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142 results for “paraphyly”
Extensive paraphyly in the typical owl family (Strigidae)
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Supplemental files for: Huston, D.C. & Smales, L.R. Proposal of Spinulacorpus biforme (Smales, 2014) n. gen., n. comb. and the Spinulacorpidae n. fam. to resolve paraphyly of the acanthocephalan family Rhadinorhynchidae Lühe, 1912. Systematic Parasitology.
<p>Supplementary datafiles associated with phylogenetic analyses for the paper:</p> <p>Huston, D.C. & Smales, L.R. Proposal of <em>Spinulacorpus biforme </em>(Smales, 2014) n. gen., n. comb. and the Spinulacorpidae n. fam. to resolve paraphyly of the acanthocephalan family Rhadinorhynchidae Lühe, 1912.</p> <p>Accepted for publication in the journal Systematic Parasitology, on the 20 of June 2020.</p> <p>See 'READ_ME.txt' file for further explanation of contents of this upload.</p>
Figure 26 in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 26. Distribution of A, Pseudoanthidium kaspareki; B, P. rozeni.
Figure 15. Neotype Anthidium stigmaticorne. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 15. Neotype Anthidium stigmaticorne. A, dorsal view; B, labels; C, face; D, lateral view.
Figure 14. Lectotype Anthidium frontale. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 14. Lectotype Anthidium frontale. A, dorsal view; B, face; C, labels; D, lateral view.
Figure 5. Lectotype, Pseudoanthidium nanum. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 5. Lectotype, Pseudoanthidium nanum. A, lateral view; B, dorsal view; C, labels.
Figure 26 in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 26. Distribution of A, Pseudoanthidium kaspareki; B, P. rozeni.
Figure 15. Neotype Anthidium stigmaticorne. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 15. Neotype Anthidium stigmaticorne. A, dorsal view; B, labels; C, face; D, lateral view.
Figure 14. Lectotype Anthidium frontale. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 14. Lectotype Anthidium frontale. A, dorsal view; B, face; C, labels; D, lateral view.
Figure 5. Lectotype, Pseudoanthidium nanum. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 5. Lectotype, Pseudoanthidium nanum. A, lateral view; B, dorsal view; C, labels.
Figure 1 in Lost and found: Totton's Minyaspis faroni revived and molecular evidence of paraphyly of Oxynaspis and Minyaspis
Figure 1. Minyaspis faroni. In situ photography, specimen with extended cirri.
Data from: Molecular evidence for the paraphyly of Scolecophidia and its evolutionary implications
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Data from: Whole mitochondrial genomes provide increased resolution and indicate paraphyly in deer mice
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Data from: A complete molecular phylogeny of Claravis confirms its paraphyly within small New World ground-doves (Aves: Peristerinae) and implies multiple plumage state transitions
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Data from: Single cell genomics of uncultured marine alveolates shows paraphyly of basal dinoflagellates
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Figure 20. Lectotype Pseudoanthidium eversmanni. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 20. Lectotype Pseudoanthidium eversmanni. A, dorsal view; B, ventral metasoma; C, labels; D, S5 showing sternal combs; E, S7.
Figure 9. Dorsal habitus, females. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 9. Dorsal habitus, females. A, vertex Pseudoanthidium nanum (Kalpetran, Switzerland); B, vertex P. scapulare (Rich, Morocco); C, mesonotum P. nanum (Kalpetran, Switzerland); D, mesonotum P. scapulare (Rich, Morocco); E, metasoma P. nanum (Kalpetran, Switzerland); F, metasoma P. scapulare (Rich, Morocco).
Figure 4. Lectotype, Pseudoanthidium reptans. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 4. Lectotype, Pseudoanthidium reptans. A, face; B, dorsal view; C, labels; D, ventral view; E, apex of metasoma, showing tips of gonostyli.
Figure 3 in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 3. Best-scoring maximum likelihood tree based on analyses of the (A) 75% UCE matrix and (B) 100% UCE matrix. Numbers shown at nodes are maximum likelihood bootstrap values based on 1000 bootstrap replicates in RAxML. Only bootstrap values greater than 50% are shown. Terminals are labelled with a DNA extraction code corresponding to the whole-body extraction performed for UCE sequencing, the DNA extraction code for the same specimen based on single leg extractions performed for barcode sequencing, the species name, collection locality and either as male (m) or female (f). Three specimens (1800, 1802 and 1805) were only sequenced following the UCE protocol and thus have only a UCE extraction code.
Figure 1. A in Paraphyly and low levels of genetic divergence in morphologically distinct taxa: revision of the Pseudoanthidium scapulare complex of carder bees (Apoidea: Megachilidae: Anthidiini)
Figure 1. A, nest of Pseudoanthidium stigmaticorne, in a capsule of Tulipa biflora Pall. (Lisya Bay, Crimea). Insert in lower right shows close-up of the same nest. Three males eventually emerged (photo Alexander V. Fateryga); B, Pseudoanthidium stigmaticorne nesting in a stem of Crambe maritima L. (Arabatskaya Strelka sand spit, Crimea). A pin is inserted to mark the nest (photo Sergey P. Ivanov).
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.