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32 results for “Oreobates”
FIG. 1 in A revision of species diversity in the Neotropical genus Oreobates (Anura: Strabomantidae), with the description of three new species from the Amazonian slopes of the Andes
FIG. 1. Main tree (left and right pages): one of 16 equally optimal maximum parsimony trees with branch length depicting phylogenetic relationships of species of Oreobates (3936 steps; differences with the strict consensus only affect unresolved intraspecific relationships). Schematic tree (far left): maximum likelihood best tree topology for 145 terminals of Strabomantid frogs inferred from the 16S rRNA barcode fragment of amphibians (see methods). Numbers above nodes for both trees are maximum parsimony bootstrap values followed by maximum likelihood bootstrap values.
Figure 4 in Systematics of Oreobates and the Eleutherodactylus discoidalis species group (Amphibia, Anura), based on two mitochondrial DNA genes and external morphology
Figure 4. Type localities of members of Oreobates: (1) O. quixensis, San José de Moti, Prov. Napo, Ecuador; (2) O. simmonsi, Río Piuntza, 1830 m a.s.l., Cordillera del Cóndor, Prov. Morona-Santiago, Ecuador; (3) O. saxatilis, Ponga de Shilcayo, 470 m a.s.l., Department San Martín, Peru; (4) O. lehri, Apurimac River Valley, 2445 m a.s.l., Department Cusco, Peru; (5) O. granulosus, Santo Domingo, Carabaya, Department Puno, Peru, 1800 m a.s.l.; (6) O. madidi, Arroyo Huacataya, Serranía Eslabón, 1500 m a.s.l., Department La Paz, Bolivia; (7) O. sanderi, Arroyo Bilunto, Chunirumi Valley, 1800 m a.s.l., near Santa Cruz de Valle Ameno, Department La Paz, Bolivia; (8) O. zongoensis, Valle de Zongo, 1250 m a.s.l., Department La Paz, Bolivia; (9) O. choristolemma, Serranía de Bellavista c. 1000 m a.s.l., Department La Paz, Bolivia; (10) O. cruralis, Department La Paz, Bolivia, 4000 m a.s.l. (in error); (11) O. heterodactylus, gruta Facendinha, State Mato-Grosso, Brazil; (12) O. ibischi, km 68.5 on Santa Cruz de la Sierra-Samaipata road c. 750 m a.s.l., Department Santa Cruz, Bolivia; (13) O. sanctaecrucis, El Chapé, Department Santa Cruz, Bolivia, 2060 m a.s.l.; (14) O. discoidalis, Tucumán, Prov. Tucumán, Argentina.
Figure 6 in Systematics of Oreobates and the Eleutherodactylus discoidalis species group (Amphibia, Anura), based on two mitochondrial DNA genes and external morphology
Figure 6. Type specimens of some members of Oreobates. A–B, holotype of O. cruralis (BM 1947.2.15.70); C–D, holotype of O. simmonsi (KU 147068); E–F, paralectotype of O. discoidalis (BM 1947.2.15.63); G–H, holotype of O. granulosus (BM 1947.2.15.72); I–J, lectotype of O. quixensis (MNCN 1708).
Figure 1 in Systematics of Oreobates and the Eleutherodactylus discoidalis species group (Amphibia, Anura), based on two mitochondrial DNA genes and external morphology
Figure 1. Majority rule consensus tree based on maximum parsimony (MP) and Bayesian phylogenetic analyses of combined data from the partial cytochrome b (c. 350 bp) and 16S (c. 590 bp) mitochondrial DNA. The numbers above branches indicate boostrap support (± 50%) for the MP topology, followed by Bayesian posterior probabilities for the Bayesian topology (± 95).
Figure 2 in Systematics of Oreobates and the Eleutherodactylus discoidalis species group (Amphibia, Anura), based on two mitochondrial DNA genes and external morphology
Figure 2. Majority rule consensus tree based on Bayesian phylogenetic analyses of partial 16S (c. 590 bp) mitochondrial DNA of some members of the genera Oreobates, Eleutherodactylus, and Craugastor. The numbers above branches are Bayesian posterior probabilities, followed by boostrap support for maximum parsimony topology. Values lower than 0.90 Bayesian posterior probability, or lower than 60 for boostrap, are not depicted.
Figure 5 in Systematics of Oreobates and the Eleutherodactylus discoidalis species group (Amphibia, Anura), based on two mitochondrial DNA genes and external morphology
Figure 5. Altitudinal distribution across habitat types of members of the genus Oreobates.
FIGURE 3. Eleutherodactylus verrucosus, MNRJ 16137 in Reassessment of the taxonomic status of the genera Ischnocnema Reinhardt and Lütken, 1862 and Oreobates JiménezdelaEspada, 1872, with notes on the synonymy of Leiuperus verrucosus Reinhardt and Lütken, 1862 (Anura: Leptodactylidae)
FIGURE 3. Eleutherodactylus verrucosus, MNRJ 16137. Dorsal and lateral views of head; ventral views of hand and foot; scale bars represent 5 mm.
FIGURE 2 in Reassessment of the taxonomic status of the genera Ischnocnema Reinhardt and Lütken, 1862 and Oreobates JiménezdelaEspada, 1872, with notes on the synonymy of Leiuperus verrucosus Reinhardt and Lütken, 1862 (Anura: Leptodactylidae)
FIGURE 2. Eleutherodactylus verrucosus (MNRJ 34899), adult female from Santa Teresa, State of Espírito Santo, Southeastern Brazil.
FIGURE 1 in Reassessment of the taxonomic status of the genera Ischnocnema Reinhardt and Lütken, 1862 and Oreobates JiménezdelaEspada, 1872, with notes on the synonymy of Leiuperus verrucosus Reinhardt and Lütken, 1862 (Anura: Leptodactylidae)
FIGURE 1. Distribution of Eleutherodactylus verrucosus in the states of Espírito Santo and Minas Gerais, Southeastern Brazil.
FIGURE 2 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 2. Holotype (MZUSP 141708) of Oreobates remotus sp. nov.: Lateral (A), dorsal (B) views of the head; Foot (C) and hand (D). Scale bar = 5 mm.
FIGURE 5 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 5. Habitats: General view of the dry forest during rainy season (A), and during the dry season (B); Limestone outcrops ("Rochedo") within the dry forest where adult males of Oreobates remotus sp. nov. were found calling, and where the holotype was collected (C).
FIGURE 8 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 8. Bayesian consensus tree topology obtained from the combined molecular data set (cyt b and 16S) showing the placement of Oreobates remotus sp. nov. within Oreobates, and as sister taxon of O. heterodactylus. Numbers above nodes are posterior probabilities.
FIGURE 3 in A relict new species of Oreobates (Anura, Strabomantidae) from the Seasonally Dry Tropical Forests of Minas Gerais, Brazil, and its implication to the biogeography of the genus and that of South American Dry Forests
FIGURE 3. Adult paratopotypes of Oreobates remotus sp. nov. in life: (A) Male (MZUSP 141711) and (B) female (MZUSP 141710).
FIGURE 6 in A new cryptic species of Oreobates (Anura: Craugastoridae) from the seasonally dry tropical forest of central Brazil
FIGURE 6. Landscape of calcareous rock outcrops (A and B) in the São Domingos municipality, state of Goiás, type locality of Oreobates antrum sp. nov. Photos by C.F. Rocha.
FIGURE 5 in A new cryptic species of Oreobates (Anura: Craugastoridae) from the seasonally dry tropical forest of central Brazil
FIGURE 5. Map showing the type locality of the Oreobates antrum sp. nov. (black star), São Domingos municipality, Brazil. DF = Federal District; GO = State of Goiás; TO = State of Tocantins; BA = State of Bahia; MG = State of Minas Gerais.
FIGURE 3 in A new cryptic species of Oreobates (Anura: Craugastoridae) from the seasonally dry tropical forest of central Brazil
FIGURE 3. Color patterns in live specimens of Oreobates antrum sp. n. from the type locality at São Domingos, State of Goiás. Dorsum light brown (A) and reddish-brown (B), absence of dorsolateral bar (C), dorsolateral longitudinal stripes from post-ocular to sacral regions (D), diagonal labial bars slightly faded (E), light brown blotches between the eyes and nostrils (F). Photos by D.L. Santos, S.P. Andrade and E.P. Victor-Junior.
FIGURE 4 in A new cryptic species of Oreobates (Anura: Craugastoridae) from the seasonally dry tropical forest of central Brazil
FIGURE 4. Power spectrum (above), oscillogram (middle), and corresponding spectrogram (below) of a single call of the Oreobates antrum sp. nov. from type-locality at municipality of São Domingos, state of Goiás, Brazil. Recorded on 01 December 2013 at 21:07h. Air temperature 19°C, relative air humidity 85%.
FIGURE 1 in A new cryptic species of Oreobates (Anura: Craugastoridae) from the seasonally dry tropical forest of central Brazil
FIGURE 1. Consensus tree of Bayesian (A) and maximum likelihood (B) phylogenetic trees inferred from the combined dataset of 2132 bp of the 12S, 16S, RAG-1 and TYR genes. Branches values correspond to posterior probabilities in Bayesian inference (A) and bootstrap in maximum likelihood (B). Only values higher than 0.95 (BC) and 70% (ML) were considered. Branches in red indicate specimens of the new species (Oreobates antrum sp. nov.).
FIGURE 2 in A new cryptic species of Oreobates (Anura: Craugastoridae) from the seasonally dry tropical forest of central Brazil
FIGURE 2. Oreobates antrum sp. nov. Dorsal (A) and lateral (B) views of the head, palmar (C) and plantar (D) views of the Holotype (MNRJ 91628). Bars = 3 mm.
FIGURE 5 in A new species of Oreobates (Anura: Strabomantidae) from the Andes of northern Argentina
FIGURE 5. Oscillogram and sound spectrogram of advertisement call of Oreobates discoidalis from Abra de Cañas, northern Argentina (MCN 361, SVL 27.7 mm), recorded on 08 November 1996. Air temperature during recording 20.2 °C.
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