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Figure 36 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 36. Monthly comparison of the percentage of days the canyon wren (Catherpes mexicanus Swainson, 1829) was present on Arkenstone Cave hill with the averaged monthly female population of Ageniella evansi Townes, 1957 for the period of 1994 through 2020. The wasp population trend is a cubic polynomial curve; R2 =.70.
Figure 34. A in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 34. A, Female Ageniella evansi Townes, 1957 with a Selenops sp. Latreille, 1819 spider trying to squeeze through a tight constriction among the rock rubble in the habitat box. B, having failed to negotiate the constriction while carrying her spider, the female went through, turned around, reached back and grabbed the spider by one of its chelicerae and pulled it through the constriction. View is through the plexiglass wall of the observation and habitat box, which forms the near side of the constriction.
Figure 35 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 35. Larva of Ageniella evansi Townes, 1957, 14 days old, removed from a nest cell in the habitat box (trial HB2). The larva is just finishing feeding on its host. The dark mass around which the larva is curled is the undigestible portions of the cephalothorax, including the eyes and chelicerae, of the provisioned lycosid spider. Scale bar: 5 mm.
Figure 32. Female Ageniella evansi Townes, 1957 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 32. Female Ageniella evansi Townes, 1957 just outside the cave entrance showing the tattered wingtips of an apparently senescent, but still viable, hunting individual.
Figure 31. Average annual percent hunting success for female Ageniella evansi Townes, 1957 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 31. Average annual percent hunting success for female Ageniella evansi Townes, 1957 at Arkenstone Cave based on daily data sets (N = 66). No full daily data sets exist for the years 2006– 2009, 2012 and 2015. *No spider returns were observed for full daily data sets in 2000 or 2005 due to the small female wasp population and reduced observation efforts.
Figure 29 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 29. The deeply dissected terrain in the Park that resulted from millions of years of geologic processes provides many small-scale ecotopes that support an enhanced plant species richness. This is typical wasp foraging habitat in the Park. Dominant plant species visible in the image include yellow paloverde (Parkinsonia microphylla Torr.), saguaro (Carnegiea gigantea Engelm.), and ocotillo (Fouquieria splendens Engelm.).
Figure 28. Female Ageniella evansi Townes, 1957 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 28. Female Ageniella evansi Townes, 1957 transporting Selenops sp. Latreille, 1819 spider within Arkenstone Cave. The light mark on this wasp's thorax is how the wasps were marked for identification.
Figure 30. A in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 30. A sequence of photographs (A–E) showing the route taken by Ageniella evansi Townes, 1957 from near the cave entrance to the primary nesting site access (also see Figure 6). The yellow arrows show the direction of travel into the cave taken by the wasps. A, looking north-west, back up the Hall of Crickets towards the cave entrance from the Register Room; B, looking south-east at the entrance of the Hideous Crawl; C, looking south-east into the Hideous Crawl; D, looking east from the First Antechamber into the Second Antechamber (beyond the scale); E, the access to the primary nesting area. The total distance from the cave entrance to this point is 44 m (Figure 6). Scale in photos is 15 cm.
Figure 27 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 27. Compilation of photos from trials of female Ageniella evansi Townes, 1957 with Selenops sp. Latreille, 1819 spiders in the photo chamber in the Register Room of Arkenstone Cave in March of 1993. A, wasp and spider before contact; B, wasp has envenomated the spider and is removing its legs by grasping each femur near the femur-trochanter junction; C, wasp partaking of haemolymph at coxal stub after removal of a leg; D, female grasping a palp, which was not removed; E, wasp using her mandibles to 'bulldoze' removed legs out of the way; F, wasp turns the spider on its side and removes a leg by pulling parallel to the axis of the leg in an avulsive process while holding and pushing against the spider with her middle and front legs, respectively. Leg separates at the coxa-trochanter locus. Scale bars: 10 mm.
Figure 25 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 25. Percent of observed host type by year taken by the Arkenstone Cave population of Ageniella evansi Townes, 1957 between 1993 and 2020.
Figure 5 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 5. The known distribution of Ageniella evansi Townes, 1957. Note the apparent disjunct records in south central Mexico. Scale bar: 500 km.
Figure 6 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 6. Plan view map of Arkenstone Cave showing details mentioned in the text. Letters A–E indicate locations of photographs referenced in Figure 30.
Figure 7 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 7. Annual observed maximum number of female Ageniella evansi Townes, 1957 documented at Arkenstone Cave from 1992 to 2024. The trend line is a cubic polynomial; R2 =.70.
Figure 19 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 19. Typical fractured limestone bedrock habitat where females of Ageniella evansi Townes, 1957 hunt for Selenops sp. Latreille, 1819 spiders. The image shows the location where a marked female (Figure 14) began her daily hunt on 10 March 1993. The numbered yellow arrows show the systematic progression of the wasp's hunting behaviour as she searched within each parallel fracture. This rock outcrop has a southern exposure. The scale in the centre of the photograph is 10 cm in length.
Figure 26 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 26. Total annual host utilisation, percent by type, relative to maximum annual female population of Ageniella evansi Townes, 1957 at Arkenstone Cave (composite data from 1993–2020).
Figure 11. Male Ageniella evansi Townes, 1957 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 11. Male Ageniella evansi Townes, 1957 on the wall of the sinkhole at the entrance to Arkenstone Cave on 30 January 2023. The presence of fine sculpturing on the head and pronotum, minimal metallic reflex of the body and partially transparent wings, visible in this image, allows for easy discrimination from the female, which has an overall metallic bluish colouring and more densely pigmented wings (Figures 12–32).
Figure 4 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 4. The author in the Register Room of Arkenstone Cave in March of 1993. This is the location where in-cave spider processing and nesting experiments were conducted. The habitat box is to the right, with its lid lying on the cave floor beyond the habitat box housing. The photographic observation chamber with camera and flash in place sit atop the habitat box housing. Photo by Anita Mastrilli.
Figure 1 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 1. Arkenstone Cave is located in Colossal Cave Mountain Park approximately 37 km south-east of Tucson, near Vail, Arizona, USA.
Figure 20 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 20. The four families of spider hosts taken by Ageniella evansi Townes, 1957 in Colossal Cave Mountain Park, Arizona. A, Selenopidae Selenops sp. Latreille, 1819. B, Gnaphosidae (Herpyllus schwarzi Banks, 1901). C, Lycosidae. D, Agelenidae (Melpomene sp. O. Pickard-Cambridge, 1898).
Figure 15 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona
Figure 15. Average time of consecutive sunning events for female Ageniella evansi Townes, 1957 at the entrance to Arkenstone Cave (N = 747). The thin (red) line shows an exponential trend; R2 =.78.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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