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Figures 19-21 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figures 19-21 - Nesomyrmex capricornis sp. n. holotype worker (CASENT0452741). Lateral view of the body (19), head of the holotype worker in full-face view (20), dorsal view of the body (21). Scale 0.5 mm.
Figures 15-18 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figures 15-18 - Anterodorsal view of the propodeal spines and anterodorsal spines on the petiolar node of Nesomyrmex spinosus sp. n. (15), Nesomyrmex hafahafa sp. n. (16), Nesomyrmex medusus sp. n. (17), Nesomyrmex capricornis sp. n. (18). Contour lines of propodeal spines, anterodorsal petiolar spines and the left lateral margin of the petiole are drawn.
Figure 13 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figure 13 - Dendrogram for NC-clustering scores with AU/BP values (%), classification of objects based on recursive partitioning with mesosomal profile of four species of hafahafa species-group is mapped on distributional map of Madagascar. Abbreviations: AU = approximately unbiased P-value, BP = bootstrap probabilities before statistical adjustments. Rectangles show the final species hypothesis. Color codes: Nesomyrmex capricornis sp. n. (yellow), Nesomyrmex hafahafa sp. n. (red), Nesomyrmex medusus sp. n. (blue), Nesomyrmex spinosus sp. n. (green).
Figure 14 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figure 14 - Scatterplot of discriminant scores DL1 and LD2 for Nesomyrmex capricornis sp. n. (red), Nesomyrmex hafahafa sp. n. (green), Nesomyrmex medusus sp. n. (blue), Nesomyrmex spinosus sp. n. (lilac) is illustrated. Convex hull graphically displays boundaries between sets of points forming different clusters. Classification functions for LD1 and LD2 are given in the text.
Figure 12 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figure 12 - Gap statistic for dataset of hafahafa species-group. Four-cluster solution is highly supported by the elbow at 4 components by the dispersion curve (left) and by the peak at cluster number four by the gap curve (right). Number of clusters in the data (X axis), the total within-cluster dispersion for each evaluated partition (Y axis for the left plot) and the vector of length Kmax giving the Gap statistic for each evaluated partition (Y axix for the right plot) is illustrated.
Figures 7-11 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figures 7-11 - Diagnostic characters for workers of all species-groups outlined in this paper. Lateral view of mesosoma, petiole and postpetiole of a member of the hafahafa species-group (7), dorsal view of mesosoma, petiole and postpetiole of angulatus species-group (8), dorsal view of mesosoma, petiole and postpetiole of madecassus species-group (9), lateral view of mesosoma, petiole and postpetiole of madecassus species-group (10), lateral view of mesosoma, petiole and postpetiole of sikorai species-group (11). For details see main text.
Figures 28-30 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figures 28-30 - Nesomyrmex spinosus sp. n. paratype worker (CASENT0443532). Lateral view of the body (28), head of the holotype worker in full-face view (29), dorsal view of the body (30). Scale 0.5 mm.
Figures 1-6 from: Csősz S, Fisher BL (2015) Diagnostic survey of Malagasy Nesomyrmex species-groups and revision of hafahafa group species via morphology based cluster delimitation protocol. ZooKeys 526: 19-59. https://doi.org/10.3897/zookeys.526.6037
Figures 1-6 - Measurement lines for metric characters. Head in dorsal view (1) with measurement lines for CL, CW, CWB and PoOC; frontal region of the head dorsum (2) with measurement lines for FRS; dorsal view of mesosoma (3) with measurement lines for NSTI, SPBA and SPTI; dorsal view of mesosoma (4) with measurement lines for MW, PSTI, PEW and PPW; lateral view of mesosoma (5) with measurement lines for ML and PEL; lateral view of mesosoma petiole and postpetiole (6) with measurement lines for MPST, NOL, PPL and SPST.
Figure 7 from: Bharti H, Rilta JS (2015) Taxonomic studies on the ant genus Ponera Latreille, 1804 (Hymenoptera, Formicidae), with the description of a new species from India. ZooKeys 526: 9-18. https://doi.org/10.3897/zookeys.526.5971
Figure 7 - Map showing the localities from which Indian Ponera species have been recorded in Indian Himalaya.
Figures 4-6 from: Bharti H, Rilta JS (2015) Taxonomic studies on the ant genus Ponera Latreille, 1804 (Hymenoptera, Formicidae), with the description of a new species from India. ZooKeys 526: 9-18. https://doi.org/10.3897/zookeys.526.5971
Figures 4-6 - Ponera paedericera worker 4 head in full-face view 5 body in profile view 6 body in dorsal view.
Figure 1 from: Wang J, Xia Z, Lin R, Liang Q, Lin H, Wang J, Zheng C (2015) A new species of Hemichela Stock, 1954 from the South China Sea (Arthropoda, Pycnogonida, Ammotheidae). ZooKeys 526: 1-8. https://doi.org/10.3897/zookeys.526.5963
Figure 1 - Hemichela nanhaiensis sp. n., DS06-13-01, male holotype: A trunk, lateral view B trunk, dorsal view C chela, enlarged D leg 3 E oviger F terminal articles of oviger, enlarged G palp H terminal articles of palp, enlarged; arrow a, position of genital pore; arrow b, reversed spine. Scale bars A, B, D = 1.0 mm; C, F, H, G = 0.1 mm; E = 0.2 mm.
Figure 2 from: Wang J, Xia Z, Lin R, Liang Q, Lin H, Wang J, Zheng C (2015) A new species of Hemichela Stock, 1954 from the South China Sea (Arthropoda, Pycnogonida, Ammotheidae). ZooKeys 526: 1-8. https://doi.org/10.3897/zookeys.526.5963
Figure 2 - Distribution map of the three species of the genus Hemichela: ● Hemichela micrasterias ● Hemichela nanhaiensis ● Hemichela longiunguis (modified from Bamber 1992).
Figures 1-3 from: Bharti H, Rilta JS (2015) Taxonomic studies on the ant genus Ponera Latreille, 1804 (Hymenoptera, Formicidae), with the description of a new species from India. ZooKeys 526: 9-18. https://doi.org/10.3897/zookeys.526.5971
Figures 1-3 - Ponera sikkimensis sp. n. worker 1 head in full-face view 2 body in profile view 3 body in dorsal view.
Figures 3-5 from: Nemati A, Riahi E, Gwiazdowicz DJ (2015) Description of a new species of Julolaelaps (Acari, Mesostigmata, Laelapidae) from Iran. ZooKeys 526: 105-116. https://doi.org/10.3897/zookeys.526.5946
Figures 3-5 - Julolaelaps hallidayi sp. n. (female): 3 Ventral idiosoma 4–5 Examples of ventral setae.
Figure 1 from: Polilov AA (2015) How small is the smallest? New record and remeasuring of Scydosella musawasensis Hall, 1999 (Coleoptera, Ptiliidae), the smallest known free-living insect. ZooKeys 526: 61-64. https://doi.org/10.3897/zookeys.526.6531
Figure 1 - Habitus and diagnostic characters of Scydosella musawasensis, SEM: A dorsal view B lateral view C ventral view D antenna C mouthparts F pygidial tooth G mesosternal process.
Figure 13-16 from: Gabriel R, Longhorn SJ (2015) Revised generic placement of Brachypelma embrithes (Chamberlin & Ivie, 1936) and Brachypelma angustum Valerio, 1980, with definition of the taxonomic features for identification of female Sericopelma Ausserer, 1875 (Araneae, Theraphosidae). ZooKeys 526: 75-104. https://doi.org/10.3897/zookeys.526.6315
Figure 13-16 - Selected taxa with similar spermathecae to Sericopelma. 13 Brachypelma emilia, type species of the genus from México, specimen EME10 in SJLC 14 Brachypelma verdezi from México, PAL4 in SJLC 15 Megaphobema robustum type species of the genus from Colombia, OUMNH 2008 072 (ROB3); and 16 Megaphobema mesomelas from Costa Rica as MES4 in SJLC.
Figure 17-18 from: Gabriel R, Longhorn SJ (2015) Revised generic placement of Brachypelma embrithes (Chamberlin & Ivie, 1936) and Brachypelma angustum Valerio, 1980, with definition of the taxonomic features for identification of female Sericopelma Ausserer, 1875 (Araneae, Theraphosidae). ZooKeys 526: 75-104. https://doi.org/10.3897/zookeys.526.6315
Figure 17-18 - 17 Leg IV tarsus and metatarsus of Sericopelma immensum, allotype female (Naranjal de Guarumal, Cantón Puriscal, San José, Costa Rica), showing most extensive metatarsal 'trace' scopula 18 Nymphal (pre-dispersal) young misidentified by Petrunkevitch as Brachypelma vagans Panama, and inset, older yet smaller (post-dispersal) young of Brachypelma cf. vagans (pettrade, from Mexico).
Figure 1-5 from: Gabriel R, Longhorn SJ (2015) Revised generic placement of Brachypelma embrithes (Chamberlin & Ivie, 1936) and Brachypelma angustum Valerio, 1980, with definition of the taxonomic features for identification of female Sericopelma Ausserer, 1875 (Araneae, Theraphosidae). ZooKeys 526: 75-104. https://doi.org/10.3897/zookeys.526.6315
Figure 1-5 - 1 Spermathecae from holotype of Sericopelma embrithes in dorsal view 2 Live specimen in situ of Sericopelma cf. embrithes at type locality on Barro Colorado Island, probable adult Female [Photo: Insa Wagner, STRI] 3 Spermatheca drawing of female Nicaraguan Sericopelma sp. in dorsal from Schiapelli and Gerschman (1967), their figure 20 4 Spermatheca of mature female Sericopelma sp. Boquete (8.78°N, 82.43°W), Districto Boquete, Chiriquí Province, Panama, dorsal view lacking any distinct median notch 5 Same spermatheca (as 4) in lateral view with diagnostic 'P-shape' (of seen in reverse).
Figure 12 from: Gabriel R, Longhorn SJ (2015) Revised generic placement of Brachypelma embrithes (Chamberlin & Ivie, 1936) and Brachypelma angustum Valerio, 1980, with definition of the taxonomic features for identification of female Sericopelma Ausserer, 1875 (Araneae, Theraphosidae). ZooKeys 526: 75-104. https://doi.org/10.3897/zookeys.526.6315
Figure 12 - Geographic distribution of the genus Sericopelma from published records (including this study), where complete black-centred shapes are for specimens examined during this study, whilst gray shapes [outlined in black] are further specimens listed by Valerio (1980), accordingly data for Sericopelma immensum has black shapes (for the holotype, allotype and further female from Pozo Azul de Pirrís examined here), and gray shapes for further sites of Valerio. Sericopelma rubronitens and Sericopelma panamense are of unspecific location, but canal-zone seems likely.
Figure 6-11 from: Gabriel R, Longhorn SJ (2015) Revised generic placement of Brachypelma embrithes (Chamberlin & Ivie, 1936) and Brachypelma angustum Valerio, 1980, with definition of the taxonomic features for identification of female Sericopelma Ausserer, 1875 (Araneae, Theraphosidae). ZooKeys 526: 75-104. https://doi.org/10.3897/zookeys.526.6315
Figure 6-11 - Holotype of Sericopelma angustum. 6 Habitus and labels 7 Valerio (1980) figure 19, drawing spermathecae 8 Spermathecae, dorsal view 9 Spermathecaee, lateral view showing (reversed) 'P-shape' diagnostic of Sericopelma 10 Dense pad of plumose hairs on femur IV not present in Brachypelma, upper with alcohol wet, bottom left inset same dried, bottom right inset closeup of plumose hairs 11 tarsus leg IV showing unusual spines along central axis, bottom left inset closer image.
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