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120 results for “Gobiiformes”
Figure 2 from: K K, K S, Lakshmanan R, KK J, M S M, John S (2013) First record of the twostripe goby, Valenciennea helsdingenii (Gobiidae, Gobiiformes) from the southeast coast of India. ZooKeys 323: 91-97. https://doi.org/10.3897/zookeys.323.5440
Figure 2 - Capture location of Valenciennea helsdingenii (red star) in the Gulf of Mannar, southeast coast of India.
Supplementary material 1 from: Hu J, Lan C, Li C (2023) Microdous amblyrhynchos sp. nov., a new member of the small-toothed sleepers (Teleostei, Gobiiformes, Odontobutidae) from Guangxi, southern China. ZooKeys 1153: 1-13. https://doi.org/10.3897/zookeys.1153.97139
Pairwise distances based on COI gene among all species used in this study
Figure 7 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 7 - Relationships of 28 specimens of the Trimma okinawae group based on COI.
Figure 3 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 3 - Relationships of 14 specimens of the Trimma xanthochrum Group 2, based on COI.
Figure 11 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 11 - Relationships of 16 specimens of the Trimma nasa group based on COI.
Figure 12 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 12 - Relationships of 8 specimens of the Trimma marinae group based on COI.
Figure 10 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 10 - Relationships of 20 specimens of the Trimma taylori group based on COI.
Figure 6 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 6 - Relationships of 21 specimens of the Trimma milta group based on COI.
Figure 8 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 8 - Relationships of 8 specimens of the Trimma emeryi group based on COI.
Figure 9 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 9 - Relationships of 21 specimens of the Trimma caesiura group based on COI.
Figure 5 from: Winterbottom R, Hanner R, Burridge M, Zur M (2014) A cornucopia of cryptic species - a DNA barcode analysis of the gobiid fish genus Trimma (Percomorpha, Gobiiformes). ZooKeys 381: 79-111. https://doi.org/10.3897/zookeys.381.6445
Figure 5 - Relationships of 11 specimens of the Trimma erdmanni group based on COI.
Figure 1 from: K K, K S, Lakshmanan R, KK J, M S M, John S (2013) First record of the twostripe goby, Valenciennea helsdingenii (Gobiidae, Gobiiformes) from the southeast coast of India. ZooKeys 323: 91-97. https://doi.org/10.3897/zookeys.323.5440
Figure 1 - Valenciennea helsdingenii, 145 mm SL from the Gulf of Mannar, southeast coast of India.
FIGURE 8 in Two new species of Rhinogobius (Gobiiformes: Oxudercidae) from Palawan, Philippines, with their phylogenetic placement
FIGURE 8. In situ underwater photographs of Rhinogobius tandikan in Cayulo River, Palawan. a, male, 31 May 2018; b, female, 1 June 2018 (photo by K. Maeda).
FIGURE 5 in Two new species of Rhinogobius (Gobiiformes: Oxudercidae) from Palawan, Philippines, with their phylogenetic placement
FIGURE 5. In situ underwater photographs of Rhinogobius estrellae in Estrella Falls, Palawan. a, male, 28 May 2018; b, male, 13 May 2016; c and d, females, 13 May 2016 (photo by K. Maeda).
FIGURE 6. Rhinogobius tandikan immediately after fixation. a in Two new species of Rhinogobius (Gobiiformes: Oxudercidae) from Palawan, Philippines, with their phylogenetic placement
FIGURE 6. Rhinogobius tandikan immediately after fixation. a, NSMT-P 140093, holotype, male, 43.6 mm SL; b, URM-P 49316, paratype, female, 44.8 mm SL (photo by K. Maeda).
FIGURE 2 in Microdous hanlini (Gobiiformes: Odontobutidae), a new species of the fine-toothed sleepers from Guangxi, China
FIGURE 2. Microdous hanlini sp. nov., SOU1801015–8, holotype, 112.0 mm standard length, Du'an, Guangxi. A lateral B ventral C dorsal.
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
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
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
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
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