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52 results for “Mormoopidae”
Fig. 8 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 8. Anterior views of the distal end of the humerus of (A) Pteronotus parnellii, (B) Pteronotus personatus, and (C) Mormoops megalophylla (redrawn from Vaughan and Bateman, 1970: fig. 5). Note the differences between Pteronotus and Mormoops in degree of development of the capitulum, location of the trochlea relative the shaft, and presence/absence of a deep groove between the trochlea and distal spinous process.
Fig. 1 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 1. Smith's (1972) phylogenetic tree of mormoopid species, with the taxonomy changed to reflect modern usage (i.e., P. quadridens = P. fuliginosus, P. gymnonotus = P. suapurensis). This tree, which was developed in a pre-cladistic context using methods of numerical taxonomy, was derived from analysis of 22 skull measurements and 20 qualitative multistate characters of the dentition and external morphology. The horizontal and vertical spacing of various branches was intended to depict degrees of similarity and differences among taxa. Redrawn from Smith (1972: fig. 14).
Fig. 4 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 4. Lateral views of the skulls of (A) Mormoops blainvillii (AMNH 45197), (B) Pteronotus davyi (AMNH 204965), (C) Mormoops megalophylla (AMNH 27300), (D) Pteronotus gymnonotus (AMNH 32092), (E) Pteronotus parnellii (AMNH 129749), (F) Pteronotus macleayii (AMNH 60899), (G) Pteronotus personatus (AMNH 32136), and (H) Pteronotus quadridens (AMNH 39357). Note the differences in degree of upturn of the rostrum relative to the braincase, and in the position of the infraorbital foramen and anterior rim of the orbit relative to the toothrow. Scale bars = 5 mm.
Fig. 7 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 7. Ventral views of the larynx and anterior trachea of (A) Macrotus waterhousii and (B) Pteronotus davyi (redrawn from Griffiths, 1978: figs. 2, 4). Note the expanded tracheal rings and division of m. cricothyroideus into two muscles in P. davyi. Scale bars = 1 mm.
Fig. 6 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 6. Occlusal views of the left lower toothrow of (A) Mormoops blainvillii (AMNH 45197), (B) Pteronotus quadridens (AMNH 39357), and (C) Pteronotus davyi (AMNH 204965). Note the relative proportions of the premolars (p3 reduced in Pteronotus species) and the morphology of the talonid basin (nyctalodont in Mormoops blainvillii and Pteronotus quadridens, myotodont in Pteronotus davyi).
Fig. 5 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 5. Dorsal views of the skulls of (A) Mormoops blainvillii (AMNH 45197), (B) Mormoops megalophylla (AMNH 27300), (C) Pteronotus davyi (AMNH 204965), (D) Pteronotus gymnonotus (AMNH 32092), (E) Pteronotus parnellii (AMNH 129749), (F) Pteronotus personatus (AMNH 32136), (G) Pteronotus macleayii (AMNH 60899), and (H) Pteronotus quadridens (AMNH 39357). Note the differences in relative proportions of the skull (e.g., breadth of the rostrum, zygomatic arches, and mastoid region compared with skull length). Scale bars = 5 mm.
Fig. 12 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 12. Tree showing the results of our Analysis 2, which used ordered characters and included the fossil Pteronotus pristinus. This tree shows the topology of the single most-parimonious tree recovered (439 steps; CI = 0.652; CI excluding uninformative characters = 0.618; RI =.749). Decay values are given above each branch; bootstrap values are below (see tables 2 and 3 for associated branch length values and results of jackknife analysis). Results of our Analysis 3, which included the same taxa but treated all characters as unordered, produced an identical tree topology; see text for discussion.
Fig. 11 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 11. Tree showing the results of our Analysis 1, which used ordered characters and did not include the fossil Pteronotus pristinus. This tree shows the topology of the single most-parsimonious tree recovered (438 steps; CI = 0.653; CI excluding uninformative characters = 0.619; RI =.750). Decay values are given above each branch; bootstrap values are below (see tables 2 and 3 for associated branch length values and results of jackknife analysis).
Fig. 2 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 2. Arnold et al.'s (1982) ''composite cladogram'' of relationships among noctilionoid species. This phylogeny was derived from taxonomic-congruence comparisons of trees derived from four data sets: albumin immunology, chromosomes, allozymes, and morphology. Data sets supporting each clade are indicated on the tree. Redrawn from Arnold et al. (1982: fig. 5).
FIGURE 3. Haplotype network inferred from A in On the taxonomic identity of Pteronotus davyi incae Smith, 1972 (Chiroptera: Mormoopidae)
FIGURE 3. Haplotype network inferred from A, cyt-b and B, CO1 datasets, highlighting the clusters corresponding to Pteronotus davyi, P. fulvus, and P. gymnonotus. Each circle represents one distinct haplotype (H), whose size is proportional to its frequency in the sample (1 to 6 individuals).
FIGURE 1 in On the taxonomic identity of Pteronotus davyi incae Smith, 1972 (Chiroptera: Mormoopidae)
FIGURE 1. Map showing the geographic range of Pteronotus davyi (shaded green) and the localities sampled in the molecular (red) analyses, morphometric (blue) analyses, or both (black). P. d. davyi localities are represented by circles and P. d. incae by triangles.
FIGURE 5 in On the taxonomic identity of Pteronotus davyi incae Smith, 1972 (Chiroptera: Mormoopidae)
FIGURE 5. Dorsal and ventral views of the cranium of A, Pteronotus davyi davyi (MCZ 11266, Trinidad); B, P. d. incae (MUSM 52787, Peru); and C, P. fulvus (MVZ 130481, El Salvador). Scale bar = 5 mm.
FIGURE 4 in On the taxonomic identity of Pteronotus davyi incae Smith, 1972 (Chiroptera: Mormoopidae)
FIGURE 4. Plots of multivariate analyses showing the position of individuals of Pteronotus fulvus (red), P. davyi davyi (blue) and P. d. incae (orange) in the morphometric space. A, PCA: plot of the first and second principal components (PC1 × PC2). B, DFA: plot of the first and second discriminant functions (DF1 × DF2).
FIGURE 2 in On the taxonomic identity of Pteronotus davyi incae Smith, 1972 (Chiroptera: Mormoopidae)
FIGURE 2. Bayesian inference phylogram using the concatenated dataset (CO1 + cyt-b) showing the position of the Pteronotus d. incae specimen (MUSM 34626) within the clade comprising all individuals of P. d. davyi.
Fig. 10 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 10. Ventral view of the hand of Mormoops megalophylla (redrawn from Vaughan and Bateman,
Fig. 3 in Phylogenetic Relationships Of Mormoopid Bats (Chiroptera: Mormoopidae) Based On Morphological Data
Fig. 3. Dorsal (A), ventral (B), and lateral (C) views of the skull of Pteronotus pristinus (ROM
Fig. 4 in Integrating multiple evidences in taxonomy: species diversity and phylogeny of mustached bats (Mormoopidae: Pteronotus)
Fig. 4. Species tree for the genus Pteronotus estimated from the complete dataset, depicting the relationships among major clades according to the multispecies coalescent approach. Names of terminals incorporate results of Fig. 3 and correspond to our new proposed hypothesis of species diversity in the genus Pteronotus (for more details, see text).
Distribution. From S Mexico S in Mormoopidae
Distribution. From S Mexico S along Central America, Caribbean coast of South America, and the Guianas to C & NE Brazil, E Peru, and NE Bolivia.
On following pages: 3. Davy's Naked-backed Bat (Pteronotus davyi); 4. Thomas's Naked-backed Bat (Pteronotus fulvus); 5. Big Naked-backed Bat (Pteronotus gymnonotus); 6. Macleay's Mustached Bat (Pteronotus macleayii), 7. Sooty Mustached Bat (Pteronotus quadridens); 8. Wagner's Lesser Mustached Bat (Pteronotus personatus); 9. Dobson's Lesser Mustached Bat (Pteronotus psilotis); 10. Parnell's Common Mustached Bat (Pteronotus parnellii); 11. Hispaniolan Common Mustached Bat (Pteronotus pusillus); 12. Puerto Rican Common Mustached Bat (Pteronotus portoricensis); 13. Mexican Common Mustached Bat (Pteronotus mexicanus); 14. Mesoamerican Common Mustached Bat (Pteronotus mesoamericanus); 15. Allen's Common Mustached Bat (Pteronotus fuscus); 16. Paraguana Common Mustached Bat (Pteronotus paraguanensis); 17. Wagner's Common Mustached Bat (Pteronotus rubiginosus); 18. Amazonian Common Mustached Bat (Pteronotus alitonus). in Mormoopidae
On following pages: 3. Davy's Naked-backed Bat (Pteronotus davyi); 4. Thomas's Naked-backed Bat (Pteronotus fulvus); 5. Big Naked-backed Bat (Pteronotus gymnonotus); 6. Macleay's Mustached Bat (Pteronotus macleayii), 7. Sooty Mustached Bat (Pteronotus quadridens); 8. Wagner's Lesser Mustached Bat (Pteronotus personatus); 9. Dobson's Lesser Mustached Bat (Pteronotus psilotis); 10. Parnell's Common Mustached Bat (Pteronotus parnellii); 11. Hispaniolan Common Mustached Bat (Pteronotus pusillus); 12. Puerto Rican Common Mustached Bat (Pteronotus portoricensis); 13. Mexican Common Mustached Bat (Pteronotus mexicanus); 14. Mesoamerican Common Mustached Bat (Pteronotus mesoamericanus); 15. Allen's Common Mustached Bat (Pteronotus fuscus); 16. Paraguana Common Mustached Bat (Pteronotus paraguanensis); 17. Wagner's Common Mustached Bat (Pteronotus rubiginosus); 18. Amazonian Common Mustached Bat (Pteronotus alitonus).
Distribution. Mexico, along Gulf Coast, in Isthmus of Tehuantepec, and Yucatan Peninsula, S to Canal Zone, Panama. in Mormoopidae
Distribution. Mexico, along Gulf Coast, in Isthmus of Tehuantepec, and Yucatan Peninsula, S to Canal Zone, Panama.
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