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484 results for “Liolaemus”
FIGURE 6 in A new species of Liolaemus (Reptilia: Squamata) from southwestern Rio Negro province, northern Patagonia, Argentina
FIGURE 6. Known distribution of Liolaemus casamiquelai (red dots; 1 = Ruta Nacional 23, 14 km W Aguada de Guerra; 2 = eastern edge of Cari Lafquen Chica Lagoon; 3 = along the National Road 23 eastern of Ingeniero Jacobacci town; 4 = 64 km north of Ingeniero Jacobacci along the Provincial Road 6; and 5 = south of Aguada Guzman town, along the Provincial Road 74. The major geographic landmarks are illustrated, and the insert identifies this area in Argentina.
FIGURE 3 in A new species of Liolaemus (Reptilia: Squamata) from southwestern Rio Negro province, northern Patagonia, Argentina
FIGURE 3. Liolaemus casamiquelai (A) and the other species in its clade: L. morenoi (B), L. martorii (C), L. melanops (D), L. goetschi (E), and L. canqueli (F). All males from the type localities. Liolaemus goetschi (type specimen) photograph courtesy of the Zoologische Staatssammlung München through Dr. K. Delhey
FIGURE 1 in A new species of Liolaemus (Reptilia: Squamata) from southwestern Rio Negro province, northern Patagonia, Argentina
FIGURE 1. Liolaemus casamiquelai, holotype adult male (MACN 39042), from southern edge of Ruta Nacional 23, 14 km W Aguada de Guerra, 25 de Mayo Department, Rio Negro province, Argentina.
FIGURE 7 in A new species of Liolaemus (Reptilia: Squamata) from southwestern Rio Negro province, northern Patagonia, Argentina
FIGURE 7. Phylogenetic relationships of the Liolaemus melanops complex with other described members of the fitzingerii group. Numbers above branches are MP bootstrap values.
FIGURE 5 in New species of lizard from the magellanicus clade of the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 5. Morphological comparison between Liolaemus magellanicus (left) and L. caparensis sp. nov. (right). Differences in dorsal scales are shown in blue/light blue, in L. magellanicus scales are more mucronated than in L. caparensis sp. nov.; differences in dorsal scales of hindlimbs are shown in green/light green, in L. magellanicus scales are more mucronated and less carinated than in L. caparensis sp. nov. Notice differences in color pattern on the tails, size of blotches on the limbs, and the differences in vertebral lines.
FIGURE 3 in New species of lizard from the magellanicus clade of the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 3. Type locality of Liolaemus caparensis sp. nov., Subantartic Phytogeographic province, Estepa de Festuca pallescens District (49º 34' 11.0" S, 72º 02' 51.9" W).
FIGURE 4 in New species of lizard from the magellanicus clade of the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 4. Distribution map for species of the magellanicus group, with localities sampled superimposed on regional elevation (shading). White square: Liolaemus caparensis sp. nov.; black squares: distribution of L. magellanicus; black and gray squares: L. magellanicus localities used in this study from LJAMM-CNP collection. Arrow indicates type locality of L. magellanicus (in Chile). SC: Santa Cruz province. Notice L. caparensis sp. nov. distribution does not overlap with the distribution of L. magellanicus (south of the Santa Cruz river).
FIGURE 2 in New species of lizard from the magellanicus clade of the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 2. Upper, dorsal and ventral views of male holotype in life of Liolaemus caparensis sp. nov. MLP.S 2628; below, dorsal and ventral views of female (LJAMM-CNP 9387).
FIGURE 1 in New species of lizard from the magellanicus clade of the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 1. Relationships between Liolaemus caparensis sp. nov. and species of the L. lineomaculatus section and selected species of the subgenus Eulaemus and Liolaemus sensu stricto. On the left, phylogenetic relationships recovered using seven nuclear genes (Cmos, ACM4tg, PRLR, LDA8F, LDA1D, LDA9C and LDA9E, 4180 bp total alignment length) with Bayesian species-tree inference; bold branches represent well supported nodes (Pp> 0.95). On the right, the Bayesian tree (modified from Breitman et al. 2011), represents a concatenated analyses (5865 bp) including the seven nuclear genes plus two mitochondrial genes (12S and cyt-b), and summarizes information from MP and ML methods. Nodes with high support from three methods (MP, jackknife and ML bootstrap>0.70; Bayesian Pp> 0.95) are identified by bold branches; solid circles show nodes with weak MP support, and open circles nodes with weak MP and ML support.
FIGURE 6 in A new species of the Liolaemus darwinii group (Iguania: Liolaemidae) from Salta Province, Argentina
FIGURE 6. Cladogram of the L. darwinii group, proposed for Abdala (2007), based on total evidence analysis of the L. boulengeri group.
FIGURE 5 in A new species of the Liolaemus darwinii group (Iguania: Liolaemidae) from Salta Province, Argentina
FIGURE 5. Map showing the distribution of L. diaguita and the species of the L. darwinii group more close distributed. Black square: L. diaguita. Black circle: L. quilmes. Black triangle: L. espinozai. Black star: L. koslowskyi. Black diamond: L. abaucan. White square: L. albiceps. White circle: L. lavillai. White triangle: L. calchaqui. White star: L. crepuscularis. Arrow indicates the type locality of L. diaguita.
FIGURE 2 in A new species of Liolaemus (Squamata, Iguania, Liolaemini) endemic to the Auca Mahuida volcano, northwestern Patagonia, Argentina
FIGURE 2. Holotype of Liolaemus cyaneinotatus MLP.S 2618, adult male in dorsal and ventral view from Auca Mahuida volcano, Pehuenches Department, Neuquén province, Argentina.
FIGURE 3 in A new species of Liolaemus (Squamata, Iguania, Liolaemini) endemic to the Auca Mahuida volcano, northwestern Patagonia, Argentina
FIGURE 3. Complex landscape of northwestern Neuquén region; red line marks the Liolaemus cyaneinotatus approximate distribution. Yellow broken line mark limits of the Auca Mahuida Volcanic Field. Major mountain ranges, cities, and roads are also marked as reference. Inset: Region in South América.
FIGURE 5 in A new species of Liolaemus (Squamata, Iguania, Liolaemini) endemic to the Auca Mahuida volcano, northwestern Patagonia, Argentina
FIGURE 5. Bayesian consensus tree of relationships of Liolaemus cyaneinotatus with other species of the bibronii group; posterior probability values are shown at each node.
FIGURE 4 in A new species of Liolaemus (Squamata, Iguania, Liolaemini) endemic to the Auca Mahuida volcano, northwestern Patagonia, Argentina
FIGURE 4. Type locality of Liolaemus cyaneinotatus. Upper: general view of the area. Below: close view of the open areas where lizards were collected.
FIGURE 1 in A new species of Liolaemus (Squamata, Iguania, Liolaemini) endemic to the Auca Mahuida volcano, northwestern Patagonia, Argentina
FIGURE 1. Upper: Liolaemus cyaneinotatus, adult male in lateral view, showing cyan spots. Below: Liolaemus bibronii, adult male in lateral view from Puerto Deseado, Deseado Department, Santa Cruz Province (type locality).
FIGURE 7 in Two new species of lizards from the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 7. Upper, dorsal and ventral views of holotype in life of L. avilae sp. nov. MLP.S 2627; below, dorsal and ventral views of female (LJAMM-CNP 9399).
FIGURE 4 in Two new species of lizards from the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 4. Type locality of Liolaemus morandae sp. nov., Patagonic phytogeographic province, del Golfo de San Jorge District (45°41'10,6" S; 67°53'49,9" W, 693 m).
FIGURE 1 in Two new species of lizards from the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 1. Relationships between Liolaemus morandae sp. nov. and L. avilae sp. nov. within the L. lineomaculatus section, and selected species of the subgenus Eulaemus and Liolaemus sensu stricto. On the left, phylogenetic relationships recovered with Bayesian inference using seven nuclear genes (Cmos, ACM4tg, PRLR, LDA8F, LDA1D, LDA9C and LDA9E, 4180 bp total alignment length), bold branches represent well supported nodes (Pp> 0.95). On the right, the Bayesian tree (modified from Breitman et al. 2011) represents a concatenated analyses including the seven nuclear genes plus two mitochondrial genes (12S and cyt-b; 5865 bp) and summarizes information from MP and ML methods. Nodes with high support from three methods (MP, jackknife and ML bootstrap> 0.70; Bayesian Pp> 0.95) are identified by bold branches; solid circles show nodes with weak MP support and open circles nodes with weak MP and ML support.
FIGURE 3 in Two new species of lizards from the Liolaemus lineomaculatus section (Squamata: Iguania: Liolaemidae) from southern Patagonia
FIGURE 3. Upper, dorsal and ventral views of male holotype in life of Liolaemus morandae sp. nov. MLP.S 2626; lower, dorsal and ventral views of female (LJAMM-CNP 13020).
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