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160 results for “male genitalia morphology”
Figures 4–5 in Comparative morphology study of the male genitalia of the genus Aegosoma from China (Coleoptera: Cerambycidae), with a new record species
Figures 4–5. Aegosoma george Do, 2015, male. 4. Dorsal view. 5. Ventral view. Scale bars = 1 cm.
Rapid divergent evolution of internal female genitalia and the coevolution of male genital morphology revealed by micro-computed tomography
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FIGURES 6A–C in Taxonomy of Venezuelan water beetles in the genus Hydrochus Leach, 1817, and an analysis of male genitalia morphology (Coleoptera: Hydrochidae)
FIGURES 6A–C. (A) Male genitalia of H. ducalis Knisch, with parameres spread, showing shape of aedeagus; (B) Male genitalia of H. variabilis Knisch and (C) H. n. sp. from Peru, showing the articulation point of the paramere dorsal basal lobe with the aedeagus dorsal basal lobe.
FIGURE 5 in Taxonomy of Venezuelan water beetles in the genus Hydrochus Leach, 1817, and an analysis of male genitalia morphology (Coleoptera: Hydrochidae)
FIGURE 5. Examples of morphological, species specific, variation in the form of the aedeagus basal dorsal lobe (adbl) of Venezuelan Hydrochus species.
FIGURES 4A–B in Taxonomy of Venezuelan water beetles in the genus Hydrochus Leach, 1817, and an analysis of male genitalia morphology (Coleoptera: Hydrochidae)
FIGURES 4A–B. Male genitalia characters of (A) H. pseudosecretus Oliva (ventral); (B) H. sagittarius n. sp. (ventral; diagrammatical, showing locations of muscles).
FIGURES 15. Male genitalia and tergite 2. 1 in Notes on the functional morphology of terminalia from Prorates ballmeri Nagatomi and Liu (Diptera: Scenopinidae: Proratinae) collected while in copula, with a description of the previously unknown female
FIGURES 15. Male genitalia and tergite 2. 1, Lateral view of the male aedeagal apparatus showing only the left distiphallus tip, dorsal bridge and gonocoxal apodeme removed; 2, Dorsal view of gonocoxite and aedeagal apparatus; 3, Ventral view of gonocoxite; 4, Dorsal view of tergite 9, cerci, and hypoproct; 5, Dorsal view of tergite 2 with patch of modified setae. Cordlike phallus and dorsal bridge shown in gray to help clarify structures. Measure bar a is for all genitalia, measure bar b is for tergite 2 only. bp, basiphallus; cp, cordlike phallus; db, dorsal bridge; dp, distiphallus; eap, ejaculatory apodeme; ga, gonocoxal apodeme; gdp, gonocoxal dorsal process; gs, gonostylus; hp, hanging bell phallus.
FIGURES 14–17. T. currani male genitalia. 13 in A morphological and molecular description of a new Te l e o p s i s species (Diptera: Diopsidae) from Thailand
FIGURES 14–17. T. currani male genitalia. 13: detailed ventral view with surstyli, gonopods, cerci, 14: lateral view with aedeagal apodeme, hypandrium and epandrium, 15: detailed ventral view with base of hypandrium and parameres, 16: ventral view.
FIGURES 10–13. T. dalmanni male genitalia. 9 in A morphological and molecular description of a new Te l e o p s i s species (Diptera: Diopsidae) from Thailand
FIGURES 10–13. T. dalmanni male genitalia. 9: detailed ventral view with surstyli, gonopods, cerci, 10: lateral view with aedeagal apodeme, hypandrium and epandrium, 11: detailed ventral view with base of hypandrium and parameres, 12: ventral view.
FIGURES 6–9. T. whitei male genitalia. 5 in A morphological and molecular description of a new Te l e o p s i s species (Diptera: Diopsidae) from Thailand
FIGURES 6–9. T. whitei male genitalia. 5: detailed ventral view with surstyli, gonopods, cerci, 6: lateral view with aedeagal apodeme, hypandrium and epandrium, 7: detailed ventral view with base of hypandrium and parameres, 8: ventral view.
FIGURES 11–22. S in Morphologic study of male genitalia and female description of Schistopeltis lizeri Rehn (Blaberidae, Zetoborinae, Triboniini)
FIGURES 11–22. S. microschistos (11–14, photo credit. Vélez & Gutiérrez, 2010). 11. Left phallomere L1. 12. Left phallomere: L2vm and L2d. 13. Right phallomere R2. 14. Scheme, apex R2. S. lizeri (15–18) 15. Left phallomere L1. 16. Left phallomere: L2vm and L2d. 17. Right phallomere R2. 18. Scheme, apex R2. S. peculiaris (19–22). 19. Left phallomere L1. 20. Left phallomere: L2vm and L2d. 21. Right phallomere R2. 22. Scheme, apex R2. Scale: 1mm. ap: apophysis; cl: cleft; dp: dorsal process; L1: left phallomere; L2d: left phallomere dorsal; L2vm: left phallomere ventromedial; R2: right phallomere; si: subapical incisure.
FIGURES 1–10. Schistopeltis lizeri. Male. 1. Habitus, dorsal view. 2 in Morphologic study of male genitalia and female description of Schistopeltis lizeri Rehn (Blaberidae, Zetoborinae, Triboniini)
FIGURES 1–10. Schistopeltis lizeri. Male. 1. Habitus, dorsal view. 2. Supranal plate, paraprocts and cerci, dorsal view (paraprocts are seen by transparency). 3. Scheme of paraprocts. 4. Subgenital plate, ventral view. Female. 5. Pronotum, dorsal view. 6. Habitus, dorsal view. 7. Subgenital plate, ventral view. Mature nymph. 8. Pronotum, dorsal view, arrows indicate the insinuated fissures. 9. Habitus, dorsal view. 10. Subgenital plate, ventral view. Scales: 1 mm. lp: left paraproct. rp: right paraproct.
FIGURE 3 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 3. Anopheles (Kerteszia) lepidotus Zavortink, female habitus: A, wing; B, thorax, dorsal view; C, head, lateral view; D, thorax, lateral view; E, abdomen, dorsal and ventral views; F, (left to right) foreleg, anterior view; midleg, anterior view; hindleg, anterior view; hindleg, dorsal view.
FIGURE 1. The ITS2 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 1. The ITS2 (rDNA) sequence alignments of Anopheles (Kerteszia) pholidotus (n = 3, Venezuela) and An. lepidotus (n = 5, Ecuador), using MAFFT (Katoh et al., 2002). A total of 343 nucleotides were identical; 45 transversions, 39 transitions, and 89 gaps were observed. Underlined bases show the ITS2 primers.
FIGURE 2 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 2. Bootstrap NJ-K2P tree of COI sequences belonging to Anopheles (Kerteszia) lepidotus and An. pholidotus from Ecuador (EC) and Venezuela (VZ). Bootstrap values below 70 % are not shown. Outgroup: An. (Ker.) homunculus Komp.
FIGURE 4 in Anopheles (Kerteszia) lepidotus (Diptera: Culicidae), not the malaria vector we thought it was: Revised male and female morphology; larva, pupa, and male genitalia characters; and molecular verification
FIGURE 4. Anopheles (Kerteszia) lepidotus. A, male genitalia (from Zavortink, 1973); B, An. lepidotus pupal trumpet, pinna (Pi) long, about 0.5 trumpet length; C, pupal paddle showing lateral margin exceptionally thick, lateral margin without long filamentous spicules and relatively straight apical margin at 1-Pa; D, seta 3-C very thick and short; E, seta 6-VI stout, long, with median length aciculae on basal 0.33 and shorter aciculae more distal, without strong basal branches.
FIGURES 11–16. Lygephila spp. male genitalia. 11, L in Taxonomic and morphological studies on the Lygephila dorsigera (Walker, 1865) species-group, with description of a new species (Lepidoptera, Erebidae, Toxocampinae)
FIGURES 11–16. Lygephila spp. male genitalia. 11, L. pallidivena, Holotype, China, N Sichuan (GBG/ZSM); 12, L. recta, Japan (MNHU); 13, L. lilacina, China (ZFMK); 14, L. subrecta, S Korea, Kangwon (HNHM); 15, L. dorsigera, Nepal (GYP); 16, L. dorsigera, Taiwan (HNHM).
FIGURE 14 in Redescription of Hybusa occidentalis (Westwood) (Orthoptera: Proscopiidae: Hybusinae): new images, description of male genitalia, pictorial key of Hybusa species and morphological comparison of Hybusinae with Xeniinae and Proscopiinae
FIGURE 14. Genitalia comparison in dorsal view of five Proscopiidae. A) Hybusa occidentalis (Hybusinae) ♂; B) Astroma sp. (Xeniinae) ♂; C) Tetanorhynchus sp. (Proscopiinae: Tetanorhynchini) ♂ D) Pseudoproscopia amedegnatoi (Proscopiinae: Proscopiini) ♂; E) Apioscelis sp. (Proscopiinae: Proscopiini) ♂.
FIGURE 13 in Redescription of Hybusa occidentalis (Westwood) (Orthoptera: Proscopiidae: Hybusinae): new images, description of male genitalia, pictorial key of Hybusa species and morphological comparison of Hybusinae with Xeniinae and Proscopiinae
FIGURE 13. Terminalia comparison in lateral and dorsal view of four Proscopiidae. A) and B) Hybusa occidentalis (Hybusinae) ♂; C) and D) Astroma sp. (Xeniinae) ♂; E) and F) Pseudoproscopia amedegnatoi (Proscopiinae: Proscopiini) ♂; G) and H) Tetanorhynchus sp. (Proscopiinae: Tetanorhynchini).
FIGURE 10 in Redescription of Hybusa occidentalis (Westwood) (Orthoptera: Proscopiidae: Hybusinae): new images, description of male genitalia, pictorial key of Hybusa species and morphological comparison of Hybusinae with Xeniinae and Proscopiinae
FIGURE 10. Size comparison of four Proscopiidae. A) Astroma sp. (Xeniinae) ♂; B) Hybusa occidentalis (Hybusinae) ♂; C) Tetanorhynchus sp. (Proscopiinae: Tetanorhynchini) ♂; D) Pseudoproscopia amedegnatoi (Proscopiinae: Proscopiini) ♂.
FIGURE 11 in Redescription of Hybusa occidentalis (Westwood) (Orthoptera: Proscopiidae: Hybusinae): new images, description of male genitalia, pictorial key of Hybusa species and morphological comparison of Hybusinae with Xeniinae and Proscopiinae
FIGURE 11. Head comparison in lateral view of four Proscopiidae. A) Hybusa occidentalis (Hybusinae) ♂; B) Astroma sp. (Xeniinae) ♂; C) Pseudoproscopia amedegnatoi (Proscopiinae: Proscopiini) ♂; D) Tetanorhynchus sp. (Proscopiinae: Tetanorhynchini) ♂.
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