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29 results for “Rhinoclemmys”
FIGURE1. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE1. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, line-drawings. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E –anterior end of body, male, apical view; F—dorsal trident, female, dorsal view; G—part of female genital system near to vulva, lateral view; H—posterior end of body, male lateral view; cl—cloaca; I—posterior end of body, male, ventral view; J—male spicules, lateral view; K—mucrons at posterior end of female scale 20µm; L—posterior end of body, female, lateral view
FIGURE3 in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE3. Phylogenetic tree of two species of Serpinema and seven species of Camallanus based on Bayesian Inference analysis of partial 28S rDNA sequences.
FIGURE5 in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines: Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE5. Phylogenetic tree of two species of Serpinema cayennensis n. sp. and four species of Camallanus based on Bayesian Inference analysis of partial cytochrome oxidase subunit I (COI) sequences.
FIGURE1. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE1. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, line-drawings. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E –anterior end of body, male, apical view; F—dorsal trident, female, dorsal view; G—part of female genital system near to vulva, lateral view; H—posterior end of body, male lateral view; cl—cloaca; I—posterior end of body, male, ventral view; J—male spicules, lateral view; K—mucrons at posterior end of female scale 20µm; L—posterior end of body, female, lateral view
FIGURE2. Serpinema cayennensis n in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE2. Serpinema cayennensis n. sp. from Rhinoclemmys punctularia Daudin from French Guiana, photomicrographs. A—anterior end of body, male, lateral view; B—anterior end of body, female, lateral view; C—buccal capsule, male, lateral view; D—buccal capsule, female, lateral view; E—dorsal trident, female, dorsal view; F—part of female genital system near vulva, lateral view; G—posterior end of body, female, lateral view; H—posterior end of body, male, lateral view; I—male spicules, lateral view.
Data from: Complex phylogeography in Rhinoclemmys melanosterna: conflicting mitochondrial and nuclear evidence suggests past hybridization (Testudines: Geoemydidae)
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Figure 7 in Phylogenetic relationships and biogeographical history of the genus Rhinoclemmys Fitzinger, 1835 and the monophyly of the turtle family Geoemydidae (Testudines: Testudinoidea)
Figure 7. Areas of endemism and the area cladogram illustrating the relationship among species of Rhinoclemmys. Sources of these areas of endemism are from Savage (2002) (Central America), Cracraft (1985), and Haffer (1985) as assigned to zoographical regions of Stotz, Fitzpatrick & Moskovits (1996) (South America): AL, Atlantic Lowland; AN, Amazon North; AS, Amazon South; CHO, Choco; NSA, Northern South America; NUH, Nuclear Highland; PH, Panamanian Herpetofauna; PL, Pacific Lowland.
Figure 5 in Phylogenetic relationships and biogeographical history of the genus Rhinoclemmys Fitzinger, 1835 and the monophyly of the turtle family Geoemydidae (Testudines: Testudinoidea)
Figure 5. Phylogram generated from ML and Bayesian analysis using the GTR+G+I model of molecular evolution with the following parameters: K = 10; Base frequencies: freqA = 0.2945, freqC = 0.2856, freqG = 0.1962, freqT = 0.2237; rate matrix: A–C = 3.2207, A–G = 12.8698, A–T = 2.6852, C–G = 0.7080, C–T = 37.6846, G–T = 1.0000; proportion of invariable sites (I) = 0.4881; gamma distribution shape parameter = 0.4998. Score of the best tree found in the ML analysis = 18781.70 and total number of rearrangements tried = 9661. Numbers above and below branches are bootstrap values (> 50%) from 100 replicates of the ML analysis and the posterior probability of the Bayesian analysis, respectively.
FIGURE3 in Serpinema cayennensis n. sp. (Nematoda: Camallanidae), a parasite of the freshwater turtle Rhinoclemmys punctularia Daudin (Reptilia: Testudines Geoemydidae) from French Guiana: morphology and phylogenetic relationships with other turtle-parasitising camallanids
FIGURE3. Phylogenetic tree of two species of Serpinema and seven species of Camallanus based on Bayesian Inference analysis of partial 28S rDNA sequences.
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