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179 results for “50(2)”
FIGURE 2. The Bayesian 50 in A new species of the genus Hebius (Squamata: Colubridae) from Sichuan, China
FIGURE 2. The Bayesian 50% majority-rule consensus tree inferred from cyt.b of mitochondrial DNA. Posterior probabilities for the clades are shown adjacent to the nodes to which they refer.
FIGURE 2. 50 in A molecular phylogeny of the genus Psittacula sensu lato (Aves: Psittaciformes: Psittacidae: Psittacula, Psittinus, Tanygnathus, † Mascarinus) with taxonomic implications
FIGURE 2. 50% majority-rule consensus tree of the Bayesian inference of relationships among representatives of Psittacula s.l. (Psittacula, Tanygnathus, Psittinus) based on Bayesian analysis (BEAST) of the concatenated data set (CYTB, RAG-1); maximum clade credibility tree, HKY model. Bayesian posterior probabilities above 0.85 are indicated left of the slash. Maximum likelihood methods (RAxML) gave an identical tree topology, bootstrap values (ML) above 70 are indicated after the slash.
FIGURE 2. Bayesian 50 in A new member of the genus Sinonatrix (Serpentes: Colubridae) from western China
FIGURE 2. Bayesian 50% majority-rule consensus tree inferred from cyt b. Posterior probabilities and support values for clades are shown adjacent to the nodes to which they refer.
Supplementary material 2 from: Stoev P, Akkari N, Zapparoli M, Porco D, Enghoff H, Edgecombe G, Georgiev T, Penev L (2010) The centipede genus Eupolybothrus Verhoeff, 1907 (Chilopoda: Lithobiomorpha: Lithobiidae) in North Africa, a cybertaxonomic revision, with a key to all species in the genus and the first use of DNA barcoding for the group. ZooKeys 50: 29-77. https://doi.org/10.3897/zookeys.50.504
Character dataset for larval and post-larval stadia of Eupolybothrus nudicornis based on published (Meinert 1872, Silvestri 1896, Daas et al. 1996) and new data. Post larval stadia of the new material defined after Daas et al. 1996. File format: Microsoft Excel (1997-2003).
Figure 2. The 50 in The limits of mtDNA analysis for determining the provenance of invasive species: a midwife toad example
Figure 2. The 50% majority-rule consensus tree from the Bayesian phylogenetic analysis of 74 ND4 mtDNA haplotypes of
Рис. 1. Kellicottia bostoniensis (Rousselet, 1908), партеногенетическая ♀ из Можайского воΔохраниΛища. 1 — внешний виΔ; 2 — панцирь с яйцом; 3 — шипы переΔнего края панциря; 4 — заΔний шип Fig. 1. Kellicottia bostoniensis (Rousselet, 1908), parthenogenetic ♀ from the Mozhaisk Reservoir. 1 — external appearance; 2 — shell with an egg; 3 — spines of the anterior part of shell; 4 — rear spine. Scale: 1 — 250 μm; 2–3 — 150 μm; 4 — 50 μm in Kellicottia Bostoniensis (Rousselet, 1908) (Rotifera: Brachionidae) И Eurycercus Macracanthus Frey, 1973 (Crustacea: Cladocera)
Рис. 1. Kellicottia bostoniensis (Rousselet, 1908), партеногенетическая ♀ из Можайского воΔохраниΛища. 1 — внешний виΔ; 2 — панцирь с яйцом; 3 — шипы переΔнего края панциря; 4 — заΔний шип Fig. 1. Kellicottia bostoniensis (Rousselet, 1908), parthenogenetic ♀ from the Mozhaisk Reservoir. 1 — external appearance; 2 — shell with an egg; 3 — spines of the anterior part of shell; 4 — rear spine. Scale: 1 — 250 μm; 2–3 — 150 μm; 4 — 50 μm
FIGURE 2. The 50 in Diplazoptilon (Asteraceae) is merged with Saussurea based on evidence from morphology and molecular systematics
FIGURE 2. The 50% majority rule consensus tree derived from Bayesian analysis of the combined nuclear ITS and plastid trnL-F and psbA-trnH sequences. Numbers above branches are Posterior probabilities, and Bootstrap support values from MP/ML analyses are given below branches receiving>50% values in both analyses.
FIGURE 2. The 50 in Molecular phylogeny confirms the placement of enigmatic Stachys persepolitana in Lamium (Lamiaceae; subfam. Lamioideae)
FIGURE 2. The 50% majority rule consensus phylogram from a Bayesian analysis of the nrITS dataset of members of subfamily Lamioideae (Lamiaceae). Posterior probabilities and non-parametric bootstrap values ≥ 50% from 1000 replicates are indicated above and below branches, respectively.
FIGURE 2. Bayesian 50 in Arnebia purpurea: a new member of formerly monotypic genus Huynhia (Boraginaceae-Lithospermeae)
FIGURE 2. Bayesian 50% majority-rule consensus tree from the ITS dataset, with posterior probability values (PP) and boostrap support (BS: in brackets and italics) shown near statistically supported nodes; the main clades of Lithospermeae are indicated with small squares and letters according to Cecchi & Selvi (2009).
FIGURE 2. Maximum parsimony 50 in A revision of the genus Leontodon (Asteraceae) in the Azores based on morphological and molecular evidence
FIGURE 2. Maximum parsimony 50% majority-rule consensus tree obtained from nuclear ITS sequence data (A) and from the combined chloroplast sequence data (B). Values above branches show MP bootstrap support; values below are the corresponding ML bootstrap support. Only values above 50% in at least one of the analysis criteria are shown.
FIGURE 2. The 50 in Clitocybula sulcata-a new species from India
FIGURE 2. The 50% majority-rule consensus tree obtained from Bayesian analysis using the data matrix of ITS sequences. Values above branches indicate the posterior probability (PP) and values below branches indicate the ML bootstrap (BS) support of that clade. PP values ≥0.5 and BS values ≥50% are shown. Clitocybula sulcata is shown in bold font to highlight its position in the tree. GenBank accession numbers are given after the name of each taxon.
FIGURE 2. Bayesian 50 in Begonia difformis comb. & stat. nov. (Sect. Platycentrum, Begoniaceae), a new species segregated from B. palmata D. Don
FIGURE 2. Bayesian 50% majority rule consensus tree base on nrITS DNA sequence. Numbers adjacent to the branches are posterior probabilities.
FIGURE 2. 50 in On the resurrection of Persicaria puritanorum (Polygonaceae)
FIGURE 2. 50 % major-rule consensus tree from Bayesian inference for nrITS (left side) and cp matK and partial trnK intron region (right side). Posterior probabilities are presented under the branches. Bootstrap values for maximum parsimony / maximum likelihood analyses are presented above the branches. N-dash (-) indicates support of less than 50 % bootstrap value or 0.5 posterior probability.
FIGURE 2. The Bayesian 50 in Tulasnella tubericola (Tulasnellaceae, Cantharellales, Basidiomycota): a new Rhizoctonia-like fungus associated with mycorrhizal evergreen oak plants artificially inoculated with black truffle (Tuber melanosporum) in Spain
FIGURE 2. The Bayesian 50% majority-rule consensus tree inferred from sequences of the ITS region of rDNA. Numbers above and below nodes represent bayesian posterior probabilities. Phylogram was rooted with an ITS sequence of Botryobasidium botryosum.
FIGURE 2. Bayesian 50 in Two new species of Pisolithus (Sclerodermataceae) from Australasia, and an assessment of the confused nomenclature of P. tinctorius
FIGURE 2. Bayesian 50% majority-rule consensus tree of the ITS nrDNA of Pisolithus, with boletoid outgroup. Bayesian posterior probabilities (PP) values are indicated above or below branches. Novel sequences bold. Phylogenetic lineages A–C indicated as per Phosri et al. (2012), and species numbering continuing on from Martin et al. (2002).
FIGURE 2. Jackknife 50 in A new species of Melanoseris (Lactucinae, Cichorieae, Asteraceae) from SW Xizang, China, based on morphological and molecular data
FIGURE 2. Jackknife 50% majority-rule tree of Melanoseris based on the combined plastid DNA dataset. The BI posterior probabilities (PP) are given below the branches and the MP jackknife support (JK) values are shown above the branches.
FIGURE 2. Bayesian 50 in Phylogeny of Chinese Chamaesium (Apiaceae: Apioideae) inferred from ITS, cpDNA and morphological characters
FIGURE 2. Bayesian 50% majority-rule consensus tree of Chamaesium and its related genus inferred from combined ITS and plastid rpl16+rps16+trnT-trnL using a GTR+G nucleotide substitution model. Values on the branches indicate its support (Bayesian posterior probability/ parsimony bootstrap). The tree is rooted with Bupleurum. The names of the clades identified are those of Zhou et al. (2008, 2009) and Downie et al. (2010).
FIGURE 2. Bayesian 50 in Phylogeny of the climber genus Haumania (Marantaceae) endemic to the tropical lowland rainforest in Central Africa
FIGURE 2. Bayesian 50% majority-rule consensus trees of the genus Haumania and major Marantaceae genera with the outgroup Canna indica (Cannaceae). Maximum Parsimony bootstrap values>70% (above branches) and posterior probabilities>0.70 (PP, below branches) are based on combined plastid dataset (matK, rps16 intron, trnL/trnL–F, trnC–petN1r) on the left and combined nuclear dataset (ITS, 5S) on the right, each including/excluding indels. Dark bold lines connecting species names from different trees indicate moderate to strong incongruencies in the tree topology between the nuclear and plastid dataset. Dashed light grey lines connect congruent taxon positions. Letters at internal tree nodes refer to clade names after Prince & Kress (2006a): A, Sarcophrynium clade; B, Stachyphrynium clade; C, Maranta clade; D, Calathea clade; E, Donax clade. Letters behind Haumania species names indicate locality of sample: C, Cameroon; G, Gabon; DRC, Democratic Republic of Congo. *, branch support is 100; -, branch support is below 0.70.
FIGURE 2. A 50 in Dominikia litorea, a new species in the Glomeromycotina, and biogeographic distribution of Dominikia
FIGURE 2. A 50% majority rule consensus phylogram inferred from a Bayesian analysis of RPB1 sequences of Dominikia litorea, 11 other known species of AMF, and Claroideoglomus claroideum as outgroup. The new species is in boldface and is followed by its GenBank accession numbers. The Bayesian posterior probabilities ≥0.50 and ML bootstrap values ≥50% are shown near the branches, respectively. Bar indicates 0.1 expected change per site per branch.
FIGURE 2. The 50 in Classification of the Relhania generic group (Asteraceae, Gnaphalieae) revisited using molecular phylogenetic analysis
FIGURE 2. The 50% majority-rule consensus of the MrBayes posterior tree sample based on combined nuclear and plastid DNA sequence data, including all accessions. Numbers at nodes indicate clade support (parsimony bootstrap│ Bayesian posterior probability); only bootstrap values ≥ 75 % and posterior probabilities ≥ 0.95 are indicated. Asterisks indicate species that were not placed within one of the named clades. Shaded boxes indicate the named clades; these represent morphologically-coherent groups mentioned in the text.
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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.