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44 results for “Ageniella”

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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).

opennotspecifiedAug 2024View details →
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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.

opennotspecifiedAug 2024View details →
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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.

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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).

opennotspecifiedAug 2024View details →
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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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Figure 3 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 3. The observation and habitat box in the Register Room (Figures 4 and 6) where in-cave studies were performed. The habitat box sits atop its inverted storage housing, is being readied for

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Figure 24 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 24. Percent host type by month taken by the Arkenstone Cave population of Ageniella evansi Townes, 1957 between 1992 and 2020.

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Figure 23 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 23. Monthly total observed spider hosts (N = 404) taken by the Arkenstone Cave population of Ageniella evansi Townes, 1957 between 1992 and 2020. The total includes all identified and 18 unidentified spiders. The average peak of the wasp hunting season over 32 years (1993 to 2024) is 5 March.

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Figure 2 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 2. Photographic observation chamber used to document spider capture and processing by Ageniella evansi Townes, 1957 in Arkenstone Cave.

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Figure 22 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 22. Single observed Cesonia sp. Simon, 1893 gnaphosid host taken by Ageniella evansi Townes, 1957 on 20 March 1994. Scale bar: 5 mm.

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Figure 21 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 21. Adult female Selenops sp. Latreille, 1819 in one of the small caves in the Park that is not used as a nesting site by Ageniella evansi Townes, 1957.

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Figure 17 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 17. Hunting activity in female Ageniella evansi Townes, 1957 at Arkenstone Cave. A, Hunt initiation exit azimuth, B, Female with host return to cave azimuth. The scale in each figure is the number of events: A (N = 1,140) and B (N = 353). Pearson correlation = 0.90; R2 =.87 (exit data); R2 =.81 (return data).

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Figure 9 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 9. Annual precipitation at Colossal Cave Mountain Park for the period of 1979–2023. Average is 38.4 cm; standard deviation is 11.6. The thin (red) line is a quartic polynomial.

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Figure 18 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 18. Exit hunt azimuth of female Ageniella evansi Townes, 1957 leaving Arkenstone Cave by walking. The scale is the number of events (N = 62).

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Figure 16 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 16. Average distance in centimetres from the sun-shade interface of consecutive sunning events for female Ageniella evansi Townes, 1957 at the entrance to Arkenstone Cave (N = 389). The thin (red) line shows an exponential trend; R2 =.89.

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Figure 13. A in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 13. A, Female Ageniella evansi Townes, 1957 feeding at an extrafloral nectary on a young cladode of Engelmann pricklypear (Opuntia engelmannii Salm-Dyck ex Engelm.) at the entrance to Arkenstone Cave on 27 April 1996. Yellow arrows indicate location of the nectaries at the areoles. B, Female (left) at extrafloral nectary on flower bud of O. engelmannii, accompanied by male (right), on the same plant and date as image A.

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Figure 8 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 8. Monthly average total of Ageniella evansi Townes, 1957 hunting females at Arkenstone Cave (1992–2020 and 1997–2020). Trend lines are cubic polynomials.

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Figure 14. Female Ageniella evansi Townes, 1957 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 14. Female Ageniella evansi Townes, 1957 interacting with leaves on Lycium berlandieri Dunal at the top of Arkenstone Cave hill on 10 March 1993. The yellow dot on the dorsum of the wasp's thorax is the colour-coding method used for tracking individuals.

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Figure 12 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 12. Coupled pair of Ageniella evansi Townes, 1957, female (left) and male (right), in the sinkhole at the entrance to Arkenstone Cave on 27 February 1993.

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Figure 10 in Biology and ecology of a deep cave nesting spider wasp, Ageniella evansi Townes, (Hymenoptera: Pompilidae), in Arizona

Figure 10. Percentage of male Ageniella evansi Townes, 1957 by month (1992–2020). The annual average percentage of males in the population is 20%. The observed mating range is bracketed by long, parallel vertical lines. The average peak of the hunting season (5 March) is shown as a short vertical line. The thin line is a quartic polynomial trend; R2 =.93.

opennotspecifiedAug 2024View details →

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