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62 results for “Anagrus”
FIGURES 90–93. Anagrus erythroneurae S. Trjapitzin & Chiappini. 90 in Illustrated key to genera and catalogue of Mymaridae (Hymenoptera) in America north of Mexico
FIGURES 90–93. Anagrus erythroneurae S. Trjapitzin & Chiappini. 90, mesosoma + metasoma, dorsal; 91, wings; 92, metasoma showing ovipositor, dorsal; 93. Mesosoma + metasoma, lateral. Scale bars=100 μm.
FIGURES 87–89. Anagrus erythroneurae S. Trjapitzin & Chiappini. 87 in Illustrated key to genera and catalogue of Mymaridae (Hymenoptera) in America north of Mexico
FIGURES 87–89. Anagrus erythroneurae S. Trjapitzin & Chiappini. 87, head anterior; 88, head, posterior; 89, antenna. Scale bars=50 μm.
FIGURE 20 in Morphological and molecular differentiation of the Anagrus epos species complex (Hymenoptera: Mymaridae), egg parasitoids of leafhoppers (Hemiptera: Cicadellidae) in North America
FIGURE 20. Simple Neighbour-Joining tree highlighting the multiple gene-family origin of copies of the ITS2 region in individuals from select members of the Anagrus epos species complex. Sequences in bold represent three ITS2 clones from a single specimen of A. daanei from California.
FIGURE 19. Relationships between North American Anagrus populations inferred from 28 in Morphological and molecular differentiation of the Anagrus epos species complex (Hymenoptera: Mymaridae), egg parasitoids of leafhoppers (Hemiptera: Cicadellidae) in North America
FIGURE 19. Relationships between North American Anagrus populations inferred from 28sD2 rDNA sequences. Bootstrap Neighbour-Joining tree with 2000 iterations, produced using ClustalX version 1.83. Sequences in bold represent three A. daanei specimens from California.
FIGURES 16–18 in Morphological and molecular differentiation of the Anagrus epos species complex (Hymenoptera: Mymaridae), egg parasitoids of leafhoppers (Hemiptera: Cicadellidae) in North America
FIGURES 16–18. Anagrus sp. near vulneratus female (Sonora). 16. Antenna. 17. Body (lateral view). 18. Wings.
FIGURES 13–15 in Morphological and molecular differentiation of the Anagrus epos species complex (Hymenoptera: Mymaridae), egg parasitoids of leafhoppers (Hemiptera: Cicadellidae) in North America
FIGURES 13–15. Anagrus vulneratus (paratypes, Colorado). 13. Female forewing. 14. Male antenna. 15. Male genitalia, dorsal view. Scale bars = 0.1 mm.
FIGURE 1 in On the misidentification of Anagrus ustulatus Haliday (Hymenoptera: Mymaridae)
FIGURE 1. Two specimens (W18, W19) of Anagrus ustulatus Haliday labelled by Westwood. a, on the original pin; b, labels displayed; c, specimen W18 after slide mounting; d, antenna; e, club; f, fore wing disc; g, macrochaetae on the marginal vein.
FIGURES 5, 6 in Anagrus turpanicus sp. n. (Hymenoptera: Mymaridae) from China, an egg parasitoid of Arboridia kakogowana (Hemiptera: Cicadellidae)
FIGURES 5, 6. Anagrus turpanicus (female, paratypes): 5, ovipositor (arrows pointing to distal setae on one of its external plates, or second valvifers); 6, fore and hind wings.
FIGURES 1–4 in Anagrus turpanicus sp. n. (Hymenoptera: Mymaridae) from China, an egg parasitoid of Arboridia kakogowana (Hemiptera: Cicadellidae)
FIGURES 1–4. Anagrus turpanicus (female): 1, slide (holotype); 2, antenna (holotype), F3 with a mps; 3, antenna minus scape (paratype), F3 without mps; 4, mesoscutum (paratype).
FIGURES 8–11. 8 in Anagrus nedotepae sp. n. (Hymenoptera: Mymaridae), an egg parasitoid of Nedotepa curta (Hemiptera: Cicadellidae), a pest of coconut palm in West Africa
FIGURES 8–11. 8, Anagrus nedotepae (habitus of a non-type, live female in dorsal view); 9, cluster of both parasitized (6 eggs on the left, those with two large reddish spots [eyes of the developing parasitoid] close to the top of an egg and 3 small reddish points in a triangle between them [ocelli]) and unparasitized (the remaining eggs on the right, those with eyes much smaller and without 3 small reddish points between them) eggs of Nedotepa curta; 10, female of N. curta guarding her cluster of unparasitized eggs on a coconut palm leaf; 11, female of A. nedotepae at a cluster of N. curta eggs ready to parasitize them.
FIGURES 1–4 in Anagrus nedotepae sp. n. (Hymenoptera: Mymaridae), an egg parasitoid of Nedotepa curta (Hemiptera: Cicadellidae), a pest of coconut palm in West Africa
FIGURES 1–4. Anagrus nedotepae (female, holotype): 1, slide; 2, antenna; 3, fore and hind wings; 4, ovipositor (arrow indicates the distal seta on second valvifer).
Figure 3 in Reassessment of molecular and morphological variation within the Anagrus atomus species complex (Hymenoptera: Mymaridae): egg parasitoids of leafhoppers (Hemiptera: Cicadellidae) in Europe and North America
Figure 3. Comparison of the clustering of A. 'atomus' complex specimens using ITS2 (tree) and COI (colouring).
Figure 2 in Reassessment of molecular and morphological variation within the Anagrus atomus species complex (Hymenoptera: Mymaridae): egg parasitoids of leafhoppers (Hemiptera: Cicadellidae) in Europe and North America
Figure 2. Inter- and intragenomic relationships among the ITS2 rRNA sequences of 56 Anagrus 'atomus' complex specimens. The analysis involved 29 direct-sequenced specimens and 69 cloned sequences from a further 27 specimens. Circular mid-point rooted neighbour-joining tree inferred from pairwise uncorrected p-distances calculated in MEGA v.6.06. Branch support>50% (assessed with 1000 bootstrap replicates) is shown next to the branches. Intragenomic variation in the placement of just three individuals morphologically identified respectively as A. atomus, A. erythroneurae, and A. parvus are highlighted with dashed lines (3 cloned sequences for each specimen). Two morphologically unresolved specimens are further highlighted in bold. PR numbers relate to GenBank accessions MW012950–MW013047.
Figure 10 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 10. Relationships between sequences of the ITS2 rRNA locus obtained from nine Anagrus species. Sequences of 10 specimens were obtained by direct-sequencing. Intra-individual variation required that the ITS2 of the remaining 16 specimens was cloned prior to sequencing. Three clones were sequenced for each of these specimens (labelled A, B and C). The percentage of replicate trees in which the associated sequences clustered together in the bootstrap test (1000 replicates) is shown next to the branches and the tree is drawn to scale, with branch lengths indicating uncorrected p-distance. Analysed sequence matrix was 731 bp including gaps.
Figure 8 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 8. Anagrus fisheri, female (Kerkini Marsh, Lake Kerkini, Central Macedonia, Greece): (a) antenna; (b) fore and hind wings; (c) metasoma.
Figure 9 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 9. Genealogical relationships among the sequences of a 587 bp fragment of COI from nine species of Anagrus. Optimal NJ tree with the sum of branch length = 0.22476409. The percentage of replicate trees in which the associated taxa clustered together in the bootstrap test (1000 replicates) are shown next to the branches and the tree is drawn to scale, with branch lengths indicating uncorrected p-distance.
Figure 6. Anagrus nilaparvatae, syn. n in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 6. Anagrus nilaparvatae, syn. n. of A. incarnatus, female: (a) antenna (Lucao, Chiayi Co., Taiwan, from egg of Nilaparvata lugens; F3 with 1 mps); (b) antenna (same as (a); F3 without mps); (c) mesosoma (same as (a)); (d) metasoma (same locality as (a), from egg of Nephotettix cincticeps); (e) fore wing (same as (d)); (f) fore wing (same as (a)).
Figure 7 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 7. (a–c) Anagrus breviphragma, synonym of A. incarnatus, male (SE end of Lago del Matese, Caserta Province, Campania, Italy): (a) antenna; (b) fore and hind wings; (c) genitalia. (d, e) Anagrus nilaparvatae, syn. n. of A. incarnatus, male (Lucao, Chiayi Co., Taiwan, from egg of Nilaparvata lugens): (d) antenna; (e) genitalia.
Figure 5 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 5. Anagrus incarnatosimilis, stat. rev. as a synonym of A. incarnatus, female fore and hind wings: (a) Eriksberg, Upland Uppsala, Sweden; (b) Mortizza, Piacenza Province, Emilia-Romagna, Italy (from egg of Cicadella viridis, determined by E. Chiappini).
Figure 2 in New synonymies in the Anagrus incarnatus Haliday 'species complex' (Hymenoptera: Mymaridae) including a common parasitoid of economically important planthopper (Hemiptera: Delphacidae) pests of rice in Asia
Figure 2. Anagrus breviphragma, synonym of A. incarnatus, female: (a) antenna (Mortizza, Piacenza Province, Emilia-Romagna, Italy, from egg of Cicadella viridis, determined by E. Chiappini); (b) fore wing (Fosso di Trafusina, Castelporziano Presidential Estate, Roma Province, Lazio, Italy); (c) metasoma (same as (b)).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.