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1,047 results for “Salamanders”
FIGURE 1 in Description of a New Salamander of the Genus Onychodactylus from Shikoku and Western Honshu, Japan (Amphibia, Caudata, Hynobiidae)
FIGURE 1. Map of western Honshu and Shikoku showing sampling sites of Onychodactylus kinneburi sp. nov. (open star and inverse triangle) and O. japonicus (shaded circles) used in the morphological analysis. A star indicates type locality of the new species and black inverse triangles and black circles indicate other known localities of O. kinneburi and O. japonicus, respectively. A circle with "? " indicates a locality where Onychodactylus population without exact species identification is recorded. For locality numbers, refer to Appendix 2.
FIGURE 2 in Description of a New Salamander of the Genus Onychodactylus from Shikoku and Western Honshu, Japan (Amphibia, Caudata, Hynobiidae)
FIGURE 2. Dorsal and ventral views of male holotype (A and B; KUHE 43194, SVL=75.0 mm) and a female paratype of O. kinneburi sp. nov. (C and D; KUHE 43192, SVL=81.1 mm). Scale bar indicates 20 mm.
FIGURE 6 in Taxonomic revision of the moss salamander Nototriton barbouri (Schmidt) (Caudata: Plethodontidae), with description of two new species from the Cordillera Nombre de Dios, Honduras
FIGURE 6. Digital radiographs of the holotypes of Nototriton nelsoni (A; USNM 578300) and N. oreadorum (B; USNM 497552).
FIGURE 7 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 7. Breeding habitats of Hynobius unisacculus sp. nov., salamanders and egg sacs were found in water-filled ditches and puddles on the fields: (A) typical breeding habitat in environs of the type locality, Naro Islands, Goheung-gun, Jeollanamdo, environs of Dongil-myeon village; (B) breeding habitat at environs of Podu-myeon village, Naro Islands, Goheung-gun, Jeollanam-do.
FIGURE 6 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 6. Holotype of Hynobius unisacculus sp. nov. (CGRB-15401, male) showing coloration in life: (A) dorsolateral view; (B) lateral view.
FIGURE 9 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 9. Known distribution of Hynobius unisacculus sp. nov. (genetically confirmed localities—red dots) and other known localities of H. leechii complex (species assignation requires further studies—grey dots) in offshore islands of southern part of Jeollanam-do, southern Korea. Locality information (all in Jeollanam-do), confirmed localities (this study): 1—Oenarodo Island, Goheung-gun (type locality); 2—Naenaro-do Island, Goheung-gun; 3—Podu-myeon, Goheung-gun; 4—Boseunggun [Boseong]; 5—Suncheon-si; 6—Yeosu-si; unconfirmed localities (data from Chang et al. 2011): 7—Geomun-do (Dongdo) Island; 8—Geomun-do (Seodo) Island; 9—Gogeum-do Island; 10—Saengil-do Island; 11—Sinji-do Island; 12—Cheongsando Island.
FIGURE 8 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 8. Egg sacs of Hynobius unisacculus sp. nov. in environs of the type locality (Naro Islands, Goheung-gun, Jeollanam-do): (A) a single egg sac in situ showing the folded texture of the envelope; (B) a group of egg sacs in situ laid in a roadside ditch; (C) a single egg sac compared with a 500 Korean won coin showing two rows of eggs within the egg sac.
FIGURE 3 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 3. Holotype of Hynobius unisacculus sp. nov. (CGRB-15401, male; filed number MMS-1962) in preservative: (A) dorsal view, (B) ventral view (C) volar view of the left hand, (D) plantar view of the left foot, (E) ventral view of vent.
FIGURE 5 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 5. Mouth cavity of the Hynobius unisacculus sp. nov. holotype (CGRB-15401, male; filed number MMS-1962): (A) photo of mouth cavity in palatal view, (B) schematic drawing of the same mouth showing shape of vomerine tooth series and number of vomerine teeth. Scale bar 1 mm.
FIGURE 4 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 4. Holotype of Hynobius unisacculus sp. nov. (CGRB-15401, male; filed number MMS-1962) in preservative: (A) head in dorsal view, (B) head in ventral view (C) head in lateral view. Scale bar 2 mm.
FIGURE 1 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 1. Distribution of Hynobius salamanders in the Korean Peninsula and phylogenetic position of Hynobius unisacculus sp. nov. The ML tree, modified from Baek et al. (2011), is based on the analyses of 1,706 bp of the concatenated mitochondrial genes (cyt b + 12S rRNA). Nodal values indicate ML bootstrap value and BI posterior probability. Color circles indicate sampling localities from Baek et al. (2011a); black dot in the center indicate type locality.
FIGURE 2 in A new species of salamander of the genus Hynobius (Amphibia, Caudata, Hynobiidae) from South Korea
FIGURE 2. Two-dimensional plots of (A, C) the first two factors of PCA and (B, D) the first and third factors of morphological characters for the Hynobius specimens examined. Data are given separately for males (A, B) and both sexes (C, D). Distribution of Hynobius populations studied morphologically is shown (E). Circle color correspond to that in Figure 1.
FIGURE 4. Box plot showing morphological diagnostic features between B in A new species of Salamander (Caudata, Plethodontidae, Bolitoglossa) from Serranía de los Yariguíes, Colombia
FIGURE 4. Box plot showing morphological diagnostic features between B. yariguiensis and closely related species. Boxes represent the range of proportions (maximum and minimum values) and mean values of the data for males (empty circles) and females (filled squares). Data for B. leandrae was taken from the original description (Acevedo et al. 2013).
FIGURE 5 in A new species of Salamander (Caudata, Plethodontidae, Bolitoglossa) from Serranía de los Yariguíes, Colombia
FIGURE 5. Color pattern variation in Bolitoglossa yariguiensis. Holotype UIS-A 5280, adult female (A, above) and paratype UIS-A 5279, adult female (A, below). Paratype UIS-A 5266, adult male (B). Paratype UIS-A 5281, adult female (C). Paratype UIS-A 5265, adult female (D).
FIGURE 6 in A new species of Salamander (Caudata, Plethodontidae, Bolitoglossa) from Serranía de los Yariguíes, Colombia
FIGURE 6. General view of the type locality of Bolitoglossa yariguiensis (A) and the habitat corresponding to secondary Andean cloud forest where most of type specimens were found (B).
FIGURE 2 in A new species of Salamander (Caudata, Plethodontidae, Bolitoglossa) from Serranía de los Yariguíes, Colombia
FIGURE 2. Maximum likelihood tree of Bolitoglossa (Eladinea) based on the concatenated sequences of 16S rRNA and cyt b genes. The new sequences of the Bolitoglossa species included in this work are highlighted in different colors. Numbers on nodes represent bootstrap support and posterior probabilities, respectively. ML bootstrap support and Bayesian posterior probabilities are shown on the internodes.
FIGURE 1 in A new species of Salamander (Caudata, Plethodontidae, Bolitoglossa) from Serranía de los Yariguíes, Colombia
FIGURE 1. Map of Serranía de los Yariguíes (Santander department, Colombia) showing the distribution of Bolitoglossa yariguiensis (white dot). Insert at left side shows the relative position of Serranía de los Yariguíes within South America and Colombia.
FIGURE 3 in A new species of Salamander (Caudata, Plethodontidae, Bolitoglossa) from Serranía de los Yariguíes, Colombia
FIGURE 3. Bolitoglossa yariguiensis holotype (UIS-A 5280). Ventral (A), lateral (B), and dorsal (C) views of the entire body. Ventral (D), lateral (E), and dorsal views (F) of head. Ventral views of right hand (G) and right foot (H).
Figure 5 in Biogeography and evolution of Central American cloud forest salamanders (Caudata: Plethodontidae: Cryptotriton), with the description of a new species
Figure 5. Results of LAGRANGE analysis of geographic range evolution of Cryptotriton. Results for other genera are not shown. Pies at nodes are colored by the relative probability of each geographic range combination, and squares at tips show the areas currently occupied by each species. Each node has a pie representing the range of the ancestor prior to the speciation event and two pies representing the range of each daughter species immediately after the speciation event.
Figure 3 in Biogeography and evolution of Central American cloud forest salamanders (Caudata: Plethodontidae: Cryptotriton), with the description of a new species
Figure 3. Species tree estimate from *BEAST analysis of nuclear loci. Numbers indicate posterior probability of clades.
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