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28 results for “Stolephorus”
Fig. 4 in Stolephorus lotus, a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia
Fig. 4. Relationships of total gill raker numbers (TGR) on (A) first gill arch (1GA), (B) second gill arch (2GA) and (C) third gill arch (3GA) to SL in Stolephorus lotus sp. nov. (circles) and S. andhraensis (squares).
Fig. 6. A in Stolephorus lotus, a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia
Fig. 6. A principal components analysis (PCA) graph plotting the first two components for Stolephorus lotus sp. nov. (circles), S. acinaces (triangles), and S. andhraensis (squares) based on 29 morphological characters.
Fig. 5 in Stolephorus lotus, a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia
Fig. 5. Relationships of caudal-peduncle length to SL in Stolephorus lotus sp. nov. (circles) and S. andhraensis (squares).
Fig. 3 in Stolephorus lotus, a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia
Fig. 3. Relationships of selected measurements relative to standard length (SL) or head length (HL) versus SL in Stolephorus lotus sp. nov. (circles) and S. acinaces (triangles). A, head length (as % of SL); B, predorsal fin length as % SL; C, body depth as % SL; D, maxilla length as % HL.
Fig. 1 in Stolephorus lotus, a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia
Fig. 1. (A) Lateral, (B) dorsal, and (C) ventral views of holotype of Stolephorus lotus sp. nov. (NTM S. 15265-006, 40.0 mm SL, Van Diemen Gulf, Northern Territory, Australia).
Fig. 2 in Stolephorus lotus, a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia
Fig. 2. Head of paratype of Stolephorus lotus sp. nov., NTM S. 15265-009, 36.2 mm SL, Van Diemen Gulf, Northern Territory, Australia. Dots indicate posterior part of maxilla. Triangle and arrow indicate cavity of preopercle and posterior tip of maxilla, respectively. Scale bar indicates 1 mm.
Fig. 3 in A new species of anchovy, Stolephorus astrum (Teleostei: Clupeiformes: Engraulidae), from Palau, Micronesia
Fig. 3. Relationships of selected measurements relative to standard length (SL) versus SL or maxilla length in Stolephorus astrum, new species (red circles), S. leopardus (yellow diamonds), S. pacificus (blue triangles), and S. teguhi (green squares). A, body depth (as % of SL); B, distance between dorsal-fin origin and pelvic-fin insertion (D–P2; as % of SL); C, distance between origins of dorsal and anal fins (D–A; as % of SL); D, predorsal-fin length (as % of SL); E, caudal-peduncle length (as % of SL); F, snout length (as % of SL); G, anal-fin base length (as % of SL); H, distance between dorsal-fin origin and pectoral-fin insertion (D–P1; as % of SL); I, postorbital length (as % of SL); J, distance between ends of supramaxilla and maxilla [SMX–MX; as % of maxilla length (ML)]; K, pectoral-fin length (as % of SL).
Fig. 2 in A new species of anchovy, Stolephorus astrum (Teleostei: Clupeiformes: Engraulidae), from Palau, Micronesia
Fig. 2. Pectoral-fin rays of preserved specimens of A, Stolephorus astrum, new species (CAS 230408, 49.8 mm SL, Babeldaob Island, Palau; melanophores scattered on 6 uppermost fin rays; left-right inverted) and B, S. pacificus (USNM 263476, 57.8 mm SL, Talofofo Bay, Guam; no melanophores on pectoral fin).
Fig. 1. A in A new species of anchovy, Stolephorus astrum (Teleostei: Clupeiformes: Engraulidae), from Palau, Micronesia
Fig. 1. A, lateral, B, dorsal, and C, ventral views of the holotype (CAS 230413, 48.1 mm SL, Babeldaob Island, Palau), and paratypes (D, CAS 248277, 53.3 mm SL, and E, CAS 248277, 54.8 mm SL (both Babeldaob Island, Palau) of Stolephorus astrum, new species (preserved specimens).
Fig. 2 in Two new species of Stolephorus (Teleostei: Clupeiformes: Engraulidae) from the western Pacific
Fig. 2. Relationships of total gill-raker numbers (TGR) on (A) first gill arch (1GA), (B) second gill arch (2GA), (C) third gill arch, and (D) fourth gill arch relative to standard length in Stolephorus celsior, new species (triangles), S. concursus, new species (circles), S. babarani (inverted triangles), S. bataviensis (squares), and S. baweanensis (diamonds).
Fig. 1 in Two new species of Stolephorus (Teleostei: Clupeiformes: Engraulidae) from the western Pacific
Fig. 1. (A) Lateral view of body and (B) dorsal and (C) ventral view of head of holotype of Stolephorus celsior, new species, BMNH 1966.1.17.93, 60.0 mm SL, Rosario, Cavite, Manila Bay, Luzon, Philippines.
Fig. 4 in Two new species of Stolephorus (Teleostei: Clupeiformes: Engraulidae) from the western Pacific
Fig. 4. (A) Body and (B) head of holotype of Stolephorus concursus, new species, USNM 330901, 72.8 mm SL, Nadi Bay, Viti Levu Island, Fiji.
Fig. 3 in Two new species of Stolephorus (Teleostei: Clupeiformes: Engraulidae) from the western Pacific
Fig. 3. Morphometrics and meristic of Stolephorus celsior, new species (triangles), S. concursus, new species (circles), S. babarani (inverted triangles), S. bataviensis (squares), and S. baweanensis (diamonds) (all vs. standard length; SL). A, ratio of caudal-peduncle depth to SL; B, pectoral-fin length to SL; C, mandibular length to SL; D, pelvic-fin length to SL; E, distance from dorsal-fin origin to pelvic-fin insertion to SL; F, head length to SL; G, orbit diameter to SL; H, snout length to SL; I, maxilla length to SL.
FIGURE 3 in Stolephorus babarani, a new species of anchovy (Teleostei: Clupeiformes Engraulidae) from Panay Island, central Philippines
FIGURE 3. Left side of caudal-fin complex of Stolephorus babarani n. sp. (KAUM–I. 91884, 80.5 mm SL, cleared and stained. Caudal-fin rays removed). hyu, hypural; parh, parhypural bone.
FIGURE 2 in Stolephorus babarani, a new species of anchovy (Teleostei: Clupeiformes Engraulidae) from Panay Island, central Philippines
FIGURE 2. Left side of left hyoid arch of Stolephorus babarani n. sp. (KAUM–I. 91884, 80.5 mm SL, cleared and stained). hyph lo, lower hypohyal; hypo up, upper hypohyal; chy, ceratohyal; gha, groove for hyoidean artery; eph, epihyal; inh, interhyal; bra, branchiostegal rays.
FIGURE 1 in Stolephorus babarani, a new species of anchovy (Teleostei: Clupeiformes Engraulidae) from Panay Island, central Philippines
FIGURE 1. Holotype of Stolephorus babarani n. sp. KAUM–I. 62918, 75.6 mm SL, Panay Island, Visayas, Philippines.
FIGURE 4 in Stolephorus babarani, a new species of anchovy (Teleostei: Clupeiformes Engraulidae) from Panay Island, central Philippines
FIGURE 4. Relationships of (A) head length (as % of SL), (B) distance between dorsal-fin origin to pectoral-fin insertion (D–P1; as % HL), and (C) snout length (as % SL) in Stolephorus babarani n. sp. (open circles; HL / SL: Y = -0.0333X + 27.078, p value <0.01; D–P1 / HL: Y = 0.377X + 114.41, p value <0.05), S. bataviensis (closed squares; HL / SL: Y = -0.0427X + 29.796, p value <0.000001; D–P1 / HL: Y = 0.3023X + 100.58, p value <0.0001) and S. baweanensis (closed triangles; HL / SL: Y = -0.0357X + 27.833, p value <0.01; D–P1 / HL: Y = 0.3207X + 112.9, p value <0.02). Solid, parallel, and dotted lines indicate regression lines for S. babarani, S. bataviensis, and S. baweanensis, respectively. Non-significant regressions of snout length of each species (p value> 0.05) are not given.
FIGURE 6 in Stolephorus babarani, a new species of anchovy (Teleostei: Clupeiformes Engraulidae) from Panay Island, central Philippines
FIGURE 6. Maximum-likelihood phylogenetic tree of 60 specimens of the genus Stolephorus (Clupeiformes; Engraulidae) using the cytochrome b and the cytochrome oxidase I (COI) genes (total: 1,788 base pairs). Stolephorus babarani n. sp. forms a monophyletic group, sister to Stolephorus baweanensis. They are separated by> 6% (combined COI and cytochrome b) mean p-distance to each other. Specimen labels include Museum collection numbers or specimen code. Specimens of Stolephorus indicus and Stolephorus commersonii are collectively used to root this tree. Branch lengths are proportional to number of substitutions (scale unit is number of nucleotide substitutions per site). Numbers given at nodes are Bootstrap Proportions (shown only for interspecific relationships).
FIGURE 3 in Stolephorus grandis, a new anchovy (Teleostei: Clupeiformes: Engraulidae) from New Guinea and Australia
FIGURE 3. Relationships of total gill-raker numbers (TGR) on (A) first gill arch (1GA), (B) second gill arch (2GA), (C) third gill arch, and (D) fourth gill arch, relative to standard length in Stolephorus grandis n. sp. (circles), S. mercurius (triangles), S. multibranchus (diamonds), and S. rex (squares).
FIGURE 4 in Stolephorus grandis, a new anchovy (Teleostei: Clupeiformes: Engraulidae) from New Guinea and Australia
FIGURE 4. Morphometrics of Stolephorus grandis n. sp. (circles), S. mercurius (triangles), S. multibranchus (diamonds), and S. rex (squares) [all as % of SL versus standard length (SL)]: A, caudal-peduncle length B, pelvic-fin length; C, maxilla length; D, mandibular length; E, head length; F, postorbital length; G, dorsal-fin base length; and H, anal-fin base length.
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