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Рис. 1. КоΛичество макрокониΑий грибов роΑа Fusarium (% от общего чисΛа эΛементов морфоΛогии) на органах и в физиоΛогических жиΑкостях картофеΛьной коровки Fig. 1. Number of macroconidia of fungus species from the genus Fusarium (% of the total number of morphological elements) on organs and in physiological fluids of the potato ladybird beetle in On the vector characteristics of the potato ladybird beetle Henosepilachna Vigintioctomaculata (Motsch.) (Coleoptera, Coccinellidae) in the system "phytophagous insect - plant pathogen - plant"
Рис. 1. КоΛичество макрокониΑий грибов роΑа Fusarium (% от общего чисΛа эΛементов морфоΛогии) на органах и в физиоΛогических жиΑкостях картофеΛьной коровки Fig. 1. Number of macroconidia of fungus species from the genus Fusarium (% of the total number of morphological elements) on organs and in physiological fluids of the potato ladybird beetle
Data from: Rhizosphere bacterial community composition depends on plant species identity and soil legacy effects
<p>This record contains supplementary information for the article "Rhizosphere bacterial community composition depends on plant diversity legacy in soil and plant species identity".</p> <p><strong>Supplemental Table S1.</strong> The table contains the annotation for all the samples sequenced and analyzed.</p> <p><strong>Supplemental Table S2. </strong>The table contains all primer sequences used in the study.</p> <p><strong>Supplemental Table S3.</strong> The zip-file contains a table with the taxonomic annotation of the operational taxonomic units (OTUs) identified in the study.</p> <p><strong>Supplemental Table S4. </strong> The zip-file contains a table with sequence counts of the operational taxonomic units (OTUs) identified in the study.</p> <p><strong>Supplemental Table S5. </strong>The workbook contains a sheet with the number of operational taxonomic units (OTUs) exhibiting differential abundance in any of the contrasts tested in this study. Note that “down/up” indicates whether the OTU was less (“down”) or more (“up”) abundant in the first group of the contrast. For example, given the contrast “PH_mix_vs_mon_”, “down” corresponds to higher abundance in the pots from the monoculture plant history. Conversely, “up” refers to higher abundance in the pots from the mixed culture plant history. In addition, the workbook contains one sheet per contrast with the logBaseMean (log2 of the average normalized abundance across all samples), the logFC (log2 of the fold-change), the <em>P</em>-value, and the adjusted <em>P</em>-value (FDR). Only OTUs with a <em>P</em>-value <= 0.05 or an adjusted <em>P</em>-value (FDR) <= 0.1 are given.</p> <p><strong>Supplemental Table S6. </strong>The table contains the number of bacterial OTUs annotated with a given bacterial phylum.</p> <p><strong>Supplemental Table S7. </strong>The table contains all phyla tested for enrichment/depletion in the set of OTUs with an increased abundance in monoculture and mixed culture soils respectively. “Total counts (all OTUs)” corresponds to the total number of all OTUs annotated with a given phyla (reference set). “Observed” corresponds to the number of OTUs annotated with a given phyla in the set OTUs with increased abundance in monoculture/mixed culture soils (test set). "Expected" gives the number of OTUs which would be expected to be annotated with a given phyla if the test set were randomly sampled from the reference set.</p> <p><strong>Supplemental File S1.</strong> The zip-file contains a fasta file with the 10'205 OTU sequences identified in the study.</p> <p> </p> <p> </p>
JoseBSL/Geonet: Climate mediates pollinator species roles in plant-pollinator networks
<p>Code and data from the article "Climate mediates pollinator species roles in plant-pollinator networks".</p>
Figure 6 Asphondylia peploniae Maia, 2001 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 6 Asphondylia peploniae Maia, 2001: a) Larva, Prothoracic spatula, ventral view, b) Pupa, head, ventral view.
Figure 5 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 5 Asphondylia hancorniae, sp. n.: a) Larva, general aspect, ventral view, b) Prothoracic spatula, ventral view, c) Terminal segment, dorsal view, d) Gall, general aspect, e) Dehiscent gall, f) Gall, longitudinal section.
Figure 4 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 4 Asphondylia hancorniae, sp. n., pupa: a) General aspect, ventral view, b) Head, ventral view, c) Thoracic integument, lateral view, d) Prothoracic spiracle, e) 5th-8th abdominal segments, dorsal view.
Figure 3 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 3 Asphondylia hancorniae, sp. n., female: a) Pedicel, 1st and 2nd flagellomeres, b) 8th -12th flagellomeres, c) 5th flagellomere, d) Foreleg, tarsal claw and empodium, lateral view, e) Abdomen, lateral view.
Figure 2 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 2 Asphondylia hancorniae, sp. n., male: a) 3th abdominal segments to terminalia, lateral view,b) 4th abdominal segments to terminalia, ventral view,c) Terminalia,dorsal view.
Figure 1 in A new species of Asphondylia Loew, 1850 (Diptera, Cecidomyiidae) on Hancornia speciosa (Apocynaceae), a native plant to Brazil
Figure 1 Asphondylia hancorniae, sp. n., male: a) Head, frontal view, b) 9th-12th flagellomeres, c) 5rd flagellomere, d) Wing, e) Foreleg, first tarsomere, lateral view, f) Foreleg, tarsal claw and empodium, lateral view).
Figure 7 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 7. Cerciplanus maricaensis sp. n.: a) Galled leaf of Ouratea cuspidata (A.St.- Hil.) Engl. (Ochnaceae), general aspect; b) Galls on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), longitudinal section.
Figure 1 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 1. Cerciplanus maricaensis sp. n.: a) Female head, frontal view; b) Male scape, pedicel and 1st–4th flagellomeres; c) Male 5th flagellomere; d) Female 5th flagellomere; d) Male 12th flagellomere.
Figure 5 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 5. Cerciplanus maricaensis sp. n., pupal exuviae: a) Head and prothoracic spiracle, ventral view; b) Apical plate, dorsal view (apical seta broken); c) Last abdominal segments, dorsal view.
Figure 7 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 7 Zalepidota distincta new species, pupa: a) head, ventral view; b) antennal horns; c) upper frontal horns; d) lower frontal horn.
Figure 3 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 3 Zalepidota distincta new species, male: a) foreleg, 1st tarsomere; b) foreleg, tarsal claw and empodium, lateral view; c) abdomen, lateral view.
Figure 2 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 2 Zalepidota distincta new species, male: a) 12th flagellomere; b) 10th–12th flagellomeres; c) frontal setae, ventral view; d) palpus, ventral view; e) wing.
Figure 6 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 6 Zalepidota distincta new species, female: a) abdomen, lateral view; b) last abdominal segments, ventrolateral view; c) abdominal 7th segment to ovipositor,ventrolateral view.
Figure 5 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 5 Zalepidota distincta new species, female: a) 10th -12th flagellomeres; b) 3rd flagellomere: c) palpus; d) foreleg, tarsal claw and empodium, lateral view.
Figure 8 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 8 Zalepidota distincta new species, pupa: a) prothoracic spiracle; b) abdominal spiracle; c) abdominal spines, dorsal view.
Figs. 2–5 in New record of Machaeriobia machaerii (Kieffer, 1913) (Diptera, Cecidomyiidae) in Brazil and association with host-plant species
Figs. 2–5. Diagnostic characters of Machaeriobia machaerii in the specimens from Ribeirão Preto, São Paulo State. 2. Simple tarsal claws, 3. One-segmented palpus, 4. Bulbous ovipositor of female pupa, 5. Larval thoracic spatula.
Figs. 11–13 in Lopesia leandrae (Diptera, Cecidomyiidae), a new species of gall midge associated with Leandra ionopogon (Mart.) Cogn. (Melastomataceae), a native plant to Brazil
Figs. 11–13. Lopesia leandrae, sp. n., female. 11. Fifth flagellomere. 12. 6th–8th abdominal segments (lateral view). 13. Cerci (ventral view). Scale bars in mm.
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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.