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2,620 results for “Molecular Phylogeny”
FIGURE 29 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 29: Tail ventral design. A: Smooth; B: Ring form; C: Melanic or with the presence of a longitudinal thick black line.
FIGURE 33 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 33: Resultant tree from treatment of binary polymorphic characters like polymorphic and K=3. Length: 88.09347 Cl: 0.223 IR: 0.535
FIGURE 14 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 14: Shape of lateral-superior auricular scale (LSA). A: Absent; B: Presents, with flat shape; C: Present, projected, leaf shaped. EAM: External Auditory Meatus
FIGURE 1 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 1: Hypothesis established by Laurent (1985) for the genus Liolaemus. Modified from Laurent (1985).
FIGURE 36 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 36: Tree found for L.boulengeri group based on the combined analysis among morphological and molecular characters (Total Evidence analysis). Lenght: 4989.201 CI: 0.309 IR: 0.603.
FIGURE 9. A in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 9. A: Differentiated scales, in the lower half of the anterior border of the External Auditory Meatus; B: Differentiated scales in the posterior- upper border of the External Auditory Meatus; LSA: Lateral-superior auricular scale; HeEAM: Heigth of External Auditory Meatus; WEAM: Width of External Auditory Meatus
FIGURE 27 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 27: Tail dorsal design: A: Smooth or with few small spots; B: "Longitudinal stripe"; C: With an striped design; D: Ring form.
FIGURE 19 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 19: Black antehumeral arch: A: Absent; B: Present with lineal disposition; C: Present, divided ventrally in two; D: Present, expanded ventrally.
FIGURE 32 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 32: Resultant tree with binary polymorphic characters, were analyzed like polymorphic and all the characters with equal weight. Length: 1499.900 Cl: 0.235 IR: 0.564
FIGURE 22 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 22: Paravertebrals spots-shape: A: Absent; B: As points, small; C: As circles or prominent subquadrangulars; D: As half-moon, posteriorly opened; E: As a line transverse to body`s axis; F: As a line longitudinal to body`s axis; G: As half-moon, posteriorly opened.
FIGURE 4 in Molecular genetics and phylogeny of Ephippigera species group of genus Saga Charpentier, 1825 (Orthoptera: Ensifera: Saginae) in Anatolia
FIGURE 4. Cladogenetic dating among the Saga genus Ephippigera species group inferred by Bayesian analysis using a relaxed molecular clock.
FIGURE 1 in Molecular genetics and phylogeny of Ephippigera species group of genus Saga Charpentier, 1825 (Orthoptera: Ensifera: Saginae) in Anatolia
FIGURE 1. The geographic position of the Saga genus Ephippigera species group populations included in this study. The light blue shaded area represent the location of S. ephippigera species from literatures, filled shapes represent the location of studied samples from this study, circles represent the records of S. hakkarica; triangle represent the record of S. ephippigera; quadrangle represent the records of S. syriaca.
FIGURE 3 in Molecular genetics and phylogeny of Ephippigera species group of genus Saga Charpentier, 1825 (Orthoptera: Ensifera: Saginae) in Anatolia
FIGURE 3. Phylogenetic relationships among the Saga genus Ephippigera species group inferred by Maximum Likelihood analysis for 16S rDNA gene. Scale refers to the number of substitution per site. Posterior probability (PP) values>0.95 are reported on each node.
FIGURE 2 in Molecular genetics and phylogeny of Ephippigera species group of genus Saga Charpentier, 1825 (Orthoptera: Ensifera: Saginae) in Anatolia
FIGURE 2. Phylogenetic relationships among the Saga genus Ephippigera species group inferred by Bayesian analysis for 16S rDNA gene. Scale refers to the number of substitution per site. Posterior probability (PP) values>0.95 are reported on each node.
FIGURE 1 in Molecular phylogeny of the Sceloporus torquatus species-group (Squamata: Phrynosomatidae)
FIGURE 1. Distribution of Sceloporus torquatus species-group in México, south of United States of America and Guatemala, based on Smith 1938, Wiens et al. (1999) and museum data. Dots represents localities sampled for this study and those reported for each specimens included from GenBank. Numbers represents the taxa included in the analyses: 1. S. bulleri; 2. S. cyanogenys; 3. S. cyanostictus; 4. S. dugesii dugesii; 5. S. d. intermedius; 6. S. insignis; 7. S. jarrovii; 8. S. lineolateralis; 9. S. macdougalli; 10. S. minor; 11. S. mucronatus aureolus; 12. S. mucronatus mucronatus; 13. S. mucronatus omiltemanus; 14. S. oberon; 15. S. ornatus caeruleus; 16. S. ornatus ornatus; 17. S. poinsettii; 18. S. serrifer plioporus; 19. S. serrifer prezygus; 20. S. serrifer serrifer; 21. S. sugillatus; 22. S. torquatus binocularis; 23. S. torquatus melanogaster; 24. S. torquatus torquatus; Sceloporus sp. 1; 26. Sceloporus sp. 2. The abbreviations means: In United States of America: AZ.= Arizona, NM.= New Mexico, TX.= Texas; In Mexico: CHIS.= Chiapas, COAH.= Coahuila, NL.= Nuevo Leon, TMPS.= Tamaulipas VER.= Veracruz and YUC.= Ycatan.
FIGURE 3 in Molecular phylogeny of the Sceloporus torquatus species-group (Squamata: Phrynosomatidae)
FIGURE 3. Bayesian inference tree based on 12S 16S and ND4 mtDNA sequences. Posterior probabilities> 50% and boostrap proportions> 50 % (from the parsimony analysis) are indicated above and below the branches, respectively.
FIGURE 2 in Molecular phylogeny of the Sceloporus torquatus species-group (Squamata: Phrynosomatidae)
FIGURE 2. Srict consensus of 30 trees from the parsimony analysis based on 12S 16S and ND4 mtDNA sequences (length=2254, CI=0.524, RI=0.733). Bootstrap proportions> 50 % are indicated above the branches.
FIGURES 138 in New World direct-developing frogs (Anura: Terrarana): Molecular phylogeny, classification, biogeography, and conservation
FIGURES 138. Body size distributions for species within two genera, Craugastor and Eleutherodactylus.
FIGURE 136 in New World direct-developing frogs (Anura: Terrarana): Molecular phylogeny, classification, biogeography, and conservation
FIGURE 136. Proportion of species in each family of Terrarana, by geographic region. The area of each circle also is proportional to the total number of species in region. Data from Table 1.
FIGURE 137 in New World direct-developing frogs (Anura: Terrarana): Molecular phylogeny, classification, biogeography, and conservation
FIGURE 137. Proportion of species in each genus of Terrarana, by geographic region. Data from Table 1.
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Allen Brain Atlas
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