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135 results for “Saphonecrus”
Fig. 1 in Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015
Fig. 1. Bayesian Inference consensus tree based on the analysis of four molecular markers and morphological characters from 25 species of carpocorines. Numbers close to nodes are Bayesian posterior probability / Maximum-Likelihood bootstrap support, respectively. Only nodal support above PP = 0.5 or BS = 50 were collapsed ("*" indicates uninformed value); A–B, Padaeus viduus (Vollenhoven); C–D, Mitripus bovillus comb. n. (Distant): A: capsula seminalis; B: pygophore; C: capsula seminalis; D: pygophore (numbers near to the genitalic structures indicate character and state); red dashed line delimitates Mitripus clade.
Fig. 2. MHC I in Saphonecrus globosus Schweger and Tang 2015
Fig. 2. MHC I isoform distribution and single fiber cross-sectional area (CSA). (A) Representative immunofluorescent images of MHC I (green) fibers in gastrocnemius muscles in each group. Red represents laminin stain of myofiber interstitial tissue. Scale bar = 50 μm. (B) The changes in MHC I isoform distribution (%) in mice and Daurian ground squirrels. (C) The changes in muscle single fiber CSA in mice and Daurian ground squirrels. CON: control mice, OB: mice after 3 months of ingesting high fat diet, SA: summer active Daurian ground squirrels, PRE: pre-hibernation, squirrels that finished natural fattening, sacrificed in late-autumn (end of September, 30–40 d before hibernation). Values are mean ± SEM, n = 6. *p <0.05 compared with CON group.
Fig. 1 in Saphonecrus globosus Schweger and Tang 2015
Fig. 1. Skeletal muscle wet weight and the ratio of muscle wet weight/body weight. (A) The changes in muscle wet weight in mice and Daurian ground squirrels. (B) The changes in the ratio of muscle wet weight/body weight in mice and Daurian ground squirrels. CON: control mice, OB: mice after 3 months of ingesting high fat diet, SA: summer active Daurian ground squirrels, PRE: pre-hibernation, squirrels that finished natural fattening, sacrificed in late-autumn (end of September, 30-40 d before hibernation). Values are mean ± SEM, n = 6. *p <0.05 compared with CON group. #p <0.05 compared with SA group.
Fig. 7 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015
Fig. 7. Rajathelphusa muni gen. nov., sp. nov., holotype male (30.2 × 22.6 mm) (DABFUK/AR-BR-115). A, overall view; B, dorsal view of carapace; C, frontal view of cephalothorax; D, left third maxilliped; E, pleon (setae denuded); F, buccal cavity and anterior thoracic sternum; G, outer view of chelae.
Fig. 1 in Saphonecrus gilvus Melika and Schweger 2015
Fig. 1. Map of Lake Biwa showing five sampling localities: double circle, Tsukide (type locality of Semisulcospira davisi sp. nov.); black circles, Kitafunaki, Yokoehama, Okishima, Yoshikawa.
Fig. 3 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015
Fig. 3. Rajathelphusa ala gen. nov., sp. nov., holotype male (27.0 × 20.9 mm) (ZSI/WGR/IR.INV./15361). Preserved. A, overall view; B, frontal view of cephalothorax; C, right third maxilliped; D, pleon; E, anterior thoracic sternum and pleon; G, outer view of right chela; H, outer view of left chela.
Fig. 3 in Saphonecrus gilvus Melika and Schweger 2015
Fig. 3. Lectotype of Semisulcospira multigranosa (SMF 225654). A, ventral view. B, lateral view. C, dorsal view. D, historical handwritten label. E, partly printed label. Scale bar = 10 mm.
Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015
Fig. 7. Schematic drawings indicating reproductive organs of Semisulcospira davisi sp. nov. A, Male. B, Female. Scale bar = 5 mm.
Fig. 2 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015
Fig. 2. Colour in life. Rajathelphusa ala gen. nov., sp. nov., holotype male (27.0 × 20.9 mm) (ZSI/WGR/IR.INV./15361) Live specimen. A, overall dorsal view; B, ventral view of cephalothorax.
Fig. 4. Female genitalic structures. A in Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015
Fig. 4. Female genitalic structures. A: Mitripus seclusus sp. n.; B–C Mitripus bovillus comb. n. (Distant). A–B: posteroventral view of female terminal abdominal segments; C: internal genitalic structures. cs: capsula seminalis, mw: median wall, pi: pars intermedialis, rs: ring sclerites, tvi: thickening of vaginal intima, va: vesicular area. Scale bars: 1 mm.
Fig. 6 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015
Fig. 6. Habitat of Rajathelphusa ala gen. nov., sp. nov., Cardamom planation area; Rajakumari, Idukki, Kerala, India. Specimen not preserved.
Fig. 5 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015
Fig. 5. Colour in life. Rajathelphusa ala gen. nov., sp. nov., paratype female (34.9 × 26.3 mm) (DABFUK/AR-BR-113). A, overall dorsal view; B, ventral view of cephalothorax and pleon; C, sternopleonal cavity and vulvae.
Fig. 6 in Saphonecrus globosus Schweger and Tang 2015
Fig. 6. The protein expression levels of P-Akt, P-mTORC1, P-S6K1 and P-4E-BP1. (A) Representative immunoblots of P-Akt, P-mTORC1, P-S6K1 and P-4E-BP1 in gastrocnemius muscles in each group. (B) The relative protein expression level of P-Akt in mice and Daurian ground squirrels. (C) The relative protein expression level of P-mTORC1 in mice and Daurian ground squirrels. (D) The relative protein expression level of P-S6K1 in mice and Daurian ground squirrels. (E) The relative protein expression level of P-4E-BP1 in mice and Daurian ground squirrels. CON: control mice, OB: mice after 3 months of ingesting high fat diet, SA: summer active Daurian ground squirrels, PRE: pre-hibernation, squirrels that finished natural fattening, sacrificed in late-autumn (end of September, 30–40 d before hibernation). Values are mean ± SEM, n = 6. *p <0.05 compared with CON group. #p <0.05 compared with SA group.
Fig. 1 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015
Fig. 1. Map of India showing type localities of Rajathelphusa ala gen. nov., sp. nov. and R. muni gen. nov., sp. nov. (Map: Josin Tharian).
Fig. 1. P. amenkei nest collection areas. F in Saphonecrus globosus Schweger and Tang 2015
Fig. 1. P. amenkei nest collection areas. F: Forest fragment, O: Open grassland, J: Jordão and G: Guabiroba.
Fig. 3 in Saphonecrus globosus Schweger and Tang 2015
Fig. 3. Means and standard deviations (one sigma) of nine linear variables per temperature. Non-parametric test results for significant difference between the four temperature groups given. Distinct temperatures in black, non-distinct temperatures in grey. Significant comparisons (p <0.05) are mentioned.
Fig. 4. P in Saphonecrus globosus Schweger and Tang 2015
Fig. 4. P. amenkei female. General body coloration dark brown, in frontal view, head somewhat widened dorsally. Median clypeal lobe convex in the middle and strongly protruding, trapeziform; laterally with frontal depression and bent frontally along anterior margin (Antropov 1998).
Fig. 3 in Saphonecrus globosus Schweger and Tang 2015
Fig. 3. Nest of P. amenkei. A1: a vestibular cell; A2: cell partition; B3: intercalary cells; and C4: closure plug. Table 2. Measurements of P. amenkei trap nests
Fig. 2 in Saphonecrus globosus Schweger and Tang 2015
Fig. 2. Temperature effect on size in hermaphrodites of Eulimnadia texana. A, PCA of log-transformed variables H, L, and u (compare with Table 1). B, Means and standard deviations (one sigma) of PC1 scores, which represent a measure of general size.
Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015
Fig. 4. A, PCA of the Fourier dataset. B, Superimposed mean outlines. While shapes of extreme temperatures (20°C, 29°C) are distinct, intermediate shapes (23°C, 26°C) are almost congruent.
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