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80 results for “Dryocosmus”
Fig. 2.- Monthly D in Dryocosmus kuriphilus Yasumatsu, 1951 (Hymenoptera: Cynipidae) in Galicia (NW Spain): pest dispersion, associated parasitoids and first biological control attempts.
Fig. 2.- Monthly D. kuriphilus phenology (E: egg; L1: first-instar larvae; L2: intermediate instar larvae; L3: terminal-instar larvae; Pp: pre pupae stage; P: pupae stage; A: adult). *: punctual presence; +: sterile eggs. Sweet chestnut fruit phenology is given for orientation (§: fructification and burr development).
Figure S1 in Do Castanea sativa wild provenances influence Dryocosmus kuriphilus Yasumatsu (Hymenoptera: Cynipidae) infestations?
Figure S1. Results of climatic data analysis of the interval June–July (left panel a) and December–February (right panel b) in 2013, 2014, 2015, and 2016. Temperature and relative humidity indicate mean value (dot) and standard error (bars). Rain is the sum of total rainfall in the interval, without confidence interval. The left vertical axis is divided in two sections, the average temperature at bottom, and the relative humidity at the top, respectively. Different letters indicate significant differences between years at p <0.05. Differences between years in temperature and relative humidity were tested with ANOVA and posthoc Tukey HSD test (p <0.05). Difference in rainfall between years were tested with x!-test (p <0.05).
Figure 3 in Do Castanea sativa wild provenances influence Dryocosmus kuriphilus Yasumatsu (Hymenoptera: Cynipidae) infestations?
Figure 3. Infestation by D. kuriphilus on six C. sativa provenances grown in common garden field trial, during the years 2015 (top plots) and 2016 (bottom plots). Panels a) and c) number of gallsper shoot/branch; b) and d) number of cells per gall. Bars represent mean and standard error. Within each plot, different letters indicate significant difference between provenances after Bonferroni posthoc test at p <0.05.
Figure 1 in Do Castanea sativa wild provenances influence Dryocosmus kuriphilus Yasumatsu (Hymenoptera: Cynipidae) infestations?
Figure 1. South Europe map localising the experimental site in Castel Giorgio (Italy) (black dot) where the investigation was conducted. Black stars and codes identify the provenance areas of the chestnuts that were considered in this study.
Fig. 3 in El cinípido del castaño Dryocosmus kuriphilus Yasumatsu, 1951 llega a Galicia (NO de la Península Ibérica).
Fig. 3.- Hembra de Dryocosmus kuriphilus Yasumatsu, 1951.
Code from: Source–sink dynamics explains the coexistence of the invasive pest <em>Dryocosmus kuriphilus</em> and its biological control agent <em>Torymus sinensis</em> across French Eastern Pyrenees
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FIGURE 314–316. Dryocosmus spp. sexual galls. 314 in New species of Nearctic oak gall wasps (Hymenoptera: Cynipidae, Cynipini)
FIGURE 314–316. Dryocosmus spp. sexual galls. 314, Dryocosmus archboldi Melika & Abrahamson, sp. nov., 315, Dryocosmus quercusnotha, 316, Dryocosmus quercuspalustris.
Supplementary material 2 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
Semantic statements of natural language phenotypes composed in Protégé 5.0 (http://protege.stanford.edu/) using the OWL Manchester syntax. : Explanation note: Semantic statements of natural language phenotypes composed in Protégé 5.0 (http://protege.stanford.edu/) using the OWL Manchester syntax.
Supplementary material 1 from: Tang C-T, Mikó I, Nicholls JA, Schwéger S, Yang M-M, Stone GN, Sinclair F, Bozsó M, Melika G, Pénzes Z (2016) New Dryocosmus Giraud species associated with Cyclobalanopsis and non-Quercus host plants from the Eastern Palaearctic (Hymenoptera, Cynipidae, Cynipini). Journal of Hymenoptera Research 53: 77-162. https://doi.org/10.3897/jhr.53.9890
URI table (Seltmann et al. 2013) containing anatomical terms, definitions and uniform resource identifiers of Hymenoptera specific classes in the Hymenoptera Anatomy Ontology (http://hymao.org). : Explanation note: URI table (Seltmann et al. 2013) containing anatomical terms, definitions and uniform resource identifiers of Hymenoptera specific classes in the Hymenoptera Anatomy Ontology (http://hymao.org).
FIGURES 34–37. 34, D in Description of Dryocosmus destefanii new species (Hymenoptera: Cynipidae: Cynipini) from Quercus suber L. in Italy
FIGURES 34–37. 34, D. jungalii, female, head, anterior view; 35, D. kuriphilus, mesoscutellum, dorsal view; 36–37, Mesoscutellum, dorsal view: 36, D. mayri, 37, D. cerriphilus, sexual female.
FIGURES 18–27 in Description of Dryocosmus destefanii new species (Hymenoptera: Cynipidae: Cynipini) from Quercus suber L. in Italy
FIGURES 18–27. Dryocosmus destefanii new species, asexual female: 18, metascutellum and propodeum, posterodorsal view, 19, Magnification of the metascutellum and propodeum (postero-ventral view); 20, pronotum and propleuron, frontal view; 21, forewing; 22, metasoma (lateral view); 23, ventral spine of hypopygium, ventral view; 24, ventral spine of hypopygium, lateral view; 25, fore tarsus and protibial spur; 26, mid tarsus and mid tibial spur; 27, hind tarsus and hind tibial spur.
FIGURES 28–33. 28–29 in Description of Dryocosmus destefanii new species (Hymenoptera: Cynipidae: Cynipini) from Quercus suber L. in Italy
FIGURES 28–33. 28–29, Chilaspis nitida, asexual female: 28, antenna, 29, head, front view; 30–31, Dryocosmus caspiensis, asexual female: 30, antenna, 31, mesosoma, dorsal view; 32, D. tavakolii, mesoscutellum, dorsal view; 33, D. cerriphilus, asexual female, head, anterior view.
FIGURES 10–17 in Description of Dryocosmus destefanii new species (Hymenoptera: Cynipidae: Cynipini) from Quercus suber L. in Italy
FIGURES 10–17. Dryocosmus destefanii new species, asexual female: 10, head (front view); 11, head (posterior view); 12, head (dorsal view); 13, head (lateral view); 14, Magnification of the lower face and malar space; 15, antenna; 16, mesoscutum and mesoscutellum (dorsal view); 17, mesosoma (lateral view).
FIGURES 1–9. 1–4 in Description of Dryocosmus destefanii new species (Hymenoptera: Cynipidae: Cynipini) from Quercus suber L. in Italy
FIGURES 1–9. 1–4, Dryocosmus destefanii new species, galls: 1–3, general appearance; 4, dissected gall, showing thin gall wall; 5–7, Chilaspis nitida, galls: 5–6, general appearance; 7, dissected gall, showing the small larval chamber and the thick gall wall; 8, Dryocosmus caspiensis, galls, arrows show the peduncle; 9, Dryocosmus destefanii new species, habitus, asexual female (lateral view).
FIGURE 20. Phylogenetic relationship among selected Dryocosmus and Chilaspis species based COI sequences resolved using with MrBayes 3.2.6 in Discovery of a new species of Dryocosmus Giraud, 1859 (Hymenoptera: Cynipidae: Cynipini) on Castanopsis tibetana from China
FIGURE 20. Phylogenetic relationship among selected Dryocosmus and Chilaspis species based COI sequences resolved using with MrBayes 3.2.6 (Ronquist et al. 2012). Two independent MCMC runs were run with the following parameters: 10 million gens, nst = 6, rates = gamma, sample frequency = 1/1,000, burn-in = 30%, and otherwise default. The length of the branches is drawn to scale of genetic distance and the number over branches is posterior probability. (Generic name abbreviations: A. = Andricus, Ch. = Chilaspis, D. = Dryocosmus)
FIGURES 12–17. Dryocosmus liui New Species, male. 12 in Discovery of a new species of Dryocosmus Giraud, 1859 (Hymenoptera: Cynipidae: Cynipini) on Castanopsis tibetana from China
FIGURES 12–17. Dryocosmus liui New Species, male. 12. head in anterior view, 13. head in dorsal view, 14. head in posterior view, 15. mesosoma in lateral view, 16. mesosoma in dorsal view, 17. propodeum in dorsal view.
FIGURES 7–11. Dryocosmus liui New Species. 7. male antenna, 8. female antenna, 9. female forewing, 10 in Discovery of a new species of Dryocosmus Giraud, 1859 (Hymenoptera: Cynipidae: Cynipini) on Castanopsis tibetana from China
FIGURES 7–11. Dryocosmus liui New Species. 7. male antenna, 8. female antenna, 9. female forewing, 10. female metasoma in lateral view, 11. male metasoma in lateral view.
FIGURES 18–19 in Discovery of a new species of Dryocosmus Giraud, 1859 (Hymenoptera: Cynipidae: Cynipini) on Castanopsis tibetana from China
FIGURES 18–19. Galls of Dryocosmus liui New Species on Castanopsis tibetana. 18. Gall on branch, 19. gall dissected.
FIGURES 1-6. Dryocosmus liui New Species, female. 1 in Discovery of a new species of Dryocosmus Giraud, 1859 (Hymenoptera: Cynipidae: Cynipini) on Castanopsis tibetana from China
FIGURES 1-6. Dryocosmus liui New Species, female. 1. head in anterior view, 2. head in dorsal view, 3. head in posterior view, 4. mesosoma in lateral view, 5. mesosoma in dorsal view, 6.propodeum in dorsal view.
FIGURES 9–20 in New species of cynipid inquiline, Saphonecrus kuriphilusi (Hymenoptera: Cynipidae: Synergini), from Dryocosmus kuriphilus galls in Greece
FIGURES 9–20. Female: 9–10, Saphonecrus barbotini, head: 9, frontal view, 10, dorsal view. 11–12, S. gallaepomiformis, head: 11, frontal view, 12, dorsal view. 13–14, S. connatus, head: 13, frontal view, 14, dorsal view. 15–16, S. symbioticus, head: 15, frontal view, 16, dorsal view. 17–20, mesosoma, lateral view: 17, S. barbotini, 18, S. gallaepomiformis, 19, S. connatus, 20, S. symbioticus.
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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)
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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.