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26 results for “Pygopodidae”
FIGURE 6 in A new species of Pygopus (Pygopodidae; Gekkota; Squamata) from north-eastern Queensland
FIGURE 6. Open forest habitat at the type locality of Pygopus robertsi sp. nov. - Little Forks, Shipton's Flat, via Cooktown, Queensland (photograph by Jeanette Covacevich).
FIGURE 4. A in A new species of Pygopus (Pygopodidae; Gekkota; Squamata) from north-eastern Queensland
FIGURE 4. A) Holotype of P. robertsi sp. nov.,QM J47145, in life (photograph by Steve Wilson). B) Pygopus robertsi sp. nov. in life, non-vouchered specimen from the lower slopes of Mt Sampson 15° 48' S, 145° 11' E (photograph by Lewis Roberts).
FIGURE 5 in A new species of Pygopus (Pygopodidae; Gekkota; Squamata) from north-eastern Queensland
FIGURE 5. Map of Australia showing the localities for museum records of Pygopus robertsi sp. nov. (triangles) and Pygopus lepidopodus (circles). Grey symbols denote localities for specimens genetically typed in this study. Locality records are taken from the collections of the Australian Museum, Western Australian Museum, South Australian Museum, Museum Victoria, Queensland Museum and Australian National Wildlife collection.
FIGURE 3 in A new species of Pygopus (Pygopodidae; Gekkota; Squamata) from north-eastern Queensland
FIGURE 3. Consensus topology of relationships amongst Pygopus specimens sampled in this study with ML bootstrap supports and Bayesian Posterior probabilities shown for key nodes.
FIGURE 2 in A new species of Pygopus (Pygopodidae; Gekkota; Squamata) from north-eastern Queensland
FIGURE 2. Upper row: degree of keeling on dorsal body scales. A) weak on body scales of P. robertsi sp. nov. (holotype, QM J47145). B) strong on body scales of P. lepidopodus (QM J47934) from south-eastern Queensland. Middle row: Scalation of supraciliary/supraocular junction. C) supraciliaries of P. robertsi sp. nov. (holotype, QM J47145) in a single, continuous row. D) supraciliaries of P. lepidopodus (QM J47934) in two rows along the posterior portion of the orbit. Lower row: Condition of scales on temporal region. E) smooth for P. robertsi sp. nov. (holotype, QM J47145). F) weakly keeled for P. lepidopodus (QM J47934) from south-eastern Queensland.
FIGURE 1 in A new species of Pygopus (Pygopodidae; Gekkota; Squamata) from north-eastern Queensland
FIGURE 1. (A) Dorsal view of the head of Pygopus robertsi sp. nov. (holotype, QM J47145). (B) Lateral view of the head of P. ro b e r t s i sp. nov. (holotype, QM J47145). CF = caudal frontal, CS = Caudal supranasal, FN = frontonasals, IL = infralabial, L = loreals, M = mental, P = parietals, PF = prefrontal, PN = post nasal, PO = preoculars, PT = pretemporal, R = rostral, RF = rostral frontal, RS = rostral supranasals, SC = supraciliaries, SL = supralabials, SO = supraoculars, SUB = suboculars, T = upper temporals.
FIGURE 10. Adult D in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 10. Adult D. hebesa sp. nov. photographed in life from (A) Scaddan and (B) Mettler Lake, Western Australia (images‒B. Maryan).
FIGURE 12 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 12. The habitat of D. hebesa sp. nov., dense scrub heath on sandplain at Stirling Range National Park, Western Australia (image‒B. Maryan).
FIGURE 9. Preserved holotype WAM R144237 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 9. Preserved holotype WAM R144237 of D. hebesa sp. nov. and head scalation in (A) dorsal and (B) lateral views.
FIGURE 8 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 8. Map of Australia showing distribution of the D. australis species-group and specimens examined in the DNA and allozyme analyses. Specimens examined in the morphological analysis are indicated by a symbol with a central dot.
FIGURE 2 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 2. Principal Coordinates Analysis of the 48 individuals surveyed in the allozyme study. The relative PCO scores have been plotted for the first and second dimensions, which individually explained 37% and 12% respectively of the total multivariate variation present in 47 dimensions. Taxon symbols as for Figure 8.
FIGURE 1 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 1. Maximum likelihood tree based on the combined mitochondrial (ND2 and flanking tRNAs, 16S) and nuclear genes (RAG1, MXRA5, DYNLL1, C-mos) showing relationships among the D. australis species-group, and the outgroup species D. butleri and D. concinna. This tree highlights the paraphyly of D. australis sensu lato, with respect to D. torquata, and identifies D. hebesa sp. nov. as sister taxa to a D. australis + D. torquata clade. Values indicated at branches are Bayesian posterior probabilities/ maximum likelihood bootstrap support.
FIGURE 4 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 4. Bivariate plot of number of ventral scales versus number of hindlimb scales in males and females of each of the southwest W.A. population of D. australis and D. hebesa sp. nov.
FIGURE 7. Adult D in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 7. Adult D. australis photographed in life from (A) Cowell, Eyre Peninsula, South Australia, (B) 14 km NW of Coober Pedy, South Australia, (C) Buningonia Spring, Coolgardie Goldfields bioregion, Western Australia, (D) 30 km NW of Salmon Gums, Mallee bioregion, Western Australia, (E) Rat Island, Houtman Abrolhos, Western Australia, (F) 22 km WSW of Hamelin Homestead, Shark Bay and (G) Cape Range, North West Cape, Western Australia, showing the variation in body colouration and intensity of head pattern (images‒A, B, C, E, F, G: B. Maryan, D: R. Lloyd).
FIGURE 3 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 3. Unrooted neighbour-joining network among six species or lineages of Delma, based on the pairwise matrix of unbiased Nei's distances presented in Table 4.
FIGURE 5 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 5. Bivariate plot of measurements of head length versus head depth in males and females of each of the southwest W.A. population of D. australis and D. hebesa sp. nov.
FIGURE 6. Preserved holotype WAM R27359 in Molecular and morphological assessment of Delma australis Kluge (Squamata: Pygopodidae), with a description of a new species from the biodiversity ' hotspot' of southwestern Western Australia
FIGURE 6. Preserved holotype WAM R27359 of D. australis and head scalation in (A) dorsal and (B) lateral views; F = frontals, L = loreals, LL = lower labials, M = mental, O = occipital, P = parietals, PN = postnasals, PF = prefrontals, R = rostral, SP = supraciliaries, SL = supraloreals, SN = supranasals, SO = supraoculars, UL = upper labials, T = upper temporals.
FIGURE 2 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales
FIGURE 2. SNP variation in Delma, A) PCoA ordination of SNP diversity, B) STRUCTURE barplots show preference for K = 2 model, with little distinction between Delma impar north and south populations.
FIGURE 5 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales
FIGURE 5. Distribution of samples analyzed for morphological (A) or molecular (B and C) comparisons this study.
FIGURE 4 in A new species of Delma Gray 1831 (Squamata: Pygopodidae) from the Hunter Valley and Liverpool Plains of New South Wales
FIGURE 4. Photos in life of Delma vescolineata sp. nov. (A–D), Delma impar (E–F), Delma plebeia (G), Delma inornata (H); A) AMS R.186619, Jerrys Plains NSW, B) AMS R.185999, Muswellbrook NSW, C) Not collected, Muswellbrook NSW, D) Not collected, Juvenile, Muswellbrook NSW, E) Not collected, Cooma NSW, F) Not collected, Naracoorte SA, G) Not collected, Muswellbrook NSW, H) Not collected, Canberra ACT.
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