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135 results for “Saphonecrus”

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Fig. 3 in Fig. 1 in Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 3. Changes to water level (a) and salinity (b) in the Aral Sea during the modern regression; m.a.s.l, metres above sea level; salinity given in parts per thousand; inserted images show the concomitant decrease in surface area and the Kokaral Dam (Redrawn from data in Micklin 2014).

opencc-by-4.0May 2021View details →
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Fig. 1 in Fig. 1 in Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 1. Map of Central Asia with the Aral Sea and its affluent rivers (modified from www.freeworldmaps.net).

opencc-by-4.0May 2021View details →
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Fig. 4 in Fig. 2 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015

Fig. 4. Lithosiini spp.: male genitalia. A, Setteleia bakunawa sp. nov., holotype (MWM/ZSM). B, S. bakunawa sp. nov., paratype (CKC). C, Moorasura gloriosa, type species of Moorasura (MWM/ZSM). D, M. kanchenjunga, holotype (MWM/ZSM). Scale bars = 1 mm.

opencc-by-4.0Jun 2021View details →
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Fig. 3 in Fig. 2 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015

Fig. 3. Setteleia gen. nov. spp.: male genitalia. A, S. witti sp. nov., holotype (MWM/ZSM). B, S. witti sp. nov., paratype (CKC). C, S. carota sp. nov., holotype (MWM/ZSM). D, S. lourensi sp. nov., holotype (MWM/ZSM). Scale bars = 1 mm.

opencc-by-4.0Jun 2021View details →
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Fig. 7 in Fig. 2 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015

Fig. 7. Lithosiini spp.: female genitalia of type species of genera. A, Moorasura gloriosa (MWM/ZSM) B, Cyme reticulata (©The Trustees of NHMUK).

opencc-by-4.0Jun 2021View details →
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Fig. 6 in Fig. 2 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015

Fig. 6. Lithosiini spp.: female genitalia. B, D, E, F are type species of genera. A, Setteleia witti sp. nov., paratype (MWM/ZSM). B, Setteleia carota sp. nov., paratype (CKC). C, Setteleia bakunawa sp. nov., paratype (CKC). D, Sarbine flavodiscalis (CKC). E, Ammatho cuneonotatus (CKC). F, Integrivalvia exclusa (MWM/ZSM). Scale bars = 1 mm.

opencc-by-4.0Jun 2021View details →
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Fig. 3 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015

Fig. 3. Spectrogram of vocalization types of isolation calls in Myotis emarginatus pups, which include single-syllable (classic, sinusoid, CF-tail and UP-tail-FM) and double-syllable (FM and FM, CF-tail and FM and UP-tail-FM and FM) calls.

opencc-by-4.0May 2021View details →
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Fig. 2 in Fig. 4. A in Saphonecrus globosus Schweger and Tang 2015

Fig. 2. Spectrogram of short calls produced by Myotis emarginatus pup from day 1 to 27 recorded in seven sampling occasions.

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Fig. 2 in Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 2. Habitus of Mitripus seclusus and Mitripus bovillus. A–C, Mitripus seclusus sp. n.: A: dorsal; B: ventral; C: lateral; D–G, Mitripus bovillus comb. n. (Distant): D: dorsal; E: ventral; F: labels; G: lateral. Scale bars = 1 mm.

opencc-by-4.0Mar 2021View details →
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Fig. 6 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 6. Radula morphology of Semisulcospira davisi sp. nov. collected from type locality (KUZ Z3684). Scale bar = 100 μm.

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Fig. 8 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015

Fig. 8. Rajathelphusa muni gen. nov., sp. nov., holotype male (30.2 × 22.6 mm) (DABFUK/AR-BR-115), colour in life.

opencc-by-4.0Apr 2021View details →
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Fig. 2 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 2. Schematic drawings indicating shell measurements of Semisulcospira species in this study. A–B, Adult shell. C, Embryonic shell. D, Whorl number of adult shell. E, Whorl number of embryonic shell.

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Fig. 4 in Fig. 8 in Saphonecrus globosus Schweger and Tang 2015

Fig. 4. Rajathelphusa ala gen. nov., sp. nov., paratype male (26.3 × 20.7 mm) (DABFUK). 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.

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Fig. 3 in Fig. 7 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 3. Male genitalic structures of Mitripus seclusus sp. n. and Mitripus bovillus comb. n. (Distant). A–J, Mitripus seclusus: A–C: pygophore: A: dorsal view; B: posterior view; C: ventral view; D–G: left paramere: D: dorsal view; E: ventral view; F: lateral view; G: mesial view; H–J: phallus: H: ventral view; I: lateral view; J: dorsal view; K–T, Mitripus bovillus: K–M: pygophore: K: dorsal view; L: posterior view; M: ventral view; N–Q: left paramere: N: dorsal view; O: ventral view; P: lateral view; P: mesial view; R–T: phallus: R: ventral view; S: lateral view; T: dorsal view. App: apical process of paramere, bpp: basal process of paramere, dr: dorsal rim, spdr: superior process of dorsal rim, tr: transverse ridge, vr: ventral rim. Scale bars = 1 mm.

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Fig. 8 in Saphonecrus globosus Schweger and Tang 2015

Fig. 8. Diagrammatic representation of the protein metabolism and cell regeneration in skeletal muscle of two obesity models. (A) The change in protein synthesis. In the OB mice, the expression levels of P-Akt, P-mTORC1 and P-4E-BP1 decreased significantly. In the PRE ground squirrels, the expression levels of P-Akt, P-mTORC1 and P-S6K1 increased significantly. (B) The change in protein degradation. In the OB mice, the expression levels of calpain1, calpain2 and MuRF-1 increased significantly, and the expression levels of desmin and troponin T decreased significantly. In the PRE ground squirrels, the expression levels of beclin-1 and LC3-II decreased significantly. (C) The change in cell regeneration. In the OB mice, the expression level of myostatin increased significantly, and the expression level of myogenin decreased significantly. In the PRE ground squirrels, the expression level of MyoD increased significantly. OB: mice after 3 months of ingesting high fat diet, PRE: pre-hibernation, squirrels that finished natural fattening, sacrificed in late-autumn (end of September, 30–40 d before hibernation). P-Akt, phosphorylated protein kinase B; P-mTORC1, phosphorylated mammalian target of rapamycin in complex 1; P-S6K1, phosphorylated ribosomal protein S6 kinase 1; P-4E-BP1, phosphorylated 4E binding protein 1; MuRF-1, muscle ring finger-1; LC3, microtubule-associated protein 1A/1B-light chain 3; MyoD, myogenicity differentiation factor.

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Fig. 4 in Saphonecrus gilvus Melika and Schweger 2015

Fig. 4. Shells of Semisulcospira davisi sp. nov. A–G, Holotype, KUZ Z3680. H–J, Specimen from Kitafunaki, KUZ Z3686. K–M, Specimen from Yokoehama, KUZ Z3687. N–P, Specimen from Okishima, KUZ Z3688. Q–S, Specimen from Yoshikawa, KUZ Z3690. A–C, H, K, N, Q, Adult shell. D, I, L, O, R, Operculum. E–G, J, M, P, S, Embryonic shell. Scale bars: 10 mm (A–D, H–I, K–L, N–O, Q–R), 2 mm (E–G, J, M, P, S). All specimens were treated with 12% sodium hypochlorite.

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Fig. 7 in Saphonecrus globosus Schweger and Tang 2015

Fig. 7. The protein expression levels of MyoD, myogenin and myostatin. (A) Representative immunoblots of MyoD, myogenin and myostatin in gastrocnemius muscles in each group. (B) The relative protein expression level of MyoD in mice and Daurian ground squirrels. (C) The relative protein expression level of myogenin in mice and Daurian ground squirrels. (D) The relative protein expression level of myostatin 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.

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Fig. 5 in Saphonecrus globosus Schweger and Tang 2015

Fig. 5. The protein expression levels of Beclin-1 and LC3-II. (A) Representative immunoblots of Beclin-1 and LC3 in gastrocnemius muscles in each group. (B) The relative protein expression level of Beclin-1 in mice and Daurian ground squirrels. (C) The relative protein expression level of LC3-II 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 SA group.

opencc-by-4.0Mar 2021View details →
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Fig. 4 in Saphonecrus globosus Schweger and Tang 2015

Fig. 4. The protein expression levels of calpain1, calpain2, calpastatin, desmin and troponin T. (A) Representative immunoblots of calpain1, calpain2, calpastatin, desmin and troponin T in gastrocnemius muscles in each group. (B) The relative protein expression level of calpain1 in mice and Daurian ground squirrels. (C) The relative protein expression level of calpain2 in mice and Daurian ground squirrels. (D) The relative protein expression level of calpastatin in mice and Daurian ground squirrels. (E) The relative protein expression level of desmin in mice and Daurian ground squirrels. (F) The relative protein expression level of troponin T 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.

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Fig. 3 in Saphonecrus globosus Schweger and Tang 2015

Fig. 3. The protein expression levels of MuRF-1 and atrogin-1. (A) Representative immunoblots of MuRF-1 and atrogin-1 in gastrocnemius muscles in each group. (B) The relative protein expression level of MuRF-1 in mice and Daurian ground squirrels. (C) The relative protein expression level of atrogin-1 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.

opencc-by-4.0Mar 2021View details →

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