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59 results for “Gephyromantis”
Dataset related to the paper: "Molecular systematics of the subgenus Gephyromantis (Phylacomantis) with description of a new subspecies"
<p>Contains a table with all DNA sequences used as well as information on isolate / specimen voucher information, GenBank accession numbers, and geographical provenance of the samples. Also includes files used for phylogenetic analysis. </p> <p>From the paper:</p> <p>Scherz, M.D., J. Rudolph, M. Rakotondratsima, F.M. Ratsoavina, A. Crottini, F. Andreone, F. Glaw & M. Vences (2024): Molecular systematics of the subgenus <em>Gephyromantis</em> (<em>Phylacomantis</em>) with description of a new subspecies. – <em>Zootaxa</em> <strong>5446</strong>: 205-220.</p> <p>https://doi.org/10.11646/zootaxa.5446.2.3</p>
Dataset of the paper: "Four new species of forest-dwelling mantellid frogs from Madagascar allied to Gephyromantis moseri (Amphibia, Anura)"
<p>Dataset contains a table with DNA sequences and metadata, a table with morphometric measurements, alignment files used for phylogenetic analysis, as well as representative cuts from advertisement call recordings..</p>
Gephyromantis (subgenus Gephyromantis) revision data sets
<p>Original sound recordings used for bioacoustic analysis as well as DNA sequence alignments for a taxonomic revision of the subgenus Gephyromantis (genus Gephyromantis): G. boulengeri and G. blanci species complexes.</p>
FIGURE 2 in Descriptions of the tadpoles of two species of Gephyromantis, with a discussion of the phylogenetic origin of direct development in mantellid frogs
FIGURE 2. Drawings of preserved tadpole specimen of Gephyromantis pseudoasper from Manongarivo Special Reserve (developmental stage 34). (a) dorsal view; (b) lateral view; (c) oral disc.
FIGURE 1 in Descriptions of the tadpoles of two species of Gephyromantis, with a discussion of the phylogenetic origin of direct development in mantellid frogs
FIGURE 1. Drawings of preserved tadpole specimen of Gephyromantis ambohitra from the Montagne d'Ambre National Park (developmental stage 37). (a) dorsal view; (b) lateral view; (c) oral disc.
FIGURE 2 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 2. Comparative oscillograms of the advertisement calls of species in the Gephyromantis decaryi complex. All oscillograms show a central segment of a call with 8–9 single notes. The call of G. decaryi refers to specimen ZCMV 5585; call of G. verrucosus from Manombo refers to specimen ZCMV 5495; call of G. hintelmannae recorded from specimen ZCMV 5229.
FIGURE 1 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 1. Bayesian consensus phylogeny of the 16SrRNA fragment (A) and the COB-fragment (B) for the Gephyromantis decaryi complex (with symbols) and other species and species complexes of the genus Gephyromantis. Outgroup taxa in the trees are not shown ("outgroup"). Statistical support values are shown as bars on branches. Left bars, gray = Bayesian posterior probabilities>95, black>99, right bars, gray = Maximum Likelihood bootstrap values>75, black>90. The lower graph (C) is a haplotype network based on sequences of the nuclear RAG1 gene. Numbers at branches indicate the number of mutational steps separating haplotypes.
FIGURE 7 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 7. Lateral photographs of the head in preserved specimens of the four species of the Gephyromantis decaryi complex. Same specimens pictured as in Fig. 6. Note distinct light-dark pattern of upper lip in G. d e c a r y i and especially in G. verrucosus, and absence of this pattern in G. hintelmannae and G. sp. 7. Scale bars represent 1 mm.
FIGURE 10 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 10. Distribution map of species of the Gephyromantis decaryi complex. Midongy du Sud and Ikongo (= Fort Carnot) refer to the type localities of G. decaryi and G. verrucosus, respectively.
FIGURE 4 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 4. Comparative dorsolateral and ventral views of males of the four species respectively candidate species in the Gephyromantis decaryi complex. (a,b) Gephyromantis decaryi from Ranomafana, specimen photographed in 2007 and preserved in the UADBA collection; (c,d) Gephyromantis verrucosus from Manombo, specimen ZSM 2508/2007 (field number ZCMV 5495); (e,f) Gephyromantis hintelmannae from Ambohitsara, holotype specimen ZSM 2500/2007 (field number ZCMV 5230); (g,h) Gephyromantis sp. 7, specimen preserved in UADBA (field number ZCMV 5484).
FIGURE 3 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 3. Comparative sonagrams and oscillograms of the advertisement calls of species in the Gephyromantis decaryi complex, referring to the same specimens as in Fig. 2.
FIGURE 12 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 12. Preserved lectotypes of A—G. d e c a r y i (MNHN 1930.435) and B—G. verrucosus (MNHN 1930.444); photographs taken by A. Miralles. Note the poor state of preservation of the type of G. decaryi, with one hindlimb detached from the body. Scale bars represent 5 mm.
FIGURE 11 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 11. Preserved specimens of the species and candidate species in the Gephyromantis decaryi complex; left—dorsal, right—ventral view. A—G. d e c a r y i (ZSM 2597/2007; field number ZCMV 5223); B—G. hintelmannae (holotype 2500/2007; ZCMV 5230); C—G. sp. 7 (ZSM 2492/2007; ZCMV 5485); D—G. verrucosus (ZSM 2462/2007; ZCMV 5495). Not to scale (see Table 1 for precise measurements of the specimens).
FIGURE 6 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 6. Photographs of dorsal skin structure in preserved specimens of (a) Gephyromantis decaryi (ZSM 2497/2007; field number ZCMV 5223), (b) G. verrucosus (ZSM 2462/2007; ZCMV 5459), (c) G. hintelmannae (holotype ZSM 2500/2007; ZCMV 5230), and (d) G. sp. 7 (ZSM 2492/2007; ZCMV 5485). Note continuous dorsolateral ridges in G. decaryi, discontinuous ridges and elongated tubercles in G. verrucosus, and relatively smooth skin with weakly expressed ridges in G. hintelmannae and G. sp. 7. Scale bars represent 1 mm.
FIGURE 9 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 9. Photographs of the femoral glands of preserved specimens of species of the Gephyromantis decaryi complex in internal view (after reflection of ventral skin of thigh). (a) G. decaryi (ZSM 2496/2007; field number ZCMV 5222), (b) G. v e rrucosus (ZSM 2505/2007; ZCMV 5438), (c) G. hintelmannae (ZSM 2501/2007; ZCMV 5231), and (d) G. sp. 7 (ZSM 2491/ 2007; ZCMV 5424). Scale bars represent 1 mm. Note the slightly larger size of the scale bar in b vs. a, illustrating the larger size of the gland in G. decaryi vs. G. verrucosus.
FIGURE 5 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 5. Morphometric differentiation of specimens from Ranomafana (G. decaryi, open gray dots), from Ambohitsara (G. hintelmannae, filled gray dots), from Manombo (G. verrucosus, red filled dots), and Manakara (G. sp. 7, filled black dots). Polygonal shapes denote morphological differences among groups. A - G. verrucosus and G. sp. 7 differ in PCs 3 and 5; B – G. decaryi shows different PC1 / SVL values as compared to all other species of the G. d e c a r y i complex. C – G. hintelmannae is well distinguished from G. sp. 7 by the residuals of TL and HL, but shows some overlap with specimens belonging to G. v e r r u - cosus.
FIGURE 8 in Revision of the little brown frogs in the Gephyromantis decaryi complex with description of a new species
FIGURE 8. Photographs of the ventral surface of feet (above) and hands (below) in the four species of the Gephyromantis decaryi complex. Same specimens pictured as in Fig. 6. Note the distinctly longer feet of G. decaryi. All photographs to scale; scale bar represents 1 mm.
Supplementary material 6 from: Scherz MD, Vences M, Borrell J, Ball L, Herizo Nomenjanahary D, Parker D, Rakotondratsima M, Razafimandimby E, Starnes T, Rabearivony J, Glaw F (2017) A new frog species of the subgenus Asperomantis (Anura, Mantellidae, Gephyromantis) from the Bealanana District of northern Madagascar. Zoosystematics and Evolution 93(2): 451-466. https://doi.org/10.3897/zse.93.14906
Table S1 : Explanation note: Average uncorrected pairwise-distances in a fragment of the 16S rRNA gene among Gephyromantis species.
Supplementary material 2 from: Scherz MD, Vences M, Borrell J, Ball L, Herizo Nomenjanahary D, Parker D, Rakotondratsima M, Razafimandimby E, Starnes T, Rabearivony J, Glaw F (2017) A new frog species of the subgenus Asperomantis (Anura, Mantellidae, Gephyromantis) from the Bealanana District of northern Madagascar. Zoosystematics and Evolution 93(2): 451-466. https://doi.org/10.3897/zse.93.14906
Recording 2 : Explanation note: Call recordings of Gephyromantis angano sp. n. uncollected specimens. Call recorded at ca. 03h30 on the 8th of January, 2016 near a muddy spring in primary rainforest, at 14.41949°S, 48.71938°E, 1340 m a.s.l. Animal Sound Archive: http://www.tierstimmenarchiv.de/webinterface/contents/showdetails.php?edit=-1&unique_id=TSA:Gephyromantis_angano_Scherz_1_2_0
Supplementary material 5 from: Scherz MD, Vences M, Borrell J, Ball L, Herizo Nomenjanahary D, Parker D, Rakotondratsima M, Razafimandimby E, Starnes T, Rabearivony J, Glaw F (2017) A new frog species of the subgenus Asperomantis (Anura, Mantellidae, Gephyromantis) from the Bealanana District of northern Madagascar. Zoosystematics and Evolution 93(2): 451-466. https://doi.org/10.3897/zse.93.14906
Figure S1 : Explanation note: Phylogeny of Gephyromantis based on the BI consensus tree reconstructed by Bayesian Inference analysis of a fragment of the mitochondrial 16S rRNA gene. Numbers above nodes denote Bayesian Posterior Probability (PP); numbers below nodes indicate bootstrap support (%). PP lower than 0.9 and bootstrap support lower than 70% are not shown. Numbers before taxon names are GenBank numbers; numbers after taxon names are field numbers.
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