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42 results for “Hoplitis”
FIGURE 15–21. 15 in Palaearctic Hoplitis bees of the subgenus Platosmia (Megachilidae, Osmiini): biology, taxonomy and key to species
FIGURE 15–21. 15: Hoplitis africana, sterna 5–6 of male. 16: Hoplitis maghrebensis, sterna 5–6 of male. 17: Hoplitis lucidula, sterna 5–6 of male. 18: Hoplitis aristotelis, sterna 5–6 of male. 19: Hoplitis platalea, sterna 5–6 of male. 20: Hoplitis aristotelis, base of antenna of male. 21: Hoplitis platalea, base of antenna of male.
FIGURE 1–8. 1 in Palaearctic Hoplitis bees of the subgenus Platosmia (Megachilidae, Osmiini): biology, taxonomy and key to species
FIGURE 1–8. 1: Hoplitis arabiae, clypeus of female. 2: Hoplitis arabiae, terga 3–7 of male. 3: Hoplitis maghrebensis, clypeus of female. 4: Hoplitis inconspicua, clypeus of female. 5: Hoplitis lucidula, inner spur of hind leg of female. 5: Hoplitis recticauda, inner spur of hind leg of female. 7: Hoplitis aristotelis, inner spur of hind leg of female. 8: Hoplitis platalea, inner spur of hind leg of female.
FIGURE 9–14. 9 in Palaearctic Hoplitis bees of the subgenus Platosmia (Megachilidae, Osmiini): biology, taxonomy and key to species
FIGURE 9–14. 9: Hoplitis alchata, terga 3–7 of male. 10: Hoplitis recticauda, terga 3–7 of male. 11: Hoplitis maghrebensis, terga 3–7 of male. 12: Hoplitis africana, terga 4–7 of male. 13: Hoplitis maghrebensis, genitalia. 14: Hoplitis lucidula, genitalia.
Supplementary material 2 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Computed tomography (CT) movie of nest 2 of Hoplitisrobusta : Explanation note: Computed tomography (CT) movie of nest 2 of Hoplitisrobusta; note the vertical plug consisting of several successive layers of leaf pulp and the five brood cells in the horizontal part of the L-shaped cerambycid tunnel.
Supplementary material 1 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Computed tomography (CT) movie of nest 1 of Hoplitisrobusta : Explanation note: Computed tomography (CT) movie of nest 1 of Hoplitisrobusta; note the vertical nest plug consisting of several successive layers of leaf pulp and the six brood cells in the horizontal part of the L-shaped cerambycid tunnel.
Figures 15-19 from: Aubert M, Müller A, Praz C (2024) A new osmiine bee with a spectacular geographic disjunction: Hoplitis (Hoplitis) onosmaevae sp. nov. (Hymenoptera, Anthophila, Megachilidae). Alpine Entomology 8: 65-79. https://doi.org/10.3897/alpento.8.118039
Figures 15-19 Hoplitis onosmaevae sp. nov., foraging habitat and behaviour (France, Saint-Dalmas-le-Selvage, 23.6.2020). 15. Foraging habitat with patch of the host plant, Onosma tricerosperma subsp. fastigiata; 16. Male resting on stone between two patrolling flights, with unfolded proboscis; 17. Male resting on stone between two patrolling flights; 18. Female on a flower of Onosma tricerosperma subsp. fastigiata; 19. Female concentrating nectar with widely open mandibles.
Figures 10-14 from: Aubert M, Müller A, Praz C (2024) A new osmiine bee with a spectacular geographic disjunction: Hoplitis (Hoplitis) onosmaevae sp. nov. (Hymenoptera, Anthophila, Megachilidae). Alpine Entomology 8: 65-79. https://doi.org/10.3897/alpento.8.118039
Figures 10-14 Hoplitis onosmaevae sp. nov., male. 10. Left antenna, dorsal view; 11. Left antenna, front view; 12. Sterna 3–6 (the metasoma was slightly extended to expose S6); 13. Terga 5–7, dorsal view; 14. Membraneous appendage of sternum 6, lateral view.
Figure 1 from: Aubert M, Müller A, Praz C (2024) A new osmiine bee with a spectacular geographic disjunction: Hoplitis (Hoplitis) onosmaevae sp. nov. (Hymenoptera, Anthophila, Megachilidae). Alpine Entomology 8: 65-79. https://doi.org/10.3897/alpento.8.118039
Figure 1 Phylogenetic tree based on maximum likelihood analyses of sequence data of the mitochondrial gene COI and of the three nuclear genes conserved ATPase domain (CAD), elongation factor 1-alpha (EF) and long-wavelength rhodopsin (Opsin). Numbers above branches: statistical support based on 1000 bootstrap replicates (values below 50 are omitted) in the analysis with 4 partitions (by gene); number below branches: support in analysis with 7 partitions (by codon position; a hyphen under a node indicates that this node was not recovered in the analysis); the topology is from the analysis with 4 partitions.
Figures 20-25 from: Aubert M, Müller A, Praz C (2024) A new osmiine bee with a spectacular geographic disjunction: Hoplitis (Hoplitis) onosmaevae sp. nov. (Hymenoptera, Anthophila, Megachilidae). Alpine Entomology 8: 65-79. https://doi.org/10.3897/alpento.8.118039
Figures 20-25 Hoplitis onosmaevae sp. nov., nesting habitat and behaviour (France, Saint-Dalmas-le-Selvage, 23.6.2020, for photographs). 20. Female in buzzing position on a flower of Onosma tricerosperma subsp. fastigiata; 21. Female leaving a flower of Onosma tricerosperma subsp. fastigiata; 22. Nesting habitat with dead trunks of larch; 23. Nest entrance plugged with sand and pebbles; 24. Female near the nest entrance, which is visible at the bottom left; 25. Cross-section of nest (P = pollen provisions).
Figures 3-9 from: Aubert M, Müller A, Praz C (2024) A new osmiine bee with a spectacular geographic disjunction: Hoplitis (Hoplitis) onosmaevae sp. nov. (Hymenoptera, Anthophila, Megachilidae). Alpine Entomology 8: 65-79. https://doi.org/10.3897/alpento.8.118039
Figures 3-9 Hoplitis onosmaevae sp. nov., female (holotype). 3. Lateral view; 4. Head; 5. Clypeus and mandibles; 6. Metasoma, dorsal view; 7. Last sternum, ventral view; 8. Propodeum; 9. Inner spur of hind tibia, posterior view.
Supplementary material 1 from: Aubert M, Müller A, Praz C (2024) A new osmiine bee with a spectacular geographic disjunction: Hoplitis (Hoplitis) onosmaevae sp. nov. (Hymenoptera, Anthophila, Megachilidae). Alpine Entomology 8: 65-79. https://doi.org/10.3897/alpento.8.118039
Database for all specimens examined in this study
Figures 15–18 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 15–18 - Morphological differences in the female sex between Hoplitis mucida (left) and H. stecki (right) (see Table 2): 15–16 Vertex 17–18 Pilosity of tergal discs.
Figures 1–6 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 1–6 - Nests of Hoplitis mucida (see Table 1): 1–2 Nest 1 near Ait Baha in southern Morocco glued to the flat surface of a middle-sized stone 3 Nest 1 opened shortly after its finalization with cell contents removed 4–5 Nest 2 near Ait Baha in southern Morocco glued to the flat surface of a rock 6 Nest 3 originating from near El Kef in northern Tunisia glued to the flat surface of a small stone and photographed after bee emergence.
Figures 7–14 from: Müller A, Mauss V, Prosi R (2017) Unique nest architecture in the North African osmiine bee Hoplitis (Hoplitis) mucida (Hymenoptera, Megachilidae). Journal of Hymenoptera Research 60: 99-109. https://doi.org/10.3897/jhr.60.20218
Figures 7–14 - Morphological differences in the male sex between Hoplitis mucida (left) and H. stecki (right) (see Table 2): 7–8 Antenna 9–10 Tergum 7 11–12 Membraneous appendage of sternum 6 13–14 Genitalia.
Figures 2-9 from: Müller A (2018) Pollen host selection by predominantly alpine bee species of the genera Andrena, Panurginus, Dufourea, Megachile, Hoplitis and Osmia (Hymenoptera, Apoidea). Alpine Entomology 2: 101-113. https://doi.org/10.3897/alpento.2.29250
Figures 2-9 (2) Andrenafucata on Apiaceae spec. (photo S. Falk). (3) Andrenalapponica on Vacciniummyrtillus L. (photo P. Westrich). (4) Andrenarogenhoferi on Saxifragarudolphiana Hornsch. (photo W. Kreisch). (5) Andrenafreygessneri on Sempervivumarachnoideum L. (photo D. Bénon, www.swisswildbees.ch). (6) Andrenacoitana on Leontodonautumnalis L. (photo H.-J. Martin). (7) Panurginusherzi on Potentillaaurea L. (8) Panurginusmontanus on Gypsophilarepens L. (9) Dufoureaalpina on Phyteumabetonicifolium Vill.
Figures 10-15 from: Müller A (2018) Pollen host selection by predominantly alpine bee species of the genera Andrena, Panurginus, Dufourea, Megachile, Hoplitis and Osmia (Hymenoptera, Apoidea). Alpine Entomology 2: 101-113. https://doi.org/10.3897/alpento.2.29250
Figures 10-15 (10) Megachilealpicola on Centaureajacea L. (photo A. Krebs). (11) Hoplitisvillosa on Taraxacum spec. (photo P. Westrich). (12) Osmialabialis on Carduusnutans L. (photo A. Krebs). (13) Osmiaparietina on Lotuscorniculatus L. (photo R. Prosi). (14) Osmiauncinata on Rubus spec. (photo A. Jacobs). (15) Osmiaxanthomelana on Hippocrepiscomosa L. (photo R. Prosi).
Figure 1 from: Müller A (2018) Pollen host selection by predominantly alpine bee species of the genera Andrena, Panurginus, Dufourea, Megachile, Hoplitis and Osmia (Hymenoptera, Apoidea). Alpine Entomology 2: 101-113. https://doi.org/10.3897/alpento.2.29250
Figure 1 Head length to head width ratio in females of Panurginusherzi (light blue) and P.montanus (dark blue) (n = 150). Definitions for head length and head width according to Michener (2007).
Figures 6-13 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figures 6-13 Hoplitisrobusta. 6) X-ray of nest branch with nest 1 (left) and nest 2 (right). 7, 8) Nest seal of nest 1 (left) and nest 2 (right) consisting of leaf pulp. 9, 10) Dissected nest 1 with six brood cells (left) and nest 2 with five brood cells (right) in L-shaped pupation tunnels of cerambycid beetles. 11) Close-up view of brood cells in nest 1. 12, 13) Nest plug of nest 1 (left) and nest 2 (right), each consisting of several successive partitions of leaf pulp.
Figure 17 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figure 17 L-shaped pupation tunnel of Tetropiumcastaneum (Cerambycidae) after emergence of the adult beetle with densely packed wood chips and fibers in the straight horizontal part of the tunnel (photo B. Wermelinger).
Figures 1-5 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figures 1-5 Hoplitisrobusta. 1) Female collecting pollen and nectar on Potentillaerecta. 2) Head of female. 3) Nesting habitat in the Calfeisen valley near St. Martin (St Gallen). 4) Dead fallen spruce (Piceaabies) with nesting branch marked with red arrow. 5) Nesting branch with nest entrances marked with red arrows.
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