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639 results for “4 to 8”
Multi-omic analysis of the Arabidopsis clock activator mutant rve 4 6 8 reveals connections to carbohydrate metabolism and proteasome regulation
<p>Plants are able to sense changes in their light environments, such as the onset of day and night, as well as anticipate these changes in order to adapt and survive. Central to this ability is the plant circadian clock, a molecular circuit that precisely orchestrates plant cell processes over the course of a day. REVEILLE proteins (RVEs) are recently discovered members of the plant circadian circuitry that activate the evening complex and PRR genes to maintain regular circadian oscillation. The RVE 8 protein and its two homologs, RVE 4 and 6, have been shown to limit the length of the circadian period, with rve 4 6 8 triple-knockout plants possessing an elongated period along with increased leaf surface area, biomass, cell size and delayed flowering relative to wild-type Col-0 plants. Here, using a multi-omics approach consisting of phenomics, transcriptomics, proteomics, and metabolomics we draw novel connections between RVE8-like proteins and a number of core plant cell processes. In particular, we reveal that loss of RVE8-like proteins results in altered carbohydrate, organic acid and lipid metabolism, including a starch excess phenotype at dawn. We further demonstrate that rve 4 6 8 plants have lower levels of 20S proteasome subunits and possess significantly reduced proteasome activity, potentially explaining the increase in cell-size observed in RVE8-like mutants. Overall, this robust, multi-omic dataset, provides substantial new insights into the far reaching impact RVE8-like proteins have on the diel plant cell environment.<br> <br> This dataset has the raw search outputs for the mass-spec analysis for this manuscript. </p>
Figures 4–8 in New species of Ochodaeus Dejean from Madagascar II (Coleoptera: Scarabaeoidea: Ochodaeidae)
Figures 4–8. Key characters of Madagascar Ochodaeus species. 4) Head of O. meridialis Paulsen, n. sp., showing central tubercle of clypeus. 5) Head of O. umbonulus Paulsen, n. sp., showing tubercle anterior to straight frontoclypeal suture. 6) Head of O. iniquipes Paulsen, n. sp., showing minute horn on posteriorly curved frontoclypeal suture. 7) Head of O. isoanalensis Paulian showing broadly thickened clypeal margin. 8) Head of O. miliaris (Klug), showing narrowly thickened clypeal margin.
Figures 1–8. Amphicnaeia spp. 1–4 in Synonymies, a new combination, and four new species in Amphicnaeia Bates (Coleoptera: Cerambycidae: Lamiinae)
Figures 1–8. Amphicnaeia spp. 1–4) Amphicnaeia panamensis, holotype male. 1) Dorsal habitus. 2) Ventral habitus. 3) Lateral habitus. 4) Head, frontal view. 5–8) Amphicnaeia bezarki, holotype male. 5) Lateral habitus. 6) Head, frontal view. 7) Dorsal habitus. 8) Ventral habitus.
Figures 4–8 in Observations on the natural history of Romulus globosus Knull (Coleoptera: Cerambycidae)
Figures 4–8. Habitat of R. globosus with stems containing mature larvae. 4) Typical habitat where mature R. globosus larvae were found. Some stems of Q. geminata were dead. 5) Dead, leafless stem of Q. geminata that contained mature larva of R. globosus in its root. 6) Different stem of Q. geminata pulled from the ground containing a pupa of R. globosus in the root just below the root crown. 7) Zoom-in on the pupa from Fig. 6. 8) Root with an old emergence hole indicated by white arrow. The white dotted lines in Fig. 6 and 8 indicate ground level to show that the pupal cell and the emergence hole were underground.
Figures 1–8. Eupogonius fulvovestitus. 1–4 in Nomenclatural notes on some currently known species of Eupogonius LeConte, 1852 (Coleoptera: Cerambycidae: Lamiinae) and description of seven new species
Figures 1–8. Eupogonius fulvovestitus. 1–4) Male. 1) Dorsal habitus. 2) Ventral habitus. 3) Lateral habitus. 4) Head, frontal view. 5–8) Female. 5) Dorsal habitus. 6) Ventral habitus. 7) Lateral habitus. 8) Head, frontal view.
Figs 1–8. – 1–4 in Four new species of Nyctonympha Thomson, 1868 (Coleoptera, Cerambycidae, Lamiinae)
Figs 1–8. – 1–4. Nyctonympha sinjaevi sp. nov., holotype, ♀. 1. Dorsal habitus. 2. Ventral habitus. 3. Lateral habitus. 4. Head, frontal view. – 5–8. Nyctonympha antonkozlovi sp. nov., holotype, ♂. 5. Head, frontal view. 6. Dorsal habitus. 7. Ventral habitus. 8. Lateral habitus.
Figs 3–8. Live specimens and habitats. 3. Artema atlanta Walckenaer, 1837 from Thailand, Ratchaburi. 4–5. A in Daddy-long-leg giants: revision of the spider genus Artema Walckenaer, 1837 (Araneae, Pholcidae)
Figs 3–8. Live specimens and habitats. 3. Artema atlanta Walckenaer, 1837 from Thailand, Ratchaburi. 4–5. A. nephilit sp. nov. from Israel. 6. Typical Artema web mass, in a cave in Petra, Jordan. 7–8. Caves populated by Artema nephilit sp. nov.: Oren Cave, Mount Karmel (7) and caves in the Eilat Mountains (8), Israel. Photos: BAH (3–4, 6–8), SA (5).
Figs 4–8 in Mumetopia interfeles sp. nov., a new species of Anthomyzidae (Diptera) occurring en masse in an urban grassy habitat in Chile: its taxonomy, phylogeny and biology
Figs 4–8. Mumetopia interfeles Roháček sp. nov., male paratypes (SMOC MIT004–MIT007). 4. Postabdomen with fifth abdominal segment, dorsal view. 5. Same, ventral view. 6. External genitalia, caudal view. 7. Postabdomen with fifth abdominal segment, lateral view. 8. Genitalia, lateral view. Scale bars: 4–5, 7 = 0.2 mm; 6, 8 = 0.1 mm. For abbreviations see Material and methods.
Figs 1–8. Barsine spp., adults. 1–4 – B in A review of the Barsine perpallida-B. yuennanensis species-group, with descriptions of six new species (Lepidoptera: Erebidae: Arctiinae)
Figs 1–8. Barsine spp., adults. 1–4 – B. biformis sp. nov.: 1 – holotype ♂, Thailand (MWM/ZSM); 2 – paratype ♀, Thailand (MWM/ZSM); 3 – paratype ♂, Thailand (CKC); 4 – paratype ♂, Thailand (CKC). 5–8 – B. perpallida (Hampson, 1900): 5 – syntype ♂, India (©NHMUK); 6 – syntype ♀ of Diacrisia porthesioides Rothschild, 1910, India (©NHMUK); 7 – ♂, Nepal (ZSM); 8 – syntype ♀, India (©NHMUK).
Figure 8. from: Studies in Hawaiian Diptera III: New Distributional Records for Canacidae and a New Endemic Species of Procanace - Biodiversity Data Journal 4: e5611 (08 April 2016) https://doi.org/10.3897/BDJ.4.e5611
Figure 8. - Distribution of C. angulatus in the main Hawaiian Islands. This species is also found in the Northwest Hawaiian Islands (Laysan, Lisianski, Midway, Nihoa).
- Sternite 1 without a pair of submedian tubercles, tubercles present on sternites 2–4 only (a); general coloration pale to striking yellow with isolated black markings (b) …………………………………7 7. Apex of subtegular ridge concave, laterally flanged (A) ……………………………………………8 - Apex of subtegular ridge convex, without lateral flange (a) ……………………………………9 in A review of the Afrotropical Rhyssinae (Hymenoptera: Ichneumonidae) with the descriptions of five new species
- Sternite 1 without a pair of submedian tubercles, tubercles present on sternites 2–4 only (a); general coloration pale to striking yellow with isolated black markings (b) …………………………………7 7. Apex of subtegular ridge concave, laterally flanged (A) ……………………………………………8 - Apex of subtegular ridge convex, without lateral flange (a) ……………………………………9
Figs 4–8 in A New Species Of The Genus Coprophilus Latreille, 1829 (Coleoptera: Staphylinidae: Oxytelinae) From Central China
Figs 4–8. Holotypes of Coprophilus. 4, 5 – C. qinlingensis sp. n.: 4 – aedeagus, lateral view; 5 – same, ventral view; 6–8 – C. formosanus: 6 – aedeagus, lateral view; 7, 8 – same, ventral view. (Fig. 8 after Shibata, 1993). Scale bars: 0.5 mm.
FIGURE 8 in ISABELA CARVALHO BRCKO, MARINUS STEVEN HOOGMOED & SELVINO NECKEL- OLIVEIRA (2013) Taxonomy and distribution of the salamander genus Bolitoglossa Duméril, Bibron & Duméril, 1854 (Amphibia, Caudata, Plethodontidae) in Brazilian Amazonia. Zootaxa, 3686 (4), 401-431.
FIGURE 8. Distribution map of Bolitoglossa paraensis and Bolitoglossa tapajonica sp. nov. Type-localities: B. paraensis (Santa Isabel do Pará, black cross), B. tapajonica sp. nov. (Juruti, black triangle). Other localities: B. paraensis (open crosses: 1 Primavera, 2 Bragança, 3 Ilha de Mosqueiro, 4 Santa Bárbara do Pará, 5 Benevides, 6 Belém, 7 Ourém, 8 Barcarena, 9 Mojú, 10 Tailândia); B. tapajonica sp. nov. (open triangles: 11 Juruti localities, 12 Vitória do Xingú, 13 Itaituba localities. Specimen from Serra do Tumucumaque, Amapá indicated with asterisk. Specimens from Canindé, Pará indicated with circle with cross inside.
Fig. 4 in The Os Navicular of Humans, Great Apes, OH 8, Hadar, and Oreopithecus: Function, Phylogeny, and Multivariate Analyses
Fig. 4. Mesocuneiform facet crosssectional area (mm2) vs. total navicular facet crosssectional area
Figures 4–8. Pindamoraria boraceiae, male holotype. Fig. 4 in Pindamoraria boraceiae, a new genus and species of freshwater Canthocamptidae (Copepoda, Harpacticoida) from Brazil
Figures 4–8. Pindamoraria boraceiae, male holotype. Fig. 4. Anal somite and caudal ramus, lateral view. Fig. 5. Anal somite and caudal ramus, dorsal view. Fig. 6. Anal somite and caudal ramus, ventral view. Fig. 7. Antennule, ventral view (flattened in permanent mount). Fig. 8. Antennule, anteroventral view (supported mount). Scales as indicated in figure.
Figs. 1–8. Oonops pulcher Templeton, male. 1. Habitus, dorsal view. 2. Same, lateral view. 3. Carapace, dorsal view. 4. Same, lateral view. 5. Carapace platelets, lateral view. 6. Carapace, anterior view. 7 in The Goblin Spider Genus Heteroonops (Araneae, Oonopidae), With Notes on Oonops
Figs. 1–8. Oonops pulcher Templeton, male. 1. Habitus, dorsal view. 2. Same, lateral view. 3. Carapace, dorsal view. 4. Same, lateral view. 5. Carapace platelets, lateral view. 6. Carapace, anterior view. 7. Clypeus, anterior view (arrows point to depressions bearing pores). 8. Clypeal pore, anterior view.
Fig. 1. Seta shape terminologies. 1. Fine. 2–3. Stout and truncated. 4–5. Plank-like. 6–7. Acicular. 8. Narrowly elliptic. 9. Elliptic. 10. Linear. 11 in Further additions to the knowledge of Strumigenys (Formicidae: Myrmicinae) within South East Asia, with the descriptions of 20 new species
Fig. 1. Seta shape terminologies. 1. Fine. 2–3. Stout and truncated. 4–5. Plank-like. 6–7. Acicular. 8. Narrowly elliptic. 9. Elliptic. 10. Linear. 11. Short linear or short subspatulate. 12–13. Subspatulate. 14–15. Spatulate. 16–17. Oblanceolate. 18–19. Small obovate. 20. Large obovate. 21. Suborbicular / orbicular. 22. Orbicular. 23. Remiform. 24. Remiform / narrowly claviform (red arrow). 25–26. Claviform. 27. Shoehorn-shaped. 28. Spoon-shaped.
Figs 1–8. Dichagyris forficula sspp. 1–4 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 1–8. Dichagyris forficula sspp. 1–4 = D. forficula forficula (Eversmann, 1851): 1 = holotype, male, Armenia; 2 = male, Turkey, Prov Agri; 3–4 = females, Turkey, Prov Agri; 5–8 = D.
Figures 1–8, Barynema species. 1, 3, 4 in Review of the Australian endemic odontocerid genus Barynema and status of Australian Marilia (Trichoptera)
Figures 1–8, Barynema species. 1, 3, 4, Barynema costatum Banks holotype male: 1, body and wings, dorsal; 3, 4, genitalia, ventral and lateral, respectively. 2, B. paradoxum sp. nov., New South Wales, Upper Kangaroo Valley, body and wings, dorsal; 5–8, B. costatum, male, Victoria, tributary of Snobs Creek (NMV TRI-27406): 5, mesothorax, dorsal; 6–8, genitalia, ventral, lateral, and dorsal, respectively. Abbreviations: cox. = coxopodite; har. = harpago; ph. = phallus; pre. app. = pre-anal appendages; up. p. = upper penis cover.
Figs 4–8 in A new genus of Cicadellini (Hemiptera: Cicadellidae) from the Oaxacan Cloud Forest, with taxonomic notes on allied red-striped genera
Figs 4–8. Christopherus mictlantecuhtli gen. et sp. nov., holotype, ♂ (INHS), terminalia. 4. Pygofer, lateral view. 5. Subgenital plates and styles, ventral view. 6. Styles, ventral view. 7. Aedeagus and basal atrial process, lateral view. 8. Aedeagus and paraphysis, posterior view.
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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.