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36 results for “Emydidae”
Terrapene carolina (Emydidae) - whole organism - unspecified
Image of Terrapene carolina (Emydidae) - whole organism - unspecified
Terrapene carolina (Emydidae) - whole organism - unspecified
Image of Terrapene carolina (Emydidae) - whole organism - unspecified
Fig. 5. Emys orbicularis habitat 3 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 5. Emys orbicularis habitat 3 in Silene Nature Park before restoration (Google Earth service, SAS services).
Fig. 4. Emys orbicularis habitats 1 and 2 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 4. Emys orbicularis habitats 1 and 2 in Silene Nature Park before (a) and after (b) restoration (Google Earth service, SAS services).
Fig. 2 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 2. Old Emys orbicularis female, found in 1984 in Daugavpils living for 20 years in a zooculture (Photo: 2005).
Fig. 6. Emys orbicularis habitat 3 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 6. Emys orbicularis habitat 3 in Silene Nature Park after restoration (Google Earth service, SAS services).
Fig. 2 in Camallanus emydidius n. sp. (Nematoda: Camallanidae) in Trachemys dorbigni (Dumeriĺ& Bibron, 1835) (Testudines: Emydidae) from Southern Brazil
Fig. 2. Lateral view of anterior extremity of Camallanus emydidius n. sp. cleared with lactophenol. The images show variation in the size of the median ridges situated between the dorsal and ventral groups (Bar = 100 Mm).
Fig. 4 in Camallanus emydidius n. sp. (Nematoda: Camallanidae) in Trachemys dorbigni (Dumeriĺ& Bibron, 1835) (Testudines: Emydidae) from Southern Brazil
Fig. 4. Female of Camallanus emydidius n. sp. cleared with lactophenol. A —Ventral view show the vulvar lip (Bar = 240 Mm). B — Lateral view show the vulvar lip (Bar = 260 Mm). C — Ventral view of tail, the arrow show the mucrons (Bar = 40 Mm).
Fig. 3 in Camallanus emydidius n. sp. (Nematoda: Camallanidae) in Trachemys dorbigni (Dumeriĺ& Bibron, 1835) (Testudines: Emydidae) from Southern Brazil
Fig. 3. Ventral view the male's tail of Camallanus emydidius n. sp. cleared with lactophenol. A — The arrow show the right spicule with extremity simple (Bar = 100 Mm). B — The arrows show the 2 pairs of ventral papillae near of cloaca, and the postcloacal papillae (Bar = 50 Mm).
Fig. 1. Camallanus emydidius n in Camallanus emydidius n. sp. (Nematoda: Camallanidae) in Trachemys dorbigni (Dumeriĺ& Bibron, 1835) (Testudines: Emydidae) from Southern Brazil
Fig. 1. Camallanus emydidius n. sp. (Nematoda: Camallanidae) parasite of Trachemys dorbigni (Testudines: Emydidae) from Southern Brazil. A — Lateral view of female (Bar = 100 Mm). B — Lateral view of female (Bar = 100 Mm). C — Ventral view the male's tail (Bar = 350 Mm). D — Ventral view of posterior extremity the male's tail (Bar = 50 Mm).
Figure 1. A in Increased haplotype diversity of Emys orbicularis (Linnaeus, 1758) (Reptilia: Emydidae) in northern Iran
Figure 1. A) Map of Eurasia and the samples used for this study. Shaded area at lower right indicates the study area and the colors of the occurrence points correspond to the lineage numbers in the phylogenetic tree. B) Map of Iran, Armenia and Azerbaijan and samples for lineage VII. Red circles indicate samples from Genbank (Fitz et al., 2009), red stars are our new samples.
Figure 2 in Increased haplotype diversity of Emys orbicularis (Linnaeus, 1758) (Reptilia: Emydidae) in northern Iran
Figure 2. Bayesian inference tree (MrBayes) based on the cytochrome b gene fragment. Colors of the branches correspond to the lineage colors in Figure 1. Posterior probabilities and divergence time estimation (n parentheses) are next to the nodes.
Fig. 1 in Helminth's assemblage of Trachemys dorbigni (Testudines: Emydidae) in southern Brazil: implications of anthropogenic environments and host's genders
Fig. 1. Overall layout of the collection environments in the study of helminth assemblage of Trachemys dorbigni in southern Brazil: A, detail of the Centro Agropecuário da Palma (UFPel), rural area of CapÃo do LeÃo, State of Rio Grande do Sul, Brazil; B, detail of the urban Área of Pelotas, Rio Grande do Sul, Brazil. Source: extracted and modified the site Google® Earth (©2014 Google – Images ©2014 Digital Globe).
Fig. 1 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 1. Old Emys orbicularis female, found in 1984 in Daugavpils (Photo: 1990).
Fig. 3 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 3. Location of zones of influences of Project LIFE-HerpetoLatvia.
Fig. 9. 42 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 9. 42 Semi-adult and young adult turtles were released in wild in Silene Nature Park in 2014.
Fig. 8 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 8. Semi-adult turtles were released in wild in Silene Nature Park.
Fig. 7. Restored habitat 3 in P R O J E C T S O N E M Y S O R B I C U L A R I S (R E P T I L I A: Testudines: Emydidae) In Latvia For Thirty Years (1984 - 2014): Biological Aspects, Results And Effect On Population And Ecosystems
Fig. 7. Restored habitat 3: ponds system and eggs-laying places.
Figure 3 in Increased haplotype diversity of Emys orbicularis (Linnaeus, 1758) (Reptilia: Emydidae) in northern Iran
Figure 3. Haplotype network of all studied samples based on the Cytochrome b gene fragment.
Data from: Phylogeny and temporal diversification of the New World pond turtles (Emydidae)
We present a comprehensive multigene phylogeny and time tree for the turtle family Emydidae. Our phylogenetic analysis, based on 30 nuclear and four mitochondrial genes (23,330 total base pairs) sequenced for two individuals for each of the currently recognized species of the subfamily Emydinae and two species from each of the more species-rich Deirochelyinae genera, yielded a well-supported tree that provides an evolutionary framework for this well-studied clade and a basis for a stable taxonomy. We calibrated an emydid time tree using three well-vetted fossils, modeled uncertainty in fossil ages to reflect their accuracy in node dating, and extracted stem/crown ages of a number of key diversification events. We date the age of crown emydids at a relatively young 44 Ma, and the crown age of both contained subfamilies at roughly 30 Ma. One deirochelyine clade, which includes the genera Graptemys, Malaclemys, Pseudemys, and Trachemys and contains 11% of all turtle species, dates to 21 Ma just prior to the mid-Miocene climatic optimum, suggesting a potential causal link between warm, moist conditions and rapid species accumulation of these highly aquatic turtles. Both nuclear DNA data alone and in combination with mitochondrial DNA support the monophyly of an inclusive genus Emys containing the old world species orbicularis and trinacris and the new world blandingii, marmorata and pallida. Given that all members of this group were originally aligned in the genus Emys and that the age of the clade is roughly equal to other emydine genera, we strongly support a classification that places these five species in a single genus rather than the alternative three-genus scheme (Emys (orbicularis, trinacris), Actinemys (marmorata, pallida), Emydoidea (blandingii). The phylogeny and resulting time tree presented here provides a comprehensive foundation for future comparative analyses of the Emydidae that will shed light on the historical ecology and conservation prioritization of this diverse chelonian clade.
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