Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
3,761
datasets available to search
ShareScore release 0.9.0
Dataset results
3,761 results for “phylogenetic relationship”
FIGURE 1 in Phylogenetic relationships among species of the genus Bryodemella (s. str.) (Orthoptera: Oedipodidae) based on a cladistic analysis
FIGURE 1. Cladogram based on 34 characters from 8 species of the genus Bryodemella (s. str.) using Gastrimargus marmoratus and Oedipoda caerulescens as outgroups (length=55; ci=80; ri=80). Solid squares indicate synapomorphies, blank squares homoplasies. Numbers above branch (correspond to numbers in Table 2 and Table 3) denote characters, and what under their states.
FIGURE 5. Portions B1 in Phylogenetic relationships in Brazilian Pleurothallis sensu lato (Pleurothallidinae, Orchidaceae): evidence from nuclear ITS rDNA sequences
FIGURE 5. Portions B1 (notably Anathallis) and B2 of the most parsimonious tree presented in Fig. 1.
FIGURE 2 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 2 Phylogram from Bayesian Inference of phylogeny with branch lengths showing expected substitutions per site under the GTR+G+I model.
FIGURE 1 in Phylogenetic relationships in Brazilian Pleurothallis sensu lato (Pleurothallidinae, Orchidaceae): evidence from nuclear ITS rDNA sequences
FIGURE 1. One of the most parsimonious trees of the complete ITS nrDNA matrix focusing on the generic level. Numbers above branches are Fitch branch lengths, and those below branches are bootstrap percentages>50%. All included nodes are present in the strict consensus tree. On the right, relationships according to Pridgeon & Chase (2001).
FIGURE 1 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 1 Phylogeny of the Orobanchaceae inferred from parsimony, likelihood and Bayesian analyses from plastid trnK/matK sequences. The 50% majority rule tree from the Bayesian inference is depicted, nodes not supported by>= 50% in at least one of the three analyses are collapsed. Bold numbers above branches are posterior probabilities from Bayesian inference, italic numbers above branches are ML bootstrap values, and numbers below branches indicate MP bootstrap proportions, both provided when> 50%. Numbers in brackets indicate that the respective node was not supported by all three methodological approaches (this only applied to a single node). The bracketed number then indicates the strongest support for any node that contradicts the shown node. Roman numerals refer to clades defined in Bennett & Mathews (2006); letters refer to clade annotations in Morawetz et al. (2010).
FIGURE 5 Bardotia ankaranensis—A, B 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 5 Bardotia ankaranensis—A, B: detail of stem; C: inflorescence; D: flower; E: calyx; F: corolla dissected; G, H: stamens; I: style with stigma. —All drawn from the holotype by E. Fischer.
FIGURE 4 Orobanchaceae — a–c 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 4 Orobanchaceae — a–c: Bardotia ankaranensis, Madagascar, a: habit; b: plant; c: flowers; photographs by M. Bardot- Vaucoulon; d: Sieversandreas madagascarianus, Madagascar, photograph by E. Fischer.
FIGURE 1 in Placement of Cacoceria and phylogenetic relationships of the xylotine genera of the tribe Milesiini (Diptera, Syrphidae: Eristalinae) based on molecular characters
FIGURE 1. Strict consensus of three equally parsimonious trees resulting from POY analysis, ga cost 2, change cost 1. Length 2982 steps, C10, 10, RI 0.73. Bremer suppost values indicated above branches.
FIGURE 6. Phylogenetic relationships between 23 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 6. Phylogenetic relationships between 23 species and strains of Steinernema with bootstrap analysis of ITS regions. The eight strains of S. feltiae from a monophyletic group. Numbers at the nodes represent bootstrap proportion.
FIGURE 2 in Taxonomic validity and phylogenetic relationships of a newly-described toothcarp, Aphanius mesopotamicus Coad, 2009 (Teleostei: Cyprinodontidae)
FIGURE 2. Maximum likelihood estimates of phylogenetic relationships of A. mesopotamicus with congeneric taxa using complete cytb sequences (1140 bp). Nodes are labeled with bootstrap support by ML (first value) and posterior probability of the Bayesian analysis (second value). Tree condensed to show only those nodes with values higher than 75%. Scale bar: nucleotide substitutions per site
FIGURES 1–6. Phylogenetic relationships proposed for the Bibionomorpha major clades. 1 in Phylogeny of the Mycetophiliformia, with proposal of the subfamilies Heterotrichinae, Ohakuneinae, and Chiletrichinae for the Rangomaramidae (Diptera, Bibionomorpha)
FIGURES 1–6. Phylogenetic relationships proposed for the Bibionomorpha major clades. 1. Proposal of Wood & Borkent (1989), with the exclusion of the Anisopodiformia. 2. Matile's (1990) analysis of the Mycetophiliformia. 3. Chandler's (2002) study, with the inclusion of the genera of difficult placement within the Mycetophiliformia. 4. The relationships proposed by Jaschhof & Didham (2002) for Sciaridae, Cecidomyiidae, and Rangomaramidae. 5. Relationships proposed by Hippa & Vilkamaa (2005) for the Mycetophiliformia, including only recent taxa. 6. Same, including fossil taxa (not shown).
FIGURE 2. A in Phylogenetic relationships of Mesoamerican species of the genus Sciurus (Rodentia: Sciuridae)
FIGURE 2. A single most parsimonious tree found of the Mesoamerican Sciurus species showing the Atlantic clade (A) and Pacific clade (B). Numbers above each branch are Bremer decay values. Numbers below each branch are bootstrap values.
FIGURE 1. Mesoamerican Sciurus species distribution. A. S.aureogaster, B. S. deppei, C. S. granatensis, D. S. richmondi, E. S. variegatoides, F. S in Phylogenetic relationships of Mesoamerican species of the genus Sciurus (Rodentia: Sciuridae)
FIGURE 1. Mesoamerican Sciurus species distribution. A. S.aureogaster, B. S. deppei, C. S. granatensis, D. S. richmondi, E. S. variegatoides, F. S. yucatanensis. Base don Hall (1981).
FIGURES 2–5 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 2–5. Mentum (ventral view): 2 Helluodes devagiriensis n.sp.; 3 Physocrotaphus ceylonicus; 4 Pogonoglossus giganteus; 5 Schuelea drumonti. Scale bar = 1 mm.
FIGURE 2 in Phylogenetic relationships within the genus Cynanthus (Aves: Trochilidae), with emphasis on C. doubledayi
FIGURE 2. Bayesian tree using partial mtDNA gene ND2 using the model described in the text. Branching patterns of ML and MP analyses agree with the one depicted. Values above the node correspond to parsimony and maximum likelihood boostraps, below the node correspond to posterior probabilities. Numbers in parentheses correspond to the number of shared haplotypes. Abbreviations refer to Mexican states: GRO = Guerrero, OAX = Oaxaca, SIN = Sinaloa, PUE = Puebla, ZAC = Zacatecas, GTO = Guanajuato, QRO = Querétaro, DF = Distrito Federal, MICH = Michoacán.
FIGURE 1. A 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)
FIGURE 1. A. Distribution pattern of Physocrotaphini in the Indo-Pacific region (numbers in parenthesis indicate the number of Pogonoglossus species recorded from each region); B. Localities of Physocrotaphini in the Western Ghats-Sri Lanka global hot spot of biodiversity.
FIGURE 1 in Phylogenetic relationships within the genus Cynanthus (Aves: Trochilidae), with emphasis on C. doubledayi
FIGURE 1. General distribution of the species of the genus Cynanthus. Squares indicate localities of samples collected for this study. Black = C. doubledayi, light gray = C. sordidus, dark gray = C. latirostris, arrow (Islas Marías) = C. lawrencei.
FIGURES 19–22 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 19–22. Male and female genitalia (dorsal and lateral view): 19–20 Helluodes devagiriensis n.sp.; 21–22 Physocrotaphus ceylonicus. Scale bar = 1 mm.
FIGURES 6–14 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 6–14. Labrum, maxillary palpi and pronotum: 6–8 Helluodes devagiriensis n.sp.; 9–11 Helluodes taprobanae; 12–14 Helluodes westwoodi. Not scaled.
FIGURES 15–18 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 15–18. Median depression and cluster of filamentous setae on 2nd and 3rd sternites of male: 15 Physocrotaphus ceylonicus; 16 Pogonoglossus giganteus; 17 Helluodes devagiriensis n.sp.; 18 2nd and 3rd sternites of female Helluodes devagiriensis n.sp. Not scaled.
ScienceDex guides
Understand access before you commit
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.