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1,968 results for “morphological taxonomy”
Figure 1 from: Wang P, Che J, Liu Q, Li K, Jin JQ, Jiang K, Shi L, Guo P (2020) A revised taxonomy of Asian snail-eating snakes Pareas (Squamata, Pareidae): evidence from morphological comparison and molecular phylogeny. ZooKeys 939: 45-64. https://doi.org/10.3897/zookeys.939.49309
Figure 1 Bayesian inference tree of the Pareidae based on nDNA dataset. Branch support measures are Bayesian posterior probabilities/ML bootstrap support (only where >50%). Branch support indices are not given for most intrageneric nodes to preserve clarity.
Figure 4 from: Wang P, Che J, Liu Q, Li K, Jin JQ, Jiang K, Shi L, Guo P (2020) A revised taxonomy of Asian snail-eating snakes Pareas (Squamata, Pareidae): evidence from morphological comparison and molecular phylogeny. ZooKeys 939: 45-64. https://doi.org/10.3897/zookeys.939.49309
Figure 4 Holotype of Pareas menglaensis sp. nov. (YBU 14124). General view(A); dorsal (B), ventral (C), lateral (D) and frontal (E) views of the head; dorsal (F) and ventral (G) views of the median body.
Figure 5 from: Wang P, Che J, Liu Q, Li K, Jin JQ, Jiang K, Shi L, Guo P (2020) A revised taxonomy of Asian snail-eating snakes Pareas (Squamata, Pareidae): evidence from morphological comparison and molecular phylogeny. ZooKeys 939: 45-64. https://doi.org/10.3897/zookeys.939.49309
Figure 5 Holotype of Pareas mengziensis sp. nov. (YBU 14252). Dorsal (A) and ventral (B) of general views; dorsal (C), ventral (D), and lateral (E) views of the head.
Fig. 55. Maximum likelihood tree inferred from ITS2 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 55. Maximum likelihood tree inferred from ITS2 gene of species of Loxosceles Heineken & Lowe, 1832 from Mexico. Colors of branches and bars indicate different species. Numbers above bars represent the delimitation methods: 1 = morphology (M); 2 = neighbor joining (NJ); 3–4 = ABGD with initial partitions (IP); 5–7 = ABGD with recursive partitions (RP); 8 = GMYC yule analysis; 9 = GMYC coalescent analysis; 10 = bPTP with ML; 11 = bPTP with IB. Numbers below bars represent species recovered for each delimitation method. Red numbers on branches correspond to Bayesian posterior probabilities, black numbers are bootstrap support values from the ML analysis.
Figs 26–29 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 26–29. Loxosceles tolantongo sp. nov. 26–27. Caparace of ♂ holotype (CNAN-T01317) and ♀ paratype (CNAN-T01321), respectively. 28–29. ♀ paratype (CNAN-T01321). 28. Seminal receptacles. 29. Genital area, ventral view. Scale bars: 26–27 = 1 mm; 28 = 0.2 mm; 29 = 0.5 mm.
Fig. 52 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 52. Neighbor joining tree constructed from CO1 data of nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Colors of branches indicate different species. Numbers on nodes are bootstrap support values. Red circle at node represents Loxosceles tolantongo sp. nov.
Figs 10–15 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 10–15. Habitat and microhabitat of Loxosceles tolantongo sp. nov. 10–11. Xerophytic forest from the type locality: Tourist Center Grutas de Tolantongo, Municipality of Cardonal, Hidalgo, Mexico. 12–15. Microhabitat situated 500 m west of entrance No. 5 to the Tourist Center Grutas de Tolantongo, Municipality of Cardonal, Hidalgo, Mexico (arrows indicate the microhabitat where the specimens can be found: under big rocks and inside of rotten and dry agave plants). Photos 10, 12–14 by Claudia Isabel Navarro-Rodríguez (2018); photos 11, 15 by Alejandro Valdez-Mondragón (2018).
Figs. 50–51 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs. 50–51. Distribution records of Loxosceles tolantongo sp. nov. from Hidalgo. 50. Known records of Loxosceles tolantongo sp. nov. from the Tourist Center Grutas de Tolantongo, Municipality of Cardonal, Hidalgo, including the type locality. 51. Distribution records of the four species of Loxosceles from Hidalgo, Mexico. Abbreviations: HGO = Hidalgo; MEX = Estado de Mexico; PUE = Puebla; SLP = San Luis Potosí; VER = Veracruz.
Figs 16–19 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 16–19. Loxosceles tolantongo sp. nov. 16–17. Habitus of ♂ holotype (CNAN-T01317), dorsal and ventral views, respectively. 18–19. Habitus of ♀ paratype (CNAN-T01321), dorsal and ventral views, respectively. Scale bars = 2 mm.
Figs 44–49 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 44–49. Loxosceles jaca Gertsch & Ennik, 1983. 44–46. Left palp, prolateral, dorsal and retrolateral views respectively. 47–49. Detail of the bulb and the embolus: retrolateral, dorsal and apical views, respectively. Scale bars: 44–46 = 0.5 mm; 47–49 = 0.2 mm.
Figs 6–9 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 6–9. Live female paratype (CNAN-T01321) of Loxosceles tolantongo sp. nov. from the type locality: Tourist Center Grutas de Tolantongo Municipality of Cardonal, Hidalgo, Mexico. Photos 6–7 by Alejandro Valdez-Mondragón (2019); photos 8–9 by Claudia Isabel Navarro-Rodríguez (2019).
Figs 1–5 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 1–5. Live male holotype (CNAN-T01317) of Loxosceles tolantongo sp. nov. from the type locality: Tourist Center Grutas de Tolantongo, Municipality of Cardonal, Hidalgo, Mexico. Photos 1–4 by Alejandro Valdez-Mondragón (2019); photo 5 by Claudia Isabel Navarro-Rodríguez (2019).
Fig. 53 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 53. Neighbor joining tree of ITS2 data of nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Colors of branches indicate different species. Numbers at nodes represent bootstrap support values. Red circle at node represent Loxosceles tolantongo sp. nov.
Fig. 57 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Fig. 57. Haplotype network from the CO1 data obtained with TCS using PopArt. Each circle represents the haplotypes found in nine species of Loxosceles Heineken & Lowe, 1832 from Mexico. Numbers on branches indicate the number of mutations between haplotypes.
Figs 36–43 in Description of a new species of Loxosceles Heineken & Lowe (Araneae, Sicariidae) recluse spiders from Hidalgo, Mexico, under integrative taxonomy: morphological and DNA barcoding data (CO1 + ITS2)
Figs 36–43. Variation of the seminal receptacles of females, dorsal view. 36–39. Loxosceles tolantongo sp. nov. 36, 39. Tourist Center Grutas de Tolantongo, Municipality of Cardonal. 37–38. 500 m west of the entrance No. 5 to the Tourist Center Grutas de Tolantongo, Municipality of Cardonal. 40–43. Loxosceles jaca Gertsch & Ennik, 1983. 2.5 km north of Jacala de Ledezma, Municipality of Jacala de Ledezma, Hidalgo. Scale bars = 0.2 mm.
Figure 1 from: Chen W-H, Wen F, Ren M-X, Yang L, Hong X, Qiu Z-J, Shui Y-M (2020) Gesneriaceae in China and Vietnam: Perfection of taxonomy based on comprehensive morphological and molecular evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 1-5. https://doi.org/10.3897/phytokeys.157.56842
Figure 1 Flowers of some species of Gesneriaceae in China and Vietnam ABournea sinensis Oliv. (photographed by Yu-Min Shui) BOreocharis guileana (B.L. Burtt) Li H. Yang & F. Wen, comb. nov. (by Li-Hua Yang) COreocharis baolianis (Q.W. Lin) Li H. Yang & M. Kang, comb. nov. (by Li-Hua Yang) DOreocharis jasminina S.J.Ling, F.Wen & M.X. Ren, sp. nov. (by Shao-Jun Ling) EOreocharis flavovirens Xin Hong (by Xin Hong) FOreocharis wumengensis Lei Cai & Z.L.Dao, sp. nov. (by Lei Cai) GOreocharis fulva W.H.Chen & Y.M.Shui, sp. nov. (by Yu-Min Shui) HAllocheilos rubroglandulosus W.H. Chen & Y.M. Shui, sp. nov. (by Yu-Min Shui) IPetrocodon rubiginosus Y.G.Wei & R.L.Zhang, sp. nov. (by Fang Wen) JPetrocodon luteoflorus Lei Cai & F. Wen, sp. nov. (by Fang Wen) KDeinostigma fasciculatum W.H.Chen & Y.M.Shui, sp. nov. (by Yu-Min Shui) LPrimulina xuansonensis W.H.Chen & Y.M.Shui, sp. nov. (by Yu-Min Shui) MDidymocarpus lobulatus F. Wen, Xin Hong &W.Y. Xie, sp. nov. (by Jia-Jun Zhou) NParaboea myriantha Y.M. Shui & W.H. Chen, sp. nov. (by Yu-Min Shui) OParaboea sinensis var. glabrissima W.H.Chen & Y.M.Shui, var. nov. (by Yu-Min Shui) PPetrocosmea nanchuanensis Z.Y. Liu, Z.Y. Li & Z.J. Qiu, sp. nov. (by Zhi-Jing Qiu).
Figure 3 from: Tan K, Lu T, Ren M-X (2020) Gesneriaceae in China and Vietnam: Perfection of taxonomy based on comprehensive morphological and molecular evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 7-26. https://doi.org/10.3897/phytokeys.157.34032
Figure 3 Species distributions pattern of the Asian Gesneriaceae. Black circles indicate diversification centers with highest species richness and the red grids are the evolutionary hotspots (at least 25% species are neoendemics). The species distribution information is obtained from http://www.gbif.org. The map was drawn using DIVA-GIS7.5.
Figure 2 from: Tan K, Lu T, Ren M-X (2020) Gesneriaceae in China and Vietnam: Perfection of taxonomy based on comprehensive morphological and molecular evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 7-26. https://doi.org/10.3897/phytokeys.157.34032
Figure 2 Distribution localities of 15 genera of the Asian Gesneriaceae that experienced extensive changes in species compositions.
Figure 5 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 5 Geographical distribution of Oreocharis guileana (green dot), O. baolianis (red triangle) and O. pilosopetiolata (blue square).
Figure 3 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 3 Bayesian (> 50%) tree resulting of the combined nuclear (ITS) and plastid (trnL-F) data matrices. Posterior probability (PP) from the BI analysis are indicated above branches and Bootstrap value (BS) from the ML analysis are indicated below. The asterisk indicates a BS < 50. The dash indicates the topological discordance between ML and Bayesian tree. The two species, O. baolianis and O. guileana, are highlighted in bold.
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Allen Brain Atlas
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