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3,761 results for “phylogenetic relationship”
FIG. 9 in Phylogenetic Relationships among Fishes in the Order Zeiformes Based on Molecular and Morphological Data
FIG. 9. Morphometric analysis of 24 zeiform species for which combined molecular and morphological phylogenetic results were obtained as in Figure 7. (A) Thirteen landmarks used in the morphometric analysis shown on an image of Zenopsis nebulosa (CSIRO). (B–D) Wireframe diagrams in which the red wireframe represents an average form while the blue outline represents change in the direction of the principal component. (E) Phylomorphospace diagram showing variation in the morphospace defined by the first two principal components, with the combined phylogeny of Figure 7 mapped into the morphospace. Thin blue lines and thick black lines represent convergent lineages. Note that most of the major lineages arose from common ancestors with near-average morphologies (blue ellipse). Thumbnail drawings by Michael Hanson.
FIG. 6 in Phylogenetic Relationships among Fishes in the Order Zeiformes Based on Molecular and Morphological Data
FIG. 6. Combined (total-evidence) molecular and morphological phylogeny of the Paracanthopterygii based on Bayesian inference (BI) using MrBayes v.3.1.2 (Huelsenbeck and Ronquist, 2001; Ronquist and Huelsenbeck, 2003). See text for detailed methods and assumptions. Zeiform taxa with an asterisk (*) are those with morphological data only. Support values at nodes are posterior probabilities. For details within Zeiformes see Figure 7. Drawings of representative species by Michael Hanson.
FIGURE 3. Orobanchaceae — a in The new monotypic genus Bardotia (Orobanchaceae) from Madagascar and remarks on the phylogenetic relationships of the African and Madagascan genera Parastriga, Radamaea, Rhamphicarpa and Sieversandreas
FIGURE 3. Orobanchaceae — a: Cycnium tubulosum ssp. montanum, Rwanda; b: Sopubia lemuriana, Madagascar; c: Harveya alba, Rwanda; d: Harveya alectroides (= Parastriga alectroides), Rwanda; e: Leucosalpa poissonii, Madagascar; f: Radamaea montana, Madagascar; g: Radamaea ifatyiensis spec. nov. 1, Madagascar; h: Radamaea tabularis spec. nov. 2, Madagascar. All photographs by E. Fischer.
FIGURES 23–26 in A new Helluodes Westwood species from Western Ghats with notes on habitat, distribution and phylogenetic relationships of genera Helluodes Westwood and Physocrotaphus Parry of the tribe Physocrotaphini Chaudoir (Insecta: Coleoptera: Carabidae: Anthiinae)
FIGURES 23–26. Habitus: 23 Helluodes devagiriensis n.sp.(Holotype); 24 Pogonoglossus giganteus (Holotype); 25 Schuelea drumonti (Holotype); 26 Physocrotaphus ceylonicus (Lectotype). Scale bar = 5 mm.
Figure 13. The hypothesized molecular-based phylogenetic relationships among B. thaidina, B. mansfieldi and B in The occurrence and function of the sphragis in the zerynthiine genera Zerynthia, Allancastria and Bhutanitis (Lepidoptera: Papilionoidea: Papilionidae)
Figure 13. The hypothesized molecular-based phylogenetic relationships among B. thaidina, B. mansfieldi and B. lidderdalii (Nazari et al. 2007) and the patterns of incorporation of male scales to the sphragis and the colour of the sphragis.
FIGURE 4 in Re-evaluation of the taxonomy of the Sri Lankan pigmy shrew Suncus fellowesgordoni (Soricidae: Crocidurinae) and its phylogenetic relationship with S. etruscus
FIGURE 4. Plots of factor scores on PC1 vs. PC2 of Suncus etruscus and Suncus fellowesgordoni for A: external body measurements and B: cranial measurements.
FIGURE 3. A in Morphological diversity and phylogenetic relationships within a South-American clade of iguanian lizards (Liolaemidae: Phymaturus)
FIGURE 3. A—Scale organs on postrostral scales (character 16, continuous). Scale= 1 mm. B—Rostral scale divided, Phymaturus antofagastesis MCN 1436 (Character 105-1). Scale= 2 mm. C—Interparietal color (white, P. excelsus MCN 1582, character 121-1). Scale= 5 mm. D—Enlarged scales in the center of chest, P. extrilidus MCN 2856 (Character 122-1). Scale= 5 mm. E—Loreal region of P. sp3. MNHN 1632 (Character 154-1 absence of contact between canthal and preocular scales). F—Same view of P. palluma (neotype BMNH 1946.8.29.84). Character 155-1 preocular larger than canthal scale.
FIGURE 10 in Morphological diversity and phylogenetic relationships within a South-American clade of iguanian lizards (Liolaemidae: Phymaturus)
FIGURE 10. Alternative hypotheses of relationships within the patagonicus group found applying different values of constant of weighting K. Analysis with K=19–57 recovers the same topology of a conventional parsimony analysis an equally weighted analysis.
FIGURE 18 in Phylogenetic relationships of Culex (Culex) species (Diptera, Culicidae) from Argentina based on morphological characters
FIGURE 18. Wing veins of adult female mosquitoes. A: Culex (Culex) chidesteri Dyar; B: Culex (Culex) eduardoi Casal & García. C = costa vein; R2 = radius-two vein; R3 = radius-three vein; R2+3 = radius-two-plus-three; Sc = subcosta vein.
FIGURE 20 in Phylogenetic relationships of Culex (Culex) species (Diptera, Culicidae) from Argentina based on morphological characters
FIGURE 20. Colour of alar scales of adult female mosquitoes. A: Culex (Culex) acharistus Root; B: Culex (Culex) tatoi Casal & García.
FIGURE 2 in Phylogenetic relationships of Culex (Culex) species (Diptera, Culicidae) from Argentina based on morphological characters
FIGURE 2. Dorsal aspect of heads of fourth-instar larvae of Culex (Culex). A: Culex (Culex) acharistus Root; B: Culex (Culex) fernandezi Casal, García & Cavalieri. 1,4–6C = head setae.
FIGURE 22 in Phylogenetic relationships of Culex (Culex) species (Diptera, Culicidae) from Argentina based on morphological characters
FIGURE 22. Hindleg of adult mosquitoes. A: Culex (Culex) bidens Dyar; B: Culex (Culex) coronator Dyar & Knab. Fe-III = hindfemur; Ta-III 1-5 = hindtarsomeres 1–5; Ti-III = hindtibia.
FIGURE 6 in Phylogenetic relationships of Culex (Culex) species (Diptera, Culicidae) from Argentina based on morphological characters
FIGURE 6. Comb scales of segment VIII of fourth-instar larvae. A: Culex (Culex) fernandezi Casal, García & Cavalieri; B: Culex (Culex) apicinus Philippi.
FIGURE 5. Male aedeagus and right paramere. Scale bar 0.1 in Phylogenetic relationships of the South American ground beetle subgenus Chilioperyphus Jeannel (Coleoptera: Carabidae: Trechinae: Bembidiini: Bembidion Latreille)
FIGURE 5. Male aedeagus and right paramere. Scale bar 0.1 mm. A: B. orregoi (Argentina: Chubut: Rio Azul at Lago Puelo, 200m, 42.0933°S 71.6221°W; Maddison voucher V100667. B: B. mendocinum (Argentina: Mendoza: Villa 25 de Mayo, 875m, 34.5901°S 68.5608°W; Maddison voucher V100668).
FIGURE 3 in Phylogenetic relationships of the South American ground beetle subgenus Chilioperyphus Jeannel (Coleoptera: Carabidae: Trechinae: Bembidiini: Bembidion Latreille)
FIGURE 3. The tree of highest likelihood found for all seven genes combined. Labels on the right side are supra-specific taxa (subgenera and complexes) within the genus Bembidion. The outgroup (genus Asaphidion) is not shown. Scale bar: 0.1, as reconstructed by RAxML.
FIGURE 42 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 42. Waveform plots illustrating the lilting component of the male calling song of Pauropsalta kobongoides sp. nov. from four different localities, including: (i) Weengallon (28°22'S 149°03'E), (ii) Barmedman (34°09'S 147°23'E), (iii) Mount Hope (32°50'S 145°53'E), and (iv) Narromine (32°20'S 148°14'E). Mean phrase repetition rates (PRR) for each recording are provided to the right of each plot for reference. Recording (i) was made using RS1, while all other recordings were made using RS5 (see methods).
FIGURE 39 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 39. Illustrations of male pygofer and internal genitalia, viewed ventrally (left) and laterally from left (right): (A) Pauropsalta kobongoides sp. nov., 65km NNE. of St George (27°32'S 148°50'E); (B) P. corymbiae sp. nov., Bull's Gully via Adavale (25°58'S 144°59'E); (C) P. inversa sp. nov., Eidsvold (25°22'S 151°07'E); (D) P. rubristrigata (Goding and Froggatt), Mt Lofty (34°59'S 138°43'E); (E–F) P. ayrensis Ewart, (E) Eidsvold (25°22'S 151°07'E), (F) Mount Surprise (18°09'S 144°19'E). Scaling is the same for all illustrations except (D), which is scaled differently to the rest.
FIGURE 37 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 37. Male calling song structure of Pauropsalta decora sp. nov. illustrated in expanded waveform plots (explained in Fig. 8), showing both buzzing and lilting components. The spectrogram at the bottom of the figure displays song frequency, which exhibits no modulation between the song components in this species. This specimen was recorded in the field at Beardmore Dam via St George (27°51'S 148°38'E).
FIGURE 30 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 30. Waveform plots illustrating the lilting component of the male calling song of Pauropsalta granitica sp. nov. from six different localities, including: (i) Mount Carbine (16°35'S 145°11'E), (ii) 27 km W. of Mount Surprise (18°13'S 144°04'E), (iii) Einasleigh River (18°11'S 144°00'E), (iv) 75 km W. of Georgetown (18°16'S 142°41'E), (v) Savannah Way 2 km E. of Qld/ NT border (17°13'S 138°01'E), and (vi) 8 km W. of Calvert River via Borroloola (16°53'S 137°18'E). Mean phrase repetition rates (PRR) for each recording are provided to the right of each plot for reference. All recordings were made by D. Marshall using RS4, apart from recording (i), which was made using RS1 (see methods).
FIGURE 26 in <p class="HeadingRunIn" align="left"><strong>A revision of the <em>Pauropsalta annulata </em>Goding & Froggatt species group (Hemiptera: Cicadidae) based on morphology, calling songs and ecology, with investigations into calling song structure, molecular phylogenetic relationships and a case of hybridisation between two subspecies</strong></p>
FIGURE 26. Waveform plots illustrating the male calling song of Pauropsalta simplex sp. nov. from four different localities, including: (i) Atherton (17°16'S 145°29'E), (ii) Top of Herberton Range (17°21'S 145°35'E), (iii) 5km W. of Herberton (17°23'S 145°21'E) and (iv) Bluewater Creek Rest Area S. of Townsville (19°11'S 146°33'E). Mean phrase repetition rates (PRR) for each recording are provided to the right of each plot for reference. All recordings were made using RS1, with the exception of recording (iv), which was made by D. Marshall using RS4 (see methods).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.