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FIGURE 9. Geometric morphometric shape change vectors for Principal Component 1 in Silversides of the genus Labidesthes (Atheriniformes: Atherinopsidae)
FIGURE 9. Geometric morphometric shape change vectors for Principal Component 1.
FIGURE 8 in Silversides of the genus Labidesthes (Atheriniformes: Atherinopsidae)
FIGURE 8. Box plots of prepelvic scale counts for Labidesthes species (p<0.00001).
FIGURE 11 in Silversides of the genus Labidesthes (Atheriniformes: Atherinopsidae)
FIGURE 11. Box plots of abdominal/thoracic length in Labidesthes species (p<0.00001).
Fig. 7 in Populations of Odontesthes (Teleostei: Atheriniformes) in the Andean region of Southern South America: body shape and hybrid individuals
Fig. 7. Geometric Morphometric Analysis applied to Odontesthes bonariensis individuals. Left: plot of DF1 vs. Standard length (SL), showing quadratic fit with 95% confidence interval (N= 100) and means and 95% confidence intervals by sampling sites (locality labels as in Fig. 1) ULLM (gray square), CARZ (white circle), D (black square), URRE (white triangle), PELE (gray triangle). Right: Deformation grids correspond to a relative warps analysis (see Table 3) involving only CARZ and D. Arrows indicate displacement of landmarks relative to consensus. Shaded area remarks relative position of landmarks 5 (anterior insertion of the first dorsal fin) and 12 (distal tip of the pelvic fin onto fish body).
Fig. 2 in Populations of Odontesthes (Teleostei: Atheriniformes) in the Andean region of Southern South America: body shape and hybrid individuals
Fig. 2. Landmarks used in geometrics morphometrics analysis: 1, anterior tip of the premaxilla; 2, eye center; 3, posterior process of symplectic bone; 4, dorsal insertion of the pectoral fin; 5, anterior insertion of the first dorsal fin; 6, anterior insertion of the second dorsal fin; 7, dorsal insertion of the caudal fin; 8, posterior end of the lateral line; 9, ventral end of the caudal fin; 10, anterior insertion of the anal fin; 11, anus; 12, distal tip of the pelvic fin onto fish body; 13, anterior insertion of the pelvic fin; 14, vertical tie of landmark 12 onto the lateral line; 15, vertical tie of landmark 10 onto the lateral line. Black line scale: 2 cm.
Fig. 3. Maximum likelihood phylogeny for 72 unique haplotypes obtained from O. hatcheri, O in Populations of Odontesthes (Teleostei: Atheriniformes) in the Andean region of Southern South America: body shape and hybrid individuals
Fig. 3. Maximum likelihood phylogeny for 72 unique haplotypes obtained from O. hatcheri, O. bonariensis, and O. smitti. Haplotype labels indicate their sampling locality (as explained in Fig. 1 and Table 1) and the number of individuals (in parentheses). Several common haplotypes were recovered from several individuals from the same or different localities (most significantly haplotype 5). Monophyly of haplotypes from each species is supported by 100% bootstrap values, and two groups of O. hatcheri haplotypes (from EPU and CDP, indicated by heavier lines) also received strong bootstrap support. All other nodes were weakly supported by bootstrap analyses. *: presumptive hybrids individuals identified on meristic and morphological characters (Table 2).
Fig. 2 in Assessment of condition in pejerrey Odontesthes bonariensis (Atheriniformes: Atherinopsidae) populations: which index works best?
Fig. 2. Relationship between standard length and (a) K index, (b) Kn index and (c) Wr index for pejerrey populations in Pampean lakes.
Data from: It's a family matter: molecular phylogenetics of Atheriniformes and the polyphyly of surf silversides (Family: Notocheiridae)
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FIGURE 9 in Two new species of dwarf rainbowfishes (Atheriniformes: Melanotaeniidae) from northern Australia and southern New Guinea
FIGURE 9. Comparative radiographs of M. maccullochi s.l. species complex rainbowfishes (male fish from Figure 5): (A) Melanotaenia maccullochi s.s. 30.0 mm male, Boggy Creek, Trinity Inlet, Cairns, Queensland (NTM S.18178-001); (B) Melanotaenia sahulensis sp. nov. 38.2 mm male, Skull Creek, Cape York, Queensland, captive stock (NTM S.18153-001); and (C) Melanotaenia wilsoni sp. nov. 26.1 mm male holotype, Sandy Creek, Reynolds River system, Litchfield National Park, Northern Territory (NTM S.17776-001).
FIGURE 4 in Two new species of dwarf rainbowfishes (Atheriniformes: Melanotaeniidae) from northern Australia and southern New Guinea
FIGURE 4. Comparative life images of the New Guinea endemic members of the maccullochi species group of rainbowfishes: (A) Melanotaenia caerulea, male holotype (WAM P.30986-001), 61 mm SL, Kikori River system, Papua New Guinea (GRA), (B) M. garylangei, male, approximately 60 mm SL, Eilanden River system, Papua Province, Indonesia (G. Lange), (C) M. mairasi, female holotype (MZB 19657), 54 mm SL, Lake Furnusu, West Papua Province, Indonesia (R. Hadiaty), (D) M. ogilbyi, male, approximately 50 mm SL, Iweka River system, Papua Province, Indonesia (GRA), (E) M. papuae, male holotype (WAM P.26393-002), 60 mm SL, Mt. Diamond, Papua New Guinea (GRA), (F) M. sexlineata, male, approximately 60 mm SL, upper Fly River system, Papua New Guinea (M.G. Allen), and (G) M. sylvatica, male paratype (WAM P.31224-002), Sapoi River, Papua New Guinea (GRA).
FIGURE 5 in Two new species of dwarf rainbowfishes (Atheriniformes: Melanotaeniidae) from northern Australia and southern New Guinea
FIGURE 5. Comparative images of freshly prepared specimens of M. maccullochi s.l. species complex rainbowfishes: (top) Melanotaenia maccullochi s.s. (A) 30.0 mm male, Boggy Creek, Trinity Inlet, Cairns, Queensland (NTM S.18178-001) and (B) 41.8 mm female, Boggy Creek (NTM S.18178-001); (middle) Melanotaenia sahulensis sp. nov. (C) 38.2 mm male, Skull Creek, Cape York, Queensland, captive stock (NTM S.18153-001) and (D) 38.3 mm female, Skull Creek captive stock (NTM S.18153-001); and (lower) Melanotaenia wilsoni sp. nov. (E) 26.1 mm male holotype, Sandy Creek, Reynolds River system, Litchfield National Park, Northern Territory (NTM S.17776-001) and (F) 27.6 mm female paratype, Sandy Creek (NTM S.17776-002). Photos MPH.
FIGURE 3. Nuclear and mitochondrial phylogenetic trees for Melanotaenia maccullochi s.l in Two new species of dwarf rainbowfishes (Atheriniformes: Melanotaeniidae) from northern Australia and southern New Guinea
FIGURE 3. Nuclear and mitochondrial phylogenetic trees for Melanotaenia maccullochi s.l.: (A) unrooted NJ tree based on pairwise Nei D's among all 13 sites analysed in the allozyme study, and (B) ML tree for 1141bp of cytochrome b. Population and taxon codes match Figure 1 and Table 1. NEQ = northeast Queensland, NT = Northern Territory. Another member of the 'maccullochi species group' occurring in near sympatry with M. maccullochi in the Fly River system, M. sexlineata, is included for reference.
FIGURE 1 in Two new species of dwarf rainbowfishes (Atheriniformes: Melanotaeniidae) from northern Australia and southern New Guinea
FIGURE 1. Location map of the Australia and New Guinea region showing Melanotaenia maccullochi s.l. genetic study collection sites (see Table 1) and locations of other museum material examined.
FIG. 6 in The Walker Scale: Details of a Method for Assessing Beach-Spawning Runs of California Grunion Leuresthes tenuis (Atheriniformes: Atherinopsidae)
FIG. 6. Cumulative distribution of egg clutches in a band perpendicular to shore for eight run series on Cabrillo Beach between 2003 and 2005. Width of the band of egg clutches was 5.262.5 m, n ¼ 874 clutches, with the majority of clutches between 3 and 10 m above the water line at low tide.
FIG. 5 in A New Species of Silverside of the Genus Odontesthes (Atheriniformes: Atherinopsidae) with Hypertrophic Lips from a High-Altitude Basin in Southern Brazil
FIG. 5. Pectoral girdle in dorsal view. (Left) Odontesthes humensis, left side, anterior to left, UFRGS 22497, 130.3 mm SL; (Right) Odontesthes crossognathos, right side, anterior to left, paratype, UFRGS 28830, 134.6 mm SL. Arrows indicate the dorsomedial wing surpassing the suture between scapula (S) and coracoid (C). Scale bar ¼ 2 mm.
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