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726 results for “Laniatores”
Figure 2 from: Pinto-da-Rocha R, Benedetti A, de Vasconcelos E, Hara M (2012) New systematic assignments in Gonyleptoidea (Arachnida, Opiliones, Laniatores). ZooKeys 198: 25-68. https://doi.org/10.3897/zookeys.198.2337
Figure 2 - Taulisa koepckei Roewer. Female (holotype): Habitus, dorsal view. Scale bar: 1 mm.
FIGURE 7 in Taito adrik, a new harvestman species from the Área de Conservación Privada Panguana, Peruvian Amazonia (Opiliones: Laniatores: Cosmetidae)
FIGURE 7. Taito adrik sp. nov., S.E.M. micrographs of distal part of penis of two male paratypes (A–D, H: paratype ZSMA20190291, E–G: paratype ZSMA20190292): A. Ventral plate and distal part of truncus, ventral view; B. Lateral view; C. Glans and distal part of truncus, dorsal view (arrow shows small and straight D1, see also figure 7H); D. Dorsolateral view of glans; E./F. Lateral (E) and ventral (F) views of the specimen with large and curved D1 on one side and small and straight D1 on the other side (arrow, see also figure 7G); G. Detail of small and straight D1 in figure F; H. Detail of small and straight D1 in figure C. Scale bars: A–F = 20 µm; G, H = 2 µm.
FIGURE 6 in Taito adrik, a new harvestman species from the Área de Conservación Privada Panguana, Peruvian Amazonia (Opiliones: Laniatores: Cosmetidae)
FIGURE 6. Taito adrik sp. nov., representation of male genitalia, showing distal part of truncus, ventral plate with macrosetae, and glans: A. Ventral view; B. Lateral view; C. Dorsal view. Scale bar = 100 μm.
FIGURE 1 in On the enigmatic Heterolacurbs ovalis Roewer, 1912 (Opiliones, Laniatores, Biantidae)
FIGURE 1. Heterolacurbs ovalis, male syntype (A, C, D) and his original label (G), male from Great St James, U.S. Virgin Islands (B, E, F). (A, B) dorsal habitus; (C), distal part of penis, ventral view; (D) distal part of penis, lateral view; (E), same, expanded; (F) distal part of expanded penis, dorsal view. Abbreviations: Str, stragulum; Co, conductors; Sty, stylus; Fo, follis; AP, apical process. Scale bars: (A, B) 1.0 mm; (C–F) 0.1 mm.
FIGURE 1 in New species of Paktongius and convergent evolution of the gonyleptoid-like habitus in Southeast Asian Assamiidae (Opiliones: Laniatores)
FIGURE 1. Paktongius suzukii sp. nov. Male holotype, dorsal view (a). Male holotype, ventral view (b). Female paratype, dorsal view (c). Female paratype, ventral view (d). Scale bars: 1.0 mm.
FIGURE 34 in Two new species of Manahunca, redescription of its type species, current conservation status of the genus and a survey of male glands in Stenostygninae (Opiliones: Laniatores: Biantidae)
FIGURE 34. Map of Cuba, showing known localities of Manahunca: M. bielawskii (red circle, type locality of M. bielawskii; white circles, new records; blue circle type locality of M. silhavyi new synonym), M. turquino n. sp (white triangles), M. matazon n. sp. (white square) and M. cuevajibarae (white diamond).
FIGURES 15–16. Manahunca turquino n in Two new species of Manahunca, redescription of its type species, current conservation status of the genus and a survey of male glands in Stenostygninae (Opiliones: Laniatores: Biantidae)
FIGURES 15–16. Manahunca turquino n. sp., male holotype (CZACC 3.4359): 15. Habitus, dorsal view; 16. Habitus, lateral view. Scale bars = 1 mm.
FIGURES 1–2 in Two new species of Manahunca, redescription of its type species, current conservation status of the genus and a survey of male glands in Stenostygninae (Opiliones: Laniatores: Biantidae)
FIGURES 1–2. Manahunca bielawskii, male neotype (CZACC 3.4352): 1. Habitus, dorsal view; 2. Habitus, lateral view. Scale bars = 1 mm.
FIGURE 35 in Two new species of Manahunca, redescription of its type species, current conservation status of the genus and a survey of male glands in Stenostygninae (Opiliones: Laniatores: Biantidae)
FIGURE 35. Male swell of metatarsus III in Stenostygninae species, general view of the whole segment, light microscope photos. A. Manahunca bielawskii (CZACC 3.4368); B. Manahunca matazon n. sp. (CZACC 3.4365); C. Manahunca turquino n. sp. (CZACC 3.4359); D. Caribbiantes cubanus (CZACC 3.4372); E. Caribbiantes sp. 1 (CZACC 3.4379); F. Caribbiantes sp. 2 (CZACC 3.4380); G. Galibrotus carlotanus (CZACC 3.4374); H. Decuella cubaorientalis (CZACC 3.4378); I. Negreaella rioindiocubanicola (CZACC 3.4376); J. Negreaella yumuriensis (CZACC 3.4381). Scale bar = 1 mm; Scale dividing into four equal parts the whole metatarsus to show the relative position of the enlargement. Tarsus (not shown) is to the right.
FIGURE 6 in Two new species of Caribbiantes, with the redescription of the type species and a review of male genital patterns in Antillean Stenostygninae (Opiliones: Laniatores: Biantidae)
FIGURE 6. Caribbiantes obtusus sp. nov., habitus of male holotype (CZACC 3.3384): A–B. Dorsal view; C–D. Lateral view. Scale bars = 1 mm.
Figure 16. Tricommatus brasiliensis Roewer, 1912 in Why does the Tricommatinae position bounce so much within Laniatores? A cladistic analysis, with description of a new family of Gonyleptoidea (Opiliones, Laniatores)
Figure 16. Tricommatus brasiliensis Roewer, 1912, male holotype (SMF RI 220). A, left leg I, retrolateral view; B, right leg IV, prolateral view; C, penis, distal part, dorsal view; D, same, lateral view; E, same, ventral view. Figures C–E from Weber (1988). Abbreviations: G, glans; GZ, gelenk-zone (articular zone); S, stylus; T, Truncus. Scale bars = 1 mm (A, B); 0.05 mm (C–E).
Figure 12 in Why does the Tricommatinae position bounce so much within Laniatores? A cladistic analysis, with description of a new family of Gonyleptoidea (Opiliones, Laniatores)
Figure 12. Voriax popeye sp. nov., male paratype (MNRJ 17722). A, habitus, dorsal view; B, same, lateral view; C, carapace, coxae I−III, lateral view; D, dorsal scutum, frontodorsal view; E, coxa IV, stigmatic area, free sternites, ventral view. Scale bars = 0.5 mm (A, B), 0.2 mm (D, E), 0.1 mm (C).
Figure 14 in Why does the Tricommatinae position bounce so much within Laniatores? A cladistic analysis, with description of a new family of Gonyleptoidea (Opiliones, Laniatores)
Figure 14. Cryptogeobiidae and other relevant taxa. Sample of the diversity of dorsal scutum outlines (schematic, not to scale). A, Tricommatus brasiliensis; B, Soaresia uncina; C, Caramaschia singularis; D, Pseudophalangodes unicolor; E, Bunostigma singulare; F, Cryptogeobius crassipes; G, Gen. sp. D; H, Gen. sp. G; I, Zalanodius bicornutus; J, Heteromeloleptes padbergi; K, Camarana insignis; L, Gen. sp. S; M, Bissulla paradoxa; N, Tibangara nephelina; O, Bissulla singularis; P, Gen. sp. X, Abbreviations: c1−2, constrictions 1 and 2; ca, carapace; co, coda; mb, mid-bulge.
Figure 10 in Why does the Tricommatinae position bounce so much within Laniatores? A cladistic analysis, with description of a new family of Gonyleptoidea (Opiliones, Laniatores)
Figure 10. Comparison amongst the recent hypotheses on the placement of the Cryptogeobiidae in the phylogeny of Gonyleptoidea. A, Sharma & Giribet (2011). B, Pinto-da-Rocha et al. (2014). C, herein. Abbreviations: AGO, Agoristenidae; CR-HU, Cryptogeobiidae + Huralvioides-group; GG, Greater Gonyleptidae (including Cranaidae; Manaosbiidae; abbreviation of clade NOT named after Gonzalo Giribet; it is just a coincidence); ME-CO, Metasarcidae + Cosmetidae; STY, Stygnidae. The clade highlighted in blue is the Microsetata. The greyed out clade indicates that it was not included in analysis A, and it is present here just for comparison and inserted in the same place as the other molecular analysis.
Figure 26. Cryptogeobiidae. A in Why does the Tricommatinae position bounce so much within Laniatores? A cladistic analysis, with description of a new family of Gonyleptoidea (Opiliones, Laniatores)
Figure 26. Cryptogeobiidae. A, Gen. sp. D, male (MZSP 14756). Habitus, dorsal view. B, Cryptogeobius crassipes, male (MNRJ 6889). Same. C, Camarana insignis, male lectotype (MNRJ 58322). Same. D, Gen. sp. K, male (MNRJ 18984). Habitus, lateral view. E, Gen. sp. L, male (MNRJ 17.480). Left trochanter IV, ventral view. Scale bars = 1 mm.
Figure 3 in A new family of Gonyleptoidea from South America (Opiliones, Laniatores)
Figure 3. Male of Gerdesius paruensis comb. nov. (MPEG 0032). A, habitus, dorsal view; B, habitus, right lateral view; C, right trochanter–femur IV, ventral view; D, right trochanter–femur IV, dorsal view; E, right tarsus I, prolateral view; F, right pedipalp, retrolateral view; G, right pedipalp, prolateral view. C and D at same scale. Scale bars: 1 mm.
Figure 22 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 22. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Epedanidae and Pyramidopidae: A–C, Pseudobiantes japonicus; D–F, Pyramidops pygmaeus.
Figure 9 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 9. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Manaosbiidae: A–C, Syncranaus cribrum; D–F, Barrona williamsi.
Figure 3 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 3. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in basal Gonyleptoidea: A–C, Gerdesius mapinguari (Gerdesiidae); D–F, Taquara bicoloripes (Cryptogeobiidae).
Figure 4 in The prickly blade mapped: establishing homologies and a chaetotaxy for macrosetae of penis ventral plate in Gonyleptoidea (Arachnida, Opiliones, Laniatores)
Figure 4. Distal part of penis, dorsal, lateral and ventral views, showing patterns of macrosetae in Stygnidae: A–C, Auranus hehu; D–F, Jabbastygnus huttorum.
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