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773 results for “Orchid”
FIGURE 1 in The orchid bees (Hymenoptera, Apidae, Euglossina) in a forest fragment from western Paraná state, Brazil
FIGURE 1: NMDS graph for the selected assemblages of orchid bees from Atlantic Biomes. Locality codes as listed in Table 1. Stress 0.1731, R2 NMDS1: 0.3555, NMDS 2: 0.3367.
Figure 4 in Endophytic fungi in roots of native orchids of rupestrian grasslands (campos rupestres) in Serra do Cipó, Brazil
Figure 4. Phylogenetic inference of the endophytic fungal genus Serendipita generated by Bayesian analysis of ITS sequences. A posteriori probabilities are indicated on the nodes. Bold codes and respective NCBI access numbers for the isolates obtained from roots of the five native orchids (Cattleya brevipedunculata, Epidendrum saxatile, E. secundum, Grobya cipoensis and Pleurothallis teres) sampled in a rupestrian grasslands of Serra do Cipó, Brazil. Identification and accession number for NCBI and UNITE platform are provided to reference sequences.
Figure 1. A in Habitat description of the rare orchid Didymoplexis verrucosa for more effective conservation
Figure 1. A, Location of the province of KwaZulu-Natal within South Africa; B, northern KwaZulu-Natal showing the very limited extent of remaining forest ecosystems shaded in black with degree grid lines for spatial reference; C, study area shaded in grey south of the coastal town of Mtunzini with quarter degree grid lines for spatial reference.
Fig. 1 in An update on mealybugs and scale insects (Hemiptera) on native epiphytic orchids in South Florida, including a new record for Pseudococcus microcirculus (Pseudococcidae)
Fig. 1. (a) Debris deposited by ants around the base of Prosthechea cochleata where orchid mealybugs were concealed; (b) removal of an orchid leaf sheath on a new shoot reveals a large population of mealybugs on P. cochleata; and (c) 2 orchid mealybugs on the inflorescence of Polystachya concreta.
Figs. 1–4 in Helionothrips errans (Thysanoptera: Thripidae): a new threat to native orchids in Brazil
Figs. 1–4. Helionothrips errans, Cattleya intermedia, and Epidendrum strobiliferum. (1) Female of H. errans; (2) larvae of H. errans on a C. intermedia plantlet leaf; (3) C. intermedia plantlet with chlorotic discoloration; (4) E. strobiliferum plantlet with chlorotic discoloration.
Figure 3 in A new species of Amolops (Anura: Ranidae) representing the morphological 'Marmoratus species group' from Sessa Orchid Sanctuary, Arunachal Pradesh, Northeast India
Figure 3. Collection locality of A. gerbillus from Rottom, Kamle district, Arunachal Pradesh, India.
Figure 2. A in A new species of Amolops (Anura: Ranidae) representing the morphological 'Marmoratus species group' from Sessa Orchid Sanctuary, Arunachal Pradesh, Northeast India
Figure 2. A male Amolops gerbillus (Annandale, 1912) from Rottom, Kamle district, Arunachal Pradesh, India.
Figure 6 in A new species of Amolops (Anura: Ranidae) representing the morphological 'Marmoratus species group' from Sessa Orchid Sanctuary, Arunachal Pradesh, Northeast India
Figure 6. Type locality of Amolops terraorchis sp. nov. from Sessa Orchid Sanctuary, West Kameng district, Arunachal Pradesh, India.
Figure 5 in A new species of Amolops (Anura: Ranidae) representing the morphological 'Marmoratus species group' from Sessa Orchid Sanctuary, Arunachal Pradesh, Northeast India
Figure 5. Holotype of Amolops terraorchis sp. nov. in preserved condition (A: dorsal view; B: ventral view).
Figure 4 in Going up: new altitudinal records of orchid bees (Hymenoptera: Apidae) in the inter-Andean valleys of southern Ecuador and their potential dispersal route
Figure 4. Potential dispersal route from the west lowlands of the Andes in Azuay province to the inter-Andean valleys of southern Ecuador. / Posible ruta de dispersión desde las tierras bajas occidentales de los Andes en la provincia de Azuay hasta los valles interandinos del sur de Ecuador.
Figure 3 in Going up: new altitudinal records of orchid bees (Hymenoptera: Apidae) in the inter-Andean valleys of southern Ecuador and their potential dispersal route
Figure 3. New collected females of Euglossa (Euglossa) cf. charapensis. A. Lateral view of specimen collected in Cuenca. B. Lateral view of specimen collected in Gualaceo. C. Dorsal view of specimen collected in Cuenca.D. Lateral view of specimen collected in Gualaceo. / Nuevas hembras recolectadas de Euglossa (Euglossa) cf. charapensis. A. Vista lateral de ejemplares recolectados en Cuenca. B. Vista lateral de ejemplares recolectados en Gualaceo. C. Vista dorsal de ejemplares recolectados en Cuenca. D. Vista lateral de ejemplares colectados en Gualaceo.
Figure 2 in Going up: new altitudinal records of orchid bees (Hymenoptera: Apidae) in the inter-Andean valleys of southern Ecuador and their potential dispersal route
Figure 2. Male of Eulaema (Apeulaema) polychroma collected in Cuenca. A. Lateral view. B. Dorsal view. C. Face. D. Detail of tufts presents in the middle tibia. / Macho de Eulaema (Apeulaema) polychroma recolectado en Cuenca. A. Vista lateral. B. Vista dorsal. C. Cara. D. Detalle de mechones presentes en la tibia media.
Figure 1. A in Going up: new altitudinal records of orchid bees (Hymenoptera: Apidae) in the inter-Andean valleys of southern Ecuador and their potential dispersal route
Figure 1. A. Map showing new localities for Eulaema (Apeulaema) polychroma and Euglossa (Euglossa) cf. charapensis, in Azuay province, Ecuador. B. Female of Euglossa (Euglossa) cf. charapensis. C. Female of E. cf. charapensis visiting a flower of C. orthoneura upon which yellow resin is observed in the rear expanded tibia. / Mapa que muestra nuevas localidades para Eulaema (Apeulaema) polychroma y Euglossa (Euglossa) cf. charapensis, en la provincia de Azuay, Ecuador. B. Hembra de Euglossa (Euglossa) cf. charapensis. C. Hembra de Euglossa (Euglossa) cf. charapensis visitando una flor de C. orthoneura sobre la cual se observa resina amarilla en la tibia trasera expandida.
Fig. 2 in Spread and distribution of the naturalized orchid bee Euglossa dilemma in Florida
Fig. 2. Spread of Euglossa dilemma in Florida from the first detection in Broward County in 2003 to much of central Florida by 2022. County names appear on the map illustrating the first occurrence of the bee in the county during that time period. Locality data are from collection and identification records the Florida State Collection of Arthropods in Gainesville from 2003 to 2022, and iNaturalist observations 2015 to 2022.
Fig. 1 in Spread and distribution of the naturalized orchid bee Euglossa dilemma in Florida
Fig. 1. Current distribution of Euglossa dilemma in Florida. Red dots are collection and identification record localities from the Florida State Collection of Arthropods from 2003 to 2022. Blue dots are iNaturalist observations from 2015 to 2022. Gray shading is the predicted potential distribution by the Maxent model (Hinojosa-Díaz et al. 2009).
Fig. 5. A in Ants tend ghost orchids: patrolling of Dendrophylax lindenii (Orchidaceae) by Crematogaster ashmeadi in Florida
Fig. 5. A mosquito, Aedes taeniorhynchus, rests on a Dendrophylax lindenii flower. This is a common occurrence that may indicate insect attraction to volatile compounds emitted by the orchid, and also potential prey for ambush predators on its flowers.
Fig. 4. A in Ants tend ghost orchids: patrolling of Dendrophylax lindenii (Orchidaceae) by Crematogaster ashmeadi in Florida
Fig. 4. A spider of the Family Araneidae descends and begins constructing a web on a ghost orchid flower. The flowers are frequented by mosquitoes, which may be the target prey.
Fig. 2 in Ants tend ghost orchids: patrolling of Dendrophylax lindenii (Orchidaceae) by Crematogaster ashmeadi in Florida
Fig. 2. Crematogaster ashmeadi emerge and return via cavities excavated beneath roots of Dendrophylax lindenii. Individuals make mandible contact with the roots.
Fig. 1. A in Ants tend ghost orchids: patrolling of Dendrophylax lindenii (Orchidaceae) by Crematogaster ashmeadi in Florida
Fig. 1. A ghost orchid, Dendrophylax lindenii, flower and bud in the flooded forests of Fakahatchee State Park, Florida. One of 2 individuals observed having an association with Crematogaster ashmeadi. A mosquito is seen resting on the labellum of the flower.
Fig. 6 in Ants tend ghost orchids: patrolling of Dendrophylax lindenii (Orchidaceae) by Crematogaster ashmeadi in Florida
Fig. 6. Upon the arrival of the spider previously shown in Figure 3 of a ghost orchid flower, Crematogaster ants begin dismantling the web and ultimately remove the spider from the plant.
ScienceDex guides
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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.