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768 results for “sympatric species”
FIGURES 1–4. Envia moleque n in On a second species of Envia Ott & Höfer, 2003 (Araneae, Microstigmatidae), with notes on the sympatric type species
FIGURES 1–4. Envia moleque n. sp.: 1–2, male holotype: 1. Body, dorsal; 2. Abdomen, lateral. 3–4, female paratype (MPEG 15644): 3. Body, dorsal; 4. Abdomen, lateral.
FIGURES 15–20. Envia moleque n in On a second species of Envia Ott & Höfer, 2003 (Araneae, Microstigmatidae), with notes on the sympatric type species
FIGURES 15–20. Envia moleque n. sp.: 15. Cheliceral teeth, ventral, female; 16. Cuspules of endites, ventral, male; 17. Metatarsi I, cuticle of integument, prolateral, female; 18. Tarsi I, tarsal cuticle and trichobothrium, dorsal, female; 19. Tarsi I, female; 20. Book lung aperture, ventral, female.
FIGURE 4 in Altitudinal distribution and advertisement call of Colostethus latinasus (Amphibia: Dendrobatidae), endemic species from eastern Panama and type species of Colostethus, with a molecular assessment of similar sympatric species
FIGURE 4. Waveform (upper), power spectrum (lower left) and spectrogram (lower right) of the advertisement call produced by a male Colostethus latinasus, recorded at 19°C air temperature. This is one call in the series of five calls that can be heard online at http://biogeodb.stri.si.edu/bioinformatics/dfm/metas/view/48935.
FIGURE 3 in Altitudinal distribution and advertisement call of Colostethus latinasus (Amphibia: Dendrobatidae), endemic species from eastern Panama and type species of Colostethus, with a molecular assessment of similar sympatric species
FIGURE 3. Voucher specimen of Colostethus latinasus (CH 6400, MVUP 2342), adult male. A) ventral view; B) dorsal view.
FIGURE 2 in Altitudinal distribution and advertisement call of Colostethus latinasus (Amphibia: Dendrobatidae), endemic species from eastern Panama and type species of Colostethus, with a molecular assessment of similar sympatric species
FIGURE 2. Color in life of Colostethus latinasus individuals. Unscaled photographs. A–C) adult female (CH 6381), SVL = 29.83 mm; D–E) adult female (CH 6389), SVL = 30.16 mm; F) adult male (CH 6402), SVL = 31.72 mm.
FIGURE 1. Likelihood-based phylogeny inferred from a in Altitudinal distribution and advertisement call of Colostethus latinasus (Amphibia: Dendrobatidae), endemic species from eastern Panama and type species of Colostethus, with a molecular assessment of similar sympatric species
FIGURE 1. Likelihood-based phylogeny inferred from a partitioned analysis of partial DNA sequences of the COI and 16S mitochondrial genes. Scale bar indicates patristic distances estimated from partitioned likelihood analysis. Clade support values indicate Bayesian marginal posterior probabilities followed by likelihood bootstrap support values as percentage. Unscaled photographs of Silverstoneia aff. nubicola (CH 5558, SVL = 20.48 mm), Colostethus aff. panamansis (CH 5546, SVL = 25.40 mm), C. latinasus (CH 6389, SVL = 30.16 mm) and C. aff. pratti (CH 1087, SVL = 18.48 mm).
FIGURE 3 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 3. Plot of Principal Component Analysis for microhabitat preference analysis of 40 specimens (32 from Eucriotettix guentheri sp. nov. and eight from Eucriotettix simulans sp. nov.). Blue triangles and red squares and data points represent Eucriotettix guentheri sp. nov. and Eucriotettix simulans sp. nov. respectively. Size of triangles and squares are representing the number of specimens.
FIGURE 4 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 4. Plots of Principal Component Analysis for morphometry of 24 male specimens (20 from Eucriotettix guentheri sp. nov. and four from Eucriotettix simulans sp. nov.). Blue triangles and red squares and data points represent Eucriotettix guentheri sp. nov. and Eucriotettix simulans sp. nov. respectively.
FIGURE 8 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 8. Eucriotettix guentheri sp. nov. (A–G) and Eucriotettix simulans sp. nov. (H–N): male head and anterior of pronotum in dorsal view (A, H); male face in frontal view (B, I); head, male pronotal lateral lobe and tegmen in lateral view (C, J); male (D, K) and female (F, M) abdominal apices in lateral view; male (E, L) and female (G, N) abdominal apices in ventral view. Scale bars = 1 mm.
FIGURE 5 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 5. Habitus of male of Eucriotettix guentheri sp. nov. (TET.TET.84) (A, C) and Eucriotettix simulans sp. nov. (TET.TET.47) (B, D) in dorsal (A, B) and lateral (C, D) views. Scale bars = 1 mm.
FIGURE 2 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 2. Cladogram for Maximum Parsimony for COI (short fragments) of 40 Eucriotettix specimens, 35 specimens of other pygmy grasshoppers and 1 outgroup. 50 % consensus for 1 tree. Bootstrap support values are indicated on branches. Replicates = 100. Blue and red bars represent Eucriotettix guentheri sp. nov. and Eucriotettix simulans sp. nov. respectively.
FIGURE 1 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 1. Phylogram for Maximum Likelihood for COI (short fragments) of 40 Eucriotettix specimens, 35 specimens of other pygmy grasshoppers and 1 outgroup. Replicates = 100. Bootstrap support values are indicated on branches. Blue and red bars represent Eucriotettix guentheri sp. nov. and Eucriotettix simulans sp. nov. respectively.
FIGURE 7 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 7. Holotype of Eucriotettix ridleyi body in dorsal (A) and lateral (B) views; (C) labels. Image by Robin Ngiam.
FIGURE 6 in Integrative taxonomy reveals two sympatric species of the genus Eucriotettix Hebard, 1930 (Orthoptera: Tetrigidae)
FIGURE 6. Habitus of female of Eucriotettix guentheri sp. nov. (TET.TET.42) (A, C) and Eucriotettix simulans sp. nov. (TET.TET.113) (B, D) in dorsal (A, B) and lateral (C, D) views. Scale bars = 1 mm.
FIGURE 3. A in Differences in karyotype between two sympatric species of Gymnotus (Gymnotiformes: Gymnotidae) from the eastern amazon of Brazil
FIGURE 3. A. Giemsa stained karyotype of Gymnotus mamiraua with the NOR pair (1); B. Cbanded karyotype; C. DAPI stained karyotype; D. CMA3 stained metaphase (the arrows indicate the NOR pair).
FIGURE 2. A in Differences in karyotype between two sympatric species of Gymnotus (Gymnotiformes: Gymnotidae) from the eastern amazon of Brazil
FIGURE 2. A. Giemsa stained karyotype of Gymnotus cf. carapo with the NOR pair (20); B. Sequenced CBanding; C. DAPI stained karyotype; D. CMA3 stained metaphase (the arrows indicate the NOR pair).
FIGURE 1. A in Differences in karyotype between two sympatric species of Gymnotus (Gymnotiformes: Gymnotidae) from the eastern amazon of Brazil
FIGURE 1. A. Gymnotus cf. carapo (MCP 40926) B. Gymnotus mamiraua (MCP 40927) from Marajó Island, state of Pará, Brazil, scale bar = 1 cm.
FIGURE 2. Phylogenetic results. A, Maximum likelihood tree from COI dataset rooted with Ophelia limacina. B, Maximum likelihood tree from ITS1 in Validation of three sympatric Thoracophelia species (Annelida: Opheliidae) from Dillon Beach, California using mitochondrial and nuclear DNA sequence data
FIGURE 2. Phylogenetic results. A, Maximum likelihood tree from COI dataset rooted with Ophelia limacina. B, Maximum likelihood tree from ITS1 dataset rooted according to the result for the COI dataset. Support values are shown as jackknife from parsimony analysis and bootstrap from maximum likelihood respectively separated by /. * indicates 100% values for each support measure.
FIGURE 1. The three sympatric Thoracophelia spp. from Dillon Beach. A, Thoracophelia dillonensis. B in Validation of three sympatric Thoracophelia species (Annelida: Opheliidae) from Dillon Beach, California using mitochondrial and nuclear DNA sequence data
FIGURE 1. The three sympatric Thoracophelia spp. from Dillon Beach. A, Thoracophelia dillonensis. B, Pectinate branchiae of T. dillonensis. C, Thoracophelia williamsi. D, Bifurcated branchiae with pinnules of T. williamsi. E, Thoracophelia mucronata. F, Bifurcated branchiae of T. mucronata. Scale bars all 1 mm.
Figure 3 in Repeated evolution of sympatric, palaeoendemic species in closely related, co-distributed lineages of Hemiphyllodactylus Bleeker, 1860 (Squamata: Gekkonidae) across a sky-island archipelago in Peninsular Malaysia
Figure 3. Habitat at the type locality of Hemiphyllodactylus bintik sp. nov., Gunung Tebu, Terenganu, Peninsular Malaysia.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.