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191 results for “Litoria”

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Figure 1 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event

Figure 1. Distribution of Litoria myola sp. nov. (formerly termed iS) and the northern (N) and southern (S) lineages of Litoria genimaculata in the Wet Tropics, northeast Queensland. CT, Carbine Tableland; BMC, Black Mountain Corridor; LR, Lamb Range; BK, Bellenden Ker Range; AT, Atherton Tableland; MT, Malbon Thompson Range; GR, Graham Range.

opencc-by-4.0Aug 2007View details →
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Figure 2 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event

Figure 2. Litoria myola, sp. nov., males (A, a pale individual; B, a heavily marked individual), Kuranda, north-east Queensland.

opencc-by-4.0Aug 2007View details →
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Figure 3 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event

Figure 3. Spectrogram of the courtship call of Litoria myola sp. nov. (recorded at an air temperature of 25 °C). The spectrogram displays a single courtship call consisting of six notes ('tocs'). The degree of shading displays call intensity.

opencc-by-4.0Aug 2007View details →
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Figure 7 in Description, biology and conservation of a new species of Australian tree frog (Amphibia: Anura: Hylidae: Litoria) and an assessment of the remaining populations of Litoria genimaculata Horst, 1883: systematic and conservation implications of an unusual speciation event

Figure 7. Rainforest stream habitat, with rocky (A) and sandy (B) substrate, Kuranda, north-east Queensland. Litoria myola sp. nov. and Litoria genimaculata are present at both sites.

opencc-by-4.0Aug 2007View details →
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Figure 3 in Early to middle Pleistocene occurrences of Litoria, Neobatrachus and Pseudophryne (Anura) from the Nullarbor Plain, Australia: first frogs from the "frog-free zone"

Figure 3. Pleistocene frog ilia from Leaena's Breath Cave (prefix WAM) compared with modern specimens (prefix SAMA). a) WAM 09.3.264. Right ilium of holotype of Litoria lundeliusi sp. nov. from Leaena's Breath Cave (unit 3). b) WAM 09.3.264. Enlargement of acetabular region of holotype of Litoria lundeliusi sp. nov. c) SAMA R68398. Representative left ilium of Litoria adelaidensis. d) SAMA R68399. Representative right ilium of Litoria rubella sensu stricto. e–h) Representative ilia of Neobatrachus sudelli highlighting extreme divergence in the form of the dorsal prominence. e) WAM 09.3.265. f) WAM 09.3.261. g) WAM 09.3.269. h) WAM 09.3.273. i) Right ilium of Pseudophryne sp. indet.

opencc-by-4.0Dec 2016View details →
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Figure 1 in Early to middle Pleistocene occurrences of Litoria, Neobatrachus and Pseudophryne (Anura) from the Nullarbor Plain, Australia: first frogs from the "frog-free zone"

Figure 1. Map of Australia showing modern occurrence records extracted from the Atlas of Living Australia (www.ala.org.au) and location of Leaena's Breath Cave (black triangle). a) Anura. b) Neobatrachus sudelli. Note that the two most northwestern records may represent N. aquilonius (J. D. Roberts, pers. comm., 27 June 2015). c) Pseudophryne guentheri (light green) and P. occidentalis (dark green). d) Litoria adelaidensis (red), L. cyclorhyncha (purple) and L. moorei (light brown).

opencc-by-4.0Dec 2016View details →
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Fig. 8. Karyotype from a Northern Site x Central Site L. spenceri unsexed tadpole hybrid. A representative karyotype demonstrates the L. spenceri 2n in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 8. Karyotype from a Northern Site x Central Site L. spenceri unsexed tadpole hybrid. A representative karyotype demonstrates the L. spenceri 2n = 26 karyotype and DAPI negative areas in the long arm of chromosome 9, as well as one matched chromosome of chromosome 11. The chromosome 11 matched chromosome that does not contain the DAPI negative area is submetacentric.

opencc-by-4.0Dec 2018View details →
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Fig. 7. Karyotype from a Central Site L. spenceri unsexed juvenile, animal 2. A representative karyotype demonstrates the L. spenceri 2n in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 7. Karyotype from a Central Site L. spenceri unsexed juvenile, animal 2. A representative karyotype demonstrates the L. spenceri 2n = 26 karyotype and DAPI negative areas in the long arms of chromosomes 9 and 11.

opencc-by-4.0Dec 2018View details →
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Fig. 6. Karyotype from a Central Site L. spenceri unsexed juvenile, animal 1. A representative karyotype demonstrates the L. spenceri 2n in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 6. Karyotype from a Central Site L. spenceri unsexed juvenile, animal 1. A representative karyotype demonstrates the L. spenceri 2n = 26 karyotype and DAPI negative areas in the long arms of chromosomes 9 and 11.

opencc-by-4.0Dec 2018View details →
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Fig. 5. Karyotype from a Northern Site L. spenceri unsexed adult. A representative karyotype demonstrates the L. spenceri 2n in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 5. Karyotype from a Northern Site L. spenceri unsexed adult. A representative karyotype demonstrates the L. spenceri 2n = 26 karyotype and a DAPI negative area in the long arm of chromosome 9.

opencc-by-4.0Dec 2018View details →
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Fig. 4. Chromosomes 9 and 11 from different L. spenceri populations. Three representative chromosomes from each animal demonstrate a in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 4. Chromosomes 9 and 11 from different L. spenceri populations. Three representative chromosomes from each animal demonstrate a highly conserved DAPI negative region in the long arms of chromosome 9. A DAPI negative region is observed in the long arm of chromosome 11, but only in the Central Site juveniles and in only one matched chromosome of the Northern Site x Central Site tadpole hybrid. Arrows indicate the chromosome 11 DAPI negative region. Asterisks indicate the paired submetacentric chromosome 11 matched pair of the Northern Site x Central Site tadpole hybrid.

opencc-by-4.0Dec 2018View details →
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Fig. 3. Karyotype from a Southern Site L. spenceri adult male. A representative karyotype demonstrates the L. spenceri 2n in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 3. Karyotype from a Southern Site L. spenceri adult male. A representative karyotype demonstrates the L. spenceri 2n = 26 karyotype and a DAPI negative area in the long arm of chromosome 9.

opencc-by-4.0Dec 2018View details →
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Fig. 2. Karyotype from a Southern Site L. spenceri adult female. A representative karyotype demonstrates the L. spenceri 2n in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 2. Karyotype from a Southern Site L. spenceri adult female. A representative karyotype demonstrates the L. spenceri 2n = 26 karyotype and a DAPI negative area in the long arm of chromosome 9.

opencc-by-4.0Dec 2018View details →
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Fig. 1 in The critically endangered species Litoria spenceri demonstrates subpopulation karyotype diversity

Fig. 1. Phenotypes of L. spenceri frogs and site location. (A) Adult frog from the South Site (1). (B) Adult frog from the North Site (2). (C) A juvenile frog from the Central Site (3). (D) Site identification within the L. spenceri population range. N = north. Phenotypes are only examples and not necessarily representative.

opencc-by-4.0Dec 2018View details →
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Figure 4 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea

Figure 4. Maximum likelihood (ML) phylogram of relationships between mitochondrial ND4 nucleotide sequences of Litoria. Numbers at nodes are: left—Bayesian posterior probabilities, right—ML bootstrap proportions.

opencc-by-4.0Nov 2020View details →
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Figure 1 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea

Figure 1. Views of Litoria aplini holotype (SAMA R71463) in preservative. (A) dorsal; (B) ventral (scale bar = 10 mm); (C) palmar; and (D) plantar surfaces (scale bar = 5 mm).

opencc-by-4.0Nov 2020View details →
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Figure 3 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea

Figure 3. Closely related species that could be confused with Litoria aplini: (A) Litoria iris (SAMA R71615), adult male in life (Hindenburg Range, Western Province); (B) Litoria iris showing bright colours on hidden surfaces of the hind legs (unvouchered animal, Hela Province); (C) Litoria majikthise (SAMA R65042), in life, Muller Range, Western Province); (D, E) Litoria majikthise (SAMA R65042), showing colour ventrally and on hidden surfaces of hind limbs; and (F) Litoria ollauro, Milne Bay Province, photo courtesy of Fred Kraus.

opencc-by-4.0Nov 2020View details →
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Figure 2 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea

Figure 2. Type series of Litoria aplini in life: (A) SAMA R71463; (B) SAMA R71465; (C) SAMA R71464; (D) SJR12834 (PNGNM); (E) SAMA R71463, in ventral view; and (F) SAMA R71463, ventral surfaces of hind limb.

opencc-by-4.0Nov 2020View details →
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Figure 7 in Litoria aplini sp. nov., a New Species of Treefrog (Pelodryadidae) from Papua New Guinea

Figure 7. Habitat of Litoria aplini: (A) forest interior at the type locality; and (B) males were calling from trees over small pools (arrow) in the bed of a steep, narrow limestone gully.

opencc-by-4.0Nov 2020View details →
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Fig 1 in A new large green treefrog (Litoria: Pelodryadidae) from western New Guinea, with the description of a new diagnostic character for the Litoria graminea group

Fig 1. Selected frogs in the Litoria graminea (A–B) and Litoria infrafrenata (C–F) groups that occur in the western (Indonesian) half of New Guinea. A, Litoria huntorum from the foothills of the Foja Mountains, B, L. pallidofemora from Batanta Island, C, Litoria infrafrenata from Batanta Island, D, Litoria lubisi from Timika region, E, Litoria multicolor from the Wondowoi Mountains, and F, Litoria purpureolata from Biak Island. Note the typically less extensive webbing on the fingers and toes of species in the Litoria infrafrenata group. Photographs: A–D, Stephen Richards, E–F, Rainer Günther.

opencc-by-4.0Jul 2023View details →

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