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2,620 results for “Molecular Phylogeny”
FIGURE 2 in Integrative taxonomy base on morphology and molecular phylogeny with description of a new genus, Progoniogryllus gen. nov. and two new species (Orthoptera: Grylloidea: Gryllidae; Gryllinae)
FIGURE 2. The phylogenetic relationship among Gryllinae species, obtained by Maximum likelihood inference. Outgroups are Gryllotalpa sp_Moz, Gryllotalpa africana and Gryllotalpa sp_PNG. Abbreviations: Van (Vanuatu, Espiritu Santo), Moz (Mozambique Yemen, Socotra), PNG (PNG, Mt Wilhelm), NC (New Caledonia), India (India, Kerala).
FIGURE 7 in Integrative taxonomy base on morphology and molecular phylogeny with description of a new genus, Progoniogryllus gen. nov. and two new species (Orthoptera: Grylloidea: Gryllidae; Gryllinae)
FIGURE 7. Bodies of P. directus sp. nov. A. male with reduced hindwings; B. male with hindwings; C. brachypterous female; D. macropterous female. Scale bar: 10 mm
FIGURE 4 in Molecular relationships of the Australian Ennominae (Lepidoptera: Geometridae) and implications for the phylogeny of the Geometridae from molecular and morphological data
FIGURE 4. Twodimensional structure of a 28S D2 for the Australian geometrid moth Ciampa arietaria. The subdomains (D2a, D2b and D2c) are labelled following Michot and Bachellerie (1987); numbers correspond to nucleotide positions in Fig. 2.
FIGURE 3. Gap data matrix for 28S D2 in Molecular relationships of the Australian Ennominae (Lepidoptera: Geometridae) and implications for the phylogeny of the Geometridae from molecular and morphological data
FIGURE 3. Gap data matrix for 28S D2 sequences of geometrid species used to create a phylogeny for the Australian Geometridae. (0) gap absent; (1) gap present; () inapplicable.
FIGURE 9 in Molecular relationships of the Australian Ennominae (Lepidoptera: Geometridae) and implications for the phylogeny of the Geometridae from molecular and morphological data
FIGURE 9. Strict consensus cladogram of 3629 equally most parsimonious trees obtained using step matrix unweighted parsimony analysis of the 28S D2 fragment of geometrid species used to create a phylogeny for the Australian Geometridae. A = Archiearinae, Al = Alsophilinae, Am = Amphypyrinae, Az = Azelinini, B = Boarmiini, Ca = Caberini, Ci = Cidariini, C = Colotoini, D = Drepanidae, E = Ennomini, G = Geometrinae, Ha = Hadeninae, H = Hydriomenini, La = Larentiinae, L = Lithinini, M = Macariini, Nac = Nacophorini, N = Noctuinae, O = Oenochrominae, Op = Operophterini, S = Sterrhinae, U = unplaced, X = Xanthorhoini.
FIGURE 4 in A review of the subgenus Euprepiosaurus of Varanus (Squamata: Varanidae): morphological and molecular phylogeny, distribution and zoogeography, with an identification key for the members of the V. indicus and the V. prasinus species groups
FIGURE 4. Maximum parsimony (MP) cladogram based on 548 bp of the mitochondrial 16S ribosomal RNA gene sequences. Values above the nodes represent bootstrap values in percent.
FIGURE 6 in A review of the subgenus Euprepiosaurus of Varanus (Squamata: Varanidae): morphological and molecular phylogeny, distribution and zoogeography, with an identification key for the members of the V. indicus and the V. prasinus species groups
FIGURE 6. Bayesian (PP) reconstruction based on 548 bp of the mitochondrial 16S ribosomal RNA gene sequences. Values above the nodes are Bayesian posterior probabilities.
FIGURE 5 in A review of the subgenus Euprepiosaurus of Varanus (Squamata: Varanidae): morphological and molecular phylogeny, distribution and zoogeography, with an identification key for the members of the V. indicus and the V. prasinus species groups
FIGURE 5. Neighbour-joining (NJ) phylogram based on 548 bp of the mitochondrial 16S ribosomal RNA gene sequences. Values above the nodes represent bootstrap values in percent.
FIGURE 3 in A review of the subgenus Euprepiosaurus of Varanus (Squamata: Varanidae): morphological and molecular phylogeny, distribution and zoogeography, with an identification key for the members of the V. indicus and the V. prasinus species groups
FIGURE 3. Distribution of the members of the V. prasinus species group in relation to significant biogeographic discontinuities within the Indo-Australian Archipelago (We — Weber's line, Ly — Lydekker's line): V. prasinus (1), V. beccarii (2), V. kordensis (3), V. bogerti (4), V. keithhornei (5), V. telenesetes (6), V. macraei (7), V. boehmei (8), V. reisingeri (9).
FIGURE 1 in A review of the subgenus Euprepiosaurus of Varanus (Squamata: Varanidae): morphological and molecular phylogeny, distribution and zoogeography, with an identification key for the members of the V. indicus and the V. prasinus species groups
FIGURE 1. Distribution of the members of the V. indicus species group in relation to significant biogeographic discontinuities within the Indo-Australian Archipelago (Wa — Wallace's line, We — Weber's line, Ly — Lydekker's line): Varanus indicus (1), V. doreanus (2), V. jobiensis (3), V. finschi (4), V. melinus (5), V. cerambonensis (6), V. juxtindicus (7), V. yuwonoi, V. caerulivirens, V. zugorum, and Varanus sp. n. (8). Note, the Pacific island populations of V. indicus are not included in the map for a better resolution and due to their possible anthropogenic origin; dotted lines indicate presumed distributions.
FIGURE 2 in A review of the subgenus Euprepiosaurus of Varanus (Squamata: Varanidae): morphological and molecular phylogeny, distribution and zoogeography, with an identification key for the members of the V. indicus and the V. prasinus species groups
FIGURE 2. Detailed distribution maps of the members of the V. indicus species group: A and B — Australo-Papuan region, C — Moluccas, D — Solomon Islands; question marks and dotted lines indicate presumed distributions.
FIGURE 24 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 24: Markings on anterior throat. A: Without spots, immaculate; B: With small dark spots; C: Dark or completely melanic.
FIGURE 25 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 25: Dark or melanic gular band. A: Absent; B: Present on both sides of the neck, but incomplete; C: Present across the throat, complete.
FIGURE 21 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 21: Dorsolateral field (A), vertebral field (B), and paravertebrals spots with black or white margin (C).
FIGURE 18 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 18: Characters of color on sides of the head and scapular region: A: Dark line vertically crossing superciliary scales, eye and subocular; B: Longitudinal dark spot from the posterior part of eye to occipital region; C: Prescapular spot; D: Postscapular spot.
FIGURE 15 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 15: Lateral neck`s folds. LF: Longitudinal fold; LPAF: Lower Postauricular fold; AF: Antehumeral fold; PAF: Pre- Antehumeral fold.
FIGURE 17 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 17: Dorsal scales of the body: A: Juxtaposed, rounded, without keels, uniformly variegated; B: Subimbricate, rounded, very light keels, hardly marked, with a uniform color; C: Imbricate, Triangular, keels strongly marked, irregular variegated.
FIGURE 8 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 8: Morphometric Characters: HL: Head length. Ro: Rostral scale; EAM: External Auditory Meatus; HeH: Heigth of head.
FIGURE 7 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 7: Morphometric Characters: SVL: Snout – vent length; HL: Head length; WH: Width of head; TrL: Trunk length; WB: Width of body; HaL: Hand length; RL: Radius length; HuL: Humerus length; WHu: Width of humerus; FL: Femur length; TL: Tail length
FIGURE 6 in Phylogeny of the boulengeri group (Iguania: Liolaemidae, Liolaemus) based on morphological and molecular characters
FIGURE 6: A: Scales around the midbody. B: Scale rows in the center of the body. C: Dorsal head scales. D: Dorsal scales from occiput to the middle line anterior to the hindlimbs.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.