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83 results for “Scolopocryptopidae”
FIGURES 12–17 in A review of Newportia species in the subgenus Newportides Chamberlin, 1921 (Scolopendromorpha, Scolopocryptopidae, Newportiinae)
FIGURES 12–17. Newportia (Newportides) amazonica, syntype (MZSP) 212. F. Right ultimate leg. 13. Prefemur, femur, and tibia of left ultimate leg. 14. Prefemur and femur of right ultimate leg. 15. Tarsi 1 and 2 of right ultimate leg. 16. Tarsi 1 and 2 and claw-shaped pretarsus of right ultimate leg. 17. Tarsus 2 and claw-shaped pretarsus of right ultimate leg.
FIGURES 26–29 in A review of Newportia species in the subgenus Newportides Chamberlin, 1921 (Scolopendromorpha, Scolopocryptopidae, Newportiinae)
FIGURES 26–29. Newportia (Newportides) unguifer, IВSP (3640). 26. Prefemur and femur of right ultimate leg. 27. Tibia and tarsus 1 of right ultimate leg. 28. Tarsi 1 and 2 of right ultimate leg. 29. Tarsus 2 and claw-shaped pretarsus of right ultimate leg.
FIGURES 5–11. 5 in Ectonocryptoides quadrimeropus, a new centipede genus and species from Jalisco, Mexico; proposal of Ectonocryptopinae, analysis of subfamilial relationships, and a key to subfamilies and genera of the Scolopocryptopidae (Scolopendromorpha)
FIGURES 5–11. 5, Cephalic plate and T1–T4, dorsal view; 6, right antenna, setation omitted; 7, coxosternum and forcipules; 8, ultimate and penultimate tergites; 9, midbody sterna; 10, right coxopleura, lateral view; 11, midbody leg, caudal view. Scale line = 1.00 mm for figs. 5–6 & 9, 0.50 mm for figs. 7–8 & 10–11.
FIGURE 4 in Ectonocryptoides quadrimeropus, a new centipede genus and species from Jalisco, Mexico; proposal of Ectonocryptopinae, analysis of subfamilial relationships, and a key to subfamilies and genera of the Scolopocryptopidae (Scolopendromorpha)
FIGURE 4. Hypothesized relationships among scolopocryptopid subfamilies; apomorphies are discussed in the text.
FIGURE 3 in Ectonocryptoides quadrimeropus, a new centipede genus and species from Jalisco, Mexico; proposal of Ectonocryptopinae, analysis of subfamilial relationships, and a key to subfamilies and genera of the Scolopocryptopidae (Scolopendromorpha)
FIGURE 3. Known occurrences of the Ectonocryptopinae. triangle, Ectonocryptops kraepelini; Dot, Ectonocryptoides quadrimeropus.
FIGURES 12–16. 12 in Ectonocryptoides quadrimeropus, a new centipede genus and species from Jalisco, Mexico; proposal of Ectonocryptopinae, analysis of subfamilial relationships, and a key to subfamilies and genera of the Scolopocryptopidae (Scolopendromorpha)
FIGURES 12–16. 12, Reconstruction of ultimate tergite (T23) and legs, the right leg, still attached, is inverted and drawn on the left to simulate the natural condition. 13–16, spine and setal patterns on detached right ultimate leg; 13, ventral view; 14, medial view; 15, dorsal view; 16, lateral view. Scale line = 0.67 mm for fig. 12, 0.50 mm for figs. 13–16.
FIGURES 9–16. Newportia sabina holotype. 9 in The centipede genus Newportia Gervais, 1847, in Mexico: description of a new troglomorphic species; redescription of N. sabina Chamberlin, 1942; revival of N. azteca Humbert & Saussure, 1869; and a summary of the fauna (Scolopendromorpha: Scolopocryptopidae: Newportiinae)
FIGURES 9–16. Newportia sabina holotype. 9, cephalic plate, basal antennomeres, and 1st tergite, dorsal view. 10, coxosternum and forcipules, ventral view. 11, tergites 7 & 8, dorsal view. 12, sternites 12 & 13, ventral view. 13, ultimate sternite and coxopleurae, ventral view. 14, right coxopleura, lateral view. 15, prefemur of right ultimate leg, ventral view. 16, femur of right ultimate leg, ventral view.
FIGURES 1–8. Newportia troglobia holotype. 1 in The centipede genus Newportia Gervais, 1847, in Mexico: description of a new troglomorphic species; redescription of N. sabina Chamberlin, 1942; revival of N. azteca Humbert & Saussure, 1869; and a summary of the fauna (Scolopendromorpha: Scolopocryptopidae: Newportiinae)
FIGURES 1–8. Newportia troglobia holotype. 1, cephalic plate, basal antennomeres, and 1st tergite, dorsal view. 2, coxosternum and forcipules, ventral view. 3, tergites 7 & 8, dorsal view. 4, sternites 12 & 13, ventral view. 5, ultimate sternite and coxopleurae, ventral view. 6, right coxopleura, lateral view. 7, prefemur of right ultimate leg, ventral view. 8, femur of right ultimate leg, ventral view.
FIGURE 17 in The centipede genus Newportia Gervais, 1847, in Mexico: description of a new troglomorphic species; redescription of N. sabina Chamberlin, 1942; revival of N. azteca Humbert & Saussure, 1869; and a summary of the fauna (Scolopendromorpha: Scolopocryptopidae: Newportiinae)
FIGURE 17. Occurrences of species of Newportia in Mexico; some symbols represent more than one locality. Star in dot, N. troglobia; open star, N. sabina; upright triangles, N. stolli; open square, N. spinipes; dots, N. oreina; solid square, N. pelaezi; circles, N. atoyaca; inverted triangles, N. morela. The asterisk marks the location of Córdoba, Veracruz, the type locality of both N. mexicana and N. azteca; the question mark indicates the unspecified "cotype locality" of N. oreina from Guerrero, which we consider questionable. The solid star denotes the type and only known locality of Ectonocryptops kraepelini.
Fig. 1 in Two new species of Scolopocryptops centipedes from southern Japan (Chilopoda: Scolopendromorpha: Scolopocryptopidae)
Fig. 1. Map showing the collection localities of Scolopocryptops elegans (Takakuwa, 1937), S. miyosii sp. nov., S. brevisulcatus sp. nov., and S. curtus (Takakuwa, 1939) in the present study and Jonishi & Nakano (2022). Orange circles:S. elegans; pink diamonds:S. miyosii sp. nov.; red squares:S. brevisulcatus sp. nov.; yellow triangles: S. curtus; black triangles: localities of the sequence data of S. curtus obtained from INSD (see Table 1). Shapes with two lines indicate the type localities of each species (S. curtus from its type locality was not examined). Locality numbers (E1–E5, M1–M5, B1–B4, C1 and C2) are shown in Fig. 2 and Table 1.
Supplementary material 1 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Selected partitioning schemes and substitution models for the phylogenetic analyses
Supplementary material 3 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Bayesian Inference tree
Figure 9 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 9 Scolopocryptops longisetosus sp. nov., holotype, ♂ (KUZ Z5107). A. Basal articles of left antenna, dorsal view; B. Cephalic plate, dorsal view. Scale bars: 0.5 mm (A); 1 mm (B).
Figure 5 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 5 Scolopocryptops quadristriatus (Verhoeff, 1934) from near the type locality (KUZ Z5095). A. Cephalic plate and tergite 1, dorsal view; B. Distal part of article 2, article 3 and pretarsus of left second maxilla, medial view; C. Article 3 and pretarsus of left second maxilla, lateral view; D. Head, ventral view. Abbreviations: am — anterior margin of forcipular coxosternite; bs — basal suture on forcipular trochanteroprefemoral process; db — dorsal brush on article 3 of second maxilla; ds — dorsal spur on article 2 of second maxilla; pt — pretarsus of second maxilla; ptr — process of forcipular trochanteroprefemur. Scale bars: 1 mm (A, D); 0.2 mm (B, C).
Figure 7 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 7 Scolopocryptops quadristriatus (Verhoeff, 1934) from near the type locality. A.KUZ Z5095; B.KUZ Z5094; C.KUZ Z5104. A. Left ultimate leg, lateral view; B. Male genital segments, penis and anal valves, ventral view; C. Female genital segment and anal valves, ventral view. Abbreviations: av — anal valve; pn — penis; sgs I — sternite of genital segment 1; sgs II — sternite of genital segment 2; tg — tergite of genital segment. Scale bars: 2 mm (A); 0.5 mm (B, C).
Figure 2 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 2 Scolopocryptops quadristriatus (Verhoeff, 1934), the likely holotype, ♀ (ZSM A20051244). A. Cephalic capsule, maxillae, legs and left ultimate leg; B. Forcipular segment, leg-bearing segments and legs. Scale bars: 5 mm.
Figure 4 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 4 Scolopocryptops quadristriatus (Verhoeff, 1934) from near the type locality (KUZ Z5095). A. Basal articles of left antenna, dorsal view; B. Cephalic plate, dorsal view. Scale bars: 0.5 mm (A); 1 mm (B).
Figure 11 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 11 Scolopocryptops longisetosus sp. nov., holotype, ♂ (KUZ Z5107). A. Cephalic plate and tergites 1–12, dorso-lateral view; B. Tergites 10–12, dorso-lateral view; C. Sternites 6–12, ventral view; D. Leg-bearing segments 3–8, lateral view; E. Sternite of ultimate leg-bearing segment, ventral view; F. Left coxopleuron, lateral view; G. Tergite of ultimate leg-bearing segment, dorso-lateral view. Abbreviations: cxp — coxopleural process; dm — dorsal margin of ultimate pleuron; mds — minute dark spine on ultimate pleuron; sp — spiracle; tlk — tergal lateral keel; tm — tergal margination; tpk — tergal paramedian keel. Scale bars: 5 mm (A); 2 mm (B–D); 0.5 mm (E–G).
Figure 10 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 10 Scolopocryptops longisetosus sp. nov., holotype, ♂ (KUZ Z5107: A, C–E) and non-type specimen from Yonaguni Island, ♂ (KUZ Z5124: B). A, B. Cephalic plate and tergite 1, dorsal view; C. Distal part of article 2, article 3 and pretarsus of left second maxilla, medial view; D. Article 3 and pretarsus of left second maxilla, lateral view; E. Head, ventral view. Abbreviations: am — anterior margin of forcipular coxosternite; bs — basal suture on forcipular trochanteroprefemoral process; db — dorsal brush on article 3 of second maxilla; ds — dorsal spur on article 2 of second maxilla; pt — pretarsus of second maxilla; ptr — process of forcipular trochanteroprefemur. Scale bars: 1 mm (A, B, E); 0.2 mm (C, D).
Figure 13 from: Jonishi T, Nakano T (2024) Taxonomic re-appraisal of Scolopocryptops quadristriatus (Verhoeff, 1934) and a description of a new species from Japan and Taiwan (Chilopoda, Scolopendromorpha, Scolopocryptopidae). Zoosystematics and Evolution 100(2): 405-423. https://doi.org/10.3897/zse.100.119297
Figure 13 Bayesian Inference tree for 2510 bp-aligned positions of the ITS2, 28S, 16S and COI sequences. Real branch length is shown on the upper left. Numbers on nodes indicate ultrafast bootstrap values (UFBoot) and Bayesian posterior probabilities (BPP). An asterisk denotes the node with UFBoot = 100% and BPP = 1.0. Locality numbers (Q1–Q3 and L1–L6) are shown in Fig. 1 and Table 1.
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