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Figures 366–386 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 366–386. Grosphus voahangyae. Pedipalp. Male (366–376) and female (377–386). Chela in dorsal (366, 377), external (367, 378) and ventral (368, 379) views. Patella in dorsal (369, 380), external (370, 381) and ventral (371, 382) views. Femur and trochanter in internal (372, 383), dorsal (373, 385), external (375, 386) and ventral (374, 384) views. Pedipalp chela, movable finger dentate margin (376). Scale bars: 2 mm (366–375, 377–386).
Figures 426–435. Figures 426–432 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 426–435. Figures 426–432. Teruelius annulatus. Male (426, 428, 430–431) and female (427, 429). Sternopectinal region (426–427). Carapace and tergites I–III (428). Pedipalp chela dorsal (429–430). Pedipalp chela, movable finger dentate margin (431). Metasoma V and telson lateroventral view (432). Figures 433–435. Teruelius bistriatus. Female (433–434) and male (435) syntypes. Sternopectinal region (433, 435). Carapace and tergites I–III (434).
Figures 291–292 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 291–292. Grosphus hirtus, male holotype of G. garciai, dorsal (291) and ventral (292) views. Scale bar: 10 mm.
Figures 422–425 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 422–425. Teruelius annulatus. Habitus. Male (422–423) and female (424–425), dorsal (422, 424) and ventral (423, 425) views. Scale bar: 10 mm.
Figures 158-160 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 158-160. Comparative intensity of UV fluorescence in Grosphus and Teruelius gen. n. Figure 158. Horizontal histograms comparing relative fluorescence emission intensities measured by photodiode current, for Grosphus and Teruelius species. Histogram bars are means, error bars are SE, species averages over all samples, male and female (sexes not significantly different, P> 0.05). Sample sizes: G. hirtus, 1♂, 1♀; G. sp. nr hirtus, 6♀; G. madagascariensis, 9♂, 1♀; G. voahangyae, 4♂, 1♀; T. ankarafantsika, 2♂, 2♀; T. ankarana, 1♂, 1♀; T. flavopiceus, 1♂, 1♀; T. grandidieri, 1♂, 1♀; T. limbatus, 6♂, 5♀; T. mahafaliensis, 2♂, 2♀; T. olgae, 1♂, 1♀. Sample means may not reflect single specimen intensities recorded in Figs. 145–157. Figure 159. Time course of photodiode current in UV fluorescence emission measurement for T. limbatus (upper curve), and two specimens of G. madagascariensis (middle and lower curves) over 620 s. Arrow indicates time of shutter opening to initiate UV excitation.160. Photobleaching time course for UV fluorescence emission of T. limbatus (middle curve) and G. madagascariensis (upper and lower curves) over 600 s following shutter opening (see Fig. 159). Ordinate is percentage bleaching relative to initial fluorescence after shutter opening. Blue curves are mono-exponential fits with decay time constants: T. limbatus, 640.2 s; G. madagascariensis, #1 654.4 s and #2 347.5 s.
Figures 145–157 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 145–157. Comparative intensity of UV fluorescence in Grosphus and Teruelius gen. n. Photographic comparison of fluorescence emission intensities of representative species of each genus, including adult males (♂) or females (♀). G. madagascariensis (145 from Anjiro, 148 from Andasibe), G. hirtus (146), G. voahangyae (147), G. hirtus (= G. h. garciai) (149), T. ankarafantsika (150), T. grandidieri (151), T. olgae (152), T. flavopiceus (153), T. ankarana (154–155), T. mahafaliensis (156), and T. limbatus (157). Images acquired under identical intensities of UV excitation (395 nm LED source, 0.35 A current) and camera exposure (Canon EOS 7D Mark II, 100 mm f/13, 0.5 s, ISO 320), with 475 nm longpass filter to block excitation wavelengths. Scale bars: 10 mm (145–150, 152–153, 156–157), 20 mm (151, 154–155).
Figures 133–144 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 133–144. Ventral setation of telotarsus III in Grosphus and Teruelius gen. n. Ventral surfaces of right telotarsus III of adult males (♂) or females (♀), shown under UV fluorescence to highlight setation. Macrosetae appear dark with strongly fluorescent cuticular sockets at their base. Putative chemosensory microsetae appear bright. G. hirtus (= G. h. garciai) (133), G. hirtus (134), G. madagascariensis (135, from Anjiro, 136 from Andasibe), G. voahangyae (137), T. ankarafantsika (138), T. limbatus (139), T. mahafaliensis (140), T. ankarana (141), T. grandidieri (142), T. flavopiceus (143), and T. olgae (144). Scale bars: 500 μm (133–140, 144) and 1 mm (141–143).
Figures 127–132 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 127–132. Ventral aspect of metasoma and telson of adult males (♂) or females (♀) of representative Teruelius gen. n under UV fluorescence to reveal carination and granulation. T. ankarafantsika (127), T. ankarana (128), T. flavopiceus (129), T. grandidieri (130), T. mahafaliensis (131), and T. olgae (132). Scale bars: 4 mm.
Figures 117–120 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 117–120. Distributions of Grosphus, Neogrosphus and Teruelius gen. n. superposed on climate maps. Figure 117. Collection sites superposed on average rainfall map. Figure 118. Collection sites superposed on land temperature map. Figure 119. Distribution of each genus according to average rainfall. Figure 120. Distribution of each genus according to land temperature. Vertical histogram bars in Figs 119–120 are means, error bars SE. P-values and asterisks indicate significant differences of Neogrosphus and Teruelius gen. n. means from Grosphus means. Symbols in bar charts are collection sites collapsed along rainfall axis (119), or temperature axis (120). Inset horizontal histograms show relative (normalized) densities of points vs. rainfall or temperature (vertical axes). Collection sites were extracted from published data and FMNH records. Rainfall and temperatures were extracted from published model data of Chabot-Couture et al. (2014), who estimated January and July rainfalls by interpolation of RFE 2.0 data, and annual mean daytime temperature by statistical processing and Kriging of remote sensing spectral radiance by AQUA satellite. We averaged January and July rainfalls to generate a single map.
Figures 1–4 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 1–4. Grosphus madagascariensis. Type species of Grosphus Simon, 1880. Habitus. Male (1–2) and female (3–4), in dorsal (1, 3) and ventral (2, 4) views. Scale bar: 10 mm.
Figures 40–51 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 40–51. Female basal pectinal teeth in Grosphus and Teruelius gen. n. Ventral views of proximal left pectine of females shown under UV fluorescence to highlight cuticular surface texture, setation and absence of peg sensillae on basal tooth vs. their presence on other teeth. G. sp. nr hirtus (40), G. madagascariensis (41), G. hirtus (42), G. voahangyae (43), T. ankarafantsika (44–45; 2 samples from Ampijoroa show variation in tooth shape), T. ankarana (46), T. flavopiceus (47), T. grandidieri (48), T. limbatus (49), T. mahafaliensis (50), and T. olgae (51). Scale bars: 1 mm.
Figures 90–93 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 90–93. Hemispermatophores and capsule regions of Teruelius gen. n. Cross stereoscopic convex views. Figure 90. T. ankarana, left mirrored, Forêt d'Ankavanana, FMNH. Figure 91. T. limbatus, Forêt d'Ianasana, FMNH. Figure 92. T. flavopiceus, Madagascar, GLPC, FKCP. Figure 93. T. ankarafantsika, Forêt d'Ankavanana, FMNH. Scale bars: 200 μm.
Figures 122–126 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 122–126. Ventral aspect of metasoma and telson of adult males (♂) or females (♀) of representative Grosphus spp. and Teruelius limbatus under UV fluorescence to reveal carination and granulation. G. hirtus (122), G. madagascariensis (123 from Anjiro, 124 from Andasibe), G. voahangyae (125), and T. limbatus (126). Scale bars: 4 mm.
Figures 21–27 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 21–27. Positions of trichobothria Eb, Eb and petite Eb on manus of pedipalp chela in Grosphus, Neogrosphus and Teruelius gen. 1 2 3 n. Figures 21–24. External views of pedipalp chela, shown under UV fluorescence to highlight trichobothrial areolae. G. hirtus ♂ (21), G. madagascariensis ♀ (22), T. limbatus ♂ (23), T. ankarafantsika ♀ (24). Positions of Eb 1, Eb 2 and Eb 3 and lines joining them shown as white overlays. Scale bars: 2 mm. Figures 25–26. Horizontal histograms comparing ratios, R = d(Eb, Eb)/ d(Eb, Eb), of Eb -Eb distance, to Eb - 123 2 3 1 2 2 3 1 Eb distance, in males (25), and females (26) of Grosphus, Neogrosphus and Teruelius gen. n. Error bars indicate ranges (minimum, maximum), 2 histogram bars mid-range values. Figure 27. Scatter plot of male vs. female ratios R. Ratio is larger in males if points fall above the diagonal 123 (gray) line, larger in females if they fall below it.
Figure 121 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figure 121. Bioclimatic zone distributions of Grosphus, Neogrosphus and Teruelius gen. n. in Madagascar. Collection sites were extracted from published data and FMNH records, and their bioclimatic classification visualized by superposition on zone boundaries defined by Cornet (1974). Colored regions show zones as delineated by Cornet, and symbols for genera are placed on the map and on zone keys of Cornet (upper left inset) to show ranges of humidity and temperature tolerance of each genus.
Figures 9–20 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 9–20. Position of femur trichobothrium d 2 in Grosphus and Teruelius gen. n. Dorsal surfaces of proximal pedipalp femur of adult females (♀, left panels) and adult males (♂, right panels), under UV fluorescence to highlight granulation, carinae and trichobothrial areolae. White arrows indicate positions of trichobothrium d in each image. G. madagascariensis (9, 10; 2 samples from Anjiro (9) and Andasibe (10) show consistency of d 2 2 position), G. hirtus (11), G. voahangyae (12), T. ankarafantsika (13, 15; 2 samples from Ampijoroa show consistency of d 2 position), T. ankarana (14), T. flavopiceus (16), T. grandidieri (17), T. limbatus (18), T. mahafaliensis (19), and T. olgae (20). Scale bars: 1 mm (9–20♀) or 500 μm (20 ♂).
Figures 71–85 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 71–85. Hemispermatophores and capsule regions of Teruelius gen n. Multi-panel figures show: whole hemispermatophore; whole hemispermatophore and/or capsule with flagellum; capsule region in convex (or convex compressed), anterior and posterior views (panels in left to right sequence). Right hemispermatophores. Figure 71. T. ankarana, whole hemispermatophore. Scale bar: 4 mm. Figure 72. T. ankarana, capsule, left mirrored, Forêt d'Ankavanana, FMNH. Scale bar: 500 μm. Figure 73. T. grandidieri, whole hemispermatophore (flagellum truncated). Scale bar: 4 mm. Figure 74. T. grandidieri, capsule, Antsakabe River, FMNH. Scale bar: 500 μm. Figure 75. T. flavopiceus, whole hemispermatophore. Scale bar: 2 mm. Figure 76. T. flavopiceus, capsule, Madagascar, GLPC, FKCP. Scale bar: 500 μm. Figure 77. T. annulatus, capsule, Tsimanampetsotsa National Park, GLPC, FKCP. Scale bar: 500 μm. Figure 78. T. ankarafantsika, capsule and flagellum. Scale bar: 400 μm. Figure 79. T. ankarafantsika, capsule, Forêt d'Ankavanana, FMNH. Scale bar: 200 μm. Figure 80. T. ankarafantsika, capsule, Réserve Forestière de l'Ankarafantsika, FMNH. Scale bar: 200 μm. Figure 81. T. olgae, capsule, Itampolo village, FMNH. Scale bar: 500 μm. Figure 82. T. limbatus, whole hemispermatophore (flagellum truncated). Scale bar: 2 mm. Figure 83. T. limbatus, capsule, Forêt d'Ianasana, FMNH. Scale bar: 500 μm. Figure 84. T. mahafaliensis, capsule views, Zombitse-Vohibasia National Park, GLPC, FKCP. Scale bar: 500 μm. Figure 85. T. intertidalis, capsule, Madagascar, GLPC, FKCP. Scale bar: 500 μm.
Figures 110–113 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 110–113. Biometric scaling of spiracles of sternite IV in Grosphus, Neogrosphus and Teruelius gen. n. Figures 110–111. Logarithmic scatter plots showing scaling of single spiracle area/ (carapace length)2 vs. carapace length in males (110), and females (111) of Grosphus, Neogrosphus and Teruelius gen. n. Spiracle length was largest diameter (approximately along mediolateral axis), width was smallest diameter (approximately along rostrocaudal axis). Area was from closed boundary curve: anterior edge of opening sharply delineated, posterior edge sometimes less sharp and fitted with spline curve extrapolating lateral edge curvature and tracing shadow of raised posterior margin. Brown line is least squares linear regression fit of scaling trends for Teruelius. R = Pearson correlation coefficient, and P value as indicated. Plotted points are means, error bars SE. Figures 112–113. Logarithmic scatter plots showing thermal (terrestrial temperature) scaling of spiracle area/ (carapace length)2 in males (112), and females (113) of Grosphus, Neogrosphus and Teruelius gen. n. Gray lines are least squares linear regression fits of scaling trends for all points. R = Pearson correlation coefficient, P value as indicated. Plotted points are means, error bars SE. Land surface temperatures at known collection sites were averaged over all sites for each species. Collection sites were extracted from published data and FMNH records. Temperatures were extracted from published model data of Chabot-Couture et al. (2014), who estimated annual mean daytime temperature by statistical processing and Kriging of remote sensing spectral radiance by AQUA satellite.
Figures 106–109 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 106–109. Biometric scaling of spiracles of sternite IV in Grosphus, Neogrosphus and Teruelius gen. n. Figures 106–107. Logarithmic scatter plots showing scaling of spiracle length/ width vs. carapace length in males (106), and females (107) of Grosphus, Neogrosphus and Teruelius gen. n. Male plot: purple star shows spiracle L/W of outgroup taxon Pseudolychas ochraceus. Figures 108–109. Logarithmic scatter plots showing scaling of spiracle width/ carapace length vs. carapace length in males (108), and females (109) of Grosphus, Neogrosphus and Teruelius gen. n. Blue lines are least squares linear regression fits of scaling trends for Grosphus. R = Pearson correlation coefficient, and P value as indicated. Horizontal gray lines are proposed diagnostic thresholds.
Figures 36–39 in Review of Grosphus Simon 1880 with description of Teruelius gen n a new buthid genus from Madagascar (Scorpiones Buthidae)
Figures 36–39. Comparative biometrics of female basal pectinal tooth and hemispermatophore trunk of Grosphus, Neogrosphus and Teruelius gen. n. Figures 36–37. Logarithmic scatter plots showing scaling of length of female basal pectinal tooth vs. carapace length (36), and hemispermatophore trunk length vs. carapace length (37). Color lines: least squares linear regression fits of scaling trends for the different genera. Figures 38–39. Logarithmic scatter plots of female basal pectinal tooth length vs. hemispermatophore trunk length (38), and the ratio of basal pectinal tooth length/ hemispermatophore trunk length (%) vs. hemispermatophore trunk length, showing fraction of trunk spanned by the female tooth (39). Female basal pectinal tooth length measured as chord length, from more proximal corner (along comb axis) at base of tooth, to more distal corner (along comb axis) at tip of tooth. Trunk length measured from proximal edge of basal lobe to pedicel (foot). Color lines: least squares linear regression fits of scaling trends for the different genera.
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