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3,383 results for “Parasitoid”
FIGURES 16 – 23. Dicerataspis grenadensis. 16 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 16 – 23. Dicerataspis grenadensis. 16. Head, anterior view (140 x, 100 m); 17. Female antenna (204 x, 100 m); 18. Flagellomerous 1 and 2 of male (280 x, 100 m); 19. Pronotal plate (366 x, 20 m); 20. Head, mesosoma and anterior part of metasoma, lateral view (120 x, 100 m); 21. Mesosoma, dorsal view (130 x, 100 m); 22. Forewing (10 x, 0,5 mm); 23. Metacoxa (130 x, 100 m).
FIGURES 56 – 63. Leptopilina boulardi. 56 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 56 – 63. Leptopilina boulardi. 56. Head, anterior view (407 x, 20 m); 57. Female antenna (309 x, 20 m); 58. Flagellomerous 1 and 2 of male (267 x, 20 m); 59. Pronotal plate (790 x, 20 m); 60. Head, mesosoma and anterior part of metasoma, lateral view (100 x, 100 m); 61. Mesosoma, dorsal view (335 x, 20 m); 62. Forewing (10 x, 0.14 mm); 63. Metacoxa (230 x, 100 m).
FIGURES 48 – 55. Aganaspis nordlanderi. 48 in Eucoilinae species (Hymenoptera: Cynipoidea: Figitidae) parasitoids of fruitinfesting dipterous larvae in Brazil: identity, geographical distribution and host associations
FIGURES 48 – 55. Aganaspis nordlanderi. 48. Head, anterior view (174 x, 100 m); 49. Female antenna (66 x, 250 m); 50. Flagellomerous 1 and 2 of male (84 x, 100 m); 51. Pronotal plate (105 x, 100 m); 52, Head, mesosoma and anterior part of metasoma, lateral view (35 x, 500 m); 53. Mesosoma, dorsal view (74 x, 250 m); 54. Forewing (10 x, 0,5 mm); 55. Metacoxa (120 x, 100 m).
FIGURES 1 – 4 in A new species of Emersonella (Hymenoptera: Eulophidae), parasitoid on weevil eggs (Coleoptera: Curculionidae), from Costa Rica
FIGURES 1 – 4. Emersonella curculiovora sp. nov. 1. Head frontal, female. 2. Head and pronotum dorsal, female. 3. Mesosoma dorsal, female. 4. Apical gastral tergite dorsal, female.
FIGURES 7 – 10 in A new species of Emersonella (Hymenoptera: Eulophidae), parasitoid on weevil eggs (Coleoptera: Curculionidae), from Costa Rica
FIGURES 7 – 10. Juvenile stages of Emersonella curculiovora sp. nov. 7. Host egg case (arrow) on stem of Cinnamomum cinnamomifolium. 8. Mature larva (arrow) in situ (host’s cementenclosure partially removed). 9. Dorsal view of a female pupa (note meconium around the ovipositor). 10. Mature pupa (arrow) in situ (host’s cementenclosure cement partially removed).
FIGURES 16 – 19. Horismenus missouriensis. 16. Thoracic dorsum, female. 17. Thoracic dorsum, male. 18. Gaster dorsal, female. 19 in Horismenus species (Hymenoptera: Eulophidae) in a bruchid beetle parasitoid guild, including the description of a new species
FIGURES 16 – 19. Horismenus missouriensis. 16. Thoracic dorsum, female. 17. Thoracic dorsum, male. 18. Gaster dorsal, female. 19. Gaster dorsal, male.
FIGURES 10 – 15. Horismenus spp. 10. H in Horismenus species (Hymenoptera: Eulophidae) in a bruchid beetle parasitoid guild, including the description of a new species
FIGURES 10 – 15. Horismenus spp. 10. H. depressus, head frontal, female. 11. H. depressus, head frontal, male. 12. H. depressus, thoracic dorsum, female. 13. H. depressus, thoracic dorsum, male. 14. H. missouriensis, head frontal, female. 15. H. missouriensis, head frontal, male.
FIGURES 6 – 9. Horismenus spp., gaster dorsal. 6. H. butcheri, female. 7. H. butcheri, male. 8. H. depressus, female. 9. H in Horismenus species (Hymenoptera: Eulophidae) in a bruchid beetle parasitoid guild, including the description of a new species
FIGURES 6 – 9. Horismenus spp., gaster dorsal. 6. H. butcheri, female. 7. H. butcheri, male. 8. H. depressus, female. 9. H. depressus, male.
FIGURES 2 – 5. Horismenus butcheri. 2. Head frontal, female. 3. Head frontal, male. 4. Thoracic dorsum, female. 5 in Horismenus species (Hymenoptera: Eulophidae) in a bruchid beetle parasitoid guild, including the description of a new species
FIGURES 2 – 5. Horismenus butcheri. 2. Head frontal, female. 3. Head frontal, male. 4. Thoracic dorsum, female. 5. Thoracic dorsum, male.
Supplementary material 1: Accumulation Curve Data from: DNA Barcoding of the parasitoid wasp subfamily Doryctinae (Hymenoptera: Braconidae) from Chamela, Mexico - Biodiversity Data Journal 3: e5109 (18 May 2015) https://doi.org/10.3897/BDJ.3.e5109
Table containing the Process ID of specimens sampled and Barcode Index Number (BIN) used for the species accumulation curve.
Figure 3. from: DNA Barcoding of the parasitoid wasp subfamily Doryctinae (Hymenoptera: Braconidae) from Chamela, Mexico - Biodiversity Data Journal 3: e5109 (18 May 2015) https://doi.org/10.3897/BDJ.3.e5109
Figure 3. - DNA barcoding species accumulation curve for the Doryctinae from the CBS (Suppl. material 1).
Figure 1. from: DNA Barcoding of the parasitoid wasp subfamily Doryctinae (Hymenoptera: Braconidae) from Chamela, Mexico - Biodiversity Data Journal 3: e5109 (18 May 2015) https://doi.org/10.3897/BDJ.3.e5109
Figure 1. - Study area. The Chamela Biological Station (IB-UNAM), located within the Chamela-Cuixmala Biosphere Reserve in the estate of Jalisco, Mexico.
Figure 2. from: DNA Barcoding of the parasitoid wasp subfamily Doryctinae (Hymenoptera: Braconidae) from Chamela, Mexico - Biodiversity Data Journal 3: e5109 (18 May 2015) https://doi.org/10.3897/BDJ.3.e5109
Figure 2. - Neighbour-joining tree obtained from BOLD that includes 883 nucleotide sequences belonging to doryctine specimens. The distance model used was the Kimura 2 Parameter, the marker was COI-5P, and the 1st, 2nd and 3rd codon positions were included. The sequences had a lengrh greater than 200bp. See Suppl. material 1.
Data from: Exploring hymenopteran parasitoid communities and their hosts: A comparative study of farmland and semi-natural ecotones with focus on pentatomoid bugs and their antagonists
<p>Here, we provide abundance data, the respective R-script and R-readable data files from a small-scale study on hymenopteran parasitoid communities and their hosts, with special focus on pentatomoid bugs and their egg parasitoids. This comparative study was conducted in farmland and semi-natural ecotones from June to September 2020 in South Tyrol, Italy. The fauna was sampled during four sampling events with sweep netting, beat netting, yellow pan traps, Malaise traps and visual inspections. Arthropods were identified to order level, hymenopteran parasitoids to family level, pentatomoid bugs to species level and egg parasitoids of pentatomoids as far as possible to species level. If identification was not possible, pentatomoid parasitoids were left at genus level. The abundance data collected with each survey method were pooled per survey events and survey site.</p>
Figures 6–7. Aptostichus spp. 6 in Chalcochares hirsutifemur (Banks) (Hymenoptera: Pompilidae: Pompilinae), a probable obligate parasitoid of Aptostichus Simon (Araneae: Mygalomorphae: Euctenizidae) in California
Figures 6–7. Aptostichus spp. 6) Aptostichus atomarius female on sand. Sandy Coastal back dunes, Vandenberg Air Force Base, Santa Barbara County, CA; 3 June 2014; A. Abela (Abela 2014a) Photograph © Alice Abela. 7) Aptostichus simus female on sand. Sandy Coastal back dunes, Vandenberg Air Force Base, Santa Barbara County, CA; 11 June 2014; A. Abela (Abela 2014b). Photograph © Alice Abela.
Figures 3–4 in Chalcochares hirsutifemur (Banks) (Hymenoptera: Pompilidae: Pompilinae), a probable obligate parasitoid of Aptostichus Simon (Araneae: Mygalomorphae: Euctenizidae) in California
Figures 3–4. Chalcochares hirsutifemur female taking nectar from flowers of Eriogonum parvifolium (Seacliff buckwheat), Sandy coastal back dunes, Vandenberg Air Force Base, Santa Barbara County, CA; 13 August 2021; A. Abela (Abela 2021d, 2021e). 3) Note hairy head, thorax, and basal metasoma; and spinous legs, especially foretibia and foretarsus. Photograph © Alice Abela. 4) Note short antenna segments; hairy head, thorax, and femora; wide vertex with rather small eyes situated on side of head; swollen occiput behind compound eyes; enlarged and flattened pronotum with straight sides; and spinous legs, especially foretibia and foretarsus. Photograph © Alice Abela.
Figure 2 in Chalcochares hirsutifemur (Banks) (Hymenoptera: Pompilidae: Pompilinae), a probable obligate parasitoid of Aptostichus Simon (Araneae: Mygalomorphae: Euctenizidae) in California
Figure 2. Chalcochares hirsutifemur (Banks), female; Anza, Riverside County California; 24 June 195? L. A. Stange collector (det R. Snelling 1963). A. Whole body, dorsal view. B. Head, anterior view. C. Head and anterior part of mesosoma, dorsal view. D. Head, anterior part of mesosoma, and fore legs, lateral view (arrow, apicomesial spine on fore tibia). Scale bars: 5 mm (A); 1 mm (B–D).
Figure 1 in Chalcochares hirsutifemur (Banks) (Hymenoptera: Pompilidae: Pompilinae), a probable obligate parasitoid of Aptostichus Simon (Araneae: Mygalomorphae: Euctenizidae) in California
Figure 1. Chalcochares engleharti (Banks), female; Camp Bullis, Bexar County, Texas; 29 May 1952; K. Stockley collector (det. M. Wasbauer 1956). A. Head, mesosoma, and anterior part of metasoma, dorsal view. B. Head, anterior view. C. Head, dorsal view. D. Head, anterior part of mesosoma, and fore legs, lateral view (arrow, apicomesial spine on fore tibia). Scale bars: 5 mm (A); 1 mm (B–D).
Figure 8 in Chalcochares hirsutifemur (Banks) (Hymenoptera: Pompilidae: Pompilinae), a probable obligate parasitoid of Aptostichus Simon (Araneae: Mygalomorphae: Euctenizidae) in California
Figure 8. Overhead coastal map of San Luis Obispo and Santa Barbara counties showing research site locations of Chalcochares hirsutifemur, Aporus hirsutus, Aporus luxus, Aptostichus atomarius, and Aptostichus simus. Rectangular inset on California map in upper right corner indicates area of study.
Data from: The interactive effects of heat stress, parasitism, and hostplant quality in a host-parasitoid system
<p>Species interactions are expected to change in myriad ways as the frequency and magnitude of extreme temperature events increase with anthropogenic climate change. The relationships between endosymbionts, parasites, and their hosts are particularly sensitive to thermal stress, which can have cascading effects to other trophic levels. We investigate the interactive effects of heat stress and parasitism on a terrestrial tritrophic system consisting of two hostplants (one common, high-quality plant and one novel, low-quality plant), a caterpillar herbivore, and a specialist parasitoid wasp. We used a fully-factorial experiment to determine the bottom-up effects of the novel hostplant on both the caterpillars' life history traits and the wasps' survival, and the top-down effects of parasitism and heat shock on caterpillar developmental outcomes and herbivory levels. Hostplant identity interacted with thermal stress to affect wasp success, with wasps performing better on the low-quality hostplant under constant temperatures but worse under heat shock conditions. Surprisingly, caterpillars consumed less leaf material of the low-quality hostplant to reach the same final mass across developmental outcomes. In parasitized caterpillars, heat shock reduced parasitoid survival and increased both caterpillar final mass and development time on both hostplants. These findings highlight the importance of studying community-level responses to climate change from a holistic and integrative perspective and provide insight into potential substantial interactions between thermal stress and diet quality in plant-insect systems.</p>
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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.