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238 results for “evolutionary relationships”
Figure 2 from: Vu TTT, Nguyen AD, Le TML, Peña-Santiago R (2024) Updated taxonomy and new insights into the evolutionary relationships of the genus Sporonchulus Cobb, 1917 (Nematoda, Mononchida) after the study of two Vietnamese species. Zoosystematics and Evolution 100(1): 155-166. https://doi.org/10.3897/zse.100.118675
Figure 2 Sporonchulus ibitiensis (Carvalho, 1951) Andrássy, 1958 (Female, LM). A. Entire; B, C, F, G. Anterior body region, lateral median (B, C) and lateral submedian (F, G) view; C. Lip region (SEM), in face view; E. Neck region; H. Caudal region. I. Vagina; J. Pharyngo-intestinal junction. Scale bars: 200 µm (A); 10 µm (B, C, F, G, H, J); 5 µm (D, I); 50 µm (E).
Figure 3 from: Vu TTT, Nguyen AD, Le TML, Peña-Santiago R (2024) Updated taxonomy and new insights into the evolutionary relationships of the genus Sporonchulus Cobb, 1917 (Nematoda, Mononchida) after the study of two Vietnamese species. Zoosystematics and Evolution 100(1): 155-166. https://doi.org/10.3897/zse.100.118675
Figure 3 Sporonchulus vagabundus Jairajpuri, 1971 (Female). A. Entire; B, C. Anterior body region, lateral median view; D. Neck region; E. Posterior genital branch; F. Anterior body region, lateral surface view; G. Caudal region; H. Pharyngo-intestinal junction; I. Vagina. Scale bars: 200 µm (A); 5 µm (B, C, F, G, H); 50 µm (D); 10 µm (E, G).
Figure 6 from: Vu TTT, Nguyen AD, Le TML, Peña-Santiago R (2024) Updated taxonomy and new insights into the evolutionary relationships of the genus Sporonchulus Cobb, 1917 (Nematoda, Mononchida) after the study of two Vietnamese species. Zoosystematics and Evolution 100(1): 155-166. https://doi.org/10.3897/zse.100.118675
Figure 6 Bayesian Inference tree from the newly sequenced Sporonchulus ibitiensis (Carvalho, 1951) Andrássy, 1958 based on sequences of the 28S rDNA region. Bayesian posterior probabilities (%) are given for each clade. Scale bar shows the number of substitutions per site.
Figure 1 from: Vu TTT, Nguyen AD, Le TML, Peña-Santiago R (2024) Updated taxonomy and new insights into the evolutionary relationships of the genus Sporonchulus Cobb, 1917 (Nematoda, Mononchida) after the study of two Vietnamese species. Zoosystematics and Evolution 100(1): 155-166. https://doi.org/10.3897/zse.100.118675
Figure 1 Sporonchulus ibitiensis (Carvalho, 1951) Andrássy, 1958 (Female). A. Entire; B–D. Anterior body region, lateral median (B, C) and lateral submedian (D) view; E. Neck region; F. Anterior genital branch; G. Anterior body region, lateral surface view; H. Caudal region; I. Pharyngo-intestinal junction; J. Vagina. Scale bars: 200 µm (A); 10 µm (B–D, F, H, I); 50 µm (E); 5 µm (G, J).
Figure 4 from: Vu TTT, Nguyen AD, Le TML, Peña-Santiago R (2024) Updated taxonomy and new insights into the evolutionary relationships of the genus Sporonchulus Cobb, 1917 (Nematoda, Mononchida) after the study of two Vietnamese species. Zoosystematics and Evolution 100(1): 155-166. https://doi.org/10.3897/zse.100.118675
Figure 4 Sporonchulus vagabundus Jairajpuri, 1971 (Female, LM). A. Entire; B–D. Anterior body region, lateral median view; E. Caudal glands; F–H. Anterior body region, lateral submedian view; I. Vagina; J. Caudal region; K. Posterior genital branch; L, N. Anterior body region, lateral surface view; M. Detail of caudal region tip; O. Pharyngo-intestinal junction. Scale bars: 200 µm (A); 5 µm (B–I, L, N, O); 10 µm (J, K, M).
Figure 8 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 8 - Lipogramma evides A Aquarium photograph by Barry Brown, Substation Curacao B USNM 276560, 45.3 mm SL, illustration by Grant Gilmore in Gilmore and Jones (1988: fig. 1) C and D USNM 414885, 24.4 mm SL, photos by D. R. Robertson and C. C. Baldwin against black (C) and white (D) backgrounds.
Figure 5 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 5 - Preserved specimens of A Lipogramma levinsoni sp. n., holotype, USNM 406139, 28.3 mm SL B Lipogramma haberi sp. n., holotype, USNM 422679, 40.1 mm SL C Lipogramma evides, paratype, ANSP 134330, 30.5 mm SL Photos A and B by Sandra Raredon, C by Mark Sabaj.
Figure 3 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 3 - Tooth-like, secondary rakers on the first gill arch in Lipogramma evides, USNM 34771, cleared and stained paratype. Photo by L. Tornabene.
Figure 11 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 11 - Items from stomachs of deep-reef Lipogramma: A Planktonic foraminiferan, possibly Globorotalia manardii, from Lipogramma evides, USNM 434771, collected at 174 m B Diatom, possibly Coscinodiscus eccentricus, from Lipogramma levinsoni sp. n., USNM 406140, collected between 137 and 146 m C Parasitic Nematoda from same specimen as B. Photos by A. Nonaka and L. Tornabene.
Figure 9 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 9 - Bayesian Inference molecular phylogeny of Lipogramma based on combined mitochondrial and nuclear genes. Numbers of individuals analyzed for each species are given in Appendix 1, along with the genes sequenced for each individual. Topology is identical to that from Maximum Likelihood analysis. Support values are Bayesian posterior probabilities (above) and bootstrap values (below). Nodes without labels have 1.0 posterior probability and 100 bootstrap values. Photos or illustrations by C. C. Baldwin, D. R. Robertson, R. G. Gilmore, and C. R. Robins.
Figure 10 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 10 - Depth distributions for species of Lipogramma. Photos or illustrations by C. C. Baldwin, D. R. Robertson, R. G. Gilmore, and Mooi and Gill (2002: fig. 9).
Figure 1 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 1 - Previously published images of A Lipogramma evides, 34.4 mm SL, ANSP 134329, holotype, from Robins and Colin (1979: fig. 1) B Lipogramma levinsoni sp. n., 12.6 mm SL, ANSP 134332, as juvenile paratype of Lipogramma evides in Robins and Colin (1979: fig. 2) C Lipogramma levinsoni sp. n., 14.1 mm SL, IRCZM 107: 07660, as juvenile of Lipogramma evides in Gilmore and Jones (1988: fig. 3). Images reproduced with permission from Bulletin of Marine Science.
Figure 2 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 2 - Lipogramma levinsoni sp. n. A USNM 406139, holotype, 28.3 mm SL, photographed prior to preservation, photo by D. R. Robertson and C. C. Baldwin B USNM 406394, 22.2 mm SL , photographed prior to preservation, photo by D. R. Robertson and C. C. Baldwin C and D Aquarium photos, Curaçao Sea Aquarium, photos by D. Ross Robertson.
Figure 7 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 7 - Lipogramma haberi sp. n., USNM 422679, holotype, 40.1 mm SL, photographed prior to preservation against white (top) and black (bottom) backgrounds. Photos by D. R. Robertson and C. C. Baldwin.
Figure 6 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 6 - Comparison of juveniles of A Lipogramma levinsoni sp. n., USNM 440230, paratype, 13.4 mm SL and B Lipogramma evides, USNM 431410, 12.7 mm SL.
Figure 4 from: Baldwin CC, Robertson RD, Nonaka A, Tornabene L (2016) Two new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with comments on the eco-evolutionary relationships of the genus. ZooKeys 638: 45-82. https://doi.org/10.3897/zookeys.638.10455
Figure 4 - Supraorbital pore patterns in Lipogramma evides, UF 238591, 34.5 mm SL (left) and Lipogramma levinsoni sp. n., UF 238589, 25.0 mm SL (right). Arrows point to pores, which have been outlined with tiny dots for emphasis. PN – posterior nostril.
Figure 7 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 7 Lipogramma sp. from Cuba, RGG uncataloged, 52.5 mm SL, collected at Cayos Los indios, JSLII Dive 3069, 296 m, 27 Dec 1997, R. G. Gilmore and R. Robins. Drawing by R. G. Gilmore.
Figure 9 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 9 Eco-evolutionary histogram for species of Lipogramma showing phylogenetic distribution of species' depth ranges. Photographs or illustrations by C. C. Baldwin, R. G. Gilmore, Gilmore (1997: fig. 1), Mooi and Gill (2002: fig. 9), D. R. Robertson, and M. Stone.
Figure 8 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 8 Bayesian Inference molecular phylogeny of nine species of Lipogramma based on combined mitochondrial and nuclear genes. Numbers of individuals analyzed for each species are given in Appendix 1, along with the genes sequences for each individual. Topology is identical to that from BP&P species-tree analysis. Support values are Bayesian posterior probabilities (above) and bootstrap values (below). Nodes without labels have 1.0 posterior probability and 100 bootstrap values. Photographs or illustrations by C. C. Baldwin, R. G. Gilmore, D. R. Robertson, C. R. Robins, and M. Stone.
Figure 6 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 6 Lipogramma schrieri sp. n. A USNM 413864, CUR12290, paratype, 17.2 mm SL, photograph by D. R. Robertson and C. C. Baldwin B USNM 430035, CUR13329, paratype, 26.0 mm SL, photograph by Barry Brown C USNM 435299, CUR15012, paratype, 32.8 mm SL, D. R. Robertson and C. C. Baldwin.
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