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14,185 results for “phylogenies”
Figure 1 in Phylogeny and ecology of the green seaweed Ulva
Figure 1: The highlights of Ulva research can be divided into three main research areas, which are reflected in this special edition.
Data from: Fast mvSLOUCH: Multivariate Ornstein-Uhlenbeck-based models of trait evolution on large phylogenies
<p>The PCMBase R package is a powerful computational tool that enables efficient calculations of likelihoods for a wide range of phylogenetic Gaussian models. Taking advantage of it, we redesigned the R package mvSLOUCH. Here, we demonstrate how the new version of the package can be used to thoroughly examine the evolution and adaptation of traits in a large dataset of 1252 vascular plants through the use of multivariate Ornstein-Uhlenbeck processes. The results of our analysis demonstrate the ability of the modeling framework to distinguish between various alternative hypotheses regarding the evolution of functional traits in angiosperms.</p>
Figure 6. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt
Figure 6. A. Amino acids variations of the COX1 gene generated by WebLogo3 server. B. Multiple amino acids alignments for selected Exitianus isolates generated by MultAlin server.
Figure 2. Exitianus nanus. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt
Figure 2. Exitianus nanus. A. Habitus, dorsal view; B. Habitus, female ventral view; C. Habitus, male ventral view; D. Pronotum & scutellum; E. Face; F. Male genitalia (pygofer, subgenital plate, valva, styles and connective, aedeagus).
Figure 1. Exitianus capicola. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt
Figure 1. Exitianus capicola. A. Habitus, dorsal view; B. Habitus, female ventral view; C. Habitus, male ventral view; D. Pronotum
Figure 3. Exitianus pondus. A in Classical taxonomy, molecular phylogeny and genetic analysis of the genus Exitianus Ball, 1929 (Hemiptera: Cicadellidae: Deltocephalinae) from Egypt
Figure 3. Exitianus pondus. A. Habitus, dorsal view; B. Habitus, female ventral view; C. Habitus, male ventral view; D. Pronotum & scutellum; E. Face; F. Male genitalia (pygofer, subgenital plate, valva, styles and connective, aedeagus); G. Aedeagus, lateral view.
FIGURE 5 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 5. Troglotayosicus akaido, sp. nov., carapace, dorsal aspect, under white light (A, B) and UV light (D, E) and lateral ocelli under white light (C) and UV light (F). A, D. Holotype Ƌ (ICN). B, C, E, F. Paratype ♀ (ICN). Scale bars: 2 mm (A, B, D, E); 0.6 mm (C, F).
FIGURE 14 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 14. Troglotayosicus akaido, sp. nov., dextral hemispermatophore, paratype Ƌ (ICN). A. Dorsal aspect. B. Ectal aspect. C. Ventral aspect. D. Ental aspect. Abbreviations: external lobe (EL); internal lobe (IL). Scale bar: 0.8 mm.
FIGURE 12 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 12. Troglotayosicus akaido, sp. nov., metasomal segment V, dorsal (A, D), lateral (B, E) and ventral (C, F) aspects. A–C. Holotype Ƌ (ICN). D–F. Paratype ♀ (ICN). Scale bar: 1.5 mm.
FIGURE 9 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 9. Troglotayosicus akaido, sp. nov., trichobothrial pattern of dextral pedipalp femur (A), chela (tibia) (B, D, F, H), and patella (C, E, G), dorsal (A, B, C), retrolateral (D, E), ventral (G, F), and prolateral (H) aspects. A–H. Holotype Ƌ (ICN). Trichobothrial nomenclature outside parentheses follows Prendini et al. (2010), whereas nomenclature inside parentheses follows a modi ed version of Vachon's (1974) terminology, reinterpreted based on the trichobothrial pattern of Typhlochactas Mitchell, 1971, by Prendini and Wheeler (2005) and Vignoli and Prendini (2009). Scale bar: 1 mm.
FIGURE 1 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 1. Known locality records of the species of Troglotayosicus Lourenço, 1981, in Colombia and Ecuador: (1) Troglotayosicus vachoni Lourenço, 1981; (2) Troglotayosicus humiculum Botero-Trujillo and Francke, 2009; (3) Troglotayosicus hirsutus Botero-Trujillo et al., 2012; (4) Troglotayosicus meijdeni Botero-Trujillo et al., 2017; (5) Troglotayosicus muranunkae Lourenço et al., 2020; (6) Troglotayosicus ballvei Botero-Trujillo et al., 2021; (7) Troglotayosicus akaido, sp. nov.
FIGURE 4 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 4. Troglotayosicus akaido, sp. nov., habitus, dorsal (A, C) and ventral (B, D) aspects. A, B. Holotype Ƌ (ICN). C, D. Paratype ♀ (ICN). Scale bars: 10 mm.
FIGURE 8 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 8. Troglotayosicus akaido, sp. nov., dextral pedipalp chela (tibia), dorsal (A, B), retrolateral (C, D), ventral (E, F), and prolateral (G, H) aspects. A, C, E, G. Holotype Ƌ (ICN). B, D, F, H. Paratype ♀ (ICN). Scale bar: 1.5 mm.
FIGURE 3 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 3. Phylogeny of Troglotayosicus Lourenço, 1981, based on maximum likelihood analysis of 131 morphological characters (appendices 2, 3). Unambiguous character states optimized and plotted on branches. Black circles indicate uniquely derived apomorphic states, white circles parallel derivations of apomorphic states. Numbers above branches correspond to character numbers; numbers below branches to character states (appendix 3); numbers at nodes indicate ultrafast bootstrap values.
FIGURE 11 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 11. Troglotayosicus akaido, sp. nov., metasomal segments I–IV, dorsal (A, D), lateral (B, E) and ventral (C, F) aspects. A–C. Holotype Ƌ (ICN). D–F. Paratype ♀ (ICN). Scale bar: 1.5 mm.
FIGURE 2 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 2. Troglotayosicus akaido, sp. nov., live habitus, holotype Ƌ (ICN). A. Anterior aspect. B. Lateral aspect.
FIGURE 6 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 6. Troglotayosicus akaido, sp. nov., coxosternal region and pectines, ventral aspect. A. Holotype Ƌ (ICN). B. Paratype ♀ (ICN). Scale bars: 1.5 mm.
FIGURE 10 in Phylogeny of the Troglomorphic Scorpion Genus Troglotayosicus (Scorpiones: Troglotayosicidae) with Description of a New Species from Colombia
FIGURE 10. Troglotayosicus akaido, sp. nov., sternites IV–VII, ventral aspect. A. Holotype Ƌ (ICN). B. Paratype ♀ (ICN). Scale bars: 2.5 mm.
Figure 6 in An update on the phylogeny and biogeographical history of Rhipicephalus sanguineus complex
Figure 6. The biogeographic analysis of the Rhipicephalus sanguineus complex with S-DIVA and BBM analysis based on mt 12S rDN.
Figure 3 in An update on the phylogeny and biogeographical history of Rhipicephalus sanguineus complex
Figure 3. Phylogenetic tree of sequences obtained by mt 12S rDNA from this study and sequences of GenBank. Haplotypes obtained from this study are indicated with TRY codes and highlighted in bold.
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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.