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20 results for “Xylocopa appendiculata”
Fig. 4. Insects visiting Caesalpinia decapetala. A. Metasyrphus corollae. B. Xylocopa appendiculata circumvolans. C. Celastrina argiolus. D. Bombus ardens ardens. E. Megachile japonica. F in Pollination biology of Caesalpinia decapetala (Leguminosae) in Korea
Fig. 4. Insects visiting Caesalpinia decapetala. A. Metasyrphus corollae. B. Xylocopa appendiculata circumvolans. C. Celastrina argiolus. D. Bombus ardens ardens. E. Megachile japonica. F. Anastrangalia sequensi.
Figure 4 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 4. Distribution of mite body lengths in randomly selected populations. (A) mites from OKBH01-0423-001, (B) from OKBH01-0514-001, (C) from the iso-female line of OKB03- 1300-016, and (D) from the iso-female line of OKB03-1300-037. White columns indicate the mites had Sennertia alfkeni morphology and black indicate they had S. japonica morphology.
Figure 1 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 1. Schematic diagrams of a Sennertia mite for measurements. (A) body, (B) claw. We measured distance between arrow heads.
Figure 3 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 3. Pretarsi on the first legs of a Sennertia alfkeni type mite (A) and of a S. japonica-type mite (B). There is a large projection directly under the claw indicated by arrow in the S. alfkeni mite, while there is no such structure in the S. japonica mite. The pictures were taken under a scanning electron microscope (KEYENCE, VE-8800, Japan).
Figure 9 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 9. Sennertia alfkeni, adult female: (A) Leg I and tarsus I; (B) Leg II and tarsus II; (C) Leg III and tarsus III; (D) Leg IV and tarsus IV.
Figure 12 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 12. The number of deutonymphs collected from wood particles swept out by tunnelling carpenter bees. Five host individuals were indicated with different legends (squares, circles, diamonds, triangles and cross). Mites were not collected from the particles by individuals indicated with the triangle and cross. Colour differences in the same legends (black and white) meant that the same individual tunnelled twice.
Figure 13 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 13. The life cycles of the mite Sennertia alfkeni (black bars) and the carpenter bee Xylocopa appendiculata circumvolans (white bars). E5egg; L5larva; P5pupa; PN5protonymph; DN5deutonymph; TN5tritonymph; A5adult.
Figure 2 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 2. Mite body length and claw size distribution in mites with Sennertia alfkeni morphology (white circles) and those with S. japonica morphology (black circles) collected from the carpenter bee OKBH01-0423-001.
Figure A1 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure A1 Global distribution of Xylocopa appendiculata based on specimens deposited in collections and confirmed records on iNaturalist, GBIF, and Discover Life.org (red circles).
Figure 3 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure 3 Some of the diagnostic features of Xylocopa appendiculata Smith: a lateral habitus showing coloration of pubescence on mesosoma and metasoma (the yellow coloration may not be as fluorescent in field specimens and is mostly due to reflections from the imaging system) b face showing integument sculpturing of clypeus and paraocular area c coloration of pubescence around occipital area (arrow) d pygidial plate (pp) and coloration of pubescence close to it (arrows) e shape of mesoscutellum from lateral view f Shape of metasomal tergum 1 (T1) from antero-lateral view and the presence of a foveate, hollowed like depression (arrow) g dentation of mandibles (arrow showing the two teeth on mandible).
Figure A3 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure A3 Summer Precipitation Patterns in the USA: Average summer precipitation (June, July and August) was calculated using PRISM climate data with the Spatial Analytic Framework for Advanced Risk Information Systems (SAFARIS 2019). Areas with ≥ 300 mm of precipitation between June and August (blue) based on average data from 2000 to 2019.
Figure 1 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure 1 Suitable U.S. areas for Xylocopa appendiculata establishment based on plant hardiness zones – This map shows suitable areas for X. appendiculata establishment based on its global distribution and the associated plant hardiness zones 5 to 10.
Figure 5 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 5. Sennertia alfkeni, larva: (A) dorsum; (B) venter.
Figure 11 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 11. Sennertia alfkeni, dorsum of adult male with BB setae.
Figure 7 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 7. Sennertia alfkeni, tritonymph: (A) dorsum; (B) venter.
Figure 8 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 8. Sennertia alfkeni, adult female with NB setae: (A) dorsum; (B) venter.
Figure 6 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 6. Sennertia alfkeni, protonymph: (A) dorsum; (B) venter.
Figure 10 in Polymorphism in the deutonymph and adult of Sennertia alfkeni (Acari: Chaetodactylidae) associated with the large carpenter bee, Xylocopa appendiculata circumvolans (Hymenoptera: Apidae)
Figure 10. Sennertia alfkeni, adult male with NB setae: (A) dorsum; (B) venter.
Figure 2 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure 2 Predicted climatic suitability for Xylocopa appendiculata in the United States.
Figure A2 from: Smith-Pardo AH, Fowler GA, Kumar S (2020) Status and potential distribution of the Asian carpenter bee, Xylocopa appendiculata Smith (Apidae, Xylocopini), in the United States. Journal of Hymenoptera Research 76: 99-111. https://doi.org/10.3897/jhr.76.49518
Figure A2 Climatic variables' response curves fitted by Maxent model for Xylocopa appendiculata.
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