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995 results for “Life cycle”
Transcript Profiling of Arabidopsis Plant Life Cycle
GEO Series GSE680. Arabidopsis thaliana. 30 samples. Type: Expression profiling by array.
Life cycle of Drosophila melanogaster
GEO Series GSE94. Drosophila melanogaster. 159 samples. Type: Expression profiling by array.
Transcriptome of the demosponge Amphimedon queenslandica at life cycle transitions
GEO Series GSE29978. Amphimedon queenslandica. 11 samples. Type: Expression profiling by high throughput sequencing.
Viral and Cellular N6-methyladenosine (m6A) Epitranscriptomes in KSHV Life Cycle
GEO Series GSE93676. Homo sapiens; Rattus norvegicus. 72 samples. Type: Expression profiling by high throughput sequencing; Other.
Time-resolved profiling of RNA binding proteins throughout the mRNA life cycle
GEO Series GSE256124. Homo sapiens. 8 samples. Type: Expression profiling by high throughput sequencing.
FIGURES 8–16 in Description of the sexual generation of Dryocosmus destefanii (Hymenoptera: Cynipidae: Cynipini) and disclosure of its life cycle
FIGURES 8–16. Dryocosmus destefanii, sexual generation: 8, head, female (front view); 9, head, female (posterior view); 10, head, female (lateral view); 11, first antennal segments, male, the arrow shows the first flagellomere, excavated in basal half; 12, antenna, female; 13, mesosoma, female (dorsal view); 14, head, female (dorsal view); 15, mesosoma, female (lateral view); 16, mesosoma, female (latero-ventral view).
FIGURES 36–43. 36–37 in Description of the sexual generation of Dryocosmus destefanii (Hymenoptera: Cynipidae: Cynipini) and disclosure of its life cycle
FIGURES 36–43. 36–37, Dryocosmus destefanii asexual female: 36, mesoscutellum (dorsal view), 37, antenna; 38, D. tavakolii, mesoscutellum, dorsal view; 39–40, D. caspiensis, asexual female: 39, antenna, 40, mesosoma, dorsal view; 41, D. cerriphilus, asexual female, head, anterior view; 42, D. jungalii, female, head, anterior view; 43, D. kuriphilus, mesoscutellum, dorsal view.
FIGURES 1–7. 1–5 in Description of the sexual generation of Dryocosmus destefanii (Hymenoptera: Cynipidae: Cynipini) and disclosure of its life cycle
FIGURES 1–7. 1–5, Dryocosmus destefanii sexual generation: 1, habitus, female (lateral view); 2, general appearance of gall; 3, habitus, male (lateral view); 4, dissected gall, showing the larval chamber; 5, magnification of the mature gall; 6–7, D. destefanii asexual generation galls.
FIGURES 27–35. 27 in Description of the sexual generation of Dryocosmus destefanii (Hymenoptera: Cynipidae: Cynipini) and disclosure of its life cycle
FIGURES 27–35. 27, Dryocosmus mayri sexual generation, head, male (front view); 28–35, D. destefanii, sexual generation: 28, head, male (front view); 29, hindwing, male, the arrows show the infuscation on the anterior margin; 30, head, male (dorsal view); 31, metasoma, male (lateral view); 32, foreleg, female, the arrow shows the magnification of simple tarsal claws; 33, metasoma, male (ventral view); 34, mid tarsus and mid tibial spur, female; 35, hind tarsus and hind tibial spur, female.
FIGURES 17–26 in Description of the sexual generation of Dryocosmus destefanii (Hymenoptera: Cynipidae: Cynipini) and disclosure of its life cycle
FIGURES 17–26. Dryocosmus destefanii, sexual generation, female: 17, pronotum, (anterodorsal view); 18, mesosoma (lateroventral view); 19, posterodorsal view of mesosoma; 20, mesosoma (ventral view); 21, metascutellum and propodeum, posterodorsal view; 22, forewing; 23, metasoma (lateral view); 24, hindwing, the arrows show the infuscation on the anterior margin; 25, ventral spine of hypopygium (lateral view); 26, ventral spine of hypopygium, ventral view.
F in Biology and life cycle of Scopelocheirus hopei (A. Costa, 1851), a scavenging amphipod from the continental slope of the Mediterranean
F. 13. Mean number of eggs per female, depending on the size-class. N, Mean egg number; L, mean length of the size class, in mm; Cl, class number.
F in Biology and life cycle of Scopelocheirus hopei (A. Costa, 1851), a scavenging amphipod from the continental slope of the Mediterranean
F. 3. The lengths measured: H, head; P, pereion+pleon; C, carina. The length L of the animal is L=H+P+C.
Figure 4 in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 4. Bayesian majority-rule consensus tree of the ITS2 single-gene alignment. Bayesian inference (BI) posterior probabilities and maximum likelihood (ML) bootstrap support shown at nodes. An asterisk indicates different topology recovered in ML analysis. The scale-bar indicates the number of substitutions per site.
Figure 10. Gorgocephalus yaaji. A in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 10. Gorgocephalus yaaji. A, adult voucher ex Kyphosus cinerascens, Sodwana Bay, KwaZulu-Natal, South Africa; ventral perspective. B, genital atrium, cirrus-sac and ovarian complex of adult voucher ex Kyphosus vaigiensis, Sodwana Bay; ventral perspective. C, genital atrium, cirrus-sac and ovarian complex of adult voucher ex Kyphosus cinerascens, Rangiroa, Tuamotu Islands, French Polynesia; ventral perspective. D, redia ex Echinolittorina cinerea, Rangiroa; lateral perspective. E, excised cercaria ex Echinolittorina cinerea, Rangiroa; ventral perspective. F, adult voucher ex Kyphosus cinerascens, Rangiroa; ventral perspective. Scale bars: A, F, 500 µm; B, C, D, E, 250 µm.
Figure 1 in Gorgocephalidae (Digenea: Lepocreadioidea) in the Indo-West Pacific: new species, life-cycle data and perspectives on species delineation over geographic range
Figure 1. Map of Indo-West Pacific collection localities where specimens of the digenean family Gorgocephalidae were obtained for the present study. Adult specimens were obtained at all localities except for Kioloa, NSW, Australia. At this locality, intramolluscan specimens had been obtained from littorinid gastropods for the study of Huston et al. (2016); genomic DNA from this previous study was used for the generation of additional COI mtDNA gene sequences in the present work.
FIGURE 1. A in An unknown world in the Neotropical region: a complete life cycle of a new species of Monoclona Mik, 1886 (Diptera: Mycetophilidae: Sciophilinae)
FIGURE 1. A. Map of the Brazilian biomes. B. Region of the municipality of Carambeí where the immatures were found.
FIGURE. Puccinia magnusiana on Clematis sp. (A), Ranunculus chinensis (B–F) and Phragmites australis (G–K). A. Plants producing spermogonia and aecia on the hypertrophic stem. B. Vertical section of a spermogonium. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Acium observed under SEM. F. Aeciospores with verrucose surface observed under SEM. G. Aeciospores. H, I. Telia on the leaf surface. J. Teliospores. K. Vertical section of telia. Scale bars: B, K = 30 μm, C = 50 μm, E = 100 μm, F = 3 μm, G = 10 μm, J = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia magnusiana on Clematis sp. (A), Ranunculus chinensis (B–F) and Phragmites australis (G–K). A. Plants producing spermogonia and aecia on the hypertrophic stem. B. Vertical section of a spermogonium. C. Vertical section of an aecium surrounded with peridia. D. Aecia on the lower leaf surface. E. Acium observed under SEM. F. Aeciospores with verrucose surface observed under SEM. G. Aeciospores. H, I. Telia on the leaf surface. J. Teliospores. K. Vertical section of telia. Scale bars: B, K = 30 μm, C = 50 μm, E = 100 μm, F = 3 μm, G = 10 μm, J = 20 μm.
FIGURE. Puccinia oncospora on Trillium kamtschaticum (A–D) and Phalaris arundinacea (E–G). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aeciospores. E. Telia on the leaf surface. F. Teliospores. G. Vertical section of telia. Scale bars: C, D, F, G = 30 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia oncospora on Trillium kamtschaticum (A–D) and Phalaris arundinacea (E–G). A. Plants producing spermogonia and aecia on the leaf surface. B. Spermogonia and aecia on the lower leaf surface. C. Vertical section of a spermogonium. D. Aeciospores. E. Telia on the leaf surface. F. Teliospores. G. Vertical section of telia. Scale bars: C, D, F, G = 30 μm.
FIGURE. Puccinia caulophylli on Caulophyllum robustum (A–G) and Milium effusum (H–N). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecia surrounded with peridia. D, E. Aecia on the leaf surface observed by SEM. F. Aeciospores with verrucose surface observed by SEM. G. Aeciospores. H. Telia on the lower leaf surface. I. Uredinia on the leaf surface observed by SEM. J. Uredinia and telia on the leaf surface. K. Vertical section of an uredinium with paraphyses. L. Urediniospore observed by SEM. M. Vertical section of telia covered by host epidermis. N. Vertical section of a telium covered by host epidermis observed by SEM. Scale bars: B, G, N = 30 μm, C, E, I = 100 μm, F, L = 10 μm, K, M = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia caulophylli on Caulophyllum robustum (A–G) and Milium effusum (H–N). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecia surrounded with peridia. D, E. Aecia on the leaf surface observed by SEM. F. Aeciospores with verrucose surface observed by SEM. G. Aeciospores. H. Telia on the lower leaf surface. I. Uredinia on the leaf surface observed by SEM. J. Uredinia and telia on the leaf surface. K. Vertical section of an uredinium with paraphyses. L. Urediniospore observed by SEM. M. Vertical section of telia covered by host epidermis. N. Vertical section of a telium covered by host epidermis observed by SEM. Scale bars: B, G, N = 30 μm, C, E, I = 100 μm, F, L = 10 μm, K, M = 20 μm.
FIGURE. Puccinia epigejos on Calamagrostis epigeios A, B. Telia on the leaf surface. C. Vertical section of an uredinium with abundant paraphyses. D. Vertical section of a telium with paraphyses. E. Vertical section of a telium. Scale bars: C = 20 μm, D, E = 30 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia epigejos on Calamagrostis epigeios A, B. Telia on the leaf surface. C. Vertical section of an uredinium with abundant paraphyses. D. Vertical section of a telium with paraphyses. E. Vertical section of a telium. Scale bars: C = 20 μm, D, E = 30 μm.
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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.