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544 results for “Agamidae”
Fig. 8 in A new species of the genus Ceratophora Gray, 1835 (Reptilia: Agamidae) from a lowland rainforest in Sri Lanka, with insights on rostral appendage evolution in Sri Lankan agamid lizards
Fig. 8. Syntypes of Ceratophora aspera Günther, 1864 in lateral view: BMNH.1946.30.51 (female, above) and BMNH.1946.30.52 (male, below). Photo by Colin McCarthy (BMNH).
Figure 2 in Sexual dimorphism in Trapelus ruderatus ruderatus (Sauria: Agamidae) with notes on the natural history
Figure 2 (above). Ordination of the individual males and females of Trapelus r. ruderatus on the first two principle components. Note the relative degree of isolation of males and females.
Linked collectors and determiners for: Catalogue of type specimens of the agamid lizard genus Japalura s. l. (Squamata: Agamidae: Draconinae).
Natural history specimen data linked to collectors and determiners held within, "Catalogue of type specimens of the agamid lizard genus Japalura s. l. (Squamata: Agamidae: Draconinae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/0bb83022-19c6-4caf-9e03-9a5f5388154e">https://bionomia.net/dataset/0bb83022-19c6-4caf-9e03-9a5f5388154e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/0bb83022-19c6-4caf-9e03-9a5f5388154e">https://gbif.org/dataset/0bb83022-19c6-4caf-9e03-9a5f5388154e</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Annotated catalogue of acrodont lizard types in the collection of the Naturalis Biodiverstity Center (Squamata: Agamidae, Chamaeleonidae).
Natural history specimen data linked to collectors and determiners held within, "Annotated catalogue of acrodont lizard types in the collection of the Naturalis Biodiverstity Center (Squamata: Agamidae, Chamaeleonidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b9764d5e-48ff-4374-b8b5-41059e6500d3">https://bionomia.net/dataset/b9764d5e-48ff-4374-b8b5-41059e6500d3</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b9764d5e-48ff-4374-b8b5-41059e6500d3">https://gbif.org/dataset/b9764d5e-48ff-4374-b8b5-41059e6500d3</a>. Formatted as a Frictionless Data package.
Figure 7 in Subspeciation or none? The hardun in the Aegean (Reptilia: Sauria: Agamidae: Laudakia stellio)
Figure 7. Dendrogram of the same 16 female Laudakia stellio sspp., all whole-tailed, as in Figure 6, but based on five characters selected for their near-bimodal sorting.
Figure 5 in Subspeciation or none? The hardun in the Aegean (Reptilia: Sauria: Agamidae: Laudakia stellio)
Figure 5. Dendrogram of 26 male Laudakia stellio sspp., 22 whole-tailed and four broken-tailed, based on 25 characters.
Figure 1 in Subspeciation or none? The hardun in the Aegean (Reptilia: Sauria: Agamidae: Laudakia stellio)
Figure 1. The callous glandular scales in Laudakia stellio stellio from Delos, showing variable sexual dimorphism (enlarged in the insets): (A) hypertrophied in a male after 2 years in captivity (SMF 58553); (B) in typical male (ZFMK 2060); (C) underdeveloped in ''cryptic'' male (ZFMK 2061); (D) absent in female (ZFMK 3089).
Figures 2, 3 in Subspeciation or none? The hardun in the Aegean (Reptilia: Sauria: Agamidae: Laudakia stellio)
Figures 2, 3. (2) Head shape and colour (compared to dorsum) in preserved museum specimens of Laudakia stellio sspp.: (A) L. s. daani female (NMW 30.974/1 from Ikaria); (B) L. s. daani male (NMW 30.989/3 from Ikaria); (C) L. s. stellio male (ZFMK 2063 from Delos); (D) L. s. stellio male (ZFMK 2066 from Delos). (3) Throat coloration in preserved museum specimens of Laudakia stellio sspp., the same specimens and order as in Figure 2.
Figure 5 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 5. Central-dorsal scale pattern distinguishing Laudakia stellio salehi (A) from L. s. brachydactyla (B), from photographs of the holotypes. While in L. s. brachydactyla there is a broad mid-dorsal band of large scales, in L. s. salehi the left and right transverse rows of enlarged scales are separated by a narrow mid-dorsal stripe of small scales. Scale bars: 5 mm.
Figure 4 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 4. Variation in ''Laudakia stellio brachydactyla'' sensu lato from the Negev (Israel) and Sinai (Egypt). Bimodal distribution of one character, fourth toe length, one mode due to regenerated-tailed specimens, the other due to original-tailed specimens (N513).
Figure 1 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 1. Morphological PCA analysis of ''Laudakia stellio brachydactyla'' sensu lato from the Negev (Israel) and Sinai (Egypt), including original-tailed and regenerated-tailed specimens. (A) Males (N531); (B) females (N525).
Figure 2 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 2. Map of the study area (from Werner 1988) delimited towards north by a broken line and subdivided by a second broken line into northern ''Negev'' and southern ''Sinai'', with localities of the focal specimens (solid circles) and human settlements for orientation (open squares), explained in Werner (1987, 1988).
Figure 3 in Subspeciation befogged by the ''Seligmann effect'': the case of Laudakia stellio (Reptilia: Sauria: Agamidae) in southern Sinai, Egypt
Figure 3. Morphological PCA analysis of ''Laudakia stellio brachydactyla'' sensu lato from the Negev (Israel) and Sinai (Egypt), including only original-tailed specimens. (A) Males (N520); (B) females (N516).
Data from: Archipelago-wide survey of Philippine forest dragons (Agamidae: Gonocephalus): multilocus phylogeny uncovers unprecedented levels of genetic diversity in a biodiversity hotspot
We utilize robust geographical genetic sampling, a multilocus dataset, and coalescent-based species delimitation statistics to provide the first phylogenetic inferences of relationships of Philippine Gonocephalus, combined with estimates of putative species diversity in this virtually unknown island radiation. Our results reveal startling levels of undocumented diversity, genetically partitioned at a number of geographic levels across the archipelago. In this paper we present the first survey of genetic lineage diversity, coupled with an archipelago-wide elucidation of geographic structure in a unique archipelago-endemic radiation. Philippine Gonocephalus have previously escaped the attention of biogeographers, due to taxonomic confusion associated with low numbers of preserved specimens in museum collections. With new vouchered material and genetic sampling from a comprehensive, archipelago-wide vertebrate biodiversity inventory, our findings join many recent studies highlighting the unprecedented faunal diversity in one of the world's most unique biodiversity conservation hotspots.
Figure 4 in Diversity in Australia's tropical savannas: An integrative taxonomic revision of agamid lizards from the genera Amphibolurus and Lophognathus (Lacertilia: Agamidae)
Figure 4. Distribution of study species included in this study, compiled from museum records.
Figure 9 in Diversity in Australia's tropical savannas: An integrative taxonomic revision of agamid lizards from the genera Amphibolurus and Lophognathus (Lacertilia: Agamidae)
Figure 9. Holotype of Lophognathus horneri sp. nov. (NTM R16472).
Figure 5 in Sexual dimorphism in Trapelus ruderatus ruderatus (Sauria: Agamidae) with notes on the natural history
Figure 5. The occurrence of T. r. ruderatus with Uromastyx loricatus in the same hole.
Figure 4 in Sexual dimorphism in Trapelus ruderatus ruderatus (Sauria: Agamidae) with notes on the natural history
Figure 4. An adult male T. r. ruderatus capturing a spider while foraging.
Figure 3 in Sexual dimorphism in Trapelus ruderatus ruderatus (Sauria: Agamidae) with notes on the natural history
Figure 3. The color pattern of an adult male T. ruderatus during the hottest hours of the day.
Figure 4 in Subspeciation or none? The hardun in the Aegean (Reptilia: Sauria: Agamidae: Laudakia stellio)
Figure 4. Dendrogram of 22 male Laudakia stellio sspp., all whole-tailed, based on 29 characters.
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International Brain Laboratory public data
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OpenNeuro
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