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22,710 results for “Plants for planting”
Figs. 6–10 in Lopesia indaiensis (Diptera, Cecidomyiidae), a new species of gall midge feeding on Andira fraxinifolia Benth (Fabaceae), an endemic plant in Brazil
Figs. 6–10. Lopesia indaiensis, sp. n. 6. Male head (frontal view). 7. Male flagellomere 5. 8. Male hindleg, tarsal claw and empodium. 9. Male abdominal segments 7–8 (lateral view). 10. Male terminalia (dorsal view). Scale bars in mm.
Figs. 4–5 in Lopesia indaiensis (Diptera, Cecidomyiidae), a new species of gall midge feeding on Andira fraxinifolia Benth (Fabaceae), an endemic plant in Brazil
Figs. 4–5. Lopesia indaiensis, sp. n. 4. Pupa, face (ventral view). 5. Pupa, anterior part (dorsal view). Scale bars in mm.
Figs. 2–3 in Lopesia indaiensis (Diptera, Cecidomyiidae), a new species of gall midge feeding on Andira fraxinifolia Benth (Fabaceae), an endemic plant in Brazil
Figs. 2–3. Lopesia indaiensis, sp. n. 2. Larva, sternal spatula with adjacent papillae (ventral view). 3. Larva, terminal segments (dorsal view).
Figs. 1–2 in First high-altitude record of Bucculatrix mirnae Vargas and Moreira (Lepidoptera, Bucculatricidae) on a newly documented host plant: the importance of host plant distribution for conservation on the western slopes of the Andes mountains of northern Chile
Figs. 1–2. The habitats of Bucculatrix mirnae in the arid northern Chile. (1) The lowland Azapa Valley (type locality) located in the coastal Atacama Desert close sea level. (2) The highland neighborhood of Putre village at about 3500 m elevation on the western slopes of the Andes.
Figures 6–7 in First records, phenology, habitat, and host-plant associations of Macrotera opuntiae (Cockerell) (Hymenoptera: Andrenidae) in Montana
Figures 6–7. Habitat in the Pryor Mountains near which Macrotera (Cockerellula) opuntiae (Cockerell) were collected. 6. View of sandstone ridges with "turtle backs" (i.e., polygonal joints from stress cracks). 7. Another view of sandstone ridges with "turtle backs".
Figure 5 in First records, phenology, habitat, and host-plant associations of Macrotera opuntiae (Cockerell) (Hymenoptera: Andrenidae) in Montana
Figure 5. Known geographic distribution of Macrotera (Cockerellula) opuntiae (Cockerell) in North America. Circles = new records from this study, triangles = literature records (centroids used for El Paso and Jefferson County, CO, literature records: Scot et al., 2011).
Figures 1–4 in First records, phenology, habitat, and host-plant associations of Macrotera opuntiae (Cockerell) (Hymenoptera: Andrenidae) in Montana
Figures 1–4. Photos of Macrotera (Cockerellula) opuntiae (Cockerell); ♀ from the Pryor Mountains and ♂ from Makoshika State Park. 1. Lateral habitus of female. 2. Lateral habitus of male. 3. Face of female. 4. Face of male (figures 1–4: scale bar = 1 mm).
Figure 1 in Habitat structure and host plant specialization drive taxonomic andfunctional composition of Heteroptera in postfire successional habitats
Figure 1. Geographic location of the study area in NE Spain (inner rectangle) and distribution of sampled sites. Squares: burnt, logged, and subsoiled site (site S); Circles: burnt and logged site (site L); Triangles: repeat-burnt site (site R); Stars: unburnt site (site U). The striped area was logged after the 2003 fire and the squared area was subsoiled. Light and dark gray areas represent surfaces affected by one (2003) and two (1970 and 2003) fires, respectively. The green line is the limit of the natural park. The black area is a village.
Figure 3 in The determination some biological parameters of Phenacoccus madeirensis Green (Hemiptera: Pseudococcidae) on vegetable plants
Figure 3. Survival ratio and life table parameters of Phenacoccus madeirensis on Eggplant (Adana Topağı).
Figure 1 in Compatibility of entomopathogenic nematodes with plant extracts and post-exposure virulence test under laboratory condition
Figure 1. Percentage survival of the EPN Species in aqueous and ethanol extracts of A. amatymbica and E. elephantina after 72 h exposure. Different lower-case characters represent significant differences at p <0.05.
Figures 1–6 in Rediscovery of Livilla radiata (Foerster, 1848) after 130 years in Hungary, with notes to the Fabaceae-associated jumping plant lice in Hungary (Insecta: Psylloidea)
Figures 1–6. Photos about Livilla radiata (Foerster, 1848). 1: Body in dorsal view. 2: Head and pronotum in dorsal view. 3: Body in lateral view. 4: Wing colorization. 5: Female terminalia. 6: Male proctiger and paramere.
Figure 2. Host plant. A in Bioecological aspects of Cynea (Cynea) diluta (Herrich-Schäffer, 1869) (Lepidoptera: Hesperiidae: Hesperiinae)
Figure 2. Host plant. A. Tussock of Alpinia purpurata (Vieill.) K. Schum. (Zingiberaceae). B-C. Shelters built by the late instar larvae of Cynea (Cynea) diluta (Herrich-Schäffer, 1869). / Figura 2. Planta huésped. A. Mata de Alpinia purpurata (Vieill.) K. Schum. (Zingiberaceae). B-C. Refugios construidos por las larvas de último estadio de Cynea (Cynea) diluta (Herrich-Schäffer, 1869).
Fig. 47 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 47. Isolectotype of Carex capricornis Meinsh. ex Maxim. var. capitata Maxim. (LE 01012320; KPMNX0001323).
Fig. 46 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 46. Lectotype of Carex capricornis Meinsh. ex Maxim. var. capitata Maxim. (LE 01012319; KPM-NX0001322).
Fig. 37 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 37. Lectotype (LE 01012432) and syntype (LE 01012430) of Eriocaulon alpestre Hook.f. & Thomson ex Körn. var. robustium Maxim. (KPM-NX0001310).
Fig. 36 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 36. Syntype of Polygonatum giganteum A. Dietr var. macranthum Maxim. (LE 01012153; KPMNX0001304).
Fig. 32 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 32. Syntypes of Lycoris sanguinea Maxim. (LE 01012637, LE 01012635, LE 01012636; KPMNX0001294).
Fig. 4 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 4. Syntype of Aspidium craspedosorum Maxim. var. japonicum Maxim. (LE 01009865; KPM-NX0001854).
Fig. 6 in Plant Type Materials from Kanagawa Prefecture (Japan) in the Herbarium of the Komarov Botanical Institute (LE; Russia): Lycophytes, Ferns, Gymnosperms, and Angiosperms (Monocots and some Dicots)
Fig. 6. Lectotype (LE 01011614) and syntype (LE 01011615) of Chamaecyparis breviramea Maxim. (KPMNX0001841).
Fig. 1 in Impact of host plant resistance on emergence, body parameters, and supercooling point of Cylas formicarius elegantulus (Coleoptera: Brentidae)
Fig. 1. Daily (Mean ± SE) sweetpotato weevil emergence 30 d afer oviposition from individual storage roots of sweetpotato cultivars 'Beauregard,' 'Evangeline,' and 'Murasaki.'
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.