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29 results for “Meristogenys”

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Fig. 1 in Preliminary estimation of home range size for Meristogenys orphnocnemis, a common Bornean Ranid, in an altered forest ecosystem using radiotelemetry

Fig. 1. Section of stream in SAFE Project experimental site, known as logged forest edge (LFE) stream, where all radiotracking occurred.

opencc-by-4.0Sep 2017View details →
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Figure 5 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 5. Frequency of snout width/sucker width (SNW/SUW) ratios in morphotypes 3-a (A) and 3-b (B).

opencc-by-4.0Sep 2007View details →
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Figure 4 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 4. Dorsal views of larval Meristogenys: A, morphotype 1 (lineage 1); B, morphotype 2 (lineage 2); C, morphotype 3-a (lineage 3); D, morphotype 3-a (lineage 4); E, morphotype 3-b (lineage 5); F, morphotype 4 (lineage 6). Scale bar = 10 mm.

opencc-by-4.0Sep 2007View details →
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Figure 1 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 1. Character dimensions, glands and a spiracle of larval Meristogenys (morphotype 4). 1, total length (TTL); 2, head–body length (HBL); 3, head–body width (HBW); 4, head–body height (HBH); 5, sucker width (SUW); 6, oral disc width (ODW); 7, snout width (SNW); 8, eyeball diameter (ED); 9, tail height (TLH); 10, infraorbital glands; 11, postorbital glands; 12, prespiracular glands; 13, posterior midlateral glands; 14, ventral glands; 15, dorsal fin glands; 16, ventral fin glands; 17, spiracle; *the white square indicates the area shown in Figure 3.

opencc-by-4.0Sep 2007View details →
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Figure 2 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 2. Dorsal views of the snout surface: A, without projections (morphotype 3-a); B, with projections (morphotype 3-b). Scale bar = 1 mm.

opencc-by-4.0Sep 2007View details →
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Figure 3 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 3. Three types of the lower beaks of larval Meristogenys. A, right and left beaks divided (morphotype 3-a); B, undivided (morphotype 4); C, connected with a thin, grey corneous film (morphotype 1). Scale bar = 1 mm.

opencc-by-4.0Sep 2007View details →
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Figure 8 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 8. Maximum likelihood tree of a 449-bp sequence of the 12S rRNA gene for haplotypes of Meristogenys and related species. Numbers above or below branches represent bootstrap support for the MP (2000 replicates)/ML (500) inference for the respective clade. Nodes with asterisks indicate significant support (≥ 95%) by Bayesian inference. The number of adult and larval specimens of each haplotype is shown in parentheses. Mor = larval morphotype.

opencc-by-4.0Sep 2007View details →
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Figure 6 in Identity of larval Meristogenys from a single stream in Sabah, Malaysia (Amphibia: Ranidae)

Figure 6. Frequency of the number of undivided rows of lower labial teeth to show ontogenetic changes in morphotypes 3-a (A) and 3-b (B). Open box = 4, hatched box = 5, closed box = 6.

opencc-by-4.0Sep 2007View details →
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FIGURE 5 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 5. Relationship between female SVL and ovum volume (ovary volume divided by clutch size). Closed dots indicate Meristogenys amoropalamus (Group A), while open dots indicate M. dyscritus (Group B).

opennotspecifiedDec 2011View details →
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FIGURE 2 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 2. Bayesian trees of 9729-bp sequence of mtDNA and nuDNA for the species of Meristogenys. Numbers above or below branches represent bootstrap support with 1000 replicates for maximum likelihood (ML)/maximum parsimony (MP) inference. Nodes with asterisks indicate significant support (> 95%) by Bayesian inference.

opennotspecifiedDec 2011View details →
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FIGURE 8 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 8. Larvae of two Meristogenys species treated in this study. A, Meristogenys amoropalamus (BORNEENSIS 05B247) from Mahua; B, Meristogenys dyscritus (BORNEENSIS 05B239) from Mahua. Scale bar = 10 mm.

opennotspecifiedDec 2011View details →
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FIGURE 11 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 11. Relationship between SVL and the tympanum area (TDv*TDh*π/4) in males. Closed dots indicate Meristogenys amoropalamus (the asterisk is the holotype of M. amoropalamus), while open dots indicate M. dyscritus (the asterisk is the holotype of M. dyscritus).

opennotspecifiedDec 2011View details →
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FIGURE 4 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 4. Relationship between female snout-vent length (SVL) and ovum numbers per ovary. Closed dots indicate Meristogenys amoropalamus (Group A), while open dots indicate M. dyscritus (Group B).

opennotspecifiedDec 2011View details →
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FIGURE 1 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 1. Map of Borneo showing the localities discussed in this study. 1, Wario; 2, Bundu Tuhan; 3, Liwagu; 4, Kamborangah; 5, Mesilau; 6, Poring; 7, Mahua; 8, Bario; 9, Gunung Tapai Sia. KNP and CRNP indicate Kinabalu National Park and Crocker Range National Park, respectively. Closed and open dots indicates the sampling localities of Group A (Meristogenys amoropalamus) and Group B (M. dyscritus), respectively. At half-closed dot localities, we collected larvae of both species.

opennotspecifiedDec 2011View details →
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FIGURE 10 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 10. Plots of percentage ratios of HAL and TL to SVL in females. Closed dots indicate Meristogenys amoropalamus (the asterisk is the paratopotype of M. amoropalamus), while open dots indicate M. dyscritus (Group B).

opennotspecifiedDec 2011View details →
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FIGURE 7 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 7. Dorsolateral views of Meristogenys amoropalamus (A, SP 26612) from Kamborangah and M. dyscritus (B, SP 26481) from Liwagu.

opennotspecifiedDec 2011View details →
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FIGURE 6 in A survey of morphological variation in adult Meristogenys amoropalamus (Amphibia, Anura, Ranidae), with a description of a new cryptic species

FIGURE 6. Eyes of Meristogenys amoropalamus (Group A) and M. dyscritus (Group B). A, the female paratopotype of M. amoropalamus from the type locality (Gunung Tapai Sia) after anaesthesia; B, C, M. amoropalamus from Mesilau after (B) and before (C) anaesthesia; D–F, M. dyscritus from Wario after anaesthesia (D) and M. dyscritus from Liwagu before anaesthesia (E, F). Specimen vouchers: A, OMNH Am8068; B, BORNEENSIS 22901; C, KUHE 39460; D, BOR 22970; E, SP 26481; F, SP 21514. For abbreviations, see Appendix.

opennotspecifiedDec 2011View details →
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FIGURE 2 in Detection of two cryptic taxa in Meristogenys amoropalamus (Amphibia, Ranidae) through nuclear and mitochondrial DNA analyses

FIGURE 2. Distributions of haplotype frequencies of POMC for three lineages of M. cf. amoropalamus. The size of each circle indicates the number of samples examined from each locality. 1, Wario; 2, Poring, 3, Mesilau; 4, Kamborangah; 5, Liwagu; 6, Bundu Tuhan; 7, Mahua. KNP and CRNP indicate Kinabalu National Park and Crocker Range National Park, respectively.

opennotspecifiedAug 2008View details →
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FIGURE 1 in Detection of two cryptic taxa in Meristogenys amoropalamus (Amphibia, Ranidae) through nuclear and mitochondrial DNA analyses

FIGURE 1. Neighbor-joining tree of a 963-bp sequence of mitochondrial 12S rRNA and Cytb (left) and 1313-bp sequences of nuclear POMC, Rag-1, and rhodopsin (right) for species of Meristogenys. Numbers above or below branches represent bootstrap support for the NJ/MP inference for the respective clade (both 1000 replicates). Nodes with asterisks indicate significant support (>95%) by Bayesian inference. Lineage names were designated by Shimada et al. (2007) and the present study. The haplotypes of M. cf. amoropalamus are given using the locality name; Bu: Bundu Tuhan, Ka: Kamborangah, Li: Liwagu, Ma: Mahua, Me: Mesilau, Po: Poring, Wa: Wario. The number of adult and larval specimens of each haplotype of M. cf. amoropalamus is shown in parenthesis.

opennotspecifiedAug 2008View details →
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Figure 8 in A taxonomic study of Whitehead's torrent frog, Meristogenys whiteheadi, with descriptions of two new species (Amphibia: Ranidae)

Figure 8. Plot of female/male snout–vent length (SVL) ratio against female SVL; O, Meristogenys whiteheadi;, Meristogenys stigmachilus sp. nov.; ¥, Meristogenys stenocephalus sp. nov.; Z, Meristogenys kinabaluensis; •, other species of the Meristogenys jerboa species group.

opennotspecifiedJan 2011View details →

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