tropical coral reef food webs exhibit a remarkable congruence in their trophic interactions. Specifically, by compiling and investigating the structure of six coral reef food webs across distinct bioregions, we show that when accounting for consumer size and resource availability, these food webs share more trophic interactions than expected by chance. In addition, coral reef food webs are dominated by dietary specialists, which makes trophic pathways vulnerable to biodiversity loss. Prey partitioning among these specialists is geographically consistent, and this pattern intensifies when weak interactions are disregarded. Our results suggest that energy flows through coral reef communities along broadly comparable trophic pathways. Yet, these critical pathways are maintained by species with narrow, specialized diets, which threatens the existence of coral reef functioning in the face of biodiversity loss.</p>

opencc-by-4.0Dec 2020View details →
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Fig. 5 in Preliminary observations of macrobenthic invertebrates and megafauna communities in the upper mesophotic coral ecosystems in Apo Reef Natural Park, Philippines

Fig. 5. Barplots represent the total species richness across the depths (A) and reef types (B). C and E show the abundance of macrobenthic invertebrates and megafauna, respectively, with their corresponding trophic groups across depths. D and F show the abundance of macrobenthic invertebrates and megafauna, respectively, with their corresponding trophic groups across reef types.

opencc-by-4.0Jan 2018View details →
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Fig. 3 in Preliminary observations of macrobenthic invertebrates and megafauna communities in the upper mesophotic coral ecosystems in Apo Reef Natural Park, Philippines

Fig. 3. Macrobenthic invertebrate species in Apo Reef Natural Park. A, Holothuria atra; B, Holothuria fuscogilva; C, Thelenota anax; D, Thelenotarubra lineata; E, Thromidia catalai; F, Tridacna sp.; G, Xetospongia sp.

opencc-by-4.0Jan 2018View details →

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