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Figure 4 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)

Figure 4. Character state evolution within the Menoponidae (clades 'A' and 'B'). Characters which change unambiguously are shown mapped onto the strict consensus tree. Unique changes = Z. For character state descriptions, see Appendix 2.

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Figure 2 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)

Figure 2. Strict consensus of six equally parsimonious trees recovered from a cladistic analysis using 10 000 random addition replicates. (Length = 650 steps, CI = 0.326, RI = 0.585, HI = 0.683.) Jackknife (33% deletion, bold type) and bootstrap values (> 50%, regular type), each based on 1000 replicates, are shown above the nodes, with Bremer support values (decay indices) shown below. Louse families and major clades within the Menoponidae are indicated.

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Figure 1 in A morphological phylogeny for four families of amblyceran lice (Phthiraptera: Amblycera: Menoponidae, Boopiidae, Laemobothriidae, Ricinidae)

Figure 1. Strict consensus of the 24 most-parsimonious trees recovered from a cladistic analysis (1000 random addition replicates) of a morphological data matrix by Clay (1970). (Length = 24 steps, CI = 0.833, RI = 0.833, HI = 0.167.) Data for an outgroup taxon Liposcelis bostrychophilus were added to the original matrix. Bootstrap support (> 50%, 100 replicates) for two main clades of lice ('A' and 'B') is shown. A representative host for each louse family is also indicated.

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Figure 17 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 17. Apomastus schlingeri sp. nov. HOLOTYPE (A–C) and female paratype (D). A, pedipalp, retrolateral aspect. B, leg I, retrolateral aspect. C, leg I, prolateral aspect. D, spermathecal receptula.

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Figure 15 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 15. Promyrmekiaphila gertschi from Ben Lomond, Santa Cruz County, California. A, pedipalp, retrolateral aspect. B, male leg I, retrolateral aspect. C, spermathecal receptula.

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Figure 14 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 14. Aptostichus sp. burrow from Riverside County, Winchester, California. A, burrow closed with arrow indicating its location. B, same burrow opened.

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Figure 13 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 13. Aptostichus atomarius from Los Angeles County, California, Chatsworth in CAS (A–D) and Aptostichus simus, male from Los Angeles County, California, Playa del Rey State Beach and female from the type locality San Diego County, Silverstrand State Beach (E–I). A, male leg I, retrolateral aspect. B, spermathecal receptula. C, cymbium and palpal bulb, retrolateral aspect. D, abdomen. E, male leg I, retrolateral aspect. F, male leg I, prolateral aspect. G, pedipalp, retrolateral aspect. H, spermathecal receptula. I, sternum and palpal endites.

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Figure 11 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 11. Neoapachella rothi sp. nov. male HOLOTYPE (A–C) female paratype (D). A, leg I, retrolateral aspect. B, leg I, prolateral aspect. C, pedipalp, retrolateral aspect. D, spermathecal receptula.

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Figure 9 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 9. Eucteniza rex burrow from Laredo, Texas excavated by W. Icenogle and bisected. A, lateral view with trapdoor open. B, top view with trapdoor closed.

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Figure 1 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 1. Cladograms redrawn from Raven (1985). A, phylogeny of the Mygalomorphae. B, (inset) phylogeny of the Cyrtaucheniidae.

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Figure 8 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 8. Eucteniza rex Chamberlin male holotype (A–D) and female paratypes (E). A, retrolateral aspect of leg I. B, prolateral aspect of leg I. C, retrolateral aspect of leg II. D, retrolateral aspect of pedipalp. E, spermathecal receptula.

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Figure 5 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 5. Tree topology based on the morphological character set with all characters receiving equal weights. Strict consensus of seven equally parsimonious trees: 281 steps, CI = 0.35, RI = 0.64, RC = 0.22. Fifty percent majority rule bootstrap consensus; bootstrap/decay values are given for those nodes with bootstrap values greater than 50%.

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Figure 3 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 3. Posterior lateral spinneret spigot types for select rastelloid taxa (scale bars = 0.1 mm). A, Kiama lachrymoides. B, Cyrtauchenius luridus Simon, 1881. C, Promyrmekiaphila gertschi. D, Acontius sp. E, Eucteniza rex. F, Neoapachella rothi. G, Rhytidicolus sp. H, Myrmekiaphila torreya. I, Ummidia sp.

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Figure 4 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 4. Silk spigots on apicalmost article of posterior lateral spinnerets for select euctenizine taxa (scale bars = 0.1 mm). A, Aptostichus hesperus. B, Neoapachella rothi. C, Entychides arizonica. D, Eucteniza rex.

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Figure 2 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 2. Reanalysis of Goloboff's (1993) data set of 71 morphological characters scored for 42 mygalomorph taxa using implied weights (k = 7; note that the topology is quite sensitive to concavity function constant). This is a strict consensus of 27 most parsimonious trees (236 steps, CI = 0.39, RI = 0.73). Filled circles indicate nodes that differ from Goloboff 's original analysis, cyrtaucheniid taxa are in grey shaded box. A summary and a brief explanation of the characters and their scorings are presented in Appendix 1.

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Figure 6 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 6. Preferred tree topology based on morphological character set using implied weighting with k = 4 (283 steps, CI = 0.35, RI = 0.63, RC = 0.22, G fit = 50.45). Bootstrap/decay values are given for nodes with bootstrap values greater than 50% and/or decay values greater than 3 above the branch, branch numbers are given below.

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Figure 7 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)

Figure 7. Colour photographs of live Euctenizinae species. A, Eucteniza rex from Laredo, Texas. B, Aptostichus atomarius from Riverside County, California. C, Promyrmekiaphila gertschi from San Mateo County, California.

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Figure 75 in Phylogeny and higher classification of suborder Psocomorpha (Insecta: Psocodea: 'Psocoptera')

Figure 75. Phylogenetic relationships among families of Psocomorpha. Monophyly of shaded bar is not supported.

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Figure 74 in Phylogeny and higher classification of suborder Psocomorpha (Insecta: Psocodea: 'Psocoptera')

Figure 74. Preferred cladogram of Psocomorpha and most parsimonious reconstruction of character states. Outgroups are omitted.

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Figures 69–73 in Phylogeny and higher classification of suborder Psocomorpha (Insecta: Psocodea: 'Psocoptera')

Figures 69–73. (69) generated from original data set, strict consensus of 1108 trees; (70–72) generated from new data set, strict consensus of (70) 72 trees of set 1 (71) 56 trees of set 2 (72) two trees generated using successive approximations and implied weights techniques; family names are abbreviated to first three letters. (73) 14 trees generated from original data set using successive approximations and implied weights techniques (part).

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