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219 results for “Apogonidae”
Figure 4 in A new species of Neamia (Perciformes: Apogonidae) from the West Pacific Ocean
Figure 4. Distribution of the collections sites for Neamia articycla.
Figure 1. Pseudamia gelatinosa Smith, 1956 in Short Communication First record of Pseudamia gelatinosa Smith, 1956 (Perciformes: Apogonidae) from Gulf of Mannar, Southeast coast of India
Figure 1. Pseudamia gelatinosa Smith, 1956 (MBRC/ ZSI/F 2100; 71.33 mm SL).
FIGURE5. Maximum likelihood tree based on the Kimura 2-parameter model of the COI sequences from the Siphamia species with P. kauderni as the outgroup. Tree shown here has the highest log likelihood following 10 000 replications. The percentage of trees in which the associated taxa clustered together is shown next to the branches, branch lengths are measured in the number of substitutions per site and all positions containing gaps and missing data have been eliminated. in Redescription and distributional range extension of the Speckled Siphonfish, Siphamia guttulata (Pisces: Apogonidae)
FIGURE5. Maximum likelihood tree based on the Kimura 2-parameter model of the COI sequences from the Siphamia species with P. kauderni as the outgroup. Tree shown here has the highest log likelihood following 10 000 replications. The percentage of trees in which the associated taxa clustered together is shown next to the branches, branch lengths are measured in the number of substitutions per site and all positions containing gaps and missing data have been eliminated.
FIGURE4.Map of selected records of Siphamia species recorded in Queensland and Papua New Guinea waters in 2003–2005, including the type locality of Siphamia guttulata. Some symbols represent more than one specimen. in Redescription and distributional range extension of the Speckled Siphonfish, Siphamia guttulata (Pisces: Apogonidae)
FIGURE4.Map of selected records of Siphamia species recorded in Queensland and Papua New Guinea waters in 2003–2005, including the type locality of Siphamia guttulata. Some symbols represent more than one specimen.
FIGURE 3. Median predorsal scales of Siphamia guttulata (A—paralectotype, AMS I.16306-001, 25.7 mm SL; B—CSIRO H 7457-01, 27 mm SL) and Siphamia tubifer (C—CSIRO H 6752-02, 31 mm SL). Scale bar = 0.5 mm. Yellow arrows point to first dorsal spine, numbers or pink arrows indicate median predorsal scales. Fifth median predorsal scale of Fig. C is a scale pocket as the scale has been lost. in Redescription and distributional range extension of the Speckled Siphonfish, Siphamia guttulata (Pisces: Apogonidae)
FIGURE 3. Median predorsal scales of Siphamia guttulata (A—paralectotype, AMS I.16306-001, 25.7 mm SL; B—CSIRO H 7457-01, 27 mm SL) and Siphamia tubifer (C—CSIRO H 6752-02, 31 mm SL). Scale bar = 0.5 mm. Yellow arrows point to first dorsal spine, numbers or pink arrows indicate median predorsal scales. Fifth median predorsal scale of Fig. C is a scale pocket as the scale has been lost.
FIGURE2. Digital radiograph of Siphamia guttulata (CSIRO H 6648-02, 25 mm SL). Blue circle highlighting two supraneurals. Scale bar = 0.5 mm. in Redescription and distributional range extension of the Speckled Siphonfish, Siphamia guttulata (Pisces: Apogonidae)
FIGURE2. Digital radiograph of Siphamia guttulata (CSIRO H 6648-02, 25 mm SL). Blue circle highlighting two supraneurals. Scale bar = 0.5 mm.
FIGURE 4 in A new species of the cardinalfish genus Apogon (Teleostei, Apogonidae) from the southern Red Sea and Indian Ocean with comments on phylogenetic relationships within the Apogonini
FIGURE 4. Species of the Apogon deetsie group. A: A. deetsie, BPBM 37400, holotype, 40.4 mm SL, Oahu, Hawaiian Islands; B: A. rubrifuscus, BPBM 39346, holotype, 101.5 mm SL, Easter Island; C: A. rubrifuscus, USNM 440058=MNHN IC 2008- 0997 [MBIO1411], 33.4 mm SL, Moorea, French Polynesia. Photos by J.E. Randall (A & B) and J.T. Williams (C). Specimen length for image B is as given in the original description depicting the same photo.
FIGURE 5 in A new species of the cardinalfish genus Apogon (Teleostei, Apogonidae) from the southern Red Sea and Indian Ocean with comments on phylogenetic relationships within the Apogonini
FIGURE 5. Species of the Apogon unicolor group. A: A. caudicinctus, BPBM 13002, holotype, 52.5 mm SL, Rapa Island; B: A. caudicinctus, NBE106, 84.0 mm SL, Madagascar; C: A. dianthus, BPBM 9360, holotype, 48.0 mm SL, Palau Islands; D: A. soloriens, KAUM-I.74702, 23.5 cm SL, Bonin Islands, Ogasawara Islands; E: A. talboti, SMF 35881 [KAU17-242], 44.0 mm SL, Abkar I., Farasan Archipelago, Saudi Arabia; F: A. unicolor, KAUM-I29415, 105 mm SL, Iou-jima I., Japan. Specimen length for images A & C is as given in the original descriptions depicting the same photos. Photos by J.E. Randall (A & C), N. Hubert (B), Kagoshima University Museum (D & F), and S.V. Bogorodsky (E).
FIGURE 3 in A new species of the cardinalfish genus Apogon (Teleostei, Apogonidae) from the southern Red Sea and Indian Ocean with comments on phylogenetic relationships within the Apogonini
FIGURE 3. Maximum likelihood phylogeny of the apogonine cardinalfishes (tribe Apogonini) based on a concatenated alignment of (partial) mitochondrial COI and rDNA and nuclear RAG1 and ENC1 genes (specimens for which more than COI sequences were available are in bold letters). Branch support values were obtained by 200 bootstrapped replicates; only bootstrap values above 50 percent are shown (* = 100 %). The scale bar represents average number of nucleotide substitutions. M = sequences retrieved from Mabuchi et al. (2014); P = sequences obtained in the present study; B = sequence retrieved from BOLD; C = sequence retrieved from CRIOBE; G = sequence retrieved from GenBank; ID = species ID re-assigned herein. Collection location of sequence voucher is provided if available (n/a = not available).
FIGURE 1. Apogon fugax new species. A in A new species of the cardinalfish genus Apogon (Teleostei, Apogonidae) from the southern Red Sea and Indian Ocean with comments on phylogenetic relationships within the Apogonini
FIGURE 1. Apogon fugax new species. A: SMF 35884 [KAU14-542], holotype, fresh specimen, 46.2 mm SL, off Jizan, Saudi Arabia, Red Sea; B: SAIAB 203703, paratype, fresh specimen, 59.7 mm SL, Myanmar; C: CSIRO H 6378-16 [BW-A4835], paratype, preserved specimen, 52.9 mm SL, Western Australia. Photos by S.V. Bogorodsky (A), O. Alvheim (B), and curtesy of the CSIRO Australian National Fish Collection (C).
FIGURE 3 in The taxonomic status and sister group relationship of the cardinalfish species Jaydia striatodes (Percomorphaceae: Apogonidae)
FIGURE 3. Neighbour-joining tree based on the HKY + I + G model (-ln L = 2904.0452, A: C: G: T = 0.2642: 0.2966: 0.1605: 0.2787, I = 0.6360, G = 1.7440) using COI gene fragment sequence of J. striatodes, J. striata and six other Jaydia species. Numbers on the branches indicate bootstrap support for the nodes from the likelihood, parsimony and neighbor-joining analyses (from the left in that order, bootstrap values>50% from 1000 replicates are shown). The tree was rooted using Apogonichthyoides niger and Nectamia fusca as outgroups.
FIGURE 2 in The taxonomic status and sister group relationship of the cardinalfish species Jaydia striatodes (Percomorphaceae: Apogonidae)
FIGURE 2. (a) Jaydia striatodes (ZMNH AF0000119), 57.3 mm SL, Beibu Gulf, China (Zhengsen Yu); (b) Jaydia striata (KAUM–I. 47748), 53.2 mm SL, Ryoung, Thailand (Hiroyuki Motomura, courtesy of the Kagoshima University Museum, Japan).
FIGURE 8 in description of a new species of cardinalfish from the IndoWest Pacific (Perciformes: Apogonidae)
FIGURE 8. Distribution of collection sites for Apogon bryx, Apogon kiensis, Apogon quinquestriatus and Apogon septemstriatus.
FIGURE 7 in description of a new species of cardinalfish from the IndoWest Pacific (Perciformes: Apogonidae)
FIGURE 7. Holotype of Apogon septemstriatus, BMNH 1890.2.26.33, Arafura Sea, Challenger Expedition, 63.7 mm SL.
FIGURE 4 in description of a new species of cardinalfish from the IndoWest Pacific (Perciformes: Apogonidae)
FIGURE 4. Apogon fasciatus, uncataloged, Philippines, Busuanga I., BUS 0314, 50.4 mm SL. Intestine slightly prolapsed. Photograph modified from original taken by J. Williams, USNM.
FIGURE 2 in description of a new species of cardinalfish from the IndoWest Pacific (Perciformes: Apogonidae)
FIGURE 2. Paratype of Apogon pleuron, ROM 76345, Vietnam, 81.2 mm SL. Photograph modified from original taken by R. Winterbottom, ROM.
FIGURE 1 in description of a new species of cardinalfish from the IndoWest Pacific (Perciformes: Apogonidae)
FIGURE 1. Holotype of Apogon pleuron, USMN 357488; 70.5 mm SL; Philippines, Visayan Sea, Tanguinqui Island. Photograph modified from original taken by S. Raredon, USMN.
FIGURE 9 in Genetic identification and color descriptions of early life-history stages of Belizean Phaeoptyx and Astrapogon (Teleostei: Apogonidae) with Comments on identification of adult Phaeoptyx
FIGURE 9. Astrapogon juveniles: (A) Astrapogon puncticulatus, USNM 393404, 14 mm SL, 5488, reared specimen; (B) Astrapogon stellatus, USNM 393413, 10 mm SL, 6449, reared specimen; (C) Astrapogon stellatus, USNM 393413, 13 mm SL, 6450, reared specimen.
FIGURE 8 in Genetic identification and color descriptions of early life-history stages of Belizean Phaeoptyx and Astrapogon (Teleostei: Apogonidae) with Comments on identification of adult Phaeoptyx
FIGURE 8. Astrapogon larvae: (A) Astrapogon alutus, 5 mm SL, 6041; (B) Astrapogon alutus, 6 mm SL, 6040; (C) Astrapogon stellatus, 7 mm SL, 6038; (D) Astrapogon puncticulatus, 9.5 mm SL, 4449; (E) Astrapogon puncticulatus, USNM 393909, 12 mm SL, 5396; (F) Astrapagon puncticulatus, USNM 393407, 13 mm SL, 7125; (G) Astrapagon puncticulatus, 8.5mm SL, 7262.
FIGURE 3 in Genetic identification and color descriptions of early life-history stages of Belizean Phaeoptyx and Astrapogon (Teleostei: Apogonidae) with Comments on identification of adult Phaeoptyx
FIGURE 3. Phaeoptyx juveniles: (A) Phaeoptyx conklini, USNM 393373, 22 mm SL, 5144; (B) Phaeoptyx pigmentaria, USNM 393352, 19 mm SL, 6371; (C) Phaeoptyx xenus, USNM 393399, 21 mm SL, 7741.
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