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zenodo20/100

Fig. 3 in Progress in erigonine spider phylogeny-the Savignia-group is not monophyletic (Araneae: Linyphiidae)

Fig. 3 Strict consensus tree of the 'distal erigonines', with unambiguous character optimisation (squares) and clade numbers (in circles); see also Figs. 4, 5 and 6. Squares mark homoplasious (white) and non-homoplasious (black) character-state changes; character and character-state numbers given above and below squares, respectively

opennotspecifiedJun 2010View details →
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FIGURE 24. Scytodes globula, spinnerets. A–C. Female. D–F. Male. A in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)

FIGURE 24. Scytodes globula, spinnerets. A–C. Female. D–F. Male. A. Spinnerets, lateral view (left), numbers on ALS articles (character 67). B. Left ALS. C. PMS–PLS, mesal view. D. Spinnerets, posterior-ventral view. E. Left ALS. F. Left PMS–PLS. Scales: A 200 µm, B–C 50 µm, D 100 µm, E–F 20 µm. Abbreviations: AC, aciniform gland spigot; MAP, major ampullate gland spigot; mS, PMS median spicules (character 77); N, nubbin; PI, piriform gland spigot.

opennotspecifiedMay 2012View details →
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FIGURE 29. Female genitalia. A–B. Periegops suteri. C–D. Drymusa capensis. E–F. Scytodes globula. A, E. Dorsal view. B in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)

FIGURE 29. Female genitalia. A–B. Periegops suteri. C–D. Drymusa capensis. E–F. Scytodes globula. A, E. Dorsal view. B. Closeup to receptacules. C. Right lateral view. D. Left posterior receptaculum, closeup. F. Right receptaculum, closeup. Scales: A, C, F 100 µm, B 20 µm, D 50 µm, E 200 µm. Abbreviations: GD, gland ductules; IS, inner spermatheca; S, spermatheca.

opennotspecifiedMay 2012View details →
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FIGURE 4. Female tarsal claws I. A–B. Scytodes globula, left tarsus. C–D. Stedocys leopoldi, right tarsus. A, C. Retrolateral-apical view. B. Apical view. D in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)

FIGURE 4. Female tarsal claws I. A–B. Scytodes globula, left tarsus. C–D. Stedocys leopoldi, right tarsus. A, C. Retrolateral-apical view. B. Apical view. D. Retrolateral view. Scales: A–D 50 µm. Abbreviations: IC, inferior claw (character 11); Ony, onychium (character 10); PBc, prolateral bipectinated claw (character 12, state 1).

opennotspecifiedMay 2012View details →
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FIGURE 17. Chelicerae, posterior view. A. Periegops suteri. B. Drymusa capensis. C. Scytodes globula. D. Stedocys leopoldi. E. Loxosceles rufescens. F. Sicarius rupestris. D, F, mirrored. C–F in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)

FIGURE 17. Chelicerae, posterior view. A. Periegops suteri. B. Drymusa capensis. C. Scytodes globula. D. Stedocys leopoldi. E. Loxosceles rufescens. F. Sicarius rupestris. D, F, mirrored. C–F. Inset showing deep incision between cheliceral lamina and paturon (character 27, state 1). Scales: A–B, F 500 µm, C–E 200 µm.

opennotspecifiedMay 2012View details →
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FIGURE 2. Female tarsus I. A. Periegops suteri, right tarsus. B. Drymusa capensis, left. C. Scytodes globula, left. D. Stedocys leopoldi, right. E. Loxosceles rufescens, left. F in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)

FIGURE 2. Female tarsus I. A. Periegops suteri, right tarsus. B. Drymusa capensis, left. C. Scytodes globula, left. D. Stedocys leopoldi, right. E. Loxosceles rufescens, left. F. Sicarius rupestris, left. (B–D, images mirrored). Scales: A, C, E 200 µm, B, D, F 500 µm.

opennotspecifiedMay 2012View details →
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FIGURE 1. Periegops suteri, preserved specimens. A–C. Female. D–F. Male. A, D. Dorsal view. B, E. Lateral. C, F in The placement of the spider genus Periegops and the phylogeny of Scytodoidea (Araneae: Araneomorphae)

FIGURE 1. Periegops suteri, preserved specimens. A–C. Female. D–F. Male. A, D. Dorsal view. B, E. Lateral. C, F. Ventral. (B, image mirrored). Scales: A–F 2 cm.

opennotspecifiedMay 2012View details →
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FIGURE 3. A in Molecular phylogeny of pimoid spiders and the limits of Linyphiidae, with a reassessment of male palpal homologies (Araneae, Pimoidae)

FIGURE 3. A maximum likelihood phylogeny of Pimoidae using five molecular markers (matrix M2). Support metrics at nodes indicate Shimodaira-Hasegawa-like approximate likelihood ratio test (SH-aLRT)/ultrafast bootstrap (UFBoot).

opennotspecifiedAug 2021View details →
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Figure 6 in Phylogeny and taxonomy of European funnel-web spiders of the Tegenaria-Malthonica complex (Araneae: Agelenidae) based upon morphological and molecular data

Figure 6. Bayesian tree of single analysis of 28S. Posterior probabilities of clades are expressed in percentages and given above branches. Clade support (> 50) from the resampling method (jack-knife, 1000 replications) based on parsimony analysis with implied weighting (K = 6) is given below the branches. Abbreviations: GR, Greece; IT, Italy.

opennotspecifiedJul 2013View details →
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FIGURE 4 in Identification and molecular phylogeny of agriculturally important spider mites (Acari: Tetranychidae) based on mitochondrial and nuclear ribosomal DNA sequences, with an emphasis on Tetranychus

FIGURE 4. ML tree based on ITS1 sequences. Sequence data for the ITS1 was aligned from a total of 23 individuals from nine species. The outgroups Neoseiulus swirskii and Typhlodromus pyri (GenBank nos. EU310505 and FM179376, respectively) were used to root the ITS1 tree. Numbers on the branches indicate the percentage bootstrap values (>50) based on NJ bootstrapping with ML settings (1,000 replicates).

opennotspecifiedOct 2010View details →
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FIGURE 3 in Identification and molecular phylogeny of agriculturally important spider mites (Acari: Tetranychidae) based on mitochondrial and nuclear ribosomal DNA sequences, with an emphasis on Tetranychus

FIGURE 3. Neighbor-joining (NJ) tree (a) and maximum likelihood (ML) tree (b) based on COI sequences. Twentythree of the COI sequences were obtained from the nine Chinese tetranychid species analyzed in this study. In addition, thirteen acarine COI sequences were obtained from the GenBank: the COI sequence (GenBank nos. DQ789590 and AY320029) from Brevipalpus obovatus and Cenopalpus pulcher were used as outgroups; the other COI sequences Tetranychus truncatus, T. turkestani, T. piercei, T. neocaledonicus, Panonychus citri, Pa. ulmi, Pa. mori, Amphitetranychus viennensis, A. quercivorus, Petrobia harti and P. tunisiae (GenBank nos. AB257317, AJ316604, AB257314, X80859, AB041252, AB041253, AB041256, X99875, X99873, EU487121 and EU487119 respectively) from GenBank also included into our phylogenetic analysis. Numbers adjacent to branches show the bootstrap values (> 50%) of 1000 replicates.

opennotspecifiedOct 2010View details →
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Figure 109 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)

Figure 109. Cepheia longiseta (Synaphridae), paralectotypes, legs: A, B, female left legs; C–E, male right legs. A, leg II, metatarsus–tarsus junction, dorsal view; B, leg I, tarsal organ, lateral view; C, leg I, tibia–patella, dorsal view; D, metatarsus III, dorsal view; E, leg I, claws.

opennotspecifiedFeb 2015View details →
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Figure 108 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)

Figure 108. Cepheia longiseta (Synaphridae), paralectotypes, prosoma: A–E, female; F–H, male. A, dorsal view; B, ventral view; C, mouthparts and palp, lateral view; D, same, lateral–ventral view; E, same, ventral–frontal view; F, detail of maxilla and labium; G, prosoma, lateral view; H, same, detail of mouthparts.

opennotspecifiedFeb 2015View details →
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Figure 155. D in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)

Figure 155. D, strict consensus of the three MPTs that resulted from the analysis of the morphological data set. Continuous character optimization. Character 3: femur–metatarsus relative size. Family codes used for unidentified species are as follows: MYSM, Mysmenidae; SYMP, Symphytognathidae; TSMD, Theridiosomatidae.

opennotspecifiedFeb 2015View details →
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Figure 59 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)

Figure 59. Mysmenopsis palpalis (Mysmenidae): A–G, male; H–I, female. B, D, F, left legs, prolateral view. A, prosoma, lateral view; B, tibial and metatarsal clasping spines, leg I; C, ocular area, frontal view; D, tarsus I; E, mouthparts, detail from figure G, ventral view; F, femur IV, detail of stridulatory area; G, prosoma, ventral view; H, epigynum, ventral view; I, spinning field and posterior respiratory spiracle, posterior view.

opennotspecifiedFeb 2015View details →
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Figure 46. MYSM-019 in Out of the twilight zone: phylogeny and evolutionary morphology of the orb-weaving spider family Mysmenidae, with a focus on spinneret spigot morphology in symphytognathoids (Araneae, Araneoidea)

Figure 46. MYSM-019-MAD (Mysmeninae, Mysmenidae) from Toliara, Madagascar. A, C, D, F, G, female; B, E, male. A, prosoma, ventral view; B, same, frontal view; C, labrum, lateral view; D, ocular area, frontal view; E, same, lateral view; F, cheliceral bases, frontal view; G, right leg I, tarsal organ and tarsus–metatarsus junction.

opennotspecifiedFeb 2015View details →
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Figure 38–40 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)

Figure 38–40. Soesiladeepakius uncinatus sp. nov. 38, left male palp, bulb, ventral view. 39, retrolateral view. 40, left male palp, retrolateral view.

opennotspecifiedMay 2012View details →
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Figure 10–15 in DNA sequences corroborate Soesiladeepakius as a non-salticoid genus of jumping spiders: placement with lapsiines, phylogeny, and description of six new species (Araneae, Salticidae)

Figure 10–15. Soesiladeepakius lyra sp. nov. 10, left male palp, ventral view. 11, retrolateral view. 12, bulb, clarified, ventral view. 13, prolateral view. 14, female epigyne, ventral view. 15, dorsal view, clarified. ma?, putative median apophysis.

opennotspecifiedMay 2012View details →
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Figure 17 in The lace web spiders (Araneae, Phyxelididae) of Madagascar: phylogeny, biogeography and taxonomy

Figure 17. Left male palpus of Manampoka atsimo, holotype from Manangotry, CASENT9031164, tibia and tarsus. A, prolateral. B, ventral. C, retrolateral. Illustrations by GM.

opennotspecifiedMar 2012View details →
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Figure 8 in The lace web spiders (Araneae, Phyxelididae) of Madagascar: phylogeny, biogeography and taxonomy

Figure 8. Habitus of Manampoka atsimo, holotype male and paratype females, Andohahela, CASENT9031164. A–E, female. F, G, male. A, C, dorsal. B, ventral. D, face, anterior. E–G, lateral.

opennotspecifiedMar 2012View details →

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