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39 results for “monophyletic groups”
Figures 123–127 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 123–127. Detail of the inner surface of bulla seminalis: 123, Castnia invaria Walker, 1854, without micropapillae; 124, Prometheus cochrus (Fabricius, 1787), small and flattened micropapillae present in low density; 125, Yagra fonscolombe (Godart, [1824]), micropapillae present in moderate density; 126, Prometheus heliconioides (Herrich-Schäffer, [1853]) comb. nov., cylindrical micropapillae present in high density; 127, Prometheus heliconioides (Herrich-Schäffer, [1853]) comb. nov., detail of the micropapillae.
Figures 46–48 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 46–48. Wing venation and associated characters: 46, Geyeria decussata (Godart, [1824]); 47, Imara pallasia (Eschscholtz, 1821); 48, Yagra fonscolombe (Godart, [1824]). Scale bars: 1 cm.
Figures 40–45 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 40–45. Antennae: 40, Morpheis clenchi Donahue, 1980; 41, Ceretes marcelserres (Godart, [1824]); 42, Synemon parthenoides R. Felder, 1874; 43, Castnia invaria Walker, 1854; 44, Geyeria decussata (Godart, [1824]); 45, Prometheus heliconioides (Herrich-Schäffer, [1853]) comb. nov. Scale bars: 1 mm.
Figure 39 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figure 39. Cladogram obtained from analysis using weighting (k = 20), including Tascina metallica Pagenstecher, 1890. Filled circles represent synapomorphies; open circles represent homoplasies. The numbers represent the values of Bremer support for the branches. Clades with heavier lines represent the new genera proposed. Coloured branches represent the appearance of a mimetic pattern. Asterisks next to taxa names represent species of uncertain position.
Figure 38 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figure 38. Cladogram obtained from analysis using weighting (k = 20), not including Tascina metallica Pagenstecher, 1890. Filled circles represent synapomorphies; open circles represent homoplasies. Asterisks next to taxa names represent species of uncertain position.
Figure 37 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figure 37. Cladograms obtained from unweighted analyses: A, cladogram including Tascina metallica Pagenstecher, 1890, from Oriental fauna; B, cladogram without Tascina metallica Pagenstecher, 1890.
Figures 73–80 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 73–80. Valva and associated characters, internal view: 73, Yagra fonscolombe (Godart, [1824]); 74, Athis flavimaculata (Miller, 1972); 75, Imara satrapes (Kollar, 1839); 76, Synpalamides phalaris (Fabricius, 1793); 77, Castnius pelasgus (Cramer, [1779]); 78, Telchin evalthe (Fabricius, 1775) comb. nov. 79, Synpalamides ctesiphon (Hübner, [1820]) comb. nov.; 80, Eupalamides cyparissias (Fabricius, 1776). Scale bars: 1 mm.
Figures 65–72 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 65–72. Aedeagus and associated characters, lateral view: 65, Imara pallasia (Eschscholtz, 1821); 66, Eupalamides cyparissias (Fabricius, 1776); 67, Telchin evalthe (Fabricius, 1775) comb. nov.; 68, Yagra fonscolombe (Godart, [1824]); 69, Corybantes pylades (Stoll, 1782); 70, Telchin atymnius (Dalman, 1824); 71, Synpalamides ctesiphon (Hübner, [1820]) comb. nov. 72, Telchin syphax (Fabricius, 1775). Scale bars: 1 mm.
Figures 53–58 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 53–58. Aedeagus and associated characters, lateral view: 53, Morpheis clenchi Donahue, 1980; 54, Synemon parthenoides R. Felder, 1874; 55, Ceretes thais (Drury, 1782); 56, Castnius pelasgus (Cramer, [1779]); 57, Synpalamides orestes (Walker, 1854); 58, Prometheus heliconioides (Herrich-Schäffer, [1853]) comb. nov. Scale bar: 1 mm.
Figures 59–64 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 59–64. Posterior end of aedeagus and associated characters, lateral view: 59, Imara pallasia (Eschscholtz, 1821); 60, Prometheus mimica (R. Felder, 1874) comb. nov.; 61, Synpalamides hegemon (Kollar, 1839) comb. nov.; 62, Corybantes mathani (Oberthür, 1881); 63, Synpalamides phalaris (Fabricius, 1793); 64, Telchin licus (Drury, 1773). Scale bars: 1 mm.
Fig. 4 in Progress in erigonine spider phylogeny-the Savignia-group is not monophyletic (Araneae: Linyphiidae)
Fig. 4 Continuation of Fig. 3, showing clade 21
Data from: Australian Lasioglossum + Homalictus Form a Monophyletic Group: Resolving the "Australian Enigma"
The bee genus Lasioglossum includes over 1000 species of bees distributed on all continents except Antarctica. Lasioglossum is a major component of the bee fauna in the Holarctic, Ethiopian, and Oriental regions, and is an important group for investigating the evolution of social behavior in bees. Given its cosmopolitan distribution, the historical biogeography of the genus is of considerable interest. We reconstructed phylogenetic relationships among the subgenera and species within Lasioglossum s.s. using DNA sequence data from a slowly evolving nuclear gene, EF-1α. The entire data set includes over 1604 aligned nucleotide sites (including three exons plus two introns) for 89 species (17 outgroups plus 72 ingroups). Parsimony and maximum likelihood analyses provide strong evidence that the primarily Indoaustralian subgenera (Homalictus, Chilalictus, Parasphecodes) form a monophyletic group. Bootstrap support for the Australian clade ranged from 73% to 77% (depending on the method of analysis). Monophyly of the Australian Lasioglossum suggests that a single colonization event (via Southeast Asia and New Guinea) gave rise to a lineage of over 350 native Indoaustralian bees. We discuss the implications of Australian monophyly for resolving the "Australian enigma" -- similarity in social behavior among the Australian halictine bees relative to Holarctic groups.
Data from: Australian Lasioglossum + Homalictus Form a Monophyletic Group: Resolving the "Australian Enigma"
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Fig. 1 in Progress in erigonine spider phylogeny-the Savignia-group is not monophyletic (Araneae: Linyphiidae)
Fig. 1 Strict consensus tree of all eight most parsimonious trees, with Bremer support values (TreeBASE S2624) shown besides nodes; for tree section with 'distal erigonines', see Fig. 2. Topology congruent
Fig. 3 in Progress in erigonine spider phylogeny-the Savignia-group is not monophyletic (Araneae: Linyphiidae)
Fig. 3 Strict consensus tree of the 'distal erigonines', with unambiguous character optimisation (squares) and clade numbers (in circles); see also Figs. 4, 5 and 6. Squares mark homoplasious (white) and non-homoplasious (black) character-state changes; character and character-state numbers given above and below squares, respectively
Figures 128–135 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 128–135. Female genitalia and associated characters, dorsal view: 128, Synpalamides amycus (Cramer [1779]) comb. nov.; 129, Yagra fonscolombe (Godart, [1824]); 130, Athis inca (Walker, 1854); 131, Athis palatinus (Cramer, 1777); 132, Telchin syphax (Fabricius, 1775); 133, Imara therapon (Kollar, 1839) comb. nov.; 134, Synpalamides fabricii (Swainson, 1823) comb. nov.; 135, Castnia invaria Walker, 1854. Scale bar: 1 mm.
Figures 111–116 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 111–116. Female genitalia and associated characters, dorsal view: 111, Imara acraeoides (Guérin-Ménéville, [1832]) comb. nov.; 112, Synpalamides amycus (Cramer [1779]) comb. nov.; 113, Castnius marcus (Jordan, 1908); 114, Castnia invaria Walker, 1854; 115, Prometheus cochrus (Fabricius, 1787); 116, Ceretes marcelserres (Godart, [1824]). Scale bars: 1 mm.
Figures 49–51 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 49–51. Wing scales: 49, piliform scales on the hindwing base of Imara pallasia (Eschscholtz, 1821); 50, oblong scales on the hindwing of Yagra fonscolombe (Godart, [1824]); 51, projection on the inner margin of the forewing with oblong scales of Synpalamides amycus (Cramer [1779]) comb. nov. Scale bars: 1 cm.
Figures 87–95 in Phylogeny of Neotropical Castniinae (Lepidoptera: Cossoidea: Castniidae): testing the hypothesis of the mimics as a monophyletic group and implications for the arrangement of the genera
Figures 87–95. Tegumen, uncus, and associated characters, dorsal view: 87, Yagra dalmannii (Gray, 1838); 88, Synpalamides ctesiphon (Hübner, [1820]) comb. nov.; 89, Prometheus heliconioides (Herrich-Schäffer, [1853]) comb. nov.; 90, Telchin atymnius (Dalman, 1824); 91, Castnia invaria Walker, 1854; 92, Imara satrapes (Kollar, 1839); 93, Telchin evalthe (Fabricius, 1775) comb. nov.; 94, Castnius pelasgus (Cramer, [1779]); 95, Synpalamides hegemon (Kollar, 1839) comb. nov. Scale bars: 1 mm.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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