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963 results for “Gobies”

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FIGURE 4 in On two goby-associated snapping shrimps from the Red Sea, one of them new to science (Malacostraca: Decapoda: Alpheidae: Alpheus)

FIGURE 4. Alpheus karplusi sp. nov., shrimps in life: A, B—holotype male (cl 10.5 mm) from the Farasan Islands, Saudi Arabia (FLMNH UF 37011, left side of the carapace damaged during collection), general dorsal view (A) and detail of frontal region (B); C—paratype male (cl 11.4 mm) from the same locality (FLMNH UF 37016), major (right) cheliped, mesial view; D—male from Eilat, Israel (not deposited), dorso-frontal view of cephalothorax with chelipeds and other appendages; E, F, G—shrimps associated with Lotilia graciliosa Klausewitz, 1960, photographed in situ in Nuweiba (E), Naama Bay near Sharm-el-Sheikh (F) and Safaga (G), Egypt (not collected). Photographs by the author [A–C], Dr. Ilan Karplus [D], Sonja Ooms [E], Andrey Ryanskiy [F] and Indra Günther [G].

opennotspecifiedMar 2022View details →
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FIGURE 34 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals

FIGURE 34. Live coloration in its natural habitat of Gobius bucchichi. Photo by R. Pillon, Rab Island, Croatia, Northern Adriatic Sea.

opennotspecifiedMay 2022View details →
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FIGURE 33 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals

FIGURE 33. The mouth unmarked at corner in A) G. bucchichi and B) H. ingressus. Dark dot on the corner of the mouth in C) G. auratus, D) G. incognitus, E) G. xanthocephalus and F) G. fallax. Area marked with hollow circle. Photos by R. Svensen (A), S. Engin (B), M. Kovačić (C, D, F), and P. Louisy (E). C and F photographed in a tank.

opennotspecifiedMay 2022View details →
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FIGURE 29. Zebrus pallaoroi. A in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals

FIGURE 29. Zebrus pallaoroi. A) Freshly dead coloration, transverse coloration pattern with pale vertical bars. B) Live coloration in its natural habitat, pattern reduced to pale dorsal saddles while the rest of body lateral side is more or less uniformly colored or mottled dark. C) anterior nostril with tentacle. A) and B) photos of the same individual. Photos by J. Renoult, Palavasles-Flots, Southern France.

opennotspecifiedMay 2022View details →
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FIGURE 19 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals

FIGURE 19. Live coloration in its natural habitat of Vanneaugobius dollfusi. Photo by S. Le Bris, Marseille, Southern France.

opennotspecifiedMay 2022View details →
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FIGURE 1. A in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals

FIGURE 1. A) Freshly dead coloration of Trypauchen vagina. Photo by D. Darom, trawled between Hadera and Atlit, Israel. B) Photo of Trypauchen sp. alive, photo by C. Telford, Thailand.

opennotspecifiedMay 2022View details →
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FIGURE 28 in Identification of Mediterranean marine gobies (Actinopterygii: Gobiidae) of the continental shelf from photographs of in situ individuals

FIGURE 28. Live coloration in its natural habitat of Zebrus zebrus. A) Transverse coloration pattern with pale vertical bars. B) Coloration pattern reduced to pale dorsal saddles while the rest of body lateral side is more or less uniformly colored or mottled brown; broad pale crescent-shaped band across anterior nape behind eyes, not extending onto posterior part of eyes. C) Anterior nostril with tentacle. Photos by M. Kovačić, A) Karinsko ždrilo, Novigrad Sea, B) Rava island, Zadar Arcipelago, both central Adriatic Sea.

opennotspecifiedMay 2022View details →
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On following pages: 36. Nelson's Collared Lemming (Dicrostonyx nelsoni); 37. Ogilvie Mountains Collared Lemming (Dicrostonyx nunatakensis); 38. Richardson's Collared Lemming (Dicrostonyx richardsoni); 39. Palearctic Collared Lemming (Dicrostonyx torquatus); 40. Unalaska Collared Lemming (Dicrostonyx unalascensis); 41. Gray Red-backed Vole (Craseomys rufocanus); 42. Hokkaido Red-backed Vole (Craseomys rex); 43. Korean Red-backed Vole (Craseomys regulus); 44. Shanxi Red-backed Vole (Craseomys shanseius); 45. Anderson's Red-backed Vole (Craseomys anderson); 46. Smith's Red-backed Vole (Craseomys smithii); 47. Western Red-backed Vole (Myodes californicus); 48. Southern Red-backed Vole (Myodes gapperi); 49. Bank Vole (Myodes glareolus); 50. Tian Shan Red-backed Vole (Myodes centralis); 51. Large-eared Vole (Myodes macrotis); 52. Northern Red-backed Vole (Myodes rutilus); 53. Silver Mountain Vole (Alticola argentatus); 54. White-tailed Mountain Vole (Alticola albicauda); 55. Kashmir Mountain Vole (Alticola montosus); 56. Royle's Mountain Vole (Alticola roylei); 57. Strelzov's Mountain Vole (Alticola strelzovi); 58. Tuva Mountain Vole (Alticola tuvinicus); 59. Gobi Altai Mountain Vole (Alticola barakshin); 60. Lake Baikal Mountain Vole (Alticola olchonensis); 61. Mongolian Mountain Vole (Alticola semicanus); 62. Stoliczka's Mountain Vole (Alticola stoliczkanus); 63. Lemming Mountain Vole (Aschizomys lemminus); 64. Gansu Red-backed Vole (Caryomys eva); 65. Kolan Red-backed Vole (Caryomys inez): 66. Pere David's Red-backed Vole (Eothenomys melanogaster); 67. Yunnan Red-backed Vole (Eothenomys miletus); 68. Sichuan Red-backed Vole (Eothenomys chinensis); 69. Southwest China Red-backed Vole (Eothenomys custos); 70. Black-eared Red-backed Vole (Eothenomys oliton; 71. Yulongxuen Red-backed Vole (Eothenomys proditor); 72. Ward's Red-backed Vole (Eothenomys ward); 73. Hinton's Red-backed Vole (Eothenomys hintoni); 74. Tarquinius Red-backed Vole (Eothenomys tarquinius); 75. Burrowing Vole (Hyperacrius fertilis); 76. Murree Vole (Hyperacrius wynnei). in Cricetidae

On following pages: 36. Nelson's Collared Lemming (Dicrostonyx nelsoni); 37. Ogilvie Mountains Collared Lemming (Dicrostonyx nunatakensis); 38. Richardson's Collared Lemming (Dicrostonyx richardsoni); 39. Palearctic Collared Lemming (Dicrostonyx torquatus); 40. Unalaska Collared Lemming (Dicrostonyx unalascensis); 41. Gray Red-backed Vole (Craseomys rufocanus); 42. Hokkaido Red-backed Vole (Craseomys rex); 43. Korean Red-backed Vole (Craseomys regulus); 44. Shanxi Red-backed Vole (Craseomys shanseius); 45. Anderson's Red-backed Vole (Craseomys anderson); 46. Smith's Red-backed Vole (Craseomys smithii); 47. Western Red-backed Vole (Myodes californicus); 48. Southern Red-backed Vole (Myodes gapperi); 49. Bank Vole (Myodes glareolus); 50. Tian Shan Red-backed Vole (Myodes centralis); 51. Large-eared Vole (Myodes macrotis); 52. Northern Red-backed Vole (Myodes rutilus); 53. Silver Mountain Vole (Alticola argentatus); 54. White-tailed Mountain Vole (Alticola albicauda); 55. Kashmir Mountain Vole (Alticola montosus); 56. Royle's Mountain Vole (Alticola roylei); 57. Strelzov's Mountain Vole (Alticola strelzovi); 58. Tuva Mountain Vole (Alticola tuvinicus); 59. Gobi Altai Mountain Vole (Alticola barakshin); 60. Lake Baikal Mountain Vole (Alticola olchonensis); 61. Mongolian Mountain Vole (Alticola semicanus); 62. Stoliczka's Mountain Vole (Alticola stoliczkanus); 63. Lemming Mountain Vole (Aschizomys lemminus); 64. Gansu Red-backed Vole (Caryomys eva); 65. Kolan Red-backed Vole (Caryomys inez): 66. Pere David's Red-backed Vole (Eothenomys melanogaster); 67. Yunnan Red-backed Vole (Eothenomys miletus); 68. Sichuan Red-backed Vole (Eothenomys chinensis); 69. Southwest China Red-backed Vole (Eothenomys custos); 70. Black-eared Red-backed Vole (Eothenomys oliton; 71. Yulongxuen Red-backed Vole (Eothenomys proditor); 72. Ward's Red-backed Vole (Eothenomys ward); 73. Hinton's Red-backed Vole (Eothenomys hintoni); 74. Tarquinius Red-backed Vole (Eothenomys tarquinius); 75. Burrowing Vole (Hyperacrius fertilis); 76. Murree Vole (Hyperacrius wynnei).

opennotspecifiedNov 2017View details →
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FIGURE 2 in Oxyurichthys omanensis sp. nov., a new Eyebrow Goby (Teleostei: Gobiidae) from Oman

FIGURE 2. Oxyurichthys omanensis, ZM-CBSU S105-19, male, holotype, 58.92 mm SL, collected from Yeti, northern Oman.

opennotspecifiedSep 2022View details →
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FIGURE 30 in Gobies (Teleostei: Gobiidae) of the oldest and deepest Caspian Sea sub-basin: an evidence-based annotated checklist and a key for species identification

FIGURE 30. Ponticola hircaniaensis. ZM-CBSU S099-5, male, paratype, 73.55 mm SL, Kaboudval Stream, Golestan Province, Iran (Zarei et al. 2022a).

opennotspecifiedSep 2022View details →
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FIGURE 9 in Preliminary revision of Alpheus djeddensis Coutière, 1897 species complex, with description of three new species of goby-associated snapping shrimps and taxonomic notes on A. macellarius Chace, 1988 and A. djiboutensis De Man, 1909 (Decapoda: Alpheidae)

FIGURE 9. Alpheus djeddensis Coutière, 1897, female (cl indet.) from Thuwal, Saudi Arabia (specimen kept alive in RSRC); A, shrimp alive, dorsal; B, frontal region, dorsal; C, right (major) chela, mesial; D, left (minor) chela, distal portion of palm and fingers, mesial. Photographs by the author.

opennotspecifiedJun 2024View details →
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FIGURE 21 in Preliminary revision of Alpheus djeddensis Coutière, 1897 species complex, with description of three new species of goby-associated snapping shrimps and taxonomic notes on A. macellarius Chace, 1988 and A. djiboutensis De Man, 1909 (Decapoda: Alpheidae)

FIGURE 21. Alpheus tigrinus sp. nov., paratype, ovigerous female (cl 16.7 mm) from Farasan Islands (Tiger Head Island), Saudi Arabia (FLMNH UF 36648); A, shrimp alive, dorsal; B, same, lateral. Photographs by the author.

opennotspecifiedJun 2024View details →
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FIGURE 6 in Preliminary revision of Alpheus djeddensis Coutière, 1897 species complex, with description of three new species of goby-associated snapping shrimps and taxonomic notes on A. macellarius Chace, 1988 and A. djiboutensis De Man, 1909 (Decapoda: Alpheidae)

FIGURE 6. Alpheus djeddensis Coutière, 1897, male (cl 19.3 mm) from Farasan Islands, Saudi Arabia (FLMNH UF 36913); A, shrimp post-mortem (carapace damaged during collection), dorsal; B, same, lateral. Photographs by the author.

opennotspecifiedJun 2024View details →
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FIGURE 2 in Navigobius asayake, a new species of ptereleotrine goby (Gobioidei: Microdesmidae) from Kagoshima, southern Japan

FIGURE 2. Laterosensory pores and neuromasts of Navigobius asayake n. sp., KAUM–I. 115660, 47.8 mm SL. Arrow indicates lower attachment of gill membrane.

opennotspecifiedNov 2018View details →
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FIGURE 3 in Navigobius asayake, a new species of ptereleotrine goby (Gobioidei: Microdesmidae) from Kagoshima, southern Japan

FIGURE 3. Collection localities of Navigobius asayake n. sp. Closed stars and open star indicate specimens examined in this study and Yamada & Ito (1995), respectively.

opennotspecifiedNov 2018View details →
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Fig. 3 in The marbled goby, Pomatoschistus marmoratus, as a promising species for experimental evolution studies

Fig. 3 Pictures of marbled gobies reared in captivity. Larvae at hatching (a), juvenile at 100 dph (b) and adult at 360 dph (c)

opennotspecifiedJul 2017View details →
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Fig. 3 in Species and shape diversification are inversely correlated among gobies and cardinalfishes (Teleostei: Gobiiformes)

Fig. 3 Graphs of principal component axes for gobiiform families. Points are color-coded by taxon, as depicted in legend at right. APO Apogonidae, BUT Butidae, ELE Eleotridae, GBN Gobionellidae, GOB Gobiidae, KUR Kurtidae, LEI Leiognathidae, ODO Odontobutidae, PEM Pempheridae, PSE Pseudamia. Wireframes describe the shape changes for each principal component, PC1 on the X-axis, with PC2–PC4 on the Y-axis. Light blue wireframe indicates the average specimen shape, and dark blue wireframe shows deformation of 0.1 units on that axis. a PC1 vs. PC2, b PC1 vs. PC3, c PC1 vs. PC

opennotspecifiedMay 2014View details →
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Fig. 7 in Species and shape diversification are inversely correlated among gobies and cardinalfishes (Teleostei: Gobiiformes)

Fig. 7 Environmental preference optimized on the phylogeny. The phylogeny is presented with taxa color-coded as they are in Fig. 3, except taxa in Gobiidae, which are rendered in gray. Branches are colored in accordance with optimized environmental preference: blue freshwater, gray brackish/estuarine water, black saltwater

opennotspecifiedMay 2014View details →
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Fig. 1 in Species and shape diversification are inversely correlated among gobies and cardinalfishes (Teleostei: Gobiiformes)

Fig. 1 Locations of morphometric landmarks. Locations of landmarks used in this study shown on right lateral view of Cheilodipterus isostigmus (USNM 171260). Landmarks digitized are: (1) tip of ascending process of premaxilla, (2) anterior tip of premaxilla, (3) dorsal tip of maxilla, (4) anterior tip of dentary, (5) posteroventral tip of maxilla, (6) posteroventral tip of dentary, (7) dorsal tip of supraoccipital crest, (8) articulation point of first vertebra with basioccipital, (9) dorsal extent of dorsalmost pectoral fin radial, (10) anterior tip of pelvis, (11) anteroventral tip of cleithrum, (12) posterior extent of branchiostegal rays, (13) posterior tip of pelvis and articulation of pelvic fin rays, (14) pterygiophore of first dorsal spine, (15) pterygiophore of last dorsal spine, (16) pterygiophore of first dorsal ray, (17) pterygiophore of last dorsal ray, (18) pterygiophore of first anal spine, (19) pterygiophore of last anal ray, (20) articularion point of last vertebra with hypurals, (21) anterodorsal extent of hypurals

opennotspecifiedMay 2014View details →
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Fig. 6 in Species and shape diversification are inversely correlated among gobies and cardinalfishes (Teleostei: Gobiiformes)

Fig. 6 Results of evolutionary rate-shift analyses in AUTEUR. Inferred shifts in rates of shape change are shown optimized across the gobiiform phylogeny. The four trees represent rate-shift analyses for each major

opennotspecifiedMay 2014View details →

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