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134 results for “Tetraodontiformes”
FIG. 1 in Pelvic-Fan Flaring and Inflation in the Three-Tooth Puffer, Triodon macropterus (Tetraodontiformes: Triodontidae), with Additional Observations on Their Behavior in Captivity
FIG. 1. Illustration from Breder and Clark (1947: fig. 3) showing their terminology for the viscera of Triodon macropterus (SU 13747, 391 mm SL). Gray shading indicates their interpretation of the extent of the abdominal cavity into the pelvic fan. In this paper, we revise their interpretations of anatomical structures and show that, contrary to their interpretation, T. macropterus can inflate.
FIG. 8. X in Pelvic-Fan Flaring and Inflation in the Three-Tooth Puffer, Triodon macropterus (Tetraodontiformes: Triodontidae), with Additional Observations on Their Behavior in Captivity
FIG. 8. X-rays of two specimens of Triodon macropterus showing differences in pelvic bone position related to extent of pelvic-fan flaring. The anterior tip of the long cleithrum extends to the lower-jaw joint. White stars indicate center of rotation of the pelvic bone at its connection with the cleithrum. (A) USNM 451516, 358 mm SL. Fan partially flared to ~258. Long ribs are numbered 2–7. (B) NSMT P0110597, 360 mm SL. Fan partially flared to ~458. White arrows indicate lines of actions of the muscles that flare and retract the pelvic fan. Patches of skin and scales were removed from this specimen for another study (see Matsuura et al., 2017).
FIGURE 7 in A new species of Indo-Pacific fish, Canthigaster criobe, with comments on other Canthigaster (Tetraodontiformes: Tetraodontidae) at the Gambier Archipelago
FIGURE 7. Neighbor-Joining tree based on K2P model of sequence evolution (with 1,000 bootstrap replicates) for selected members of the subfamily Canthigasterinae, with Arothron meleagris as the outgroup.
FIGURE 2 in A new species of Indo-Pacific fish, Canthigaster criobe, with comments on other Canthigaster (Tetraodontiformes: Tetraodontidae) at the Gambier Archipelago
FIGURE 2. Radiograph of holotype of Canthigaster criobe, USNM 400521, 38.7 mm SL, Gambier Archipelago, showing skin spinule pattern (J.T. Williams).
FIGURE 1 in A new species of Indo-Pacific fish, Canthigaster criobe, with comments on other Canthigaster (Tetraodontiformes: Tetraodontidae) at the Gambier Archipelago
FIGURE 1. Holotype of Canthigaster criobe, USNM 400521, 38.7 mm SL, Gambier Archipelago (J.T. Williams).
FIGURE 8 in Sasala nolani gen. n., sp. n. (Digenea: Aporocotylidae) from the body-cavity of the guineafowl puffer fish Arothron meleagris (Lacepède) (Tetraodontiformes: Tetraodontidae) from off Moorea, French Polynesia
FIGURE 8. Bayesian phylogeny of lsrDNA placing Sasala nolani in the context of other available aporocotylid sequences. Digenean taxon names (or identifiers) are followed by host species, geographic locality and GenBank accession number. Bayesian posterior probabilities are indicated; scale bar indicates number of substitutions per site.
FIGURES 1–2. Sasala nolani n. gen., n in Sasala nolani gen. n., sp. n. (Digenea: Aporocotylidae) from the body-cavity of the guineafowl puffer fish Arothron meleagris (Lacepède) (Tetraodontiformes: Tetraodontidae) from off Moorea, French Polynesia
FIGURES 1–2. Sasala nolani n. gen., n. sp. 1. Ventral view of holotype, eggs stylized. 2. Terminal genitalia of paratype, vitelline follicles omitted, vitelline duct on top of oviduct, eggs stylized. Scale bars: 1, 500µm, 2, 200µm.
FIGURES 3–7. Sasala nolani n. gen., n in Sasala nolani gen. n., sp. n. (Digenea: Aporocotylidae) from the body-cavity of the guineafowl puffer fish Arothron meleagris (Lacepède) (Tetraodontiformes: Tetraodontidae) from off Moorea, French Polynesia
FIGURES 3–7. Sasala nolani n. gen., n. sp. 3. Wholemount. 4. Marginal spines. 5. Posterior extremity. 6. Lining of host gut, showing welts filled with aporocotylid eggs. 7. Section of welt showing enclosed eggs (arrowed). Abbreviations: asv, auxiliary seminal vesicle; cs, cirrus-sac; ee, early egg; ev, excretory vesicle; mt, metraterm; vd, vitelline duct, on top of oviduct. Scale bars: Scale bars: 3, 500µm, 4, 20µm, 5, 100µm, 7, 50µm.
FIGURE 5 in Tetraodon palustris, a new freshwater pufferfish (Tetraodontiformes: Tetraodontidae) from the Mekong Basin of Thailand
FIGURE 5. Schematic representation of areas covered with spinules (darkest areas) on the dorsum and side of the body. A–B) Tetraodon palustris, C–D) T. fangi, and E–F) T. cochinchinensis.
FIGURE 3 in Tetraodon palustris, a new freshwater pufferfish (Tetraodontiformes: Tetraodontidae) from the Mekong Basin of Thailand
FIGURE 3. Tetraodon fangi Pellegrin and Chevey, 1940. A-C) NIFI 04682, 62.8 mm SL, market near Tram Chim, Tam Nong, southern Vietnam: A) lateral, B) dorsal, and C) ventral views; D) MNHN 1940-42, 55.0 mm SL, holotype of T. fangi, Xano Canal, Vi-thanh, Rach-Gia Province, southern Vietnam.
FIGURE 4 in Tetraodon palustris, a new freshwater pufferfish (Tetraodontiformes: Tetraodontidae) from the Mekong Basin of Thailand
FIGURE 4. Tetraodon cochinchinensis (Steindachner, 1866), KUMF 8821, 76.8 mm SL, Lampao Dam, Ban Tha Ruea, Amphoe Yang Talat, Kalasin Province, Thailand: A) lateral, B) dorsal, and C) ventral views.
FIGURE 1 in Tetraodon palustris, a new freshwater pufferfish (Tetraodontiformes: Tetraodontidae) from the Mekong Basin of Thailand
FIGURE 1. Fresh specimen of Tetraodon palustris, KUMF 8834, holotype, male 72.1 mm SL, Nongkomkoh Swamp, Amphoe Mueang, Nong Khai Province, Thailand: A) lateral, B) dorsal, and C) ventral views.
FIGURE 2 in Tetraodon palustris, a new freshwater pufferfish (Tetraodontiformes: Tetraodontidae) from the Mekong Basin of Thailand
FIGURE 2. Preserved specimens of Tetraodon palustris, KUMF 8840, Ban Maet, Amphoe Sang Khom, Udon Thani Province: A-C) male 78.9 mm SL, D-F) female 77.2 mm SL.
Data from: Mosaicism in a new Eocene pufferfish highlights rapid morphological innovation near the origin of crown tetraodontiforms
Open the record for dataset details and reuse information.
Supplementary material 2 from: Martínez-Aquino A, García-Teh JG, Ceccarelli FS, Aguilar-Aguilar R, Vidal-Martinez VM, Leopoldina Aguirre-Macedo M (2020) New morphological and molecular data for Xystretrum solidum (Gorgoderidae, Gorgoderinae) from Sphoeroides testudineus (Tetraodontiformes, Tetraodontidae) in Mexican waters. ZooKeys 925: 141-161. https://doi.org/10.3897/zookeys.925.49503
Figure S1
Supplementary material 1 from: Martínez-Aquino A, García-Teh JG, Ceccarelli FS, Aguilar-Aguilar R, Vidal-Martinez VM, Leopoldina Aguirre-Macedo M (2020) New morphological and molecular data for Xystretrum solidum (Gorgoderidae, Gorgoderinae) from Sphoeroides testudineus (Tetraodontiformes, Tetraodontidae) in Mexican waters. ZooKeys 925: 141-161. https://doi.org/10.3897/zookeys.925.49503
Table S1
Figure 5 from: Martínez-Aquino A, García-Teh JG, Ceccarelli FS, Aguilar-Aguilar R, Vidal-Martinez VM, Leopoldina Aguirre-Macedo M (2020) New morphological and molecular data for Xystretrum solidum (Gorgoderidae, Gorgoderinae) from Sphoeroides testudineus (Tetraodontiformes, Tetraodontidae) in Mexican waters. ZooKeys 925: 141-161. https://doi.org/10.3897/zookeys.925.49503
Figure 5 Scanning electron microscopy (SEM) images of Xystretrum solidum (from three specimens collected at Progreso Port, Yucatan, Mexico) A whole adult specimen (ventral view) with scattered rosette papillae on forebody B forebody, showing 6 pairs of robust papillae (white arrowhead) C oral sucker, showing 13 pairs of papillae: 5 on interior margin surrounding mouth (yellow arrowhead); one posterolateral to interior margin (dark blue arrowhead); three anterolateral to interior margin (light blue arrowhead); 2 on stylet scar (dark green arrowhead); one lateral to stylet scar (light green arrowhead); one on posterior external margin of oral sucker (black arrowhead); one inside of mouth (red arrowhead) (only right hand side papillae are indicated) D genital atrium detail E ventral sucker (side view), showing long papillae on inner margin (white arrowhead) F ventral sucker (ventral view), showing long papillae on inner margin (white arrowhead). Scale bars: 1000 µm (A); 200 µm (B); 500 µm (C, D); 100 µm (E, F). For more details of observed characters by SEM from other localities analyzed in this study, see Suppl. material 2: Figure S1.
Figure 4 from: Martínez-Aquino A, García-Teh JG, Ceccarelli FS, Aguilar-Aguilar R, Vidal-Martinez VM, Leopoldina Aguirre-Macedo M (2020) New morphological and molecular data for Xystretrum solidum (Gorgoderidae, Gorgoderinae) from Sphoeroides testudineus (Tetraodontiformes, Tetraodontidae) in Mexican waters. ZooKeys 925: 141-161. https://doi.org/10.3897/zookeys.925.49503
Figure 4 Line drawings of the 532 CHCM-voucher of Xystretrum solidum from the urinary bladder of Sphoeroides testudineusA whole specimen (ventral view) B details of reproductive organs C details of genital atrium. Scale bars: 1000 µm (A); 250 µm (B–D).
Figure 3 from: Martínez-Aquino A, García-Teh JG, Ceccarelli FS, Aguilar-Aguilar R, Vidal-Martinez VM, Leopoldina Aguirre-Macedo M (2020) New morphological and molecular data for Xystretrum solidum (Gorgoderidae, Gorgoderinae) from Sphoeroides testudineus (Tetraodontiformes, Tetraodontidae) in Mexican waters. ZooKeys 925: 141-161. https://doi.org/10.3897/zookeys.925.49503
Figure 3 Phylogenetic tree obtained using Bayesian inference for the COI dataset. The scale bar represents the number of nucleotide substitutions per site. GenBank accession numbers of the new sequences of Xystretrum solidum are shown in bold. Filled circles above/below branches and at the nodes represent Bayesian Posterior Probability ≥ 0.95.
Figure 2 from: Martínez-Aquino A, García-Teh JG, Ceccarelli FS, Aguilar-Aguilar R, Vidal-Martinez VM, Leopoldina Aguirre-Macedo M (2020) New morphological and molecular data for Xystretrum solidum (Gorgoderidae, Gorgoderinae) from Sphoeroides testudineus (Tetraodontiformes, Tetraodontidae) in Mexican waters. ZooKeys 925: 141-161. https://doi.org/10.3897/zookeys.925.49503
Figure 2 Phylogenetic tree obtained using Bayesian inference for the 28S rRNA dataset. The scale bar represents the number of nucleotide substitutions per site. GenBank accession numbers of the new sequences of Xystretrum solidum are shown in bold. Filled circles above/below branches and at the nodes represent Bayesian Posterior Probability ≥ 0.95.
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Allen Brain Atlas
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