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227 results for “Assassin bugs”
FIGURE 2 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 2. Inferred secondary structures of 22 tRNAs of S. flavipes. The tRNAs are labeled with the abbreviations of their corresponding amino acids. Dashed (-) indicate Watson-Crick base pairing and dot () indicate G-U base pairing.
FIGURE 4 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 4. Predicted secondary structure of the rrnS in S. flavipes. Regions in red indicate the high variability in the four assassin bugs. Roman numerals denote the conserved domain structure. Dashed (-) indicate Watson-Crick base pairing and dot () indicate G-U base pairing.
FIGURE 5 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 5. (A) The conserved region of the mitochondrial control region of S. flavipes, A. dohrni, T. dimidiata and V. hoffmanni. (B) The structural organization of the mitochondrial control region of S. flavipes. The control region flanking genes rrnS, trnI (I), trnQ (Q), and trnM (M) are represented in purple and green boxes. The light blue boxes with roman numerals indicate the tandem repeat region. "G+C" indicates high G+C content region. "A+T" indicates high A+T content region. The black box indicates G element.
FIGURE 1 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 1. Map of the mtochondrial genome of S. flavipes. Direction of gene transcription is indicated by the arrows. PCGs are shown as blue arrows, rRNA genes as purple arrows, tRNA genes as red arrows and large non-coding regions (>100 bp) as cyan rectangles. tRNA genes are labeled according to single-letter IUPAC-IUB abbreviations (L1: UUR; L2:CUN; S1:AGN; S2:UCN). The GC content is plotted using a black sliding window, as the deviation from the average GC content of the entire sequence. GC Skew is plotted as the deviation from the average GC skew of the entire sequence. Ticks in the inner cycle indicate the sequence length.
Figs. 1–2 in Two Observations of Assassin Bugs (Hemiptera: Reduviidae) Feasting on Adult Jewel Beetles (Coleoptera: Buprestidae), with Notes on Adults of Other Buprestid Species and Their Predators
Figs. 1–2. Rediviids preying on adult jewel beetles. 1) Apiomerus cf. longispinis feeding on Hippomelas saginatus near Cacaloxtepec, Oaxaca, Mexico. Photograph by J. R. Nápoles. 2) Rhynocoris annulatus feeding on Trachypterus picta decostigma near Rusovce, Slovakia. Photograph by E. Jendek.
Figure 2 in Living on a sticky trap: natural history and morphology of Bactrodes assassin bugs (Insecta: Hemiptera: Reduviidae: Bactrodinae)
Figure 2. Bactrodes femoratus in the field. (a) Female with egg batch, Colombia. (b) Female with ant prey; antennae in touch with egg batch, Colombia. (c) Female with egg batch, Trinidad and Tobago. (d) Egg batch with developing Bactrodes embryos, French Guiana. (e) Female with egg batch and hatching first instar immature, Peru. (f) Early instar with prey, French Guiana. (g) Pretarsus grasping plant trichome, Colombia. (h) Close up of pretarsus grasping plant trichome, Colombia. (i) Female on dorsal leaf surface of Clidemia cf. urceolata, Trinidad and Tobago. (j) Insect carrion trapped on sticky trichomes of Clidemia cf. urceolata.
Figure 7 in Living on a sticky trap: natural history and morphology of Bactrodes assassin bugs (Insecta: Hemiptera: Reduviidae: Bactrodinae)
Figure 7. Egg batches of B. femoratus and egg parasitoids. (a) Egg batch with Bactrodes embryos and hatched eggs, Trinidad and Tobago. (b) Egg batch hatched eggs and eggs parasitised by Telenomus sp. (Scelionidae), Peru. (c) Two Bactrodes eggs parasitised by Telenomus sp. (d) Two Bactrodes eggs parasitised by Trichogramma sp. (Trichogrammatidae). (e) Telenomus sp. (right) and Trichogramma sp. (left) reared from B. femoratus eggs.
Figure 4 in Living on a sticky trap: natural history and morphology of Bactrodes assassin bugs (Insecta: Hemiptera: Reduviidae: Bactrodinae)
Figure 4. Dorsal habitus of B. biannulatus, B. femoratus, and B. spinulosus (top row); close-up of head and thorax of B. biannulatus in dorsal view and lateral view of B. femoratus and B. spinulosus (middle row); apex of tibia, tarsus and pretarsus of an early instar immature of B. femoratus, black arrow points to stout ventral seta on distal tarsomere.
FIGURE 1–9 in The emesine assassin bug genus Empicoris (Hemiptera: Heteroptera: Reduviidae) from Vietnam, with descriptions of two new species
FIGURE 1–9. Empicoris montanus sp. nov. 1–2, Habitus, male, lateral (1) and dorsal (2) views; 3–4, head and prothorax, male, dorsal (3) and lateral (4) views; 5–6, hemelytron, male (5) and female (6); 7, tibia and tarsus of fore leg, lateral view; 8, femur and trochanter of fore leg, lateral view; 9, apical part of metafemur, lateral view. Scales: 2.0 mm for 1–2, 5–6; 0.5 mm for 3–4, 7–9.
FIGURE 29–38 in The emesine assassin bug genus Empicoris (Hemiptera: Heteroptera: Reduviidae) from Vietnam, with descriptions of two new species
FIGURE 29–38. Empicoris laocaiensis sp. nov. 29, Left fore leg, lateral (outer) view; 30, basal part of profemur, lateral (inner) view; 31–32, pygophore (with parameres), setae of right side omitted, lateral (31) and dorsal (32) views; 33, posterior process of pygophore, posteroventral view; 34–35, left paramere, dorsal (34) and lateral (outer) (35) views; 36–37, phallus, dorsal (36) and left-lateral (37) views; 38, styloides, dorsal view. Scales: 1.0 mm for 29; 0.2 mm for 30–38.
FIGURE 21–28 in The emesine assassin bug genus Empicoris (Hemiptera: Heteroptera: Reduviidae) from Vietnam, with descriptions of two new species
FIGURE 21–28. Empicoris laocaiensis sp. nov. 21–22, Habitus, male, lateral (21) and dorsal (22) views; 23–24, head and prothorax, male, dorsal (23) and lateral (24) views; 25, tibia and tarsus of fore leg, lateral view; 26, femur and trochanter of fore leg, lateral view; 27, apical part of metafemur, lateral view; 28, hemelytron. Scales: 2.0 mm for 21–22, 28; 0.5 mm for 23–27.
FIGURE 10–20 in The emesine assassin bug genus Empicoris (Hemiptera: Heteroptera: Reduviidae) from Vietnam, with descriptions of two new species
FIGURE 10–20. Empicoris montanus sp. nov. 10, Left fore leg, lateral (outer) view; 11, basal part of profemur, lateral (inner) view; 12–13, pygophore (with parameres), setae of right side omitted, lateral (12) and dorsal (13) views; 14, posterior process of pygophore, posteroventral view; 15–16, left paramere, dorsal (15) and lateral (outer) (16) views; 17–18, phallus, left-lateral (17) and dorsal (18) views; 19, styloides, dorsal view; 20, middle part of styloides, dorsal view. Scales: 1.0 mm for 10; 0.2 mm for 11–20.
FIGURES 50–59. Haematoloecha nigrorubra conspicua ssp. nov., genitalia. 50–55 in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 50–59. Haematoloecha nigrorubra conspicua ssp. nov., genitalia. 50–55, right paramere, six different aspects; 56, phallus, dorsal view; 57, same, lateral view; 58, dorsal sclerotized plate of phallotheca; 59, female genitalia, posterior view. Arrow in Fig. 57 shows aspect of Fig. 58. Scales in mm.
FIGURES 43–49. Haematoloecha nigrorubra conspicua ssp. nov., male. 43 in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 43–49. Haematoloecha nigrorubra conspicua ssp. nov., male. 43, head and pronotum, dorsal view; 44, head and thorax, lateral view; 45, fore wing and margin of abdomen, dorsal view; 46, genital capsule, dorsal view; 47, same, ventral view; 48, same, lateral view; 49, dorsoapical process of genital capsule, posterior view. Scales in mm.
FIGURES 60–64. Haematoloecha spp. 60, H in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 60–64. Haematoloecha spp. 60, H. nigrorubra conspicua ssp. nov., holotype; 61, H. rubescens Distant, non-type male from Japan; 62, H. laeta Breddin, lectotype, dorsal view; 63, same, lateral view; 64, same, labels. Scales in mm. (Figs. 62–64: © DEIC, photographed by S.M. Blank, published with permission.)
FIGURES 33–42 in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 33–42. Diagnostic characters of Haematoloecha pusilla sp. nov. (Figs. 33–38), H. nigrorufa Stål (red-headed form) (Figs. 39–40), and H. rubescens Distant (Figs. 41–42). 33–35, right paramere, three different views; 36, phallus, dorsal view; 37, same, lateral view; 38, dorsal sclerotized plate of phallotheca; 39, head, pronotum and scutellum, dorsal view; 40, head and thorax, lateral view, 41, head, dorsal view; 42, head and pronotum, lateral view. Scales in mm.
FIGURES 25–32 in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 25–32. Diagnostic characters of Haematoloecha pusilla sp. nov. (25–30) and H. minor Hsiao (Figs. 31–32). 25, head, pronotum and scutellum, dorsal view; 26, head and pronotum, lateral view; 27, right fore leg, posterior view; 28, genital capsule, dorsal view; 29, same, lateral view; 30, dorsoapical process of genital capsule, posterior view; 31, head, pronotum and scutellum, dorsal view; 32, head and pronotum, lateral view. Scales in mm.
FIGURES 4–11 in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 4–11. Diagnostic characters of Haematoloecha curta sp. nov. (4–7) and H. puetzi (Kerzhner & Günther) (holotype, Ƥ) (8–11). 4, head and thorax of male, dorsal view; 5, same, lateral view; 6, left fore leg, male, posterior view; 7, same, female, posterior view; 8, head and thorax, dorsal view; 9, head, lateral view; 10, left fore leg, posterior view; 11, detail of ventral margin of fore femur. Scales in mm.
FIGURES 22–24 in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 22–24. Haematoloecha nigrorufa (Stål). 22, Lectotype, with labels; 23, male of 'black-headed form'; 24, male of 'red-headed form'. Scales in mm; labels not to scale. (Fig. 22: © NRMS, photographed by G. Lindberg, published with permission.)
FIGURES 1–3. Haematoloecha spp. 1, H in The assassin bug genus Haematoloecha in Taiwan, with notes on species occurring in the neighbouring areas (Hemiptera: Heteroptera: Reduviidae: Ectrichodiinae)
FIGURES 1–3. Haematoloecha spp. 1, H. curta sp. nov., holotype; 2, H. puetzi (Kerzhner & Günther), holotype, with labels; 3, H. pusilla sp. nov., holotype. Scale in mm; labels not to scale. (Fig. 2: © ZMAS, photographed by D.A. Gapon, published with permission.)
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.