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492 results for “trapdoor spider”
Figure 4 from: Liu H, Xu X, Zhang Z, Liu F, Li D (2019) Four new species of the trapdoor spider genus Conothele Thorell, 1878 (Araneae, Halonoproctidae) from China. ZooKeys 833: 133-150. https://doi.org/10.3897/zookeys.833.32736
Figure 4 General somatic morphology and female genitalia of Conothelejinggangshan sp. n. (holotype, LH-2017-225) A dorsal view B ventral view C chelicerae, labium, coxae of palp and sternum, ventral view D spinnerets, ventral view E eyes, dorsal view F left leg III, prolateral view G female genitalia, dorsal view. Scale bars: 5 mm (A, B); 1 mm (D); 2 mm (C, F); 0.5 mm (E, G).
Figure 1 from: Liu H, Xu X, Zhang Z, Liu F, Li D (2019) Four new species of the trapdoor spider genus Conothele Thorell, 1878 (Araneae, Halonoproctidae) from China. ZooKeys 833: 133-150. https://doi.org/10.3897/zookeys.833.32736
Figure 1 Microhabitat, burrow with a trapdoor, and general somatic morphology of Conothelebaisha sp. n. A microhabitat B, C burrow exterior B the trapdoor with the door closed C the trapdoor with door open D female (LH-2017-089; Jishi Village, Changjiang County, Hainan Province, China).
Figure 3 from: Liu H, Xu X, Zhang Z, Liu F, Li D (2019) Four new species of the trapdoor spider genus Conothele Thorell, 1878 (Araneae, Halonoproctidae) from China. ZooKeys 833: 133-150. https://doi.org/10.3897/zookeys.833.32736
Figure 3 General somatic morphology and female genitalia of Conothelelinzhi sp. n. A–G holotype (LH-2017-051) A dorsal view B ventral view C chelicerae, labium, coxae of palp and sternum, ventral view D spinnerets, ventral view E eyes, dorsal view F left leg III, prolateral view G–J female genitalia, dorsal view H–J paratypes H (LH-2017-046) I (LH-2017-048) J (LH-2017-050). Scale bars: 5 mm (A–C); 1 mm (D, E); 2 mm (F); 0.5 mm (G–J).
Table 1 in Taxonomic revision of the New World members of the trapdoor spider genus Ummidia Thorell (Araneae, Mygalomorphae, Halonoproctidae)
<p><b>Table 1.</b> Summary of <i>Ummidia</i> New World diversity documenting locality and latitude/longitude for each type locality. * Locality data for the type specimen of <i>Ummidia audouini</i> is given only as "North America" so the latitude and longitude shown and displayed in Map 1 are from male exemplar specimen UMM194 from Ecru, Mississippi.</p><table><tbody><tr><th>Species</th><th>Locality</th><th>Latitude/Longitude</th></tr></tbody><tbody><tr><td><i>Ummidia audouini</i></td><td>North America</td><td>34.3403 -89.0141 *</td></tr><tr><td><i>Ummidia neilgaimani</i> sp. nov.</td><td>Charlotte County, Virginia</td><td>36.7698 -78.6356</td></tr><tr><td><i>Ummidia gingoteague</i> sp. nov.</td><td>Accomack County, Virginia</td><td>37.9083 -75.3568</td></tr><tr><td><i>Ummidia carabivora</i></td><td>Chapel Hill, North Carolina</td><td>35.9131 -79.0557</td></tr><tr><td><i>Ummidia rongodwini</i> sp. nov.</td><td>Calhoun County, Alabama</td><td>33.8795 -85.7889</td></tr><tr><td><i>Ummidia okefenokee</i> sp. nov.</td><td>Charlton County, Georgia</td><td>30.8056 -82.3371</td></tr><tr><td><i>Ummidia richmond</i> sp. nov.</td><td>Miami-Dade County, Florida</td><td>25.605 -80.3566</td></tr><tr><td><i>Ummidia macarthuri</i> sp. nov.</td><td>Washington County Arkansas</td><td>35.8167 -94.395</td></tr><tr><td><i>Ummidia beatula</i></td><td>Dallas County, Texas</td><td>32.6472 -96.7913</td></tr><tr><td><i>Ummidia colemanae</i> sp. nov.</td><td>San Patricio County, Texas</td><td>28.0852 -97.2647</td></tr><tr><td><i>Ummidia funerea</i></td><td>Edinburg, Texas</td><td>26.3005 -98.1623</td></tr><tr><td><i>Ummidia rosillos</i> sp. nov.</td><td>Brewster County, Texas</td><td>29.5385 -103.2323</td></tr><tr><td><i>Ummidia mercedesburnsae</i> sp. nov.</td><td>Culberson County, Texas</td><td>31.8945 -104.6331</td></tr><tr><td><i>Ummidia paulacushingae</i> sp. nov.</td><td>Mesa County, Colorado</td><td>39.0636 -108.5518</td></tr><tr><td><i>Ummidia modesta</i></td><td>Dona Ana County, New Mexico</td><td>32.338 -106.7661</td></tr><tr><td><i>Ummidia waunekaae</i> sp. nov.</td><td>Bernalillo County, New Mexico</td><td>35.1303 -106.5521</td></tr><tr><td><i>Ummidia gertschi</i> sp. nov.</td><td>Cochise County, Arizona</td><td>31.8842 -109.206</td></tr><tr><td><i>Ummidia timcotai</i> sp. nov.</td><td>Globe, Gila County, Arizona</td><td>33.3940 -110.7864</td></tr><tr><td><i>Ummidia gabrieli</i> sp. nov.</td><td>La Paz, Baja California Sur, Mexico</td><td>24.0345 -110.227</td></tr><tr><td><i>Ummidia pesiou</i> sp. nov.</td><td>Sonora, Mexico</td><td>29.0894 -110.6947</td></tr><tr><td><i>Ummidia rodeo</i> sp. nov.</td><td>Durango, Mexico</td><td>25.1081 -104.5556</td></tr><tr><td><i>Ummidia pustulosa</i></td><td>Amula (now Jalisco), Mexico</td><td>20.6934 -103.356</td></tr><tr><td><i>Ummidia huascazaloya</i> sp. nov.</td><td>Hidalgo, Mexico</td><td>20.2762 -98.5169</td></tr><tr><td><i>Ummidia anaya</i> sp. nov.</td><td>Hidalgo, Mexico</td><td>20.3884 -99.0275</td></tr><tr><td><i>Ummidia cuicatec</i> sp. nov.</td><td>Oaxaca, Mexico</td><td>17.7984 -96.9519</td></tr><tr><td><i>Ummidia brandicarlileae</i> sp. nov.</td><td>Yucatan, Mexico</td><td>20.0603 -88.2654</td></tr><tr><td><i>Ummidia zebrina</i></td><td>Guatemala</td><td>15.2812 -90.3420</td></tr><tr><td><i>Ummidia riverai</i> sp. nov.</td><td>Baja Verapaz, Guatemala</td><td>15.1631 -90.2316</td></tr><tr><td><i>Ummidia frankellerae</i> sp. nov.</td><td>Cayo, Belize</td><td>16.733 -88.986</td></tr><tr><td><i>Ummidia zilchi</i></td><td>San Salvador, El Salvador</td><td>13.6921 -89.219</td></tr><tr><td><i>Ummidia hondurena</i> sp. nov.</td><td>Honduras</td><td>14.5036 -86.3206</td></tr><tr><td><i>Ummidia yojoa</i> sp. nov.</td><td>Dept. of Cortes, Honduras</td><td>14.8715 -87.9821</td></tr><tr><td><i>Ummidia matagalpa</i> sp. nov.</td><td>Matagalpa, Nicaragua</td><td>12.9207 -85.9172</td></tr><tr><td><i>Ummidia rugosa</i></td><td>Costa Rica</td><td>9.7703 -83.7751</td></tr><tr><td><i>Ummidia carlosviquezi</i> sp. nov.</td><td>Puntarenas, Costa Rica</td><td>8.7125 -83.0051</td></tr><tr><td><i>Ummidia varablanca</i> sp. nov.</td><td>Heredia, Costa Rica</td><td>10.0024 -84.1216</td></tr><tr><td><i>Ummidia quepoa</i> sp. nov.</td><td>Puntarenas, Costa Rica</td><td>9.4828 -84.0948</td></tr><tr><td><i>Ummidia cerrohoya</i> sp. nov.</td><td>Los Santos, Panama</td><td>7.2986 -80.0014</td></tr><tr><td><i>Ummidia erema</i></td><td>Panama Canal Zone, Panama</td><td>9.1520 -79.8467</td></tr><tr><td><i>Ummidia quijichacaca</i> sp. nov.</td><td>Cundinamarca, Colombia</td><td>4.6049 -74.0565</td></tr><tr><td><i>Ummidia tibacuy</i> sp. nov.</td><td>Cundinamarca, Colombia</td><td>4.3283 -74.5081</td></tr><tr><td><i>Ummidia asperula</i></td><td>Maiquetia, Venezuela</td><td>10.5778 -66.9973</td></tr><tr><td><i>Ummidia neblina</i> sp. nov.</td><td>Amazonas, Venezuela</td><td>1.2395 -65.6675</td></tr><tr><td><i>Ummidia tunapuna</i> sp. nov.</td><td>St. George, Trinidad and Tobago</td><td>10.6638 -61.3950</td></tr><tr><td><i>Ummidia salebrosa</i></td><td>St Vincent</td><td>13.2536 -61.187</td></tr><tr><td><i>Ummidia nidulans</i></td><td>St. Elizabeth, Jamaica</td><td>17.9244 -77.6869</td></tr><tr><td><i>Ummidia glabra</i></td><td>Brazil</td><td>-14.1241 -51.9029</td></tr></tbody></table>
Fig. 18. Misgolas baehrae n in Trapdoor Spiders of the Genus Misgolas (Mygalomorphae: Idiopidae) from Eastern New South Wales, With Notes on Genetic Variation
Fig. 18. Misgolas baehrae n.sp. A–I?, holotype AM KS48642; J?, paratype AM KS86224: (A), right palp retrolateral. (B,C), right bulb: B, dorsal; C, prolateral. (D), right cymbium dorsal. (E,F), right tarsus/metatarsus joint I: E, prolateral; F, retrolateral. (G,H), right tarsus/ metatarsus joint II: G, prolateral; H, retrolateral. (I), right tarsus and metatarsus IV retrolateral. (J), venter.
Fig. 8. Misgolas helensmithae n in Trapdoor Spiders of the Genus Misgolas (Mygalomorphae: Idiopidae) from Eastern New South Wales, With Notes on Genetic Variation
Fig. 8. Misgolas helensmithae n.sp. A–H,J?, holotype AM KS48654: (A), right palp retrolateral. (B,C), right bulb: B, dorsal; C, prolateral. (D), right cymbium dorsal. (E,F), right tarsus/metatarsus I: E, prolateral; F, retrolateral. (G,H), right tarsus/metatarsus II: G, prolateral; H, retrolateral. (J), venter. (I)?, paratype AM KS38642: right tarsus/metatarsus IV retrolateral.
FIGURE 20. Stasimopus griswoldi, n in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 20. Stasimopus griswoldi, n. sp., ♂ (TMSA 24000). A–C. Leg III metatarsus, tarsus. D–F. Leg IV metatarsus, tarsus. A, D. Prolateral aspect. B, E. Ventral aspect. C, F. Retrolateral aspect. Scale: 1 mm.
FIGURE 13. Stasimopus hewitti, n in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 13. Stasimopus hewitti, n. sp., paratype ♂ (TMSA 23989). A–C. Leg III metatarsus, tarsus. D–F. Leg IV metatarsus, tarsus. A, D. Prolateral aspect. B, E. Ventral aspect. C, F. Retrolateral aspect. Scale: 1 mm.
FIGURE 10. Stasimopus hewitti, n in Cryptic diversity of South African trapdoor spiders: Three new species of Stasimopus Simon, 1892 (Mygalomorphae, Ctenizidae), and redescription of Stasimopus robertsi Hewitt, 1910
FIGURE 10. Stasimopus hewitti, n. sp., paratype ♂ (TMSA 23989). A. Prosoma, dorsal aspect. B. Prosoma, ventral aspect. C. Carapace, lateral aspect. Scale: 2 mm.
Figure 12 in Phylogeny and taxonomy of the genera of south-western North American Euctenizinae trapdoor spiders and their relatives (Araneae: Mygalomorphae, Cyrtaucheniidae)
Figure 12. Entychides arizonica from Cochise County, Arizona, 5 miles south-west of Portal (SWRS) in AMNH. A, male leg I, retrolateral aspect. B, spermathecal receptula.
Figures 10- 11 from: Bond J, Hamilton C, Garrison N, Ray C (2012) Phylogenetic reconsideration of Myrmekiaphila systematics with a description of the new trapdoor spider species Myrmekiaphila tigris (Araneae, Mygalomorphae, Cyrtaucheniidae, Euctenizinae) from Auburn, Alabama. ZooKeys 190: 95-109. https://doi.org/10.3897/zookeys.190.3011
Figures 10- 11 - Myrmekiaphila tigris sp. n. female paratype specimen in life. 10 oblique view 11 dorsal view. Scale bar = 5mm.
Map 1 from: Bond J, Hamilton C, Garrison N, Ray C (2012) Phylogenetic reconsideration of Myrmekiaphila systematics with a description of the new trapdoor spider species Myrmekiaphila tigris (Araneae, Mygalomorphae, Cyrtaucheniidae, Euctenizinae) from Auburn, Alabama. ZooKeys 190: 95-109. https://doi.org/10.3897/zookeys.190.3011
Map 1 - Geographic distribution of Myrmekiaphila tigris. County outlines for Alabama and Georgia are shown. Lower color inset, dotted line, shows extent of distribution map.
Figures 5-9 from: Bond J, Hamilton C, Garrison N, Ray C (2012) Phylogenetic reconsideration of Myrmekiaphila systematics with a description of the new trapdoor spider species Myrmekiaphila tigris (Araneae, Mygalomorphae, Cyrtaucheniidae, Euctenizinae) from Auburn, Alabama. ZooKeys 190: 95-109. https://doi.org/10.3897/zookeys.190.3011
Figures 5-9 - Myrmekiaphila tigris sp. n. male holotype and female paratype. 5, 6 1st walking leg of male, left side retrolateral and prolateral view 7 pedipalp, retrolateral view 8 palpal bulb 9 cleared spermathecae. Scale bars = 1mm.
Figures 3- 4 from: Bond J, Hamilton C, Garrison N, Ray C (2012) Phylogenetic reconsideration of Myrmekiaphila systematics with a description of the new trapdoor spider species Myrmekiaphila tigris (Araneae, Mygalomorphae, Cyrtaucheniidae, Euctenizinae) from Auburn, Alabama. ZooKeys 190: 95-109. https://doi.org/10.3897/zookeys.190.3011
Figures 3- 4 - Myrmekiaphila tigris sp. n. male holotype specimen in life. 3 oblique view 4 dorsal view. Scale bar = 5mm.
Figure 2 from: Bond J, Hamilton C, Garrison N, Ray C (2012) Phylogenetic reconsideration of Myrmekiaphila systematics with a description of the new trapdoor spider species Myrmekiaphila tigris (Araneae, Mygalomorphae, Cyrtaucheniidae, Euctenizinae) from Auburn, Alabama. ZooKeys 190: 95-109. https://doi.org/10.3897/zookeys.190.3011
Figure 2 - Preferred tree topology based on Bayesian analysis of the 12S/16S mitochondrial DNA data set. Color key and three-letter identifiers (inset) refer to species defined by Bond and Platnick 2007 along with the new species, Myrmekiaphila tigris, described in this study and palpal bulb condition (one-pronged vs. two-pronged). Thickened black branches indicated posterior probabilities > 0.95; gray branches denote values of 0.90–0.95. Numbers at nodes are bootstrap percentages from the maximum likelihood analysis conducted in RAxML.
Figure 1 from: Bond J, Hamilton C, Garrison N, Ray C (2012) Phylogenetic reconsideration of Myrmekiaphila systematics with a description of the new trapdoor spider species Myrmekiaphila tigris (Araneae, Mygalomorphae, Cyrtaucheniidae, Euctenizinae) from Auburn, Alabama. ZooKeys 190: 95-109. https://doi.org/10.3897/zookeys.190.3011
Figure 1 - Line drawing of Myrmekiaphila tigris male pedipalp; distal aspect of palpal bulb shown for Myrmekiaphila foliata, Myrmekiaphila tigris, and Myrmekiaphila torreya for comparative purposes.
Figure 30 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figure 30 - Optimization of habitat type on preferred tree topology (morphology, implied weighting, k=7).
Map 34- 35 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Map 34- 35 - Distribution of Sierra group species. 34 known distribution of Aptostichus dorothealangeae, Aptostichus chavezi, Aptostichus huntington, and Aptostichus sierra 35 predicted distribution of Aptostichus chavezi; cooler colors–blue shades–represent areas of high probability of occurrence, warmer colors–yellow and orange shades–represent areas of low probability of occurrence.
Figures 262-265 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 262-265 - Aptostichus anzaborrego sp. n., male holotype from San Diego County (AP1199); scale bars = 1.0mm. 262 habitus [806106] 263 retrolateral aspect, leg I [806102] 264 prolateral aspect, leg I [806098] 265 retrolateral aspect, pedipalp [806104].
Figures 332-336 from: Bond J (2012) Phylogenetic treatment and taxonomic revision of the trapdoor spider genus Aptostichus Simon (Araneae, Mygalomorphae, Euctenizidae). ZooKeys 252: 1-209. https://doi.org/10.3897/zookeys.252.3588
Figures 332-336 - Aptostichus sierra sp. n. male holotype (AP400) from Fresno County; scale bars = 1.0mm. 332 habitus [806511] 333 retrolateral aspect, leg I [806515] 334 prolateral aspect, leg I [806517] 335 retrolateral aspect, pedipalp [806519] 336 line drawings of leg I tibia and patella spination patterns; retrolateral aspect; prolateral aspect.
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