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146 results for “Wet Tropics”
FIGURE 1 in Two new frog species (Microhylidae: Cophixalus) from the Australian Wet Tropics region, and redescription of Cophixalus ornatus
FIGURE 1. Phylogeny (A) and distributions (B) of C. australis sp. nov., C. hinchinbrookensis sp. nov. and C. ornatus. (A) Maximum likelihood tree constructed from 513 bp 16S mtDNA. The phylogeny shows the relationship between C. ornatus, C. australis sp. nov. and C. hinchinbrookensis sp. nov. The tree also shows the three subgroups within C. australis sp. nov.: Mt Bartle Frere region (BF), Lowland (L) and Southern (S). Numbers at major nodes are Bayesian posterior probabilities. (B) Map of the Wet Tropics region of north-east Australia and an enlargement of the Atherton Tablelands-Mt Bartle Frere region. The coloured dots show the most common mtDNA lineage at each site, with dot colour matching the phylogeny. The site numbers match the locality details in Table 1. This figure is modified from Figs 3 and C1 in Hoskin et al. (2011).
FIGURE 4 in Two new frog species (Microhylidae: Cophixalus) from the Australian Wet Tropics region, and redescription of Cophixalus ornatus
FIGURE 4. The snout to vent length (SVL) of male C. australis sp. nov. on an altitudinal transect up the eastern slope of Mt Bartle Frere. Symbols represent the Mt Bartle Frere region (BF) genetic subgroup (closed triangles) and the Lowland (L) subgroup (closed circles). These two lineages are sympatric at sites between 400–600 m a.s.l. All individuals at these sites are here treated as potential hybrids (open squares) because genetic analyses have revealed extensive introgression at these sites and because the status of all individuals could not be determined with certainty based on the loci used (low power to detect backcrosses).
FIGURE 2 in Two new frog species (Microhylidae: Cophixalus) from the Australian Wet Tropics region, and redescription of Cophixalus ornatus
FIGURE 2. Photos of: (A) the holotype of C. australis sp. nov. (QMJ43655); (B) C. australis sp. nov. in life, Mt Hypipamee (photo: Conrad Hoskin); (C) the holotype of C. hinchinbrookensis sp. nov. (QMJ44166); (D) C. hinchinbrookensis sp. nov. in life, Hinchinbrook Island (photo: Alex Anderson); (E) the holotype of C. ornatus (R222); (F) C. ornatus in life, Kuranda (photo: Conrad Hoskin).
FIGURE 2 in Crikey steveirwini gen. et sp. nov. from montane habitats in the Wet Tropics of northeastern Queensland, Australia (Gastropoda: Eupulmonata: Camaenidae)
FIGURE 2. Distribution map showing the location of all known records of C. steveirwini in north-east Queensland (inset shows regional location).
FIGURE 1 in Crikey steveirwini gen. et sp. nov. from montane habitats in the Wet Tropics of northeastern Queensland, Australia (Gastropoda: Eupulmonata: Camaenidae)
FIGURE 1. Crikey steveirwini gen. et sp. nov. showing variation in banding pattern. A. Holotype, QMMO 78184, height = 14.61mm. B. Paratype, QMMO 20911, Mt Lewis, height = 14.77 mm. C. Paratype, QMMO 27117, Lambs Head, height = 16.59 mm. D. QMMO 69655, Main Coast Range, height = 13.63 (subadult).
FIGURE 2 in A remarkable new plant bug genus and species (Hemiptera, Heteroptera, Miridae, Deraocorinae) from the Australian wet tropics
FIGURE 2. Scanning electron micrographs of Kalamemiris collessi sp. nov. (a, b) body from dorsal view; (c, d) body from lateral view; (e, f) head from frontal view; (g, h) head from lateral view; (a, c, e, g) male; (b, d, f, h) female, Scales = 1 mm unless otherwise marked.
FIGURE 3 in A remarkable new plant bug genus and species (Hemiptera, Heteroptera, Miridae, Deraocorinae) from the Australian wet tropics
FIGURE 3. Scanning electron micrographs of Kalamemiris collessi sp. nov. (a, b) thorax from lateral view; (c, d) mesothorax from lateral view; (e, f) metathoracic scent gland; (a, c, e) male and (b, d, e) female, EvA, evaporative area; Mts, metathoracic spiracle; Pe, peritreme; scale= 100µm.
FIGURE 1 in A remarkable new plant bug genus and species (Hemiptera, Heteroptera, Miridae, Deraocorinae) from the Australian wet tropics
FIGURE 1. Habitus photographs of Kalamemiris collessi sp. nov.: male and female, dorsal and lateral views; Scale=1 mm.
FIGURE 4 in A remarkable new plant bug genus and species (Hemiptera, Heteroptera, Miridae, Deraocorinae) from the Australian wet tropics
FIGURE 4. Scanning electron micrographs of Kalamemiris collessi sp. nov., (a) tarsal claw, (b) vestiture on male corium, (c) female antenna, scale are marked on photographs
FIGURE 5 in A remarkable new plant bug genus and species (Hemiptera, Heteroptera, Miridae, Deraocorinae) from the Australian wet tropics
FIGURE 5. Kalamemiris collessi sp. nov., Left and right parameres (left), pygophore in posteroventral view (right), LP, left paramere; Ph, phallotheca; RP, right paramere; scale= 100µm.
Subspecies and Distribution. P.n.nasutaE.GeoffroySaint-Hilaire,1804—EAustraliafrommid-NQueenslandStoVictoria. P.n. pallescens Thomas, 1923 — far N Queensland, with geographically separate populations in Wet Tropics and on Cape York Peninsula. in Peramelidae
Subspecies and Distribution. P.n.nasutaE.GeoffroySaint-Hilaire,1804—EAustraliafrommid-NQueenslandStoVictoria. P.n. pallescens Thomas, 1923 — far N Queensland, with geographically separate populations in Wet Tropics and on Cape York Peninsula.
FIGURE 2 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 2. Ordination analyses for Cairnsichthys individuals in the first two dimensions showing northern (diamonds) and southern (circles) populations for (A) PCoA of nuclear genetic markers based on 29 fish and 52 allozyme loci; envelopes show different populations and site codes match Table 1 (75% and 10% of multivariate variation on dimensions 1 and 2 respectively), (B) PCA of meristic data based on 55 fish and 10 variable characters; correlations between data and character variables shown with eigenvectors, codes match Table 2 (31% and 14% variation), and (C) PCA of morphometric data based on 50 fish and 21 characters; eigenvector codes match Table 2 (25% and 16% variation).
FIGURE 5 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 5. Large adult pair of Cairnsichthys bitaeniatus sp. nov. from Little Cooper Creek, photographed in an aquarium (ca. 50–60 mm SL); the upper fish is the male (MH).
FIGURE 1 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 1. Location map in the wet Tropics bioregion of northeastern Australia showing Cairnsichthys study collection sites (see Table 1), including locations of other museum material examined, larger cities/towns and major rivers.
FIGURE 4 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 4. Cairnsichthys bitaeniatus sp. nov. freshly prepared holotype (QM I.39335), 65.6 mm SL male, Little Cooper Creek (MH).
FIGURE 8 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 8. Typical rainforest fast flowing stream habitat and type locality of Cairnsichthys bitaeniatus sp. nov., Little Cooper Creek, wet Tropics bioregion, northern Australia, including adult fish (lower centre of underwater image) positioned in area of high velocity (MH).
FIGURE 7 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 7. Comparative specimen images of sister rainbowfish species: (left) Cairnsichthys bitaeniatus sp. nov. (A) freshly prepared holotype (QM I.39335), 65.6 mm SL male, Little Cooper Creek, (B) preserved holotype, (C) freshly prepared specimen (NTM S.17778-001), 44.4 mm SL male, Little Cooper Creek, (D) radiograph of holotype with arrow highlighting the close arrangement of the first two anal fin rays compared to the following rays, and (right) C. rhombosomoides (E) freshly prepared specimen (NTM S.17700-001), 52.4 mm SL male, Smoko Creek, (F) preserved specimen, Smoko Creek (NTM S.17700-001), (G) preserved paratype (AMS IA.4774) 37.5 mm SL, Babinda Creek, (H) radiograph of representative specimen with arrow highlighting different spacing of anal fin rays (NTM S.17930-001), 50.0 mm SL male, Nyleta Creek.
FIGURE 6 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 6. Comparative life images of sister rainbowfish species, aquarium images unless otherwise stated: (left) Cairnsichthys bitaeniatus sp. nov. (A) adult male from Hutchinson Creek, image reversed (KM), (B) adult female from Little Cooper Creek yawning (KM), (C) group of smaller adults from Little Cooper Creek showing narrow body and double stripes (KM), (D) in situ photograph of adult, Little Cooper Creek (GA), and (right) C. rhombosomoides from Harvey Creek (E) adult male (KM) (F), sparing large adult males, image reversed (Gunther Schmida), (G) group of smaller adults showing deep body and single stripe (KM), (H) in situ photograph of adult (Nathan Litjens).
FIGURE 3 in Revision of the Australian Wet Tropics endemic rainbowfish genus Cairnsichthys (Atheriniformes: Melanotaeniidae), with description of a new species
FIGURE 3. Congruence for nuclear and mitochondrial genetic data for seven sites across the range of Cairnsichthys: (A) midpoint rooted neighbour-joining based on pairwise fixed differences at 52 allozyme loci, and (B) ML tree for 1141bp of cytochrome b. Population codes match Figure 1 and Table 1. (*) Geographically proximate reference sample, Behana Creek, from Unmack et al. (2013) used to represent this geographic group.
FIGURE 4 in Caridina malanda, a new species of freshwater shrimp (Crustacea: Decapoda Atyidae) from the Wet Tropics World Heritage area, north-eastern Queensland Australia
FIGURE 4. Bayesian majority rule consensus topology of Caridina malanda sp. nov. and species from the Caridina zebra complex using combined 16S rDNA and COI dataset with Bayesian posterior probability values. Nodes with probability values <0.50 have been collapsed. Specimen information of Caridina included in molecular analyses, with relevant GenBank accession numbers and collection locations, are listed in Table 1.
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