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203 results for “Hubbardiidae”
FIG. 10 in Systematics Of The Short-Tailed Whipscorpion Genus Stenochrus Chamberlin, 1922 (Schizomida: Hubbardiidae), With Descriptions Of Six New Genera And Five New Species
FIG. 10. Short-tailed whipscorpions (Schizomida: Hubbardiidae Cook, 1899), female spermathecae, schematic illustration of lobe base positions. A. Schizophyxia lukensi (Rowland, 1973), comb. nov., ♀ (CNAN Sz25), aligned. B. Nahual caballero (Monjaraz-Ruedas and Francke, 2018), comb. nov., ♀ (CNAN T1158), anteromedian to lateral. C. Stenochrus portoricensis Chamberlin, 1922, ♀ (CNAN Sz93), posteromedian to lateral. D. Ambulantactus montielae, sp. nov., ♀ (CNAN T1292), posteromedian to lateral. Abbreviations: al., aligned; ant., anterior; pos., posterior; sc., sclerotizations. Scale bars = 0.05 mm.
FIG. 7 in Systematics Of The Short-Tailed Whipscorpion Genus Stenochrus Chamberlin, 1922 (Schizomida: Hubbardiidae), With Descriptions Of Six New Genera And Five New Species
FIG. 7. Short-tailed whipscorpions (Schizomida: Hubbardiidae Cook, 1899), pedipalps, retrolateral view. A. Ambulantactus aquismon, sp. nov., ♂ (CNAN T1294). B. Ambulantactus montielae, sp. nov., ♂ (CNAN T1291). C. Baalrog magico (Monjaraz-Ruedas and Francke, 2018), comb. nov., ♂ (CNAN T1163). D. Harveyus contrerasi, sp. nov., ♂ (CNAN T1276). E. Heteroschizomus kekchi, sp. nov., ♂ (CNAN T1280). F. Nahual bokmai, sp. nov., ♂ (CNAN T1282). G. Schizophyxia lukensi (Rowland, 1973), comb. nov., ♂ (CNAN Sz25). H. Stenochrus gruta Monjaraz-Ruedas and Francke, 2018, ♂ (CNAN T1155). I. Troglostenochrus valdezi (Monjaraz-Ruedas, 2012), comb. nov., ♂ (CNAN T698). Scale bars = 0.2 mm.
FIG. 23 in Systematics Of The Short-Tailed Whipscorpion Genus Stenochrus Chamberlin, 1922 (Schizomida: Hubbardiidae), With Descriptions Of Six New Genera And Five New Species
FIG. 23. Short-tailed whipscorpions (Schizomida: Hubbardiidae Cook, 1899), pygidial flagellum, dorsal (A, D, G), lateral (B, E, H) and ventral (C, F, I) views. A–C. Schizophyxia lukensi (Rowland, 1973), comb. nov., ♂ (CNAN Sz25). D–F. Stenochrus gruta Monjaraz-Ruedas and Francke, 2018, ♂ (CNAN T1155). G–I. Troglostenochrus valdezi (Monjaraz-Ruedas, 2012), comb. nov., ♂ (CNAN T698). Scale bars = 0.2 mm.
FIG. 21 in Systematics Of The Short-Tailed Whipscorpion Genus Stenochrus Chamberlin, 1922 (Schizomida: Hubbardiidae), With Descriptions Of Six New Genera And Five New Species
FIG. 21. Short-tailed whipscorpions (Schizomida: Hubbardiidae Cook, 1899), pygidial flagellum, dorsal (A, D, G, J), lateral (B, E, H, K) and ventral (C, F, I, L) views. A–C. Heteroschizomus goodnightorum Rowland, 1973, stat. rev., ♀ (CNAN Sz171). D–F. Heteroschizomus kekchi, sp. nov., ♀ (CNAN T1281). G–I. Nahual bokmai, sp. nov., ♀ (CNAN T1283). J–L. Nahual lanceolatus (Rowland, 1975), comb. nov., ♀ (CNAN Sz130). Scale bars = 0.2 mm.
FIG. 4 in Systematics Of The Short-Tailed Whipscorpion Genus Stenochrus Chamberlin, 1922 (Schizomida: Hubbardiidae), With Descriptions Of Six New Genera And Five New Species
FIG. 4. Map of southern Mexico, plotting known locality records for the short-tailed whipscorpion genera Heteroschizomus Rowland, 1973, stat. rev. (circles), and Troglostenochrus, gen. nov. (squares) (Schizomida: Hubbardiidae Cook, 1899), based on data from museum collections and the literature.
FIG. 13 in Systematics Of The Short-Tailed Whipscorpion Genus Stenochrus Chamberlin, 1922 (Schizomida: Hubbardiidae), With Descriptions Of Six New Genera And Five New Species
FIG. 13. Short-tailed whipscorpions (Schizomida: Hubbardiidae Cook, 1899), chelicerae, prolateral view: A. Ambulantactus aquismon, sp. nov., ♂ (CNAN T1294). B. Ambulantactus montielae, sp. nov., ♂ (CNAN T1291). C. Baalrog magico (Monjaraz-Ruedas and Francke, 2018), comb. nov., ♂ (CNAN T1163). D. Harveyus contrerasi, sp. nov., ♂ (CNAN T1276). E. Heteroschizomus kekchi, sp. nov., ♂ (CNAN T1280). F. Nahual bokmai, sp. nov., ♂ (CNAN T1282). G. Schizophyxia lukensi (Rowland, 1973), comb. nov., ♂ (CNAN Sz25). H. Stenochrus gruta Monjaraz-Ruedas and Francke, 2018, ♂ (CNAN T1155). I. Troglostenochrus valdezi (Monjaraz-Ruedas, 2012), comb. nov., ♂ (CNAN T698). Scale bars = 200 µm.
Figures 7-8. 7 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 7-8. 7 Adult male holotype of Troglocubazomus inexpectatus sp. n., close-ups: a) pedipalps, lateral view; b) abdominal segments IX–XII and flagellum, dorsal view; c) abdominal segments IX–XII and flagellum, lateral view. 8 Adult male topotype of Troglocubazomus orghidani included here for comparison, close-ups: a) pedipalps, lateral view; b) abdominal segments IX–XII and flagellum, dorsal view; c) abdominal segments IX–XII and flagellum, lateral view.
Figures 1-2. 1 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 1-2. 1 Adult male holotype of Antillostenochrus eremita sp. n., habitus: a) dorsal view; b) lateral view. 2 Subadult (?) female paratype of Antillostenochrus eremita sp. n., habitus: a) dorsal view; b) lateral view.
Figures 5-6. 5 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 5-6. 5 Adult male holotype of Troglocubazomus inexpectatus sp. n., habitus: a) dorsal view; b) lateral view. 6 Adult male topotype of Troglocubazomus orghidani included here for comparison, habitus: a) dorsal view; b) lateral view.
Figures 3-4. 3 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 3-4. 3 Adult male holotype of Antillostenochrus eremita sp. n., close-ups: a) pedipalps, lateral view; b) abdominal segments IX–XII and flagellum, dorsal view; c) abdominal segments IX–XII and flagellum, lateral view. 4 Subadult (?) female paratype of Antillostenochrus eremita sp. n., close-ups: a) pedipalps, lateral view; b) abdominal segments VIII–XII and flagellum, dorsal view; c) abdominal segments VIII–XII and flagellum, lateral view.
Figures 12-13. 12 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 12-13. 12 Map showing the geographical distribution of Antillostenochrus eremita sp. n. (red symbol) and the remaining Cuban populations of the genus (yellow symbols). Image frame = 450 x 195 km. 13 Map showing the geographical distribution of Troglocubazomus inexpectatus sp. n. (red symbol) and Troglocubazomus orghidani (yellow symbol). Image frame = 450 x 195 km.
Figures 9-11. 9 in Two remarkable new species of Hubbardiidae Cook, 1899 (Arachnida: Schizomida) from eastern Cuba
Figures 9-11. 9 Ecological conditions at the type-locality of Antillostenochrus eremita sp. n.: a) overview of the area; b) detail, the types were found under the larger tree at center; c) exact finding spot, see the large rocks semi-buried at the tree base. 10 Ecological conditions at the type-locality of Troglocubazomus inexpectatus sp. n.: a) overview of the area; b) detail, see the cave entrance at bottom right; c) exact finding spot, the holotype was found under the rock turned-over at center. 11 Ecological conditions at the type-locality of Troglocubazomus orghidani included here for comparison: a) overview of the area; b) detail, the cave entrance is located at bottom left; c) exact finding spot, see the senior author in the moment of collecting a topotype.
Figure 2 in First record of invasive Stenochrus portoricensis Chamberlin, 1922 (Arachnida: Schizomida: Hubbardiidae) from the Southern region of Brazil
Figure 2. World distribution of Stenochrus portoricensis Chamberlin, 1922 (Schizomida: Hubbardiidae). (red star = new record). (Reddell & Cokendolpher, 1995), and Brignolizomus Florianópolis is a popular touristic destination in woodwardi (Harvey, 1992) and B. walteri Harvey, 2000, Brazil, currently attracting thousands of visitors from from Queensland, Australia, at around 27°34′S (Harvey, various parts of the country and around the world each 2000). In the Americas, the southernmost record of a year. Furthermore, over the past 33 years, the city′s popschizomid previously published was a single female of ulation has doubled (DATASUS, 2023). It is possible that Stenochrus portoricensis from Ubatuba, São Paulo State, S. portoricensis was inadvertently introduced by the re- Brazil, at 23°26′S (Santos et al., 2008). Our record herein is cent population growth, in addition to the intense tourfrom slightly further south in the Americas at 27°35′48″S istic activity, which might have contributed to the casual in Brazil. transportation of this species. First described in the West Indies, Stenochrus portori- The specific location where these specimens were censis has been reported worldwide (Fig. 2), including collected used to function as a composting center for several localities in Europe, e.g., Canary Islands (Martín the Federal University of Santa Catarina (UFSC). For many & Oromí, 1984; Oromí & Martín, 1992), Spain (Barranco years, this center collected organic waste from garden- et al., 2014), Czech Republic (Korenko et al., 2009), ing activities across the entire campus. Additionally, oth- Germany (Armas & Rehfeldt, 2015; Lauterbach et al., er factors like agricultural practices, the sale of ornamen- 2020), Slovakia (Christophoryová et al., 2013), England tal plants and soil materials, in addition with the parthe- (Cloudsley-Thompson, 1949), Switzerland (Krajcovicova nogenetic strategy of the species, might also have con- et al., 2021), and Poland (Zawierucha et al., 2013). Most tributed to the introduction of Stenochrus portoricensis of those records consisted of specimens collected from further south in the neotropics. greenhouses, suggesting that the specimens may have been transported along with soil or cultivated pot plants
Figure 1. Stenochrus portoricensis Chamberlin, 1922 in First record of invasive Stenochrus portoricensis Chamberlin, 1922 (Arachnida: Schizomida: Hubbardiidae) from the Southern region of Brazil
Figure 1. Stenochrus portoricensis Chamberlin, 1922 (Schizomida: Hubbardiidae), female. (A) habitus, dorsal view. (B) dorsal view of prosoma (arrows point to setal locations). (C) pedipalpal spur on trochanter (arrow points to spur). (D) spermatheca, dorsal view, rotated so anterior is to left side); (E) habitat where the specimens were collected from, Campus of the UFSC.
FIGURE 41 in A systematic revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara
FIGURE 41. Draculoides warramboo sp. nov., holotype male (WAM T139912): A. Body, dorsal; B. Body, ventral; C. Body, lateral; D. Flagellum, dorsal; E. Flagellum, ventral; F. Flagellum, lateral. The scale bar shown in image A is 1 mm and also applies to B and C and the scale bar shown in image D is 200 µm and also applies to E and F.
FIGURE 42 in A systematic revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara
FIGURE 42. Draculoides warramboo sp. nov., paratype female (WAM T138501): A. Body, dorsal; B. Body, ventral; C. Body, lateral. The scale bar shown in image A is 2 mm and also applies to B and C.
FIGURE 40 in A systematic revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara
FIGURE 40. Draculoides piscivultus sp. nov.: A–C, holotype male (WAM T143346): A. Flagellum, dorsal; B. Flagellum, ventral; C. Flagellum, lateral. D–G, paratype female (WAM T143619): D. Flagellum, dorsal; E. Flagellum, ventral; F. Flagellum, lateral; G. Spermathecae, ventral. Scale bars: A–C: 0.1 mm, D–F: 0.1mm, G: 0.1 mm.
FIGURE 38 in A systematic revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara
FIGURE 38. Draculoides piscivultus sp. nov., holotype male (WAM T143346): A. Body, dorsal; B. Body, ventral; C. Body, lateral; D. Flagellum, dorsal; E. Flagellum, ventral; F. Flagellum, lateral. The scale bar shown in image A is 1 mm and also applies to B and C and the scale bar shown in image D is 200 µm and also applies to E and F.
FIGURE 35 in A systematic revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara
FIGURE 35. Draculoides noctigrassator sp. nov., holotype male (WAM T142871): A. Flagellum, dorsal; B. Flagellum, ventral; C. Flagellum, lateral. Scale bar A–C: 0.1 mm.
FIGURE 32 in A systematic revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara
FIGURE 32. Draculoides minae sp. nov., holotype female (WAM T138570): A. Body, dorsal; B. Body, ventral; C. Body, lateral. The scale bar shown in image A is 1 mm and also applies to B and C.
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