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359 results for “native bee”
Harnessing the power of digitized natural history collections to visualize spatiotemporal patterns in native and non-native bee flight phenology
<p>What time of year are bees flying, where are they flying, and how do biogeographical factors, sex, and native status affect flight phenology? Consistent monitoring along with creating spatially and temporally explicit visualizations using large openly available data sets enhance our understanding of trends in flight time phenology and shape our understanding of bee-plant interactions, including shifts in the phenology of bee pollinators.</p> <p>Species occurrence data from digitized collection networks (iNaturalist, Global Biodiversity Information Faculty (GBIF), Integrated Digitized Biocollections (iDigBio), Symbiota Collections of Arthropods Network (SCAN), and UC Santa Barbara Collection Network) are part of an effort to improve our understanding of bees in coastal Santa Barbara County, including the California Channel Islands. New inventory collections combined with historical data from over 11 natural history museums and 2 observation networks are used in an effort to examine patterns and changes in phenology of native and non-native bee species, and create updated species inventories.</p> <p>Synthesizing species observation data from digitized natural history collections makes use of a wealth of existing data and multiplies the analytical power of isolated observations, but it is not without limitations and challenges. By exploring novel techniques to generate clear and accurate visualizations to communicate bee flight time, we present our key initial findings and identify geographic, temporal, and taxonomic gaps, which will lead to further focused inventory projects of coastal Santa Barbara County, improved data quality for phenological analyses, and reusable methods for visualizing insect phenology data across taxa or geography.</p> <p><strong>The attached files include the R code and some of the .csv files used to produce the figures in my poster that was available on demand at the Entomology Society of America 2020 virtual meeting. </strong></p>
US National Native Bee Monitoring RCN Data Management Workshop: Public Domain Videos
<p>The US National Native Bee Monitoring Research Coordination Network (RCN) held a two-day workshop on data management best practices for native bee inventory, survey, and monitoring data on March 28 and 30, 2023. Videos in this data set were played at the workshop. These videos are released into the public domain. This data set includes the following videos:</p> <ul> <li>Ecological Metadata Standards to Enable Data Reuse by Julien Brun</li> <li>Useful Photo Management for Bee Species by Sam Droege</li> <li>Trait Data Models and Vocabulary by Jen Hammock</li> <li>Symbiota: open-source community portals for insect data management by Andrew Johnston</li> <li>Moving data from the field to the world by Jonathan Koch</li> <li>Exploring data using Discover Life by Clare Maffei</li> <li>USDA Data Sharing Policies and Opportunities by Cynthia Sims Parr</li> <li>Why Share Species Interaction Data? by Jorrit H. Poelen</li> <li>Big-Bee: Sharing Bee Interactions & Traits by Katja C. Seltmann</li> <li>Let’s talk about data by Katja C. Seltmann</li> <li>Responsible use of museum specimens & their data by Erika M. Tucker</li> </ul>
US National Native Bee Monitoring RCN Data Management Workshop: CC BY Videos
<p>The US National Native Bee Monitoring Research Coordination Network (RCN) held a two-day workshop on data management best practices for native bee inventory, survey, and monitoring data on March 28 and 30, 2023. Videos in this data set were played at the workshop. These videos are released with a CC BY license. Please cite the presenter(s) of the video(s) you use. This data set includes the following videos:</p> <ul> <li>The ABeeCs of Data Attribution: Please use your magic words by David Bloom</li> <li>Darwin Core Geography: How to make your locality data complete and accurate by David Bloom</li> <li>Best Practices for Managing Native Bee Molecular Data by Michael G. Branstetter</li> <li>A Trait Database for Bees by Elizabeth A. Crisfield</li> <li>Biotic interaction data and invasive species assessment by Quentin Groom</li> <li>OpenTraits Network (OTN) & TRY Plant Trait Database by Jens Kattge</li> <li>Semantics modeling of phenotypic trait data with ontologies by Diego S. Porto</li> <li>WorldFAIR: towards making plant-pollinator data FAIR by Maarten Trekels</li> </ul>
US National Native Bee Monitoring RCN Data Management Workshop: CC BY NC Videos
<p>The US National Native Bee Monitoring Research Coordination Network (RCN) held a two-day workshop on data management best practices for native bee inventory, survey, and monitoring data on March 28 and 30, 2023. Videos in this data set were played at the workshop. These videos are released with a CC BY-NC license. These videos are for non-commercial use only. Please cite the presenter(s) of the video(s) you use. This data set includes the following videos: </p><ul><li>APHIS National Honey Bee Pests and Diseases Survey by Anne LeBrun</li><li>Importance of FAIR in Biodiversity Science and Research by Elizabeth R. Ellwood</li><li>Bugflow: A Community Driven Repository for Entomology Digitization Resources by Crystal Maier</li><li>A Primer on iNaturalist Bee Data by Keng-Lou James Hung, Paige Chesshire, Michael Orr, Alice Hughes, Jess Mullins, Katherine Parys, Patricia Simpson, Lindsie McCabe, Neil Cobb, and John Ascher</li></ul>
Fig. 3 in Pollination of Turnera subulata: exotic or native bees?
Fig. 3. Frequency of floral visitors during visits to Turnera subulata Sm. in October, November and December, 2018 and June, 2019 and average number of seeds at each hour interval in November and December 2018 and June 2019 within the UEFS campus, Feira de Santana, BA.
Fig. 1 in Pollination of Turnera subulata: exotic or native bees?
Fig. 1. Opening and senescence time of the flowers of Turnera subulata Sm. in October, 2018, May and June, 2019 in the UEFS campus, Feira de Santana, BA, Brazil.
Fig. 2 in Pollination of Turnera subulata: exotic or native bees?
Fig. 2. Climatic factors (temperature, light intensity and relative humidity) along the floral longevity, covering the opening and senescence of the flowers of Turnera subulata Sm. in October, 2018, May and June, 2019 within the UEFS campus, Feira de Santana, BA, Brazil.
Figure 3. A in Reintroduction of a Native Hawaiian Bee, Hylaeus anthracinus (F. Smith) (Hymenoptera: Colletidae), to Part of its Former Range
Figure 3. A newly released Hylaeus being attacked by Pheidole megacephala almost immediately after being released at site 3.
Figure 1 in Reintroduction of a Native Hawaiian Bee, Hylaeus anthracinus (F. Smith) (Hymenoptera: Colletidae), to Part of its Former Range
Figure 1. Map of the source sites in South Kohala and North Kona, and release sites at PUHO (inset).
Figure 9. A–F in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 9. A–F Lasioglossum (Australictus) tertium: A, dorsal female; B, lateral female; C, dorsal male; D, lateral male; E, female head front; F, male vestiture on metasomal sterna.
Figure 8. A–F in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 8. A–F Lasioglossum (Australictus) plorator: A, dorsal female; B, lateral female; C, dorsal male; D, lateral male; E, female head front; F, male vestiture on metasomal sterna.
Figure 12 in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 12. Species distribution maps: A,Lasioglossum (Australictus) davide; B,Lasioglossum (Australictus) lithusca; C, Lasioglossum (Australictus) peraustrale: D, Lasioglossum (Australictus) plorator; E, Lasioglossum (Australictus) tertium; F, Lasioglossum (Chilalictus) orbatum.
Figure 11 in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 11. Lasioglossum (Australictus) male genital capsules: Lasioglossum plorator, A, ventral view, B, dorsal view; Lasioglossum tertium, C, ventral view, D, dorsal view.
Figure 10 in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 10. Lasioglossum (Australictus) male genital capsules: Lasioglossum davide, A, ventral view, B, dorsal view; Lasioglossum lithusca, C, ventral view, D, dorsal view; Lasioglossum peraustrale, E, ventral view, F, dorsal view.
Figure 6. A–F in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 6. A–F Lasioglossum (Australictus) lithusca: A, dorsal female; B, lateral female; C, dorsal male; D, lateral male; E, female head front; F, male vestiture on metasomal sterna.
Figure 4 in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 4. Lasioglossum (Australictus) plorator female using a beetle exit hole in wood. Image copyright Christopher Robbins.
Figure 5. A–F in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 5. A–F Lasioglossum (Australictus) davide: A, dorsal female; B, lateral female; C, dorsal male; D, lateral male; E, female head front; F, male vestiture on metasomal sterna.
Figure 2. A in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 2. A, Lasioglossum (Australictus) lithusca female labrum; B, Lasioglossum (Australictus) tertium female anterior metatibial spur; C, Lasioglossum (Australictus) peraustrale male vertical metapostnotum tomentum; D, Lasioglossum (Australictus) tertium, banded male metasoma form; E, Lasioglossum (Australictus) davide female dorsal surface of metapostnotum; F, Lasioglossum (Australictus) plorator female dorsal surface of metapostnotum.
Figure 1 in Taxonomic revision of the Australian native bee subgenus Australictus (Hymenoptera: Halictidae: Halictini: genus Lasioglossum) - "Wood-Splitting Axe Bees"
Figure 1. Lasioglossum (Australictus) tertium A; Lasioglossum (Australictus) lithusca C, E; Lasioglossum (Parasphecodes) hiltacum B, D, F. Head front: A & B; Mandible outer view: C & D; mandible dorsal view: E & F. All female images.
Fig. 1 in Use of crape myrtle, Lagerstroemia (Myrtales: Lythraceae), cultivars as a pollen source by native and non-native bees (Hymenoptera: Apidae) in Quincy, Florida
Fig. 1. Cultivar positions in crape myrtle experimental block. Each small circle is 1 crape myrtle. Each quadrat has 4 crape myrtle plants of the same cultivar. Legend for cultivar abbreviations: Apalach = 'Apalachee', Bwhite = 'Byers Wonderful White', Cbeau = 'Carolina Beauty', Natch = 'Natchez', and Tuske = 'Tuskegee'.
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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.