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140 results for “fungus beetles”
Figure 4 from: Ribeiro-Correia JP, Prospero S, Beenken L, Biedermann PHW, Blaser S, Branco M, Chittaro Y, Frey D, Hölling D, Kaya SO, Knížek M, Mittelstrass J, Ruffner B, Sanchez A, Brockerhoff EG (2024) Distribution of the invasive ambrosia beetle Anisandrus maiche (Coleoptera, Scolytinae) in Switzerland and first record in Europe of its ambrosia fungus Ambrosiella cleistominuta. Alpine Entomology 8: 35-49. https://doi.org/10.3897/alpento.8.117537
Figure 4 Culture of Ambrosiella cleistominuta (on 15-day old Potato Dextrose Agar, see methods) from Anisandrus maiche trapped alive in canton Ticino, Switzerland.
Figure 1 from: Ribeiro-Correia JP, Prospero S, Beenken L, Biedermann PHW, Blaser S, Branco M, Chittaro Y, Frey D, Hölling D, Kaya SO, Knížek M, Mittelstrass J, Ruffner B, Sanchez A, Brockerhoff EG (2024) Distribution of the invasive ambrosia beetle Anisandrus maiche (Coleoptera, Scolytinae) in Switzerland and first record in Europe of its ambrosia fungus Ambrosiella cleistominuta. Alpine Entomology 8: 35-49. https://doi.org/10.3897/alpento.8.117537
Figure 1 Trap locations in cantons Ticino and Grisons where Anisandrus maiche was captured (green symbols) or where no captures were recorded (grey symbols). Symbols vary by trap type (see legend and methods for details). Note that each square represents a pair of two Polytraps which were placed in close proximity to each other (Vector and raster map data https://www.swisstopo.ch).
Figure 3 from: Ribeiro-Correia JP, Prospero S, Beenken L, Biedermann PHW, Blaser S, Branco M, Chittaro Y, Frey D, Hölling D, Kaya SO, Knížek M, Mittelstrass J, Ruffner B, Sanchez A, Brockerhoff EG (2024) Distribution of the invasive ambrosia beetle Anisandrus maiche (Coleoptera, Scolytinae) in Switzerland and first record in Europe of its ambrosia fungus Ambrosiella cleistominuta. Alpine Entomology 8: 35-49. https://doi.org/10.3897/alpento.8.117537
Figure 3 Mean trap captures of Anisandrus maiche in central-upper Ticino (left, Riviera-Iragna and Serravalle-Leggiuna, N = 4 ethanol-baited bottle traps) and in central Ticino (right, Bolette, Locarno, N = 2 Polytraps).
Figure 2 from: Ribeiro-Correia JP, Prospero S, Beenken L, Biedermann PHW, Blaser S, Branco M, Chittaro Y, Frey D, Hölling D, Kaya SO, Knížek M, Mittelstrass J, Ruffner B, Sanchez A, Brockerhoff EG (2024) Distribution of the invasive ambrosia beetle Anisandrus maiche (Coleoptera, Scolytinae) in Switzerland and first record in Europe of its ambrosia fungus Ambrosiella cleistominuta. Alpine Entomology 8: 35-49. https://doi.org/10.3897/alpento.8.117537
Figure 2 Anisandrus maiche adult trapped at Serravalle-Leggiuna 1 (Ticino), dorsal and lateral. Specimen length 2.0 mm. Photos by Carl-Michael Anderson, WSL.
Figures 4-9 from: Keller S, Hülsewig T (2018) Amended description and new combination for Entomophthora nebriae Raunkiaer, (1893), a little known entomopathogenic fungus attacking the ground beetle Nebria brevicollis (Fabricius, 1792). Alpine Entomology 2: 1-5. https://doi.org/10.3897/alpento.2.22136
Figures 4-9 4. Rhizoid with dark and sparsely branched ending together with resting spores (LPAO). 5. Cystidium with numerous nuclei (LPAO). 6. Dense layer of conidiophores with developing primary conidia (LPAO). 7. Primary conidia with prominent central vacuole (LPCB). 8. Young resting spores with nuclei (LPAO). 9. Mature resting spores with thick walls and one to several vacuoles depending on the stage of maturation (LPAO).
Figures 1-3 from: Keller S, Hülsewig T (2018) Amended description and new combination for Entomophthora nebriae Raunkiaer, (1893), a little known entomopathogenic fungus attacking the ground beetle Nebria brevicollis (Fabricius, 1792). Alpine Entomology 2: 1-5. https://doi.org/10.3897/alpento.2.22136
Figures 1-3 1. Nebria brevicollis at an early stage of fungus sporulation. At this stage the beetle is still able to move it's legs and antennae (nat. length of the beetle about 13 mm). 2. Beetle with fully sporulating fungus showing the extremely swollen abdomen. The strong cystidia are clearly visible at the edge of the fungus mass. 3. At the end of the sporulating period the mycelium turns yellowish (Photos: T. Hülsewig).
Figs. 17-18 in Annotated checklist of the handsome fungus beetles of Connecticut, USA (Coleoptera: Cucujoidea: Endomychidae).
Figs. 17-18.- Stenotarsus hispidus (Herbst, 1799). 17.- Habitus (Photo by Ted Kropiewnicki). 18.- Distributional map.
Figs. 15-16 in Annotated checklist of the handsome fungus beetles of Connecticut, USA (Coleoptera: Cucujoidea: Endomychidae).
Figs. 15-16.- Danae testacea (Ziegler, 1845). 15.- Habitus (Photo by Tom Murray). 16.- Distributional map.
Figs. 9-10 in Annotated checklist of the handsome fungus beetles of Connecticut, USA (Coleoptera: Cucujoidea: Endomychidae).
Figs. 9-10.- Lycoperdina ferruginea LeConte, 1824. 9.- Habitus (Photo by Tom Murray). 10.- Distributional map.
Figure 1 in A review of the small carrion beetles and the round fungus beetles of the West Indies (Coleoptera: Leiodidae), with descriptions of two new genera and 61 new species.
Figure 1. Map of the major islands of the West Indies.
Figures 17‒23 in Dyslexia, a new remarkable genus of pleasing fungus beetles (Coleoptera: Erotylidae: Erotylinae) from the Andes
Figures 17‒23. Dyslexia dathomirria Skelley and Gasca-Álvarez. 17) Dorsal habitus. 18) Ventral habitus. 19) Lateral habitus. 20) Anterior oblique view of head and pronotum. 21) ventral view head and prosternum. 22) Male genitalia. 23) Female genitalia, allotype.
Figure 85-88. Notaeptyus spp., key characters. 85 in Pleasing fungus beetles of the West Indies (Coleoptera: Erotylidae: Erotylinae)
Figure 85-88. Notaeptyus spp., key characters. 85) N. flavitarsis, normal long metasternum. 86) N. cubanacan, shortened metasternum of wingless form. 87) N. fulvitarsis (DR: La Vega) male genitalia with flagellum everted. 88) N. lavegaensis male genitalia, with flagellum inverted. Genitalic scale line = 1 mm.
Figs. 1–7 in Stenotarsus Subtilis Arrow, The Aggregating Fungus Beetle Of Barro Colorado Island Nature Monument, Panama (Coleoptera: Endomychidae)
Figs. 1–7. Stenotarsus spp.: 1–3) Antenna: 1) Stenotarsus validicornis; 2) S. purpuratus; 3) S. subtilis. 4–7) Pronota and elytral bases: 4) S. cyanopterus; 5) S. lemniscatus; 6) S. subtilis; 7) S. ovalis. Scale line = 1 mm.
Figs 1–4 in Spaniophagus, first new Eocene genus of silken fungus beetle from Baltic amber (Coleoptera: Clavicornia: Cryptophagidae)
Figs 1–4. Spaniophagus hoffeinsae gen. et sp.n. Holotype (inv. No CCHH 824-4 from the collection of the Senckenberg Deutsches Entomologisches Institut, Müncheberg, Germany (SDEI)): 1 — dorsal; 2 — ventral; 3 — frontal; 4 — lateral. Рис. 1–4. Spaniophagus hoffeinsae gen. et sp.n. Голотип (inv. No CCHH 824-4 в коллекции Senckenberg Deutsches Entomologisches Institut, Müncheberg, Germany (SDEI)): 1 — сверху; 2 — сниЗу; 3 — спереди; 4 — сбоку.
FIGURE 8. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 8. Pselaphacus procerus Kuhnt, 1910. Mature larva: (A) pro and mesonotum; (C) prothoracic leg, internal view; (D) pretarsus. Early larva: (B) pro and mesonotum; (E) prothoracic leg, internal view; (F) middle leg, external view; (G) thoracic spiracle; (H) segment IX, dorsal view; (I) urogomphi, apex. Scale bar: A, B = 1.0 mm, C, G, H = 0.1 mm, E, F = 0.5 mm.
FIGURE 1 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 1. Map showing the known distribution of the Pselaphacus procerus Kuhnt, 1910. (A–G) Brazil: (A) Benjamin Constant, Amazonas state: 4° 23′ 0″ S, 70° 1′ 53″W. (B) Uberlândia, Minas Gerais state: 18° 54′41″ S, 48° 15′ 44″W. (C) Três Lagoas, Mato Grosso do Sul state: 20° 45′ 35″ S, 51° 41′ 42″W. (D) Castilho, São Paulo state: 20° 52′ 12″ S, 51° 29′ 13″W. (E) Marília, São Paulo state: 22° 13′ 15″ S, 49° 56′ 55″W. (F) Salto Grande, São Paulo state: 22° 52′ 53″ S, 49° 57′ 44″W. (G) Piracicaba, São Paulo state: 22° 43' 30" S, 47° 38' 56" W. (H) Misiones, Argentina: 26° 55′ S, 54° 31′ W, [type locality].
FIGURE 4. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 4. Pselaphacus procerus Kuhnt, 1910. Male. (A) sternite IX; (B) tergite and sternite IX (C–G) aedeagus: (C–D) tegmen and parameres, ventral and lateral views; (E–F) penis, lateral and ventral views; (G) apex of accessory muscle. Scale bar: A, B, C, F = 0.5 mm, D, E = 0.1 mm.
FIGURE 3. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 3. Pselaphacus procerus Kuhnt, 1910. Male. Mouthparts. (A) front and clypeus; (B) epipharynx; (C–D) mandible, dorsal and ventral views; (E) maxilla and labium; (F–G) lacinia and galea, dorsal and ventral views. Scale bar: A, C, D, E = 0.5 mm, B, F, G = 0.1 mm.
FIGURE 5. Pselaphacus procerus Kuhnt, 1910 in Description of larvae and redescription of the fungus beetle Pselaphacus procerus Kuhnt, 1910 (Coleoptera: Erotylidae: Erotylinae: Tritomini) from Brazil
FIGURE 5. Pselaphacus procerus Kuhnt, 1910. Female. (A) sternite VIII; (B) tergite VIII; (C) spermatheca; (D) ovipositor, dorsal view. Scale bar: A, B, D = 0.5 mm, C = 0.1 mm.
FIGURE 1 in Ophiocordyceps furcatosubulata, a new entomopathogenic fungus parasitizing beetle larvae (Coleoptera: Elateridae)
FIGURE 1. Phylogenetic placement of Ophiocordyceps furcatosubulata inferred from BI and ML analyses based on a five-locus (nrLSU, nrSSU, tef-1α, rpb1 and rpb2) dataset. Statistical support values (≥ 0.5/50%) are shown at the nodes for BI posterior probabilities/ML boostrap proportions.
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International Brain Laboratory public data
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OpenNeuro
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