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FIGURE 5 in DNA barcoding of Vietnamese bent-toed geckos (Squamata: Gekkonidae: Cyrtodactylus) and the description of a new species
FIGURE 5. Holotype of Cyrtodactylus puhuensis sp. nov. Precloacal-femoral area (A), ventral surface of tail (B), and lateral (C), dorsal (D), and ventral (E) views of head.
FIGURE 6 in Cyrtodactylus saiyok sp. nov., a new dry evergreen forest-dwelling Bent-toed Gecko (Squamata: Gekkonidae) from Kanchanaburi Province, western Thailand
FIGURE 6. Macrohabitat at the type locality of Cyrtodactylus saiyok sp. nov.. Photo. by N. Panitvong.
FIGURE 5 in Cyrtodactylus saiyok sp. nov., a new dry evergreen forest-dwelling Bent-toed Gecko (Squamata: Gekkonidae) from Kanchanaburi Province, western Thailand
FIGURE 5. Map of Thailand showing the position of the type locality of Cyrtodactylus saiyok sp. nov. (red dot).
FIGURE 1 in Cyrtodactylus saiyok sp. nov., a new dry evergreen forest-dwelling Bent-toed Gecko (Squamata: Gekkonidae) from Kanchanaburi Province, western Thailand
FIGURE 1. Type series of Cyrtodactylus saiyok sp. nov., dorsal view (holotype below). Photo. by O.S.G. Pauwels.
FIGURE 2 in Cyrtodactylus saiyok sp. nov., a new dry evergreen forest-dwelling Bent-toed Gecko (Squamata: Gekkonidae) from Kanchanaburi Province, western Thailand
FIGURE 2. Type series of Cyrtodactylus saiyok sp. nov., ventral view (holotype below). Photo. by O.S.G. Pauwels.
FIGURE 3 in Cyrts in the city: A new Bent-toed Gecko (Genus Cyrtodactylus) is the only endemic species of vertebrate from Batu Caves, Selangor, Peninsular Malaysia
FIGURE 3. Cyrtodactylus metropolis sp. nov. Upper; holotype LSUHC 11347. Lower left; holotype LSUHC 11343. Lower right; paratype LSUHC 11342.
FIGURE 2. Inferred phylogenetic relationship within the C in Cyrts in the city: A new Bent-toed Gecko (Genus Cyrtodactylus) is the only endemic species of vertebrate from Batu Caves, Selangor, Peninsular Malaysia
FIGURE 2. Inferred phylogenetic relationship within the C. sworderi complex. The tree is a Maximum likelihood topology (- ln L 13731.665952) with Bayesian Posterior probabilities and Maximum Likelihood bootstrap values respectively.
FIGURE 3 in A new species of gecko of the genus Cnemaspis Strauch, 1887 from the Western Ghats, India
FIGURE 3. Map showing Kaas plateau (red square), the type locality of C. girii sp. nov. in Satara district of Maharashtra.
FIGURE 6 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 6. Holotype of Uroplatus phantasticus (BMNH 1946.8.26.64) photographed in 2011 in various views; A–B: overview of the dorsal and ventral sides, C–D: dorsal and ventral view of the head, E–F: open mouth for the oral mucosa observation and lateral view of the head.
FIGURE 4 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 4. Boxplots showing variation in two meristic counts and two morphometric ratios in the specimens studied herein of all described species of the Uroplatus ebenaui group, plus the newly described U. fiera and the candidate species U. ebenaui [Ca1]. Information on its phylogenetically closest relative U. ebenaui [Ca8] is not available. SE = Standard error. For additional abbreviations see Materials and Methods.
FIGURE 1 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 1. Bayesian inference tree of the Uroplatus ebenaui group based on a 2313 bp fragment of four concatenated mitochondrial gene fragments (ND4, 12SrRNA, 16SrRNA, COX1). Only posterior probability values of 0.95 or greater are displayed at nodes. Shaded boxes indicate nominal species, undescribed candidate species reside outside such box. An outgroup (U. alluaudi) was used for rooting but omitted from the tree for graphical reasons. The inset map shows distribution of the new species U. fiera and related species; for more detailed distribution maps of all species of the U. ebenaui group refer to Ratsoavina et al. (2013).
FIGURE 3 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 3. Tails of specimens of all described species of the Uroplatus ebenaui group, plus the newly described U. fiera and the candidate species U. ebenaui [Ca1] (no voucher specimens or photos could be examined for U. ebenaui [Ca8] which is phylogenetically the closest lineage to U. fiera). All tails sized to scale (scale bar 2 mm). Female specimens are labelled with F in parentheses. All other specimens are males.
FIGURE 2 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 2. Median joining network reconstructed from haplotypes of a 400 bp fragment of the nuclear CMOS gene for the described species of the Uroplatus ebenaui group, plus the newly described U. fiera and its closest relatives, the candidate species U. ebenaui [Ca1] and [Ca8]. Haplotypes were inferred using the PHASE algorithm. After each species name, the haplotypes assigned to this species are listed. Bars and small black dots represent mutational steps and circle size refers to number of haplotype sequences involved and summarized at the bottom of the network diagram.
FIGURE 9 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 9. Photos of everted hemipenes of two males of Uroplatus fiera: holotype ZSM 213/2014 (FRC 619) and paratype ZSM 212/2014 (FRC 618). Not to scale.
FIGURE 5 in A new leaf-tailed gecko of the Uroplatus ebenaui group (Squamata: Gekkonidae) from Madagascar's central eastern rainforests
FIGURE 5. Number of adhesive lamellae under the third toe (LAM3T) in U. fiera sp. nov. and U. ebenaui, showing smaller numbers of lamellae in the latter.
FIGURE 5 in Cyrtodactylus rosichonariefi sp. nov. (Squamata: Gekkonidae), a new swamp-dwelling bent-toed gecko from Bunguran Island (Great Natuna), Indonesia
FIGURE 5. Microhabitat of Cyrtodactylus rosichonareifi sp. nov. within the Sekunyam Forest, Bunguran Island, Indonesia.
FIGURE 3 in Cyrtodactylus rosichonariefi sp. nov. (Squamata: Gekkonidae), a new swamp-dwelling bent-toed gecko from Bunguran Island (Great Natuna), Indonesia
FIGURE 3. Specimens of Cyrtodactylus rosichonariefi sp. nov. (A) Holotype (MZB.Lace.12132), adult male, SVL 54.6mm. (B) Lateral view of head the holotype showing the eye, with a reddish brown iris and yellow supraciliaries. (C) Paratype (MZB.Lace.12133), subadult male, SVL 45.9 mm. (D) Lateral view of head the paratype.
FIGURE 1 in Cyrtodactylus rosichonariefi sp. nov. (Squamata: Gekkonidae), a new swamp-dwelling bent-toed gecko from Bunguran Island (Great Natuna), Indonesia
FIGURE 1. Location of Bunguran (Great Natuna) Island in the South China Sea. Closed red circle is type locality of Cyrtodactylus rosichonariefi sp. nov. Closed yellow circles are known localities of C. hikidai. Closed green circles are known localities of C. majulah. Closed brown circles are known localities of C. payacola. Closed pink circle is type locality of C. metropolis. Closed purple circle is type locality of C. pantiensis.
FIGURE 4 in Cyrtodactylus rosichonariefi sp. nov. (Squamata: Gekkonidae), a new swamp-dwelling bent-toed gecko from Bunguran Island (Great Natuna), Indonesia
FIGURE 4. Detailed illustrations of the holotype of Cyrtodactylus rosichonariefi sp. nov (MZB.Lace.12132). (A) Lateral view of head. (B) Ventral view of the head, showing patterns of mental, postmental, and smooth scales on the throat. (C) Snout region, showing rostral and supranaries scales. (D) Ventral view of right palmar, showing scales on palmar surface. (E) Ventral view of right pes, showing scales on the plantar surface. (F) Cloacal region, showing the absence of precloacal pores, enlarged femoral scales, and femoral pores.
FIGURE 2 in Cyrtodactylus rosichonariefi sp. nov. (Squamata: Gekkonidae), a new swamp-dwelling bent-toed gecko from Bunguran Island (Great Natuna), Indonesia
FIGURE 2. Phylogram of the relationships of the species within the Cyrtodactylus semenanjungensis complex. The tree is a Maximum Likelihood topology (-ln L 13709.785816) with Maximum Likelihood bootstrap values. Bayesian posterior probabilities are 1.0 at all nodes and not shown on the tree.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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