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67 results for “scorpionfly”
Fig. 4 in Review of the scorpionfly genus Dicerapanorpa Zhong & Hua (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 4. Dicerapanorpa zhengkuni sp. nov. A. Ƌ, holotype, dorsal view, NWAU. B. ♀, paratype, dorsal view, NWAU. C. Head, frontal view. D. Ƌ, abdominal segments III and IV, showing the notal organ, dorsal view. E. Anal horns, dorsal view. F. Ƌ, A6–A8, lateral view. G–H. Ƌ, genital bulb in dorsal and ventral views, respectively. I. ♀, subgenital plate, ventral view. J. ♀, medigynium, ventral view. Scale bars: A–B = 5.0 mm; C–F = 0.5 mm; G–J = 0.2 mm.
Fig. 3 in Review of the scorpionfly genus Dicerapanorpa Zhong & Hua (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 3. Scanning electron micrographs of genitalia of Dicerapanorpa bifurcata sp. nov. A. Ƌ, genitalia in ventral view, with hypandrium removed. B. Magnification of A. C. ♀, medigynium, ventral view. Scale bars: A = 0.5 mm; B–C = 0.1 mm.
Fig. 5 in Review of the scorpionfly genus Dicerapanorpa Zhong & Hua (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 5. Scanning electron micrographs of genitalia of Dicerapanorpa zhengkuni sp. nov. A. Ƌ, genitalia in ventral view, with hypandrium removed. B. Magnification of A. C. ♀, medigynium, ventral view. Scale bars: A = 0.5 mm; B–C = 0.1 mm.
Fig. 2 in Review of the scorpionfly genus Dicerapanorpa Zhong & Hua (Mecoptera: Panorpidae), with descriptions of two new species
Fig. 2. Dicerapanorpa bifurcata sp. nov. A. Ƌ, holotype, dorsal view, NWAU. B. ♀, paratype, dorsal view, NWAU. C–D. Ƌ, genital bulb in dorsal and ventral views, respectively. E. ♀, subgenital plate, ventral view. F. ♀, medigynium, ventral view. Scale bars: A–B = 5.0 mm; C–F = 0.2 mm.
Figure 1-4. 1 in Preliminary Checklist of the Mecoptera of Florida: Earwigflies, Hangingflies, and Scorpionflies
Figure 1-4. 1) Habitus of male Bittacus punctiger, spotted hangingfly, from Alachua County, Florida. Image by James C. Dunford. 2) Habitus of male Panorpa lugubris, black scorpionfly, from unknown locality, Florida. Image by Gary J. Steck. 3) Habitus of male Panorpa floridana holotype, Florida scorpionfly, from Alachua County, Florida. Image by James C. Dunford. 4) Habitus of male Panorpa americana, American scorpionfly, from Liberty County, Florida. Image by James C. Dunford.
Figures 1–4. 1 in Rediscovery of the Florida Scorpionfly, Panorpa floridana Byers (Mecoptera: Panorpidae)
Figures 1–4. 1) Male Panorpa floridana in situ on low growing Ilex sp. in Gold Head Branch Ravine, Clay County, Florida, 4 November 2010 (photographic voucher FNAI Reference Code: N13CRE01FLUS, Reference ID: 189911; MorphoBank M152668). Photograph by Stephen Cresswell. 2) Lateral view of male Panorpa floridana in situ in Gold Head Branch Ravine, Clay County, Florida, 4 November 2010 (photographic voucher FNAI Reference Code: N13CRE01FLUS, Reference ID: 189911; MorphoBank M152669). Photograph by Stephen Cresswell. 3) Dorsal view of male Panorpa floridana in situ in Gold Head Branch Ravine, Clay County, Florida, 4 November 2010 (photographic voucher FNAI Reference Code: N13CRE01FLUS, Reference ID: 189911; MorphoBank M152670). Photograph by Stephen Cresswell. 4) Anterior view of head of male Panorpa floridana in situ in Gold Head Branch Ravine, Clay County, Florida, 4 November 2010 (photographic voucher FNAI Reference Code: N13CRE01FLUS, Reference ID: 189911; MorphoBank M152671). Photograph by Stephen Cresswell.
FIGURE 7 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 7. Thoraces of Diptera (A) and Parapolycentropus burmiticus (B). A. Limonia sp. Words in brackets are terms alternatively used in dipterology. B. Parapolycentropus burmiticus. Note differences in scale; bold lines indicate divisions between pro-, meso-, and metathoraces.
FIGURE 4 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 4. Photomicrographs of heads and/or mouthparts of Parapolycentropus. A. Oblique ventral view of head and proboscis, JZC Bu81. B, C, Opposite views of JZC Bu82: B. Dorsolateral view, showing frons and base of mouthparts, C. ventral view of mouthparts. D. Proboscis, JZC Bu148. E. Hypopharynx, JZC Bu82. A, D, E, Fully Z-stacked photos; B, C, partially Z-stacked. D, E, Photographed at 200× using compound microscope.
FIGURE 1 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 1. Photomicrographs of male Parapolycentropus paraburmiticus. A. JZC Bu81. B. JZC Bu82. C. JZC Bu148. D. JZC Bu273. All to the same scale.
FIGURE 6 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 6. Thoraces of Mecoptera. A. Nannochorista (Nannochoristidae) (redrawn from Friedrich and Beutel, 2010). B. Parapolycentropus paraburmiticus (original). C. Detail of wing base, based on specimen JZC Bu542A. Note differences in scale. Bold lines indicate divisions between pro-, meso-, and metathoraces.
FIGURE 9 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 9. Assorted details of Parapolycentropus paraburmiticus. A. Distitarsus and pretarsal claw of JZC Bu148, lateral view (Z-stacked compound photomicrograph, 200×). B. Drawings of pretarsal claws of representative specimens: pro-, meso-, and metathoracic claws of JZC Bu273; prothoracic claws of JZC Bu80 and JZC Bu81, showing basal tooth; and pro-, meso-, and metathoracic claws of JZC Bu542A. C. Ventral margin of middle of abdomen showing small grains, JZC Bu148 lateral view (Z-stacked photo using compound microscope at 200×).
FIGURE 5 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 5. Head and mouthparts of Parapolycentropus. A, C–F, Diagrammatic representations of proboscis. A. Head and proboscis, dorsal view. B. Ventral view of proximal regions of mouthparts, based on JZC Bu82, JZC Bu274. C–E. Diagrammatic representation of adjacent sections of galeae and hypopharynx. F. Diagrammatic representation of a section of hypopharynx, lateral view.
FIGURE 8 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 8. Abdomens and terminalia of Parapolycentropus paraburmiticus. A. Abdomen with male terminalia, based largely on JZC Bu148. B. Male terminalia of JZC Bu81. C–E, Female terminalia of JZC Bu274, three views. C. Left lateral. D. Dorsal. E. Ventrolateral.
FIGURE 2 in The long-tongued Cretaceous scorpionfly Parapolycentropus Grimaldi and Rasnitsyn (Mecoptera: Pseudopolycentropodidae): New data and interpretations
FIGURE 2. Photomicrographs of Parapolycentropus species. A, B, D, P. paraburmiticus; C, P. burmiticus. A. Female, JZC Bu274. B. Male, JZC Bu542A. C. Female, JZC Bu1268. D. Female, JZC Bu1192.
Traumatic mating increases anchorage of mating male and reduces female remating duration and fecundity in a scorpionfly species
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FIGURE 2 in Fleas are parasitic scorpionflies
FIGURE 2. Phylogeny of Antliophora based on transcriptome datasets (A–C) with highly conserved sites (-h 0.3); (D–F) with conserved sites (-h 0.4); and (G–I) 'standard noise-free dataset' (-h 0.5). Models include the best fitting compositionally siteheterogeneous C20+R4 implemented in IQ-Tree (A, D, I); compositionally site-heterogeneous CAT-GTR+G4 in PhyloBayes (B, E, H), and LG4X+R implemented in IQ-Tree (C, F, I). Asterisks (*) indicate fully supported nodes (BPP = 1; bootstrap values = 100), numbers indicate nodes with lower than maximal support. Outgroups are in grey, strict sense scorpionflies in green, fleas in orange, and true flies in blue.
FIGURE A1 in Fleas are parasitic scorpionflies
FIGURE A1. Phylogeny of Antliophora based on the mitogenome and Sanger sequence dataset (A) amino acids only (AA); (B) nucleotides (PCG123 + rDNA); (C) nucleotides with the third codon position excluded (PCG12). The compositionally siteheterogeneous CAT-GTR+G4 implemented in PhyloBayes was used to analyse all datasets. Asterisks (*) indicate fully supported nodes (BPP = 1; bootstrap values = 100), numbers indicate nodes with lower than maximal support. Strict sense scorpionflies are in green, fleas in orange, and true flies in blue.
FIGURE 1 in Fleas are parasitic scorpionflies
FIGURE 1. Phylogeny of Antliophora based on the conserved (-h 0.4) transcriptome dataset analysed with the CAT-GTR+G4 model. Mecoptera is paraphyletic with respect to Siphonaptera. All nodes are fully supported (BPP = 1). Coloured silhouettes displayed from top down are representatives of major antliophoran clades: Boreus (Neomecoptera), Panorpa (Pistillifera), Nannochorista (Nannomecoptera), Tunga (Siphonaptera), and Chrysomya (Diptera).
FIGURE 6. A in Nedubroviidae, a new family of Mecoptera: the first Paleozoic long-proboscid scorpionflies
FIGURE 6. A, Nedubrovia mostovskii (Novokshonov, Sukacheva et Aristov, 2004), holotype. PIN, no. 4811/20. B–E, N. shcherbakovi sp. nov. B, paratype PIN, no. 3840/1338. C–D, paratype PIN, no. 3840/710, part and counterpart (mirrored). E, paratype PIN, no. 3840/229, hindwing (mirrored). F–G, N. deformis sp. nov., holotype PIN, no. 5102/8, part (mirrored) and counterpart. H, Paranedubrovia minutissima sp. nov., holotype PIN, no. 5103/284 (mirrored). I–J, P. novokshonovi sp. nov. I, holotype PIN, no. 5103/120 (mirrored). J, paratype PIN, no. 5103/121.
FIGURE 5 in Nedubroviidae, a new family of Mecoptera: the first Paleozoic long-proboscid scorpionflies
FIGURE 5. Forewings of Paranedubrovia gen. nov. A–B, P. novokshonovi sp. nov. A, paratype PIN, no. 5103/121. B, holotype PIN, no. 5103/120. C, P. minutissima sp. nov., holotype PIN, no. 5103/284. Scale bar 1 mm.
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