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3,761 results for “phylogenetic relationship”
Figs. 9–10 in Revision of Three New World Macrosiagon Hentz Species (Coleoptera: Ripiphoridae: Ripiphorinae) with a Discussion of Phylogenetic Relationships within the Macrosiagonini
Figs. 9–10. Macrosiagon spp., male genitalia with median lobe in situ; (a) dorsal view, (b) ventral view. 9) M. gracilis; 10) M. mutilata.
Figures 19–24 in Taxonomy in the phylogenomic era: species boundaries and phylogenetic relationships among North American ants of the Crematogaster scutellaris group (Formicidae: Hymenoptera)
Figures 19–24. Crematogaster workers, showing lateral view of body (A), full-face view of head (B) and dorsal view of body (C). 19, C. mutans worker (CASENT0922736); 20, C. colei (CASENT0922726); 21, C. detecta holotype (CASENT0863461); 22, C. larreae paratype (CASENT0005943); 23, C. depilis (CASENT0005668); 24, C. californica lectotype (CASENT0923319). Images courtesy of AntWeb (www.antweb.org); photographers Wade Lee (19, 20), Zachary Griebenow (21), April Nobile (22, 23), Michele Esposito (24).
Figure 3 in A new scanilepiform from the Lower Triassic of northern Gansu Province, China, and phylogenetic relationships of non-teleostean Actinopterygii
Figure 3. Beishanichthys brevicaudalis gen. et sp. nov. (PKUP V4885). Specimen in right lateral view. A, photograph of whole specimen. B, cranial skeleton and pectoral girdle (photographed under water), illustrating teeth and sensory canal in premaxilla. C, close-up of cranial skeleton and pectoral girdle. D, line drawing of cranial skeleton and pectoral girdle. See text for definition of abbreviations. Scale bar: 5 mm.
FIG. 12 in Karyotype comparison of five African Vespertilionini species with comments on phylogenetic relationships and proposal of a new subtribe
FIG. 12. Chromosomal data mapped onto the maximum likelihood phylogeny of mitochondrial cyt b sequences of African Vespertilionini as proposed by Monadjem et al. (2021b). Taxa without karyotypic data were omitted. Bold lettering of taxa indicate that differentially stained karyotypes are available. On the branches, numbers connected by a slash indicate Robertsonian fusion products. Bold numbering indicates homoplasic products. In case of multiple autapomorphic features, the number of changes is given, followed by the type of rearrangement, e.g. '2x inv' indicating that two inversions were found. Diploid chromosome numbers (2n) are given at the right. Abbreviations of genera: A. — Afronycteris; H. — Hypsugo; L. — Laepotis; N. — Neoromicia; Ny. — Nycticeinops; P. — Pseudoromicia. Cytogenetic abbreviations: cr — centromere repositioning; der — derivative condition; f — fusion; fis — fission; inv — inversion; Rf — Robertsonian fusion
Fig. 4 in Morphological study of members of the genus Echeneibothrium (Cestoda: Rhinebothriidea: Echeneibothriidae) from rajiform skates of the Argentine Sea and analysis of the phylogenetic relationships within the family Echeneibothriidae
Fig. 4. Cross sections of terminal mature proglottid of Echeneibothrium cristinae sp. nov. from Bathyraja cousseauae (paratype MACN-Pa No. 736/21). (A) Cross section at the level of testes. (B) Cross section at the level of cirrus sac. (C) Cross section at the level of seminal receptacle. (D) Cross section at the level of ovarian isthmus. Abbreviations: cs, cirrus sac; dod, dorsal osmorregulatory duct; ov, ovary; sr, seminal receptacle; t, testes; ut, uterus; vd, vas deferens; vf, vitelline follicle; vg, vagina; vod, ventral osmoregulatory duct.
FIGURE 15 in Biogeographical affinity shapes relationships between ecological and phylogenetic mammal diversity and associations with their environmental correlates in the Americas
FIGURE 15. Non-stationary associations between ecological diversity (AvPD) and standard deviation in altitude (ALTstd). The maps show the spatial variation in local beta coefficients (b) for ALTstd as predictor of AvPD, obtained from the full model, i.e., including all environmental predictors, after application of geographically weighted regression separately on data for each mammal group. Regions of (+) and negative (-) associations are indicated. Maps are in Mollweide equal-area projection. Dash lines on each map indicate the location of the tropics in the Northern and Southern Hemispheres.
FIGURE 11 in Biogeographical affinity shapes relationships between ecological and phylogenetic mammal diversity and associations with their environmental correlates in the Americas
FIGURE 11. Non-stationary associations between phylogenetic diversity (AvPD) and net primary productivity (NPP). The maps show the spatial variation in local beta coefficients (b) for NPP as predictor of AvPD, obtained from the full model, i.e., including all environmental predictors, after application of geographically weighted regression separately on data for each mammal group. Regions of (+) and negative (-) associations are indicated. Maps are in Mollweide equal-area projection. Dash lines on each map indicate the location of the tropics in the Northern and Southern Hemispheres.
FIGURE 8 in Contribution to the knowledge of Chinese Gryllacrididae (Orthoptera) V: Further study on the Chinese Capnogryllacris and comment on the phylogenetic relationships of the Gryllacrididae
FIGURE 8. Capnogryllacris melanocrania (Karny, 1929). Female: A–B. head and pronotum: A. dorsal view, B. lateral view; C–E. apex of abdomen: C. dorsal view, D. lateral view, E. ventral view.
FIGURE 4 in Contribution to the knowledge of Chinese Gryllacrididae (Orthoptera) V: Further study on the Chinese Capnogryllacris and comment on the phylogenetic relationships of the Gryllacrididae
FIGURE 4. Capnogryllacris erythrocephala maculatis ssp. nov.. Female: A. head in frontal view; B–C. head and pronotum: B. dorsal view, C. lateral view; D, F. apex of abdomen: D. lateral view, F. ventral view; E. apices of ovipositor in lateral view; G. seventh abdominal sternite and subgenital plate in ventral view.
FIGURE 12 in Contribution to the knowledge of Chinese Gryllacrididae (Orthoptera) V: Further study on the Chinese Capnogryllacris and comment on the phylogenetic relationships of the Gryllacrididae
FIGURE 12. Capnogryllacris nigromarginata nigromarginata (Karny, 1928). Male: A–B. habitus in lateral view; C–D. tegmina in dorsal view: C. left tegmen, D. right tegmen.
Fig. 1. Phylogenetic relationship derived from 16S rRNA gene sequences between strains A1T, B1T and H1T in Serpentinimonas gen. nov., Serpentinimonas raichei sp. nov., Serpentinimonas barnesii sp. nov. and Serpentinimonas maccroryi sp. nov., hyperalkaliphilic and facultative autotrophic bacteria isolated from terrestrial serpentinizing springs
Fig. 1. Phylogenetic relationship derived from 16S rRNA gene sequences between strains A1T, B1T and H1T and other related taxa of the family Comamonadaceae. The tree was reconstructed using the maximum-likelihood method based on 16S rRNA gene sequences. Bootstrap values greater than 80% are shown at branch points. Bar, 0.02 substitutions per nucleotide position.
Figure 3. Bayesian 50 in A misinterpreted disjunction: the phylogenetic relationships of the North African land snail Gyrostomella (Gastropoda: Stylommatophora: Helicidae)
Figure 3. Bayesian 50% majority-rule consensus tree based on the combined analysis of partial sequences of the mitochondrial COI and 16 S rRNA genes, as well as a part of the nuclear ribosomal RNA cluster covering parts of the 5.8 S rRNA gene, the complete ITS2 and a part of the 28 S rRNA gene. Values at the branches represent Bayesian posterior probabilities (left) and maximum likelihood bootstrap values (right). For information on vouchers, see Supporting Information, Table S2.
FIGURE 12 in Review of the genus Pleurotroppopsis Girault (Hymenoptera: Eulophidae) with interspecific phylogenetic relationships based on morphological characters
FIGURE 12. Pleurotroppopsis maculatipennis Girault, holotype female: a, mesosoma in dorsal view; b, mesosoma in lateral view; c, fore wing in dorsal view; d, gaster in dorsal view; e, antenna; f, labels. Scale bar: 0.25 mm.
Fig. 3 in Systematics of limbless scincid lizards from northern Madagascar: morphology, phylogenetic relationships and implications for classification (Squamata: Scincidae)
Fig. 3 Paracontias rothschildi (ZSM 1579/2008), head. a Dorsal view. b Lateral view. c Ventral view. Scale bar = 1 mm
Fig. 5 in Biogeography, phylogenetic relationships and morphological analyses of the South American genus Mutisia L.f. (Asteraceae) shows early connections of two disjunct biodiversity hotspots
Fig. 5 Divergence times and ancestral range estimates of Mutisia and Pachylaena. Major clades and the current distribution of species in areas A to E are indicated right and left of the taxon names, respectively. Node bars are 95% HPD intervals of divergences times from the posterior distribution of the BEAST analysis. Pie charts at
FIGURES 11–13 in The mature larva and pupa of Tychius subsulcatus Tournier, 1847 (Coleoptera, Curculionidae), with comments on its biology and phylogenetic relationships
FIGURES 11–13. Tychius subsulcatus mature larva, habitus, 11—lateral view of thoracic segments; 12—lateral view of first abdominal segment; 13—lateral view of abdominal segments VII—X (AbI—X—numbers of abdominal segment, ThI—IIInumbers of thoracic segments. Setae: as—alar, ds—dorsal, eps—epipleural, eus—eusternal, lsts—laterosternal, pda—pedal, pds—postdorsal, prns—pronotal s., prs—prodorsal, ps—pleural, ss—spiracular, sts—sternal). Scale bar: 1 mm.
FIGURE 3 in Rediscovery, taxonomic status, and phylogenetic relationships of two rare and endemic snakes (Serpentes: Psammophiinae) from the southwestern Angolan plateau
FIGURE 3. Psammophis ansorgii NB 560, Tundavala montane grassland, Huíla province; A: whole body dorsal coloration showing the characteristic reddish brown body; B: Lateral view of head showing scalation and distinctive ivory-coloured pre- and postoculars and dark-edged, pale upper labial stripe; C: Habitat—montane grasslands, Tundavala, Huíla Province; D: Illustration from Boulenger's (1905) description of P. ansorgii showing uniform body coloration, and pale upper labial stripe and pale pre- and postoculars. All photos by N. Baptista.
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.
FIGURE 51 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 51. Frontals of cleared and stained larvae showing "waffle ornamentation: A) Lobotes surinamensis, SeaMap 30712, 7.2 mm SL; B) Datnioides polota, AMS I.28984-022, 8.1 mm SL; C) Hapalogenys sp., AMS I.44814-022, 8.3 mm SL; D) Chaetodon sp., AMS I.43805-011, 9.2 mm SL. Photos by M.N. Yerman (A–C) and A.C. Gill (D).
FIGURE 50 in Phylogenetic position of the fish genera Lobotes, Datnioides and Hapalogenys, with a reappraisal of acanthuriform composition and relationships based on adult and larval morphology
FIGURE 50. Lateral view of skulls of larvae: A) Luvarus imperialis, MCZ 55291, 10.5 mm SL; B) Naso sp. (Acanthuridae), MCZ 63121, 9.7 mm SL (from Johnson & Washington 1987; used with permission of G.D. Johnson). Abbreviations follow Figure 10 and 49.
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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.