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256 results for “Salamandridae”
Figure 11 from: Bernardes M, Le MD, Nguyen TQ, Pham CT, Pham AV, Nguyen TT, Rödder D, Bonkowski M, Ziegler T (2020) Integrative taxonomy reveals three new taxa within the Tylototriton asperrimus complex (Caudata, Salamandridae) from Vietnam. ZooKeys 935: 121-164. https://doi.org/10.3897/zookeys.935.37138
Figure 11 Tylototriton sparreboomi sp. nov. (holotype). In sequence: dorsal view; ventral view; lateral view; and detail of dorsal view of the head. Photographs T. Ziegler.
Figure 6 from: Bernardes M, Le MD, Nguyen TQ, Pham CT, Pham AV, Nguyen TT, Rödder D, Bonkowski M, Ziegler T (2020) Integrative taxonomy reveals three new taxa within the Tylototriton asperrimus complex (Caudata, Salamandridae) from Vietnam. ZooKeys 935: 121-164. https://doi.org/10.3897/zookeys.935.37138
Figure 6 Boxplot of the most differing characters related to head and dorsal values between taxon 1, taxon 2, and taxon 3. Characters were corrected to SVL and log–transformed. For abbreviations see Materials and methods.
Figure 8 from: Bernardes M, Le MD, Nguyen TQ, Pham CT, Pham AV, Nguyen TT, Rödder D, Bonkowski M, Ziegler T (2020) Integrative taxonomy reveals three new taxa within the Tylototriton asperrimus complex (Caudata, Salamandridae) from Vietnam. ZooKeys 935: 121-164. https://doi.org/10.3897/zookeys.935.37138
Figure 8 Tylototriton pasmansi sp. nov. (holotype). In sequence: dorsal view; ventral view; lateral view; and detail of dorsal view of the head. Photographs T. Ziegler.
FIGURE 4 in A new species of Paramesotriton (Caudata: Salamandridae) from Guizhou Province, China
FIGURE 4. The scent gland of Paramesotriton zhijinensis (red arrow).
FIGURE 6 in A new species in the Tylototriton asperrimus group (Caudata: Salamandridae) from central Laos
FIGURE 6. Habitat of Tylototriton notialis at the type locality.
FIGURE 4 in Description of a new species of crested newt, previously subsumed in Triturus ivanbureschi (Amphibia: Caudata: Salamandridae)
FIGURE 4. The type locality of Triturus anatolicus sp. nov. at Gölköy, Turkey.
Figure 7 from: Pomchote P, Peerachidacho P, Hernandez A, Sapewisut P, Khonsue W, Thammachoti P, Nishikawa K (2021) A new species of the genus Tylototriton (Urodela, Salamandridae) from western Thailand. ZooKeys 1072: 83-105. https://doi.org/10.3897/zookeys.1072.75320
Figure 7 Habitat at the type locality of Tylototriton umphangensis sp. nov. at Umphang Wildlife Sanctuary, Tak Province, western Thailand.
Figure 6 from: Pomchote P, Peerachidacho P, Hernandez A, Sapewisut P, Khonsue W, Thammachoti P, Nishikawa K (2021) A new species of the genus Tylototriton (Urodela, Salamandridae) from western Thailand. ZooKeys 1072: 83-105. https://doi.org/10.3897/zookeys.1072.75320
Figure 6 The PCA plots of PC1 vs PC2 for morphometric parameters between the UPWS population (Tylototriton umphangensis sp. nov. described herein) (circle) and specimens of T. uyenoi (triangle).
Figure 5 from: Pomchote P, Peerachidacho P, Hernandez A, Sapewisut P, Khonsue W, Thammachoti P, Nishikawa K (2021) A new species of the genus Tylototriton (Urodela, Salamandridae) from western Thailand. ZooKeys 1072: 83-105. https://doi.org/10.3897/zookeys.1072.75320
Figure 5 Holotype (CUMZ-A-8243) and paratypes (CUMZ-A-8244, CUMZ-A-8245, and CUMZ-A-8246) of Tylototriton umphangensis sp. nov. before preservation. A dorsal view B ventral view. Scale bar: 20 mm.
Figure 2 from: Pomchote P, Peerachidacho P, Hernandez A, Sapewisut P, Khonsue W, Thammachoti P, Nishikawa K (2021) A new species of the genus Tylototriton (Urodela, Salamandridae) from western Thailand. ZooKeys 1072: 83-105. https://doi.org/10.3897/zookeys.1072.75320
Figure 2 Bayesian inference tree based on the partial ND2 gene for the samples examined. Numbers above branches represent the bpp/bs, and asterisks indicate nodes with bpp ≥ 0.95 and bs ≥ 70%. Numbers at branches tips are the sample numbers, as shown in Table 1. Scale bar = 0.04 substitutions/site.
Figure 4 from: Pomchote P, Peerachidacho P, Hernandez A, Sapewisut P, Khonsue W, Thammachoti P, Nishikawa K (2021) A new species of the genus Tylototriton (Urodela, Salamandridae) from western Thailand. ZooKeys 1072: 83-105. https://doi.org/10.3897/zookeys.1072.75320
Figure 4 The male holotype of Tylototriton umphangensis sp. nov. and other specimens of T. uyenoi in preservative. A Holotype specimen of Tylototriton umphangensis sp. nov. (CUMZ-A-8243) B Topotypic specimen of T. uyenoi (THNHM 10319) from Doi Suthep-Doi Pui NP, Chiang Mai Province C specimen of T. uyenoi (THNHM 13866) from Doi Inthanon NP, Chiang Mai Province A1–C1 dorsal view of the body. A2–C2 ventral view of the body. A3–C3 dorsal view of the head A4–C4 lateral view of the head. Scale bars: 20 mm (A1–C1, A2–C2); 10 mm (A3–C3, A4–C4).
Figure 1 from: Pomchote P, Peerachidacho P, Hernandez A, Sapewisut P, Khonsue W, Thammachoti P, Nishikawa K (2021) A new species of the genus Tylototriton (Urodela, Salamandridae) from western Thailand. ZooKeys 1072: 83-105. https://doi.org/10.3897/zookeys.1072.75320
Figure 1 Localities for the Tylototriton umphangensis sp. nov., (circle = type locality) at Umphang Wildlife Sanctuary, Tak Province and the distribution of its closely related species. T. uyenoi (number) in Thailand: 1 Namtok Mae Surin NP, Mae Hong Son Province 2 Doi Mak Lang 3 Doi Ang Khang 4 Chiang Dao WS 5 Doi Suthep-Pui 6 Doi Chang Kien 7 Doi Inthanon 8 Doi Mon Jong, Chiang Mai Province 9 Doi Soi Malai, Tak Province and 10 Khao Laem NP, Kanchanaburi Province. NP = National Park and WS = Wildlife Sanctuary. The map is modified by N. Taewcharoen.
Figure 3 in A new species of the genus Tylototriton (Amphibia: Urodela: Salamandridae) from the Eastern Dalou Mountains in Guizhou, China
Figure 3. Plots of the first principal component (PC 1) versus the second (PC 2) for Tylototriton daloushanensis Zhou, Xiao & Luo, sp. nov. and its genetically closely-related species from a principal component analysis. A. Male. B. Female.
Figures 11-14 from: Vaissi S, Parto P, Sharifi M (2017) Anatomical and histological study of the liver and pancreas of two closely related mountain newts Neurergus microspilotus and N. kaiseri (Amphibia: Caudata: Salamandridae). Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e13229
Figures 11-14 - Pancreas of N. kaiseri. (11) Pancreas is a triangular organ and it's situated in the curvature of duodenum. (12) Its composed of numerous masses of exocrine acini (black arrow) which secret digestion enzyme. Langerhounse Island (white arrow) is also present (H&E, ×1000). (13) Acini (arrow) is enzyme secreting units of exocrine portion of pancreas. Each acinius is an ovoid elliptical cluster of pyramid-shaped secretory cells surrounding the lumen. In the apical portion of the cells these are aggregated bright eosinophilic zymogens granules. The round or flattened cell nuclei are located basally (H&E, ×4000). (14) Pancreatic acini drain into a branched system of variously sized ducts. In this Image the duct (arrow) is surrounded by a simple cuboidal epithelium (H&E, ×2500).
Figures 9-10 from: Vaissi S, Parto P, Sharifi M (2017) Anatomical and histological study of the liver and pancreas of two closely related mountain newts Neurergus microspilotus and N. kaiseri (Amphibia: Caudata: Salamandridae). Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e13229
Figures 9-10 - (9) Gall bladder of N. microspilotus (H&E, ×300). (10) Gall bladder wall consists of a simple columnar epithelium (arrow) supported by underlying fibrovascular lamina propria submucosa (LPS) (H&E, ×2500). The epithelial cells are very tall and possess elongated nuclei basally located. These lining cells consecrate bile. (GB) Gall bladder, (P) Pancreas, (TM) Tunica muscularis.
Figures 1-4 from: Vaissi S, Parto P, Sharifi M (2017) Anatomical and histological study of the liver and pancreas of two closely related mountain newts Neurergus microspilotus and N. kaiseri (Amphibia: Caudata: Salamandridae). Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e13229
Figures 1-4 - The liver of N. microspilotus (1, 2) and N. kaiseri (3, 4). (1, 3) Dorsal surface; (2–4) ventral surface. (R) Right, (L) left, (AL) accessory lobe, (GB) gall bladder.
Figures 5-8 from: Vaissi S, Parto P, Sharifi M (2017) Anatomical and histological study of the liver and pancreas of two closely related mountain newts Neurergus microspilotus and N. kaiseri (Amphibia: Caudata: Salamandridae). Zoologia 34: 1-8. https://doi.org/10.3897/zoologia.34.e13229
Figures 5-8 - Liver of N. microspilotus. (5) The liver tissue demonstrates the sponge-like appearance of the parenchyma, which is composed of polyhedral hepatocyts. Numerous dark brown spots are small melanomacrophage centers (H&E, ×1000). (6) Cords of hepatocyte separated by sinusoids (arrows) containing erythrocyte. Hepatocytes are large cells with central nuclei (H&E, ×4000). (7) Central vein (*) and intrahepatic ducts (arrow) are seen in this picture (H&E, ×2500). (8) Liver parenchyma (PAS, ×1000). One of the liver's most metabolic functions is storage of glycogen. At this high magnification, one can see that the hepatocytes are strongly stained in magenta by the PAS method; this reaction reveals the presence of red granules including glycogen.
FIGURE 5 in Morphological and genetic diversification of Old-World marbled newts, with the description of a new and 'not-at-all-cryptic' subspecies from the Iberian Peninsula (Triturus, Salamandridae)
FIGURE 5 Results of a principal component analysis on size corrected morphometric data for Triturus pygmaeus pygmaeus (solid lines) and T. p. lusitanicus ssp. nov. (interrupted lines). The ellipses show the 95% confidence interval of the mean. The left panel is for males and the right panel is for females. Percentages of total variance explained are indicated along the axes. For details, see text.
FIGURE 3 in Morphological and genetic diversification of pygmy and marbled newts, with the description of a new species from the wider Lisbon Peninsula (Triturus, Salamandridae)
FIGURE 3 (A) Genetically investigated populations of large-bodied newts from the western part of the Iberian Peninsula plotted with the nearest point method, with a maximum spatial extrapolation of ca. 25 km. Colour codes are: blue – T. marmoratus, red – T. pygmaeus and ochre – T. rudolfi sp. nov. Inferred hybrid populations of T. marmoratus and 'T. pygmaeus' are shown in grey (as in fig. 2). Note that populations from densely sampled areas do not always stand out separately. Five populations from along the lower Tejo area added a posteriori are shown by black dots. The boxed area in between 39.3-39.7 N encompasses the transect studied for spatial variation in morphometrics (35 populations), Nlinks (35 populations), mitochondrial DNA (69 populations) and nuclear genetic composition (82 populations) with HZAR software (for results see fig. 4). The nominal centre of the T. pygmaeus – T. rudolfi sp. nov. hybrid zone is at Entroncamento railway station (E, coordinates -8.478 E, 39.456 N). (B) Dirichlet tessellation of populations studied for variation in nuclear genetic composition, with colours like above. The yellow to red colour bar corresponds to the one shown in fig. 4. Distances in km are relative to Entroncamento railway station. Downloaded from Brill.com 07/10/2024 02:01:22PM via Open Access. This is an open access article distributed under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/
Fig. 1 in A new case of facultative paedomorphosis in Smooth Newts, Lissotriton vulgaris (Caudata: Salamandridae), in Turkey
Fig. 1. The map of Gediz Delta (Izmir, Turkey). 1: Kumköy, Istanbul, 2: Küçükçekmece, Istanbul, 3: Ihsaniye, Karasu, Sakarya, 4: Lake Sülüklü, Manisa, 5: Lake Ikiz, Izmir, The star shows the record (Lake Sazli, Gediz Delta, Izmir), The dotted line shows Ramsar protected area borders.
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OpenNeuro
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