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1,336 results for “Gobiidae”
Fig. 1 in Platygobiopsis hadiatyae, a new species of deepwater gobiid from Indonesia (Teleostei, Gobiidae, Gobiinae)
Fig. 1. Platygobiopsis hadiatyae, new species, MZB 17230, holotype, 43.0 mm SL, photographed soon after collection; Indonesia, Panaitan Strait along the Sunda Strait. Photographs by Tan Heok Hui.
Fig. 2 in Platygobiopsis hadiatyae, a new species of deepwater gobiid from Indonesia (Teleostei, Gobiidae, Gobiinae)
Fig. 2. Platygobiopsis hadiatyae, new species, MZB 17230, holotype, 43.0 mm SL; fixed specimen, lateral view. Right pectoral fin dissected. Photographs by Tan Heok Hui.
Fig. 3 in Platygobiopsis hadiatyae, a new species of deepwater gobiid from Indonesia (Teleostei, Gobiidae, Gobiinae)
Fig. 3. Platygobiopsis hadiatyae, new species, MZB 17230, holotype, 43.0 mm SL; line drawing of head (lateral view) showing sensory papilla pattern. Scale bar equal to 8 mm. Drawing by Helen Larson.
FIGURE 4 in A new cleaner goby of the genus Elacatinus (Teleostei: Gobiidae), from Trindade Island, off Brazil
FIGURE 4: Trindade Island (20 ° 30 ' S, 29 ° 20 ' W), type locality of Elacatinus pridisi n. sp., off the state of Espírito Santo, Brazil (Photograph by J. L. Gasparini).
FIGURE 3 in A new cleaner goby of the genus Elacatinus (Teleostei: Gobiidae), from Trindade Island, off Brazil
FIGURE 3: Brazilian species of Elacatinus: Top: Elacatinus pridisi n. sp., holotype (MNRJ 21980), 23.6 mm SL (Photograph by J. L. Gasparini); middle: Elacatinus figaro, (LBRP 0728), 27.8 mm SL, from the Brazilian coast (Photograph by R. Z. P. Guimarães); bottom: Elacatinus randalli, (MNRJ 12054), 28.7 mm SL, from Fernando de Noronha Archipelago, photograph kindly provided by Dr. Gustavo Nunan. All specimens live, photographed in aquaria shortly after collection.
FIGURE 2 in A new cleaner goby of the genus Elacatinus (Teleostei: Gobiidae), from Trindade Island, off Brazil
FIGURE 2: Detail of anterior portion of body of Elacatinus pridisi n. sp., paratype (UFES 1424), 28.4 mm SL, photographed in an aquarium immediately after collection (Photograph by J. L. Gasparini).
FIGURE 1 in A new cleaner goby of the genus Elacatinus (Teleostei: Gobiidae), from Trindade Island, off Brazil
FIGURE 1: Lateral view of Elacatinus pridisi n. sp., holotype (MNRJ 21980), 23.6 mm SL (Photograph by J. L. Gasparini).
FIGURE 3 in Identifying Neogobius species from the southern Caspian Sea by otolith shape (Teleostei: Gobiidae)
FIGURE 3. Sagittal otoliths of: A – B: N. pallasi (TL: 95 mm); A, male; B, female. C – D: N. caspius (TL: 95 mm); C, male; D, female. E – F: N. melanostomus (TL: 95 mm); E, male; F, female.
FIGURE 2 in Identifying Neogobius species from the southern Caspian Sea by otolith shape (Teleostei: Gobiidae)
FIGURE 2. SEM micrograph of sagittal otolith of a 60 mm specimen of Neogobius pallasi and its features.
Fig. 3. Rhinogobius vermiculatus, CMK 15306 in Three New Freshwater Gobies Of The Genus Rhinogobius (Teleostei: Gobiidae) From Northeastern Laos
Fig. 3. Rhinogobius vermiculatus, CMK 15306, paratypes, (a) male, 34.1 mm SL, and (b) female, 41.1 mm SL; Laos: Nam Hang.
Fig. 7 in Three New Freshwater Gobies Of The Genus Rhinogobius (Teleostei: Gobiidae) From Northeastern Laos
Fig. 7. Rhinogobius milleri, holotype, ZRC 46581, 39.8 mm SL; cephalic colour pattern of male. Scale bar = 1 mm.
Fig. 6. Rhinogobius vermiculatus, CMK 15306, 47.7 in Three New Freshwater Gobies Of The Genus Rhinogobius (Teleostei: Gobiidae) From Northeastern Laos
Fig. 6. Rhinogobius vermiculatus, CMK 15306, 47.7 mm SL; head lateral-line system. Scale bar = 1 mm.
Fig. 4 in Three New Freshwater Gobies Of The Genus Rhinogobius (Teleostei: Gobiidae) From Northeastern Laos
Fig. 4. Rhinogobius milleri, holotype, ZRC 46581, 39.8 mm SL; head lateral-line system. Scale bar = 1 mm.
Fig. 1. Rhinogobius milleri, CMK 15249 in Three New Freshwater Gobies Of The Genus Rhinogobius (Teleostei: Gobiidae) From Northeastern Laos
Fig. 1. Rhinogobius milleri, CMK 15249, paratypes, (a) male, 39.2 mm SL, and (b) female, 45.8 mm SL; Laos: Nam Kuang.
Figure 1 in A new species of Schismatogobius (Teleostei: Gobiidae) from Sulawesi (Indonesia)
Figure 1. – Most likely ML tree inferred using the TIM+I model (–lnL = 3711.2906, I = 0.6520, f(A) = 0.2382, f(C) = 0.3018, f(G) = 0.1692, f(T) = 0.2909, AC = GT = 1.0, AT = CG = 0.6842, AG = 12.0806, CT = 6.0413). BP are given above each branch. Schismatogobius limmoni branch is highlighted in bold.
Figure 4. – Schismatogobius limmoni n in A new species of Schismatogobius (Teleostei: Gobiidae) from Sulawesi (Indonesia)
Figure 4. – Schismatogobius limmoni n. sp., female, paratype in MNHN-IC 2020-0176 (SL 24.7 mm; BIF 10054) (Photo N. Hubert).
F I G U R E 5 in Heterochrony and the evolution of the longjaw mudsucker (Gobiidae, Teleostei)
F I G U R E 5 Hypothesized phylogeny and inferred patterns of heterochrony between Eucylcogobius and Gillichthys.
F I G U R E 2 in Heterochrony and the evolution of the longjaw mudsucker (Gobiidae, Teleostei)
F I G U R E 2 Scatter plot of principal component 1 score (representative of body size) for all three species against (a) log-transformed total jaw length and (b) log-transformed free maxilla length. Linear trendline shown as lines matching the colors for each species. Sex is shown with different shapes for each species.
F I G U R E 3 in Heterochrony and the evolution of the longjaw mudsucker (Gobiidae, Teleostei)
F I G U R E 3 Scatter plot of principal component 1 score (representative of body size) for mature and juvenile (a) Gillichthys mirabilis against log-transformed total jaw length, (b) G. mirabilis against log-transformed free maxilla length, (c) Gillichthys seta against log-transformed total jaw length, (d) G. seta against log-transformed free maxilla length, (e) Eucyclogobius newberryi against log-transformed total jaw length, and (f) E. newberryi against log-transformed free maxilla length. Linear trendlines shown with corresponding equations matching the colors for each sex.
F I G U R E 4 in Heterochrony and the evolution of the longjaw mudsucker (Gobiidae, Teleostei)
F I G U R E 4 Scatterplot of principal components 1 and 2 from a principal component analysis of sexually mature Gillichthys mirabilis, Gillichthys seta, and Eucyclogobius newberryi (morphometric data adjusted using allometric- Burnaby transformation). Ellipses represent 95% confidence intervals.
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