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96 results for “Engraulidae”
Fig. 8 in Fig. 6. A in , a New Anchovy (Teleostei: Clupeiformes: Engraulidae) from the Northern Territory, Australia.
Fig. 8. Full-face view (A) and profile view (B) of Anillidris bruchi (UFV-LABECOL-004260).
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).
FIG. 8 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 8. Morphological characteristics of Encrasicholina punctifer, collected from Qeshm)a (isthmus muscle reaching to hind border of gill membrane)1(; there is not urohyal bony plate)2(.)b(belly with needle like scutes before pelvic fin base.)c, d(maxilla short and bluntly rounded posteriorly, projecting rarely beyond 2nd supramaxilla)1), not reaching to anterior of preoperculum. FIG. 9. Morphological characteristics of Stolephorus indicus, collected from Bandar-e-Jask)a(isthmus muscle reaching to beyond hind margin of branchial membrane)1(; there is urohyal bony plate (2).)b(belly with sharp needle like before -pelvic scutes.)c, d(Maxilla tip pointed (1), reaching to or only just beyond anterior border of pre-operculum.
FIG. 4 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 4. Morphological characteristics of Thryssa hamiltonii, collected from Bandar Abbas)a(snout tip above level of eye cent- er.)b(maxilla short or moderate, projects slightly beyond gill opening.)c(two supra-maxilla on upper jaw.)d(first supramaxilla small, oval.)e(the first gill arch.)f(serrae on the gillrakers not clumped.
Fig. 7 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
Fig. 7. Morphological characteristics of Encrasicholina pseudoheteroloba, collected from Qeshm,)a(isthmus muscle)1(; reaching to hind border of gill membrane)2(; there is urohyal bony plate (3).)b (belly with needle-like scutes before pelvic fin base.)c, d(maxilla pointed posteriorly, projecting well beyond 2nd supramaxilla, reaching the margin of sub-operculum.)e(3nd anal fin ray branched.)f(3nd dorsal fin ray branched.
FIG. 5 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 5. Morphological characteristics of Thryssa whiteheadi, collected from Tiab)a(snout tip above level of eye centre.) b(maxilla moderate, its tip projecting just a little beyond edge of gill cover.)c) one supra-maxilla on upper jaw, jaw teeth slightly enlarged compared with other species.)d(first supra-maxilla absent.)e (the first gill arch. (f) serrae on the gillrakers not clumped.
FIG. 10 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 10. Morphological characteristics of larvae collected from Bandar Aftab)a) isthmus muscle (Uncertain existence urohyal bony plate(.)b(very fragile dorsal and anal fin rays and uncertain counts of unbranched and branched.)c, d(maxilla tip pointed, reaching to anterior border of pre-operculum.
FIG. 3 in Morphological identification and molecular validation of anchovies (Engraulidae) in the Persian Gulf and Oman Sea
FIG. 3. Morphological characteristics of Thryssa setirostris, collected from Bandar Abbas)a(snout tip at about level of eye center. (b(maxilla very long (the longest in Engraulidae), usually reaching at the pelvic fin base, or to the anal fin origin.)c) two supra-maxilla on upper jaw.)d(first supramaxilla great, oval.)e (the first gill arch. (f) serrae on the gillrakers not clumped.
FIGURE 1 in A new species of anchovy, Encrasicholina sigma (Teleostei, Clupeiformes, Engraulidae), from Sulawesi, Indonesia
FIGURE 1. Holotype of Encrasicholina sigma n. sp., BMNH 1981.7.29.296, 75.5 mm SL, Makassar, Sulawesi, Indonesia
FIGURE 2 in A new species of anchovy, Encrasicholina macrocephala (Clupeiformes: Engraulidae), from the northwestern Indian Ocean
FIGURE 2. Relationships of (A) ratio of head length to standard length vs. standard length, (B) ratio of D–P1 length to head length vs. standard length, (C) ratio of upper-jaw length to standard length vs. standard length, and (D) ratio of lower-jaw length to standard length vs. standard length in Encrasicholina macrocephala n. sp. [open circles (open star = holotype)] and E. devisi [closed triangles (closed star = holotype)].
FIGURE 1 in A new species of anchovy, Encrasicholina macrocephala (Clupeiformes: Engraulidae), from the northwestern Indian Ocean
FIGURE 1. Holotype of Encrasicholina macrocephala n. sp. MNHN 2014-0152, 44.6 mm standard length, Djibouti.
FIGURE 2 in Pseudosetipinna Peng & Zhao is a junior synonym of Setipinna Swainson and Pseudosetipinna haizhouensis Peng & Zhao is a junior synonym of Setipinna tenuifilis (Valenciennes) (Teleostei: Clupeoidei: Engraulidae)
FIGURE 2. Specimens identified as Pseudosetipinna haizhouensis (A, C, E) and Setipinna tenuifilis (B, D, F). A, B. Lateral view of whole fish. C, D. Lateral view of abdomen region. E, F. Radiography of abdomen region. A, C, E taken from NMMB- P25505. B, D taken from NMMB-P23521 (17). F taken from NMMB-P 23520. The black arrow indicates the pelvic fin.
FIGURE 3 in Pseudosetipinna Peng & Zhao is a junior synonym of Setipinna Swainson and Pseudosetipinna haizhouensis Peng & Zhao is a junior synonym of Setipinna tenuifilis (Valenciennes) (Teleostei: Clupeoidei: Engraulidae)
FIGURE 3. Setipinna phylogenetic tree (seven species including Lycothrissa crocodilus and Pseudosetipinna haizhouensis, 10 haplotypes, 30 specimens) estimated by maximum likelihood using cytochrome b and COI sequences (see text for details on the phylogenetic reconstruction method). Cytochrome b and COI sequences of Coilia nasus were used to root the tree. Species names followed by localities and specimen numbers or Genbank sequence numbers. Numbers at nodes are bootstrap proportions (if>50%). Note the phylogenetic position of our specimen of Pseudosetipinna and the very low genetic differentiation within the Setipinna tenuifilis/Pseudosetipinna haizhouensis clade.
FIGURE 1 in Pseudosetipinna Peng & Zhao is a junior synonym of Setipinna Swainson and Pseudosetipinna haizhouensis Peng & Zhao is a junior synonym of Setipinna tenuifilis (Valenciennes) (Teleostei: Clupeoidei: Engraulidae)
FIGURE 1. Map of the Northwest Pacific region centered on the East China Sea, on which is indicated the type locality of Pseudosetipinna haizhouensis (red star) and the locality from where the specimens of Setipinna tenuifilis and Pseudosetipinna haizhouensis examined in this study were collected (black star).
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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