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Figure 4 in Delimitation and description of 19 new genera, a subgenus and a species of Salticidae (Araneae) of the world

Figure 4. Habitus diversity in MYRMARACHNINES: A – Myrmarachne tristis, B – M. ramosa, C – Toxeus maxillosus, D – Toxeus hirsutipalpi, E– Myrmapana panamensis, dorsal and lateral views, F – Myrmatheca alticephalon. G – H – Myrmapeni penicillata, dorsal and lateral views, I - Panachraesta paludosa. Sources: A – Prószyński, ©Annales zoologici, 2003, 51, 3: 109, Fig. 468; B, D – M. Edmunds & J. Prószyński, ©Bulletin of the British Arachnological Society, 2003, 12: 301, Fig 21; 20, Fig. 110 C, F –T. Yamasaki & Ahmad, Zootaxa, 2013, 3710 (6): 538, Figs 30A, B; 508, Fig. 4A. © Magnolia Press; E, G, H – M. E. Galiano, Revista del Museo Argentino de Ciencias naturales Bernardino Rivadavia, Entomologia, Buenos Aires 3: 136, Figs 46-47; 143, Figs. 46-47, 117, Figs 3-4; I – J. Prószyński 1987: 74. By courtesy.

opencc-by-4.0May 2016View details →
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Figure 9 in Delimitation and description of 19 new genera, a subgenus and a species of Salticidae (Araneae) of the world

Figure 9. Diagnostic characters of new genera: A – B – Marusyllus hamifer: male palp, internal structure of epigyne, spermatheca (enlarged) dorsal and ventral views; C – D – Logunyllus albocinctus; E – Nandicius: sp from Nepal, internal structure of epigyne (compare also Fig. 9E); F – H – N. mussooriensis: male palp, leg I of female and male (note row of stridulatory microsetae on femur I, but tibia I not modified) epigyne and its internal structure; I – J – N. pseudicioides: male palp and internal structure of epigyne; K – M – Orienticius vulpes: male palp, epigyne and its internal structure. Drawn by J. Prószyński in Annales zoologici:A – D 1968 26: 430-435, Figs 78-84; C – D –1968 26: 463-466, Figs 136-137, 143; E –unpublished (shown in Prószyński 2016a, b); F– H–1992a: 44: 101-102, f 54-55, 57- 59; I – J –1984: 37: 374, Figs 63-68; K – M 1971: 28: 220-223, Figs 30-36. By courtesy.

opencc-by-4.0May 2016View details →
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Figure 1 in Molecular diversity and species delimitation in the genus Mideopsis Neuman, 1880 in Europe (Acari, Hydrachnidia, Mideopsidae)

Figure 1. Maximum Likelihood tree (GTR+I model) of the Mideopsis spp. obtained from 71 nucleotide COI sequences. The results of the three species delimitation methods are indicated by vertical bars (BIN number given). The outgroup was removed from the figure. Only a bootstrap that supported more than 50% is reported.

opencc-by-4.0Dec 2023View details →
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Fig.14 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Fig.14. Cluster similarity based on the meristic data of Cichla Bloch & Schneider, 1801 specimens, indicating the relationship among Cichla kelberi Kullander & Ferreira, 2006, Cichla piquiti Kullander & Ferreira, 2006 and carijó samples.

opencc-by-4.0Dec 2017View details →
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Figs 9-12. Fig. 9 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Figs 9-12. Fig. 9, patterns of PCR-multiplex for the COI mitochondrial gene. Fig. 10, PCR-RFLP patterns of the COI gene with NlaIV enzymes. Fig. 11, patterns of PCR-multiplex for the RAG nuclear gene. Fig. 12, PCR-RFLP patterns of the RAG gene with the BsrI enzyme. The species are indicated as: column 1, Cichla kelberi Kullander & Ferreira, 2006; column 2, Cichla piquiti Kullander & Ferreira, 2006; column 3 and 4, Cichla kelberi; column 5 and 6, Cichla piquiti; column 7 and 8, carijó; M, 1 kb molecular weight marker.

opencc-by-4.0Dec 2017View details →
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Fig. 8 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Fig. 8. Restriction maps of the COI gene and RAG1 gene for the species Cichla kelberi Kullander & Ferreira, 2006 and Cichla piquiti Kullander & Ferreira, 2006.

opencc-by-4.0Dec 2017View details →
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Fig. 13 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Fig. 13. Principal Component Analysis (PCA) for Cichla Bloch & Schneider, 1801 specimens using morphological data. Highlight: Cichla kelberi Kullander & Ferreira, 2006, Cichla piquiti Kullander & Ferreira, 2006 and carijó samples distribution.

opencc-by-4.0Dec 2017View details →
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Figs 4-6. Fig. 4 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Figs 4-6. Fig. 4: Cichla kelberi Kullander & Ferreira, 2006; Fig. 5: Cichla piquiti Kullander & Ferreira, 2006; Fig. 6: carijó.

opencc-by-4.0Dec 2017View details →
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Fig. 7 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Fig. 7. Recognition and orientation sites of universal and species-specific primers within regions of the mitochondrial (COI) and nuclear (RAG1) genes of Cichla Bloch & Schneider, 1801 species.

opencc-by-4.0Dec 2017View details →
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Figs. 2, 3. Fig. 2 in Molecular and morphological approaches for species delimitation and hybridization investigations of two Cichla species

Figs. 2, 3. Fig. 2 (adapted of Kullander & Ferreira, 2006), body measures used for morphological analyses of Cichla Bloch & Schneider, 1801 individuals: Standard length (1); head length (2); snout length (3); length of the lower jaw (4); length of the upper jaw (5); orbit diameter (6); head height (7); body height (8); length of pectoral fin (9); length of the dorsal fin spines (10); length of the dorsal fin radius (11); length of caudal peduncle (12); caudal peduncle height (13); and inter-orbital width (14). Fig. 3 (adapted of Kullander & Nijssen 1989): meristic parameters included the following measures. Numbers of dorsal fin spines (ED); dorsal fin radius (RD); upper lateral line scales (LS); lower lateral line scales (LI); pectoral fin radius (RP); and anal fin radius (RA).

opencc-by-4.0Dec 2017View details →
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Fig. 11 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 11. Ophioderma bichi sp. nov., non-type specimen (USNM E23396, DD = 28.1 mm), SEM images of the ossicles. A. Radial shield, external face. B. Radial shield, internal face. C. Dental plate. D. Adradial genital plate, abradial face. E. Adradial genital plate, adradial face. F. Oral plate, abradial face. G. Oral plate, adradial face. Black arrows point to oral papillae sockets, white arrows point to granule sockets. H. Arm vertebra, proximal face. I. Arm vertebra, distal face. J. Ventral arm plate, external face. K. Ventral arm plate, internal face. L. Lateral arm plate, external face. M. Lateral arm plate, internal face. N. Lateral arm plate, lateral face. Abbreviations: dist = distal; dors = dorsal; prox = proximal; SA = spine articulation; Sp = spur; vent = ventral.

opencc-by-4.0Aug 2024View details →
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Fig. 7. Ophioderma unicolor H.L. Clark, 1940 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 7. Ophioderma unicolor H.L. Clark, 1940 stat. nov., holotype (MCZ IZ OPH-114, DD = 35.7 mm). A. Dorsal disc. B. Ventral disc (inset: section between the arm and the distal genital slit). C. Closeup of a jaw. D. Proximalmost dorsal arm. Arrowheads indicate the extra plates on the arm base. E. Median dorsal arm. F. Distalmost dorsal arm. G. Proximalmost ventral arm. H. Median ventral arm. I. Distalmost ventral arm. J. Lateral arm plates and arm spines. K. Dorsal view. Abbreviations: 2° AdShSp = secondary adoral shield spine; AdShSp = adoral shield spine; IPa = infradental papilla; LOPas = lateral oral papillae; LyOs = Lyman's ossicle; RS = radial shield; TPa = tooth papilla; vT = ventralmost tooth.

opencc-by-4.0Aug 2024View details →
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Fig. 8 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 8. Ophioderma aija sp. nov., holotype (ICML-UNAM 18466, DD = 26.7 mm). A. Dorsal disc. B. Ventral disc (inset: section between the arm and the distal genital slit). C. Close-up of a jaw. D. Proximalmost dorsal arm. E. Median dorsal arm. F. Distalmost dorsal arm. G. Proximalmost ventral arm. H. Median ventral arm. I. Distalmost ventral arm. J. Lateral arm plates and arm spines. K. Dorsal view. Abbreviations: 2° AdShSp = secondary adoral shield spine; AdShSp = adoral shield spine; IPa = infradental papilla; LOPas = lateral oral papillae; LyOs = Lyman's ossicle; OPRSp = oral plate ridge spine; RS = radial shield; TPa = tooth papilla; vT = ventralmost tooth.

opencc-by-4.0Aug 2024View details →
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Fig. 9 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 9. Ophioderma aija sp. nov., non-type specimen (ICML-UNAM 18457, DD = 26.2 mm), SEM images of the ossicles. A. Radial shield, external face. The arrowhead indicates the naked section observed in the intact animal. B. Radial shield, internal face. C. Dental plate. D. Adradial genital plate, abradial face. E. Adradial genital plate, adradial face. F. Oral plate, abradial face. G. Oral plate, adradial face. Black arrows point to oral papillae sockets, white arrows point to granule sockets. H. Arm vertebra, proximal face. I. Arm vertebra, distal face. J. Ventral arm plate, external face. K. Ventral arm plate, internal face. L. Lateral arm plate, external face. M. Lateral arm plate, internal face. N. Lateral arm plate, lateral face. Abbreviations: dist = distal; dors = dorsal; prox = proximal; SA = spine articulation; Sp = spur; vent = ventral.

opencc-by-4.0Aug 2024View details →
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Fig. 6. Comparison between Ophioderma sodipallaresi Caso, 1986 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 6. Comparison between Ophioderma sodipallaresi Caso, 1986 (= Ophioderma teres (Lyman, 1860)), holotype from Mexico (ICML-UNAM 3.24.3, DD = 20.9 mm) (left), and Ophioderma teres, non-type material from Panama (USNM E23215, DD = 19.3 mm) (right). A–B. Dorsal disc. C–D. Jaws. E–F. Section between the arm and the distal genital slit. G, I. Dorsal arm (proximalmost). H, J. Dorsal arm (median).

opencc-by-4.0Aug 2024View details →
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Fig. 3 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 3. Ophioderma teres (Lyman, 1860), neotype (MCZ IZ OPH-113, DD = 26.5 mm). A. Dorsal disc. B. Ventral disc (inset: section between the arm and the distal genital slit). C. Close-up of a jaw. D. Proximalmost dorsal arm. Arrowheads indicate the extra plates on the arm base. E. Median dorsal arm. F. Distalmost dorsal arm. G. Proximalmost ventral arm. H. Median ventral arm. I. Distalmost ventral arm. J. Lateral arm plates and arm spines. K. Dorsal view. Abbreviations: 2° AdShSp = secondary adoral shield spine; AdShSp = adoral shield spine; IPa = infradental papilla; LOPas = lateral oral papillae; LyOs = Lyman's ossicle; OPRSp = oral plate ridge spine; TPa = tooth papilla; vT = ventralmost tooth.

opencc-by-4.0Aug 2024View details →
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Fig. 5 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 5. Distribution of Ophioderma teres (Lyman, 1860), Ophioderma unicolor H.L. Clark, 1940 stat. nov., Ophioderma aija sp. nov., and Ophioderma bichi sp. nov. in the eastern Pacific. A. Gulf of California. B. Revillagigedo Islands. C. Mexican Tropical Pacific. D. Central America and Colombia. E. Galapagos Islands.

opencc-by-4.0Aug 2024View details →
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Fig. 4 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 4. Ophioderma teres (Lyman, 1860), non-type specimen (USNM E23201, DD = 26.9 mm), SEM images of the ossicles. A. Radial shield, external face. B. Radial shield, internal face. C. Dental plate. D. Adradial genital plate, adradial face. E. Oral plate, abradial face. F. Oral plate, adradial face. G. Arm vertebra, proximal face. H. Arm vertebra, distal face. I. Ventral arm plate, external face. J. Ventral arm plate, internal face. K. Lateral arm plate, external face. L. Lateral arm plate, internal face. M. Lateral arm plate, lateral face. Abbreviations: dist = distal; dors = dorsal; prox = proximal; SA = spine articulation; Sp = spur; vent = ventral.

opencc-by-4.0Aug 2024View details →
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Fig. 2 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 2. Bayesian inference (BI) tree of 16S sequences. Numbers on branches indicate posterior probability/ bootstrap values obtained with BI and maximum likelihood, respectively. Sequences obtained in this study are indicated in bold (see Supp. file 5).

opencc-by-4.0Aug 2024View details →
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Fig. 10 in Delimitation of Ophioderma teres (Lyman, 1860) and Ophioderma unicolor H.L. Clark, 1940 stat. nov. (Echinodermata: Ophiuroidea), including the description of two new species

Fig. 10. Ophioderma bichi sp. nov., holotype (USNM E23455, DD = 33.2 mm). A. Dorsal disc (inset: extra plates on the disc). B. Ventral disc (inset: section between the arm and the distal genital slit). C. Close-up of a jaw. D. Proximalmost dorsal arm. E. Median dorsal arm. F. Distalmost dorsal arm. G. Proximalmost ventral arm. H. Median ventral arm. I. Distalmost ventral arm. J. Lateral arm plates and arm spines. K. Dorsal view. Abbreviations: 2° AdShSp = secondary adoral shield spine; AdShSp = adoral shield spine; IPa = infradental papilla; LOPas = lateral oral papillae; LyOs = Lyman's ossicle; TPa = tooth papilla; vT = ventralmost tooth.

opencc-by-4.0Aug 2024View details →

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