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368 results for “Consensus”

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FIGURE 3. Majority rule consensus tree from 8002 in Revision of Nearctic <i>Dasysyrphus</i> Enderlein (Diptera: Syrphidae)

FIGURE 3. Majority rule consensus tree from 8002 trees of Bayesian Markov Chain Monte Carlo analysis. Species groups are highlighted as follows: albostriatus group: orange, pinastri group: blue, tricinctus group: green and venustus group: red (follows updated species groups).

opennotspecifiedMay 2013View details →
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FIGURE 2. Semi-strict consensus tree from 26 in Revision of Nearctic <i>Dasysyrphus</i> Enderlein (Diptera: Syrphidae)

FIGURE 2. Semi-strict consensus tree from 26 most parsimonious trees (Consistency Index (CI) excluding uninformative characters = 0.4141, Retention Index (RI) = 0.6826); showing Jackknife support values above and Bremer support values below branches. Species groups are highlighted as follows: albostriatus group: orange, pinastri group: blue, tricinctus group: green and venustus group: red (follows updated species groups).

opennotspecifiedMay 2013View details →
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FIGURE 6. Strict consensus tree for 61 in Systematics and Phylogenetics of Indo-Pacific Luciolinae Fireflies (Coleoptera: Lampyridae) and the Description of new Genera

FIGURE 6. Strict consensus tree for 61 IP analysis; consensus of 163 MPT of length 2615 from phylogenetic analysis of 61 Indo-Pacific study group taxa. New genera, new species, and still undescribed species in red, bold. Bremer supports above branches.

opennotspecifiedMay 2013View details →
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FIGURE 2. Majority rule consensus Bayesian tree created from the remaining 7500 in Preliminary use of DNA sequences for Dohrniphora (Diptera: Phoridae) phylogeny and taxonomy

FIGURE 2. Majority rule consensus Bayesian tree created from the remaining 7500 trees after burn-in. Branch support values are posterior probabilities.

opennotspecifiedAug 2011View details →
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FIGURE 1. Strict consensus tree from a in Biogeography and divergence time estimation of the relict Cape dragonfly genus Syncordulia: global significance and implications for conservation

FIGURE 1. Strict consensus tree from a PAUP parsimony heuristic search; 10,000 addition sequence replicates; bootstrap support shown above branches

opennotspecifiedAug 2009View details →
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FIGURE 2. Consensus tree from a in Biogeography and divergence time estimation of the relict Cape dragonfly genus Syncordulia: global significance and implications for conservation

FIGURE 2. Consensus tree from a PHASE analysis; 10 million generations. Posterior probabilities shown above branches

opennotspecifiedAug 2009View details →
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Figure 9. Consensus tree reconstructed from a 489 in A new genus of large hydrothermal vent-endemic gastropod (Neomphalina: Peltospiridae)

Figure 9. Consensus tree reconstructed from a 489-bp fragment of the cytochrome c oxidase subunit I gene using Bayesian inference. Node values represent Bayesian posterior probabilities.

opennotspecifiedSep 2015View details →
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Figure 3. Consensus Bayesian tree for 28 in Patterns of morphological diversification of mainland Anolis lizards from northwestern South America

Figure 3. Consensus Bayesian tree for 28 species of mainland Colombian Anolis, their main clades, and their geographical distribution. Values at nodes indicate posterior probability (PP); black circles at nodes indicate PP = 1.0. Coloured ovals at tips identify morphotypes (MTs) as follows: blue: MT1, green: MT2; black: MT3, purple: MT4; yellow: MT5; red: MT6; cyan: MT7; grey: MT8, orange: MT9, white: MT10. Filled bars indicate geographical distribution: montane (white), cis-Andean (grey), trans-Andean (black), and wide distribution (red).

opennotspecifiedSep 2015View details →
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Figure 36. Strict consensus trees from the taxon addition–deletion runs. A in Craniodental characters and the relationships of Procyonidae (Mammalia: Carnivora)

Figure 36. Strict consensus trees from the taxon addition–deletion runs. A, consensus tree of the five most parsimonious trees recovered by an exhaustive search of extant taxa only; B, most parsimonious tree recovered by a heuristic search of taxa with more than 50% of the characters scorable; C, consensus tree of the 11 most parsimonious trees recovered by a heuristic search of taxa with more than 25% of the characters scorable; D, consensus tree of the 342 most parsimonious trees recovered by a heuristic search of all taxa scored. Numbers below the nodes indicate node number. †, extinct taxa.

opennotspecifiedFeb 2012View details →
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Figure 9. A, strict consensus from 50 MPTs obtained from Analysis I in Tooth morphology of Echimyidae (Rodentia, Caviomorpha): homology assessments, fossils, and evolution

Figure 9. A, strict consensus from 50 MPTs obtained from Analysis I; B, strict consensus from 9 MPTs obtained from Analysis II. Only unambiguous synapomorphies are shown.

opennotspecifiedJan 2012View details →
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FIGURE 1. The consensus phylogram resulting from a in Three new host records of endophytic Neofusicoccum species reported from Dendrobium orchids

FIGURE 1. The consensus phylogram resulting from a RAxML analysis of the combined four loci alignment (ITS-RPB2 -EF-1α-TUB2) of the analysed Neofusicoccum and related species sequences. Strains isolated in this study are in red. Ex-epitype and ex-type isolates are

opennotspecifiedApr 2021View details →
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Figure 3. Ninety per cent majority rule consensus cytochrome oxidase I in Swima (Annelida, Acrocirridae), holopelagic worms from the deep Pacific

Figure 3. Ninety per cent majority rule consensus cytochrome oxidase I (COI) gene tree from Bayesian analyses of cirratuliform annelids, showing Swima as part of Acrocirridae and support for Swima monophyly. Unsupported branches were collapsed. Support indicated as posterior probabilities. Asterisks indicate 1.0 or 100% support.

opennotspecifiedOct 2011View details →
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Figure 1. Bayesian consensus phylogram for 167 in Phylogenetic position of the poorly known montane cascade frog Amolops monticola (Ranidae) and description of a new closely related species from Northeast India

Figure 1. Bayesian consensus phylogram for 167 taxa representing members of the genus Amolops and five outgroup species, based on 2001 bp of concatenated mitochondrial DNA (16S, COI, and ND2 genes). Voucher numbers and associated details are referenced in Table S1. Bayesian posterior probabilities (BPP) and RAxML bootstrap support (BS) values&gt;50% are denoted above and below the branches, or separated by an oblique (/) mark, respectively. Black vertical bars beside the terminal nodes indicate Amolops species recognised based on Bayesian and ML inferences; grey bars and open rectangles indicate putative species delimited in the bPTP analysis with support values of&gt;90% or &lt;90%, respectively. The genus comprises eight major species groups following Wu et al. (2020), as indicated with coloured bars on the extreme right and corresponding circles on the internal and terminal nodes. Four subgroups are observed within the focal Amolops monticola group. Illustrations representing species groups were prepared based on published photographs.

opennotspecifiedAug 2021View details →
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FIGURE 27. Majority-rule consensus tree from Bayesian analysis using 16S in Revision of the French Terebellidae sensu stricto (Annelida, Terebelliformia), with descriptions of nine new species

FIGURE 27. Majority-rule consensus tree from Bayesian analysis using 16S. Asterisk indicates posterior probability&gt; 80%. Text in red refers to specimens sequenced during this study.

opennotspecifiedSep 2021View details →
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FIGURE 5. Fifty percent majority rule consensus tree from a in A new vole from Xizang, China and the molecular phylogeny of the genus Neodon (Cricetidae: Arvicolinae)

FIGURE 5. Fifty percent majority rule consensus tree from a Bayesian inference analysis of cytochrome b nucleotide sequences. Numbers at nodes represent posterior probabilities.

opennotspecifiedDec 2012View details →
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FIGURE 42. Maximum Likelihood consensus tree inferred from the 16S rDNA sequence alignment representing a in Monographic revision of the endemic Helix mazzullii De Cristofori & Jan, 1832 complex from Sicily and re-introduction of the genus Erctella Monterosato, 1894 (Pulmonata, Stylommatophora, Helicidae)

FIGURE 42. Maximum Likelihood consensus tree inferred from the 16S rDNA sequence alignment representing a possible reconstruction of Helicidae phylogeny. Initial trees for the heuristic search were obtained automatically. A GTR + Γ model (alpha= 0.29) was employed. The analysis involved 58 nucleotide sequences. All positions containing gaps and missing data were eliminated.

opennotspecifiedDec 2011View details →
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FIGURE 8a. Maximum Likelihood consensus tree inferred from a in Monographic revision of the endemic Helix mazzullii De Cristofori & Jan, 1832 complex from Sicily and re-introduction of the genus Erctella Monterosato, 1894 (Pulmonata, Stylommatophora, Helicidae)

FIGURE 8a. Maximum Likelihood consensus tree inferred from a combined dataset including partial sequences of the mitochondrial 16S rRNA and 12S rRNA and the nuclear ITS-2 genes. Numbers above branches represent bootstrap values.

opennotspecifiedDec 2011View details →
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FIGURE 1. The Bayesian consensus tree inferred from D2 in Nematodes from galls on Myrtaceae. III. Fergusobia from flower bud and stigma galls on Eucalyptus, with descriptions of four new species

FIGURE 1. The Bayesian consensus tree inferred from D2/D3 under TVM+I+G model (lnL=4001.6121; freqA=0.2903; freqC=0.1443; freqG=0.2394; freqT=0.3259; R(a)=0.8475; R(b)=3.4236; R(c)=1.9889; R(d)=0.455; R(e)=3.4236; R(f)=1; Pinva=0.522; Shape=0.5933). Posterior probability values exceeding 50% are given on appropriate clades. (Tree labels comprise nematode species, location (Australia state code), gall type, host plant species and GenBank accession number.

opennotspecifiedDec 2012View details →
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FIGURE 15. Consensus performed with K values between 2–4 in A morphology-based phylogeny of the Liolaemus alticolor – bibronii group (Iguania: Liolaemidae)

FIGURE 15. Consensus performed with K values between 2–4. Numbers above branches correspond to Symmetric Resampling values.

opennotspecifiedDec 2013View details →
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FIGURE 16. Consensus performed with K values between 5–9 in A morphology-based phylogeny of the Liolaemus alticolor – bibronii group (Iguania: Liolaemidae)

FIGURE 16. Consensus performed with K values between 5–9. Numbers above branches correspond to Symmetric Resampling values.

opennotspecifiedDec 2013View details →

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International Brain Laboratory public data

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