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Data from: High-density sex-specific linkage maps of a European tree frog (Hyla arborea) identify the sex chromosome without information on offspring sex
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FIGURE 8 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 8. Advertisement calls of Boana cinerascens— oscillogram (above) and spectrograms (below). (A) Tefé, Amazonas, Brazil (MPEG 40282, neotype). (B) Parque Nacional do Jaú, Novo Airão, Amazonas, Brazil (MPEG 40290).
FIGURE 4 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 4. Recently collected specimens of Green Tree Frogs included in this study—Boana gracilis (see text for nomenclatural clarification). (A) Dorsolateral and (B) frontal profiles of MPEG 40292. (C) Dorsolateral and (D) frontal profiles of MPEG 40288 Both specimens from Parque Nacional do Jaú, Amazonas, Brazil.
FIGURE 2 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 2. Syntypes of Hyla granosa gracilis Melin, 1941 (NHMG 467). Photos available at the NHMG website.
FIGURE 3 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 3. Recently collected specimens of green tree frogs included in this study—Boana cinerascens. (A) Dorsolateral and (B) frontal profiles of MPEG 40282 (neotype), from Tefé, Amazonas, Brazil. (C) Dorsolateral and (D) frontal profiles of MPEG 40287 from Parque Nacional do Jaú, Amazonas, Brazil. (E) Dorsolateral and (F) frontal profiles of QCAZ-A 56580 from quebrada Pupalyacu, Canelos, Pastaza, Ecuador.
FIGURE 7 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 7. Neotype of Hyla cinerascens Spix, 1824 (= Boana cinerascens) (MPEG 40282). (A) Lateral view of head, (B) palm of hand, and (C) palm of foot of male specimen, from Tefé, Amazonas, Brazil. Scale bar = 1 mm.
FIGURE 11 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 11. Some representatives of the paraphyletic Boana punctata species group. (A) B. atlantica, CFBH 27814, from Camamu, Bahia, Brazil, photo by PLVP; (B) B. cinerascens, MPEG 40287, from Parque Nacional do Jaú, Amazonas, Brazil, photo PLVP; (C) B. gracilis, MPEG 40288 from Parque Nacional do Jaú, Amazonas, Brazil, photo PLVP; (D) B. jimenezi, MHNLS 19400, from Parque Nacional Canaima, Gran Sabana, Bolívar, Venezuela, photo FJMR-R; (E); B. punctata from Aruaguatins, Tocantins, Brazil, photo PLVP; (F) B. sibleszi, MHNLS 19536, from Parque Nacional Canaima, Gran Sabana, Bolívar, Venezuela, photo FJMR-R.
FIGURE 10 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 10. Geographic distribution of Boana cinerascens and Boana gracilis based on the localities of type specimens and samples included in our analyses. Black-star = Tefé, Amazonas, Brazil (type-locality of Boana cinerascens). White-star = Rio Uaupés (north of Ipanoré), Amazonas, Brazil (type-locality of Boana gracilis). White-rhombus = Canelos, Ecuador (type-locality of Hyla granosa). Circles = Boana gracilis. Triangle = both species. 1 = Parque Nacional do Jaú, Novo Airão, Amazonas, Brazil. 2 = Parque Nacional de Anavilhanas, Novo Airão, Amazonas, Brazil. 3 = Muri, Scrub Camp, Iwokrama, Guyana. 4 = San José de Chipiro, Boca del río Ventuari, Alto Orinoco, Amazonas, Venezuela. 5 = Macuruco, confluencia Orinoco-Ventuari, Alto Orinoco, Amazonas, Venezuela. White-ball = Canaripó, río Ventuari, Amazonas, Venezuela.
FIGURE 6 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 6. Neotype of Hyla cinerascens Spix, 1824 (= Boana cinerascens) (MPEG 40282). (A) Dorsal and (B) ventral views of male specimen from Tefé, Amazonas, Brazil. Scale bar = 10 mm.
FIGURE 5 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 5. Maximum likelihood tree of Boana, evidencing paraphyly of the "Boana punctata group" (green Boana), based on 16S and COI under best partition and substitution models (see text for more details) (ln = -26131.372239). Numbers at nodes = bootstrap proportions. Members of the Boana punctata group, as defined by Faivovich et al. (2005), are represented by green color.
FIGURE 1 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 1. Illustrations of type specimens currently referred to Boana cinerascens in this study. (A) Holotype of Hyla cinerascens as figured in Spix (1824), plate VIII, figure 4—scanned copy from the Ernst Mayr Library Museum of Comparative Zoology, from Harvard University, Massachusetts (available at www.biodiversitylibrary.org/bibliography/3665#/summary). (B) BMNH 1947.2.12.99, lectotype, and (C) BMNH 1947.2.12.97, paralectotype, of Hyla granosa, as figured in Boulenger (1882), plate XXIV, figures 2 and 3—scanned copy from Natural History Museum Library, London (available at www.biodiversitylibrary.org/bibliography/8307#/summary).
FIGURE 9 in Resolving the taxonomic puzzle of Boana cinerascens (Spix, 1824), with resurrection of Hyla granosa gracilis Melin, 1941 (Anura: Hylidae)
FIGURE 9. Dorsal color pattern variation in Boana gracilis. (A) MPEG 40292, from Parque Nacional do Jaú, Novo Airão, Amazonas, Brazil; (B) MPEG 41573, (C) MPEG 41571, (D) MPEG 41568, from Parque Nacional de Anavilhanas, Novo Airão, Amazonas, Brazil; (E) MPEG 40288, from Parque Nacional do Jaú, Novo Airão, Amazonas, Brazil; (F) MPEG 41567, from Parque Nacional de Anavilhanas, Novo Airão, Amazonas, Brazil.
FIGURE 1 in The valid nomen for the tree frog (genus Hyla) of Tunisia and Eastern Algeria
FIGURE 1. Distribution of Hyla meridionalis (yellow) and Hyla carthaginiensis (red). For each, the type localities of proposed nomina are shown by stars (large: oldest available; small: junior synonym and/or unavailable), with their order of priority listed in the inset. The exact origin of the Hyla africana holotype was not documented, but historical DNA barcoding indicated genetic similarities with pupulations from Morocco and the introduced ranges, corresponding to H. meridionalis (Dufresnes et al. 2019). Photo credits: CD (Hyla meridionalis from France) and Spartak Litvinchuk (Hyla carthaginiensis from Tunisia).
FIG. 4 in Predators Induce Morphological Changes in Tadpoles of Hyla andersonii
FIG. 4. Box and whisker plots showing range of tadpole tail mean gray values (a measure of tail darkness). Lower mean gray values indicate darker tail coloration. (A) Day 32 (þpredator treatment mean gray value6SD ¼ 92612.82; –predator control ¼ 103.8868.54), (B) Day 39 (þpredator ¼ 93.11615.22; –predator ¼ 106.54612.95), and (C) Day 46 (þpredator ¼ 88.97614.46; –predator ¼ 100.68612.63). Individuals were pooled across ponds within treatments on each sampling date. Variance was significantly greater in predator treatments compared to non-predator controls (LMM: v2 ¼ 5.7, df ¼ 1, P ¼ 0.017).
FIG. 5 in Predators Induce Morphological Changes in Tadpoles of Hyla andersonii
FIG. 5. Comparison of relative tadpole size across sampling dates and predator treatments. All measurements were standardized against total tadpole length to account for size differences among individual tadpoles. *P, 0.05 between treatments.
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