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Figures 416–422 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 416–422: Figures 416–418. Scorpiops neradi, male holotype, metasoma and telson lateral (416), ventral (417), and dorsal (418) views. Figure 419. S. neradi, female paratype, metasoma and telson lateral view. Figures 420–422. S. dunlopi sp. n., female holotype, metasoma and telson lateral (420), ventral (421), and dorsal (422) views. Scale bars: 10 mm (416–418, 419, 420–422).

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Figures 331–336 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 331–336: Scorpiops birulai sp. n., male holotype. Figures 331–332. dorsal (331) and ventral (332) views. Figures 333–336. Telson lateral (333), and metasoma and telson lateral (334), ventral (335), and dorsal (336) views. Scale bars: 10 mm (331–332, 334–336).

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Figures 329–330 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 329–330. Scorpiops bastawadei sp. n., female holotype, in vivo habitus with newborns (329), and with juveniles after first ecdysis (330).

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Figures 305–317 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 305–317: Figures 305–308. Scorpiops grandjeani, female (1823), Thailand, Kapang, 8.004608°N 99.744415°E, FKCP, pedipalp patella dorsal (305), femur and trochanter dorsal (306), chela dorsal (307), and external (308) views. Figures 309–317. Scorpiops bastawadei sp. n., female holotype, pedipalp segments. Chela dorsal (309), external (310) and ventral (311) views. Patella dorsal (312), external (313) and ventral (314) views. Femur and trochanter dorsal (315), and ventral (316) views. Movable finger dentition under UV light (317). Trichobothrial pattern is indicated by white circles (309a–314a).

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Figures 363–373 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 363–373: Scorpiops ciki sp. n., male holotype. Figure 363. Dorsal view. Figures 364–370. Pedipalp segments. Chela dorsal (364), external (365) and ventral (366) views. Patella dorsal (367), external (368) and ventral (369) views. Movable finger (370) dentition under UV light. Trichobothrial pattern is indicated by white circles. Figures 371–373. Metasoma and telson lateral (371), ventral (372), and dorsal (373) views. Scale bars: 10 mm (363, 371–373).

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Figures 359–362 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 359–362. Thailand, type localities of Scorpiops birulai sp. n. (359), S. kautti sp. n. (360), S. krabiensis sp. n. (361), and S. phatoensis sp. n. (362).

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Figures 134–148 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 134–148: Scorpiops spp., right pectines. Figure 134. S. harmsi, female, holotype. Figure 135. S. vonwicki, female, holotype. Figure 137. S. leptochirus, male and female, India, Meghalaya State, Nong Poh, FKCP. Figure 138. S. sherwoodae sp. n., male holotype. Figure 139. S. longimanus, male, India, Assam State, 50 km E of Tezpur, FKCP. Figure 140. S. longimanus, female, India, Maghalaya State, West Garo-Hills, FKCP. Figure 141. S. braunwalderi, male, holotype. Figure 142. S. phatoensis sp. n., male, holotype. Figure 143. S. tibetanus, male, topotype of S. pococki, FKCP. Figure 144. S. dastychi, male, paratype. Figure 145. S. yagmuri, male, holotype. Figure 146. S. margerisonae, male, holotype. Figure 147. S. margerisonae, male, China, 100 km S of Lhasa, FKCP. Figure 148. S. wrzecionkoi, female, holotype.

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Figures 433–440 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 433–440: Scorpiops dunlopi sp. n. Figures 433. Female paratype with newborns. Figures 434–440. Female holotype in vivo habitus (434), carapace and tergites I–III (435), coxosternal area and sternites III–IV (436), left legs I–IV, retrolateral aspect (437–440 respectively).

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Figures 149–163 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 149–163: Whole hemispermatophores of 15 scorpiopids. Convex (external) aspect of hemispermatophores of: Scorpiops oligotrichus (149), S. citadelle (150), S. sherwoodae sp. n. (151), S. montanus (152), S. pakseensis sp. n. (153), S. leptochirus (154), S. phatoensis sp. n. (155), S. schumacheri (156), S. wongpromi (157), S. kautti sp. n. (158), S. birulai sp. n. (159), S. anthracinus (160), S. thaomischi (161), S. dii sp. n. (162) and S. problematicus (163). Specimen numbers indicated. Scale bars: 2 mm (149–154, 157–161, 163), 1 mm (155–156, 162).

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Figures 122–127 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 122–127: Morphometric trends and sexual dimorphism in scorpiopids. Figures 122–123. Bivariate scatter plots of total numbers of internal accessory denticles and internal denticles (IAD + ID) vs. adult pedipalp chela L/W ratio of 56 male (122) and 60 female (123) scorpiopids. Denticle counts for a species, including both male and female, are plotted against L/W ratios for one sex (male or female) of that species. Figure 124. Bivariate scatter plot of IAD + ID vs. total length of 74 scorpiopids (male and female). Figure 125. Bivariate scatter plot of adult pedipalp chela L/W ratio vs. total length of 56 male (triangles) and 60 female (circles) scorpiopids. In Figs. 122–125, gray lines are least squares regressions. Significant positive correlations were detected in 122–124, but not in 125. Figure 126. Bivariate scatter plot of adult telson L/D ratios of males vs. females of 49 scorpiopids. Black line is diagonal. Figure 127. Bivariate scatter plot of pectinal tooth counts of males vs. females of 61 scorpiopids. Not all points are visible as many are overlaid at the same coordinates. Black line is diagonal. In all plots, symbols are located at range midpoints for each variable, and error bars indicate the ranges (minimum to maximum). Abscissa scales of all plots and ordinate scales of 125–126 are logarithmic. Upper right inset (123): symbol colors indicating generic assignments according to old trichobothrial diagnoses, for all plots including males (triangles), females (circles) or either sex (squares).

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Figures 318–326 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 318–326: Scorpiops bastawadei sp. n., female holotype, carapace and tergites I–III (318), coxosternal area and sternites III–IV (319), lateral eyes (320), left pectine (321), left legs I–IV, prolateral aspect (322) and retrolateral aspect (323–325 respectively), and left chelicera dorsal view (326).

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Figures 128–133 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 128–133: Part of carapace with lateral eyes. Figure 128. Parascorpiops montanus, female, Malaysia, Borneo, Sarawak, Matang, ca. 20 km W of Kuching, FKCP. Figure 129. Scorpiops solegladi sp. n., female, holotype. Figure 130. S. lindbergi, male, holotype of S. kraepelini. Figure 131. S. grosseri, female, holotype. Figure 132. S. tryznai, female, holotype. Figure 133. S. sherwoodae sp. n., male holotype.

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Figures 423–432 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 423–432: Scorpiops dunlopi sp. n., female holotype, pedipalp segments, chela dorsal (423), external (424) and ventral (425) views. Patella dorsal (426), external (427) and ventral (428) views. Trochanter and femur dorsal (429) and ventral (430) views. Movable (431) and fixed (432) finger dentition. Trichobothrial pattern is indicated by white circles.

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Figures 378–385 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 378–385: Scorpiops dii sp. n. Figures 379–382. Male holotype, telson lateral (379), and metasoma and telson lateral (380), ventral (381), and dorsal (382) views. Figures 378, 383–385. Female paratype, telson lateral (378), and metasoma and telson lateral (383), ventral (384), and dorsal (385) views. Scale bar: 10 mm (380–385).

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Figures 483–485 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 483–485: Scorpiops kautti sp. n., female paratype, in vivo habitus (483), with newborns (484), and with juveniles after first ecdysis (485).

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Figures 170–185 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 170–185: Hemispermatophore capsules of 16 scorpiopids. Convex aspect of capsules of: Scorpiops oligotrichus (170), S. citadelle (171), S. sherwoodae sp. n. (172), S. montanus (173), S. pakseensis sp. n. (174), S. leptochirus (175), S. phatoensis sp. n. (176), S. schumacheri (177), S. wongpromi (178), S. kautti sp. n. (179), S. krabiensis sp. n. (180), S. birulai sp. n. (181), S. anthracinus (182), S. thaomischi (183), S. dii sp. n. (184) and S. problematicus (185). Specimen number of S. krabiensis 1829, of others as indicated in Figs. 149–163. Scale bars: 400 μm (170–175, 178–185), 200 μm (176–177).

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Figures 77–81 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 77–81: Variation in positions of trichobothria db and eb on the fixed finger of the pedipalp chela of scorpiopids. Figure 77. Bivariate scatter plot of normalized distal positions of db vs. eb referred to trichobothrium Et5 on the distal chela manus (a proxy landmark for base of fixed finger) for males (triangles, 57 species) and females (circles, 57 species). Biometrics and symbol color indicating trichobothrial generic assignments according to old trichobothrial diagnoses, in upper right page inset. Trichobothrium db is level with eb along the black diagonal line, distal to it above the line, and proximal to it below the line. Figures 78–79. Relation of distal positioning of db vs. eb to manus elongation. Scatter plots of distal position of db relative to eb vs. L/D ratio of manus for 58 male (78) and 54 female (79) adult scorpiopids. Abscissa scale is logarithmic. Gray lines are least squares regressions, showing correlation is weak for males and strong for females. Figures 80–81. Relation of distal positioning of db vs. eb to positions of trichobothria Dt and Eb 3 on manus. Scatter plots of distal position of db relative to eb vs. normalized position of Dt (80) and Eb 3 (81) for males (triangles, 56 and 57 species) and females (circles, 54 and 52 species). Least squares regression lines are shown for each sex (males, dark gray; females, light gray). Arrows in Figs. 77, 79–81 indicate "Alloscorpiops" citadelle with more proximal db and Eb , separated from other "Alloscorpiops" with distal db. R=Pearson´s correlation coefficient.

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Figures 3–9 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 3–9: Variation in positions of trichobothria Eb and Dt on the manus of the pedipalp chela of scorpiopids. Figure 3. Bivariate logarithmic 3 scatter plot of normalized positions of Eb 3 vs. Dt along the proximal-distal axis of the manus (normalized by manus length, mL), for males (triangles, 61 species) and females (circles, 56 species). Biometrics defined in right page inset. Data compiled from published trichobothrial maps, and study of our own material. Each symbol represents one species with a total of 84 species (= 90% of the 93 known scorpiopids). For illustrative purposes, symbols are color-coded (color key in lower right page inset) by old generic assignments determined by trichobothriotaxic scheme of Soleglad & Sissom (2001), including new species described herein under Scorpiops. Eb is level with Dt along the black diagonal line, distal to it 3 above the line, and proximal to it below the line. Gray line is least squares regression fit to all 117 points, showing weak or insignificant correlation between Eb 3 and Dt position. "Alloscorpiops" calmonti (indicated arrow) clusters high with other "Alloscorpiops", assuming homology of midmanus trichobothrium with Eb 3. Figure 4. Scatter plot of Fig. 3, with 5 specimens of S. montanus highlighted in black symbols. Intraspecific variation encompasses cases with Eb distal to, level with, or proximal to Dt, invalidating the use of the relative positions of these two trichobothria 3 as a taxonomic character. Figure 5. Histogram showing distribution of position of Eb relative to Dt. Vertical separation from the diagonal of each 3 point in Fig. 3 was calculated and binned at intervals of 0.05. Zero value on abscissa corresponds to Eb 3 level with Dt. Figures 6–7. Logarithmic scatter plots of normalized position of Eb 3 along proximal-distal axis vs. L/D ratio of manus for 61 male (6) and 56 female (7) scorpiopids. Female "A." calmonti (7, upper arrow) clusters with other "Alloscorpiops" and with "Euscorpiops" having elongated manus, if we interpret the mid-manus trichobothrium as Eb. Female "A." citadelle (7, lower arrow) is separated from other "Alloscorpiops" by having less distal Eb, although it has 3 3 an elongated manus. Gray lines are least squares regressions, showing significant positive correlation between distal placement of Eb and manus 3 elongation. Figures 8–9. Scatter plots of position of Eb 3 relative to Dt along proximal-distal axis vs. L/D ratio of manus for 60 male (8) and 56 female (9) scorpiopids. Abscissa scale is logarithmic. Gray lines are least squares regressions, showing significant positive correlation between distal placement of Eb 3 relative to Dt and manus elongation. R=Pearson´s correlation coefficient.

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Figures 447–454 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 447–454: Scorpiops kautti sp. n. Figures 447, 449–451. Male holotype, telson lateral (447), and metasoma and telson lateral (449), ventral (450), and dorsal (451) views. Figures 448, 452–454. Female paratype, telson lateral (448), and metasoma and telson lateral (452), ventral (453), and dorsal (454) views. Scale bar: 10 mm (449–454).

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Figures 10–20 in Revision of genus-group taxa in the family Scorpiopidae Kraepelin, 1905, with description of 15 new species (Arachnida Scorpiones)

Figures 10–20: Scorpiops spp., pedipalp chela external (10–16, 18 and 20) and dorsal (17 and 19) views. Trichobothria Dt and Eb are 3 indicated by white open circles. Figures 10–14. S. montanus, juvenile, holotype, ZMHB (10), female (11) and male reared from litter of female 11 (12), India, Uttarakhand State, Dhika forest, 29.65°N 78.94°E, FKCP, female (13) and male (14) from India, Uttarakhand State, Rishikesh, 30.13°N 78.32°E, FKCP. In the juvenile holotype, Eb 3 is located distal to Dt (Fig. 10); in the female from Dhika forest, Eb 3 is located slightly distal to Dt (Fig. 11) but the male from her litter has Eb 3 proximal to Dt (Fig. 12); in both specimens from Rishikesh, Eb 3 is proximal to Dt but its relative position differs between individuals (Figs. 13–14). Figure 15. S. hardwickii, female, India, Uttaranchal State, ca. 30 km of Bageshwar, SE of Dhakuri vill., 2600–2800 m a. s. l., FKCP. Figure 16. S. asthenurus, male, India, Meghalaya State, Nong Poh env., FKCP. Figures 17–18. S. petersii, male, India, Himachal Pradesh State, Molta, FKCP. Figures 19–20. S. vonwicki, female, holotype, ZISP.

opencc-by-4.0Dec 2020View details →

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