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949 results for “Cyrtodactylus”
FIGURE 1 in A new species of Cyrtodactylus Gray (Squamata; Gekkonidae) from the Thai Highlands with a discussion on the evolution of habitat preference
FIGURE 1. Distribution of the species of the Cyrtodactylus sinyineensis group in Thailand and Myanmar.
FIGURE 7 in A new species of Cyrtodactylus Gray (Squamata; Gekkonidae) from the Thai Highlands with a discussion on the evolution of habitat preference
FIGURE 7. Uncatalogued specimen of Cyrtodactylus maelanoi sp. nov. photographed in situ at the type locality of Tha Pha Pum Subdistrict, Mae La Noi District, Mae Hong Son Province, Thailand.
FIGURE 10 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 10. Type localities of members of the C. wayakonei group in the northern highlands of Laos including the newly described Cyrtodactylus ngoiensis sp. nov. and Cyrtodactylus houaphanensis sp. nov., C. spelaeus, C. wayakonei and C. vilaphongi (A). Distribution of Cyrtodactylus species groups, northern karst-related C. wayakonei group, central karst-related C. phongnhakebangensis group and southern non-karst-related C. irregularis group (B).
FIGURE 9 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 9. Morphological comparison of Cyrtodactylus ngoiensis sp. nov. (female paratype: IEBR A.2013.110) and C. dumnuii. Dorsal pattern of C. dumnuii (A); dorsal pattern of Cyrtodactylus ngoiensis sp. nov. (B); arrangement of dorsal tubercles in C. ngoiensis (C); arrangement of dorsal tubercles in C. dumnuii (D). Photos: Bauer et al., 2010 (A and D), A. Teynié (B), N. Schneider (C).
FIGURE 6 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 6. Female specimen (VNUF R.2016.4) of Cyrtodactylus bansocensis from Khammouane Province. Photo: V.Q. Luu.
FIGURE 3 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 3. Details of head (dorsal view (A), lateral view right side (B), ventral view (C), lateral view left side (D)) and cloacal region (E) of the holotype of Cyrtodactylus houaphanensis sp. nov. (IEBR A.2013.109, adult male) in preservative. Photos: N. Schneider.
FIGURE 1 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 1. Bayesian cladogram based on the partial COI gene. Numbers above and below branches are bootstrap values of MP/ML analyses (>50%) and Bayesian posterior probabilities (BC), respectively. Asterisk and hyphen denote 100% value and no support, respectively.
FIGURE 2 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 2. The holotype of Cyrtodactylus houaphanensis sp. nov. (IEBR A.2013.109, adult male) from Houaphan Province. Photo: A. Teynié.
FIGURE 5 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 5. Details of head (dorsal view (A), lateral view right side (B), ventral view (C), lateral view left side (D)) and cloacal region (E) of the holotype of Cyrtodactylus ngoiensis sp. nov. (IEBR 4548, adult male) in preservative. Photos: N. Schneider.
FIGURE 4 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 4. The holotype (IEBR 4548, adult male) (A) and the paratype (IEBR A.2013.110, adult female) (B) of Cyrtodactylus ngoiensis sp. nov. from Luang Prabang Province in life. Photos: A. Teynié and T.Q. Nguyen.
FIGURE 8 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 8. Morphological comparisons of C. puhuensis (A) and Cyrtodactylus houaphanensis sp. nov. (IEBR A.2013.109) (B). Photos: Nguyen, S.N. et al., 2014 (A) and A. Teynié (B).
FIGURE 7 in Two new species of Cyrtodactylus (Squamata: Gekkonidae) from northern Laos including new finding and expanded diagnosis of C. bansocensis
FIGURE 7. Type localities of the newly described Cyrtodactylus species Cyrtodactylus houaphanensis sp. nov. in Houaphan Province and Cyrtodactylus ngoiensis sp. nov. in Luang Prabang Province and type locality of C. bansocensis in Khammouane Province.
Data from: Crossing the line: increasing body size in a trans-Wallacean lizard radiation (Cyrtodactylus, Gekkota)
The region between the Asian and Australian continental plates (Wallacea) demarcates the transition between two differentiated regional biotas. Despite this striking pattern, some terrestrial lineages have successfully traversed the marine barriers of Wallacea and subsequently diversified in newly colonized regions. The hypothesis that these dispersals between biogeographic realms are correlated with detectable shifts in evolutionary trajectory has however rarely been tested. Here, we analyse the evolution of body size in a widespread and exceptionally diverse group of gekkotan lizards (Cyrtodactylus), and show that a clade that has dispersed eastwards and radiated in the Australopapuan region appears to have significantly expanded its body size 'envelope' and repeatedly evolved gigantism. This pattern suggests that the biotic composition of the proto-Papuan Archipelago provided a permissive environment in which new colonists were released from evolutionary constraints operating to the west of Wallacea.
Data from: Morphological and genetic evidence for a new karst specialist lizard from New Guinea (Cyrtodactylus: Gekkonidae).
Exposed limestone karst landscapes, especially in the tropics, are often home to distinctive and specialised biotas. Amongst vertebrates, a particularly large number of karst-associated lizard taxa have been described, but for the vast majority, evidence of specific adaptions to karst is lacking. A number of studies, however, have provided evidence of consistent morphological trends in lizards that utilise complex, three-dimensional, saxicoline habitats such as those that typify karst areas. Here we combine morphological and genetic data to test whether a newly discovered gecko from an extremely rugged karst area in New Guinea shows morphological trends matching these observed in other lizards associated with complex rock habitats such as karst and caves. Consistent with predictions, the new species' head is flatter and narrower than similar-sized relatives, and it has proportionally larger eyes and longer limbs. These trends indicate this taxon represents the second documented instance of karst specialisation in a New Guinean vertebrate, and suggest morphological traits to test for evidence of specialised ecological associations in the many karst-associated Cyrtodactylus taxa from Southeast Asia.
FIGURE 1 in Cyrtodactylus thirakhupti (Squamata: Gekkonidae), a new cavedwelling gecko from southern Thailand
FIGURE 1. Adult female holotype of Cyrtodactylus thirakhupti, sp. nov. (CUMZ R 2003.120) from Tham Khao Sonk, Thachana District, Surat Thani Province, Thailand. Scale bar equals 10 mm. Photo by Aaron M. Bauer.
FIGURE 6 in Two new species of ground-dwelling Cyrtodactylus (Geckoella) from the Mysore Plateau, south India
FIGURE 6. The two new species in life, A–B Cyrtodactylus rishivalleyensis sp. nov. (A, NCBS AQ744; B, holotype, NCBS AQ742), C–D Cyrtodactylus srilekhae sp. nov. (C, holotype, BNHS 2325; D, ESV 101).
FIGURE 3 in Two new species of ground-dwelling Cyrtodactylus (Geckoella) from the Mysore Plateau, south India
FIGURE 3. Plot of FL/SVL vs NE/SE for the spotted species Cyrtodactylus collegalensis (hollow circles) and C. srilekhae sp. nov. (solid filled circles), and the banded species Cyrtodactylus speciosus (hollow squares) and C. rishivalleyensis sp. nov. (solid filled squares).
FIGURE 7 in Two new species of ground-dwelling Cyrtodactylus (Geckoella) from the Mysore Plateau, south India
FIGURE 7. Dorsal and ventral view of paratype series of Cyrtodactylus srilekhae sp. nov.: A, B ESV 101; C, D BNHS 2325; E, F NCBS AQ427; G, H ESV 102; I, J NCBS AQ510.
FIGURE 5 in Two new species of ground-dwelling Cyrtodactylus (Geckoella) from the Mysore Plateau, south India
FIGURE 5. Dorsal, lateral, and ventral view of head of holotypes: (top panel) Cyrtodactylus srilekhae sp. nov. (BNHS 2325), and (bottom panel) C. rishivalleyensis sp. nov. (NCBS AQ742). Scale bars 10 mm.
FIGURE 4 in Two new species of ground-dwelling Cyrtodactylus (Geckoella) from the Mysore Plateau, south India
FIGURE 4. Dorsal and ventral view of holotypes of the new species: A, C Cyrtodactylus srilekhae sp. nov. (BNHS 2325) and B, D, C. rishivalleyensis sp. nov. (NCBS AQ742).
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