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712 results for “Beetle diversity”
Figure 4 in Underestimated diversity and range size of diving beetles in tank bromeliads-Coleoptera of 'hygrofloric' lifestyle (Dytiscidae)
Figure 4. Habitus of bromeliadicolous Copelatus. A, C. florae (holotype). B, instar III larva of C. florae (Alto de Piedra). C, C. florae (Manaus). D, C. panguana (holotype). Scale bar = 2.0 mm.
High diversity of Cetiocyon beetles (Coleoptera: Hydrophilidae) along an elevational gradient on Mt. Wilhelm, New Guinea, with new records from the Bird´s Head Peninsula
<p>This dataset contains the data used for phylogenetic analyses, the electronic supplement to the paper, and the full set of original unedited photographs and SEM micrographs used for the study.</p>
FIGURE 3 in Undocumented beetle diversity in the Southeastern United States: a case study of the minute clubbed beetles (Coleoptera: Monotomidae)
FIGURE 3. Distribution and occurrence map of Monotoma species in Georgia. A) Map of Georgia. Purple shaded area = distribution of Monotoma producta. Other species that did not have many points are either widespread in the state (e.g. M. longicollis) or have too few points to make an accurate distribution map. B) Zoom-in on Athens-Clarke County. C) Zoom-in on University of Georgia and surrounding residential areas. Expanded spiral of points indicates records from a single GPS locality, showing the effects of prolonged sampling in a single location.
FIGURE 2 in Undocumented beetle diversity in the Southeastern United States: a case study of the minute clubbed beetles (Coleoptera: Monotomidae)
FIGURE 2. Dorsal habitus images of Monotoma occuring in Georgia. A) M. americana, B) M. arida, C) M. bicolor, D) M. emarginata, E) M. johnsoni, F) M. longicollis, G) M. picipes, H) M. producta.
FIGURE 5 in Undocumented beetle diversity in the Southeastern United States: a case study of the minute clubbed beetles (Coleoptera: Monotomidae)
FIGURE 5. Dorsal habitus images and occurrence map of Europs, Hesperobaenus, and Pycnotomina in Georgia and surrounding states. A) E. pallipennis, dorsal habitus. B) H. rufipes, dorsal habitus. C) P. cavicolle, dorsal habitus. D) Distribution map of above species. E. pallipennis and H. rufipes are widespread over the area shown, and are not shaded.
FIGURE 1 in Undocumented beetle diversity in the Southeastern United States: a case study of the minute clubbed beetles (Coleoptera: Monotomidae)
FIGURE 1. Dorsal habitus images and occurrence map of Rhizophagus in Georgia. A) R. brunneus brunneus, dorsal habitus. B) R. cylindricus (male), dorsal habitus. C) R. sayi, dorsal habitus. D) Distribution map of three species of Rhizophagus known to occur in Georgia. R. sayi is widespread over the area shown, and is not shaded.
FIGURE 4 in Undocumented beetle diversity in the Southeastern United States: a case study of the minute clubbed beetles (Coleoptera: Monotomidae)
FIGURE 4. Dorsal habitus images and occurrence map of Bactridium in Georgia. A) Bactridium ephippigerum, dorsal habitus. B) B. striolatum, dorsal habitus. C) Bactridium n. sp., dorsal habitus. D) Distribution map of three species of Bactridium known to occur in Georgia. B. ephippigerum and B. striolatum are widespread over the area shown, and are not shaded.
Fig. 4 in Cryptic and pseudo-cryptic diversity in the world's most common bark beetle-Hypothenemus eruditus
Fig. 4 Character states for Binterstrial declivital vestiture.^ a Sparse (state 1). b Medium (state 2). c Abundant (state 3)
Fig. 2 in Diversity and biogeographical makeup of the dung beetle communities inhabiting two mountains in the Mexican Transition Zone
Fig. 2 Relationship between the decrease (circles and black squares) and the accumulation (circles and open squares) of genera and species with increasing elevation in Los Tuxtlas and La Chinantla
Fig. 4. Representative beetle species from Bosque Protector Jerusalem. A in Diversity of Beetles (Coleoptera) in an Inter-Andean Dry Tropical Forest in Ecuador
Fig. 4. Representative beetle species from Bosque Protector Jerusalem. A) Psomus sp. (Curculionidae), new genus country record, B) Bostrichidae, C) Urgleptes sp. (Cerambycidae), D) Sericoderus sp. (Corylophidae), E–F) Kateretidae; G) Ablechrus sp. 1 (Melyridae), H) Ptinidae. Scale bars: 1 mm. Photo credits: GNDM.
Fig. 1 in Diversity of Beetles (Coleoptera) in an Inter-Andean Dry Tropical Forest in Ecuador
Fig. 1. Maps showing Bosque Protector Jerusalém (yellow dot) situated within a remnant of Inter-Andean Dry Tropical Forest (blue) in the Guayllabamba Valley in Ecuador (left). The black lines represent province boundaries. The distribution of Seasonally Dry Tropical Forests in northern South America is displayed in pink (right). Details of the sampling sites are provided in Table 1. The shapefile of the SDTF was downloaded from the DRYFLOR website (www. dryflor.info/data).
Fig. 3 in Diversity of Beetles (Coleoptera) in an Inter-Andean Dry Tropical Forest in Ecuador
Fig. 3. Sample-based rarefaction species accumulation curve at Bosque Protector Jerusalém. The shaded area represents 95% confidence intervals.
Fig. 3 in Seasonality, Distribution, and Diversity of Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae, Aphodiinae and Geotrupidae: Geotrupinae) in Great Smoky Mountains National Park, USA
Fig. 3. Seasonality and abundance of all dung beetles trapped at either high- (> 1,200 m, black line) or low-elevation (<600 m, gray line) sites in Great Smoky Mountains National Park during 2017. Note that the high-elevation pattern is driven by one species, Aphodius fimetarius.
Fig. 2 in Seasonality, Distribution, and Diversity of Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae, Aphodiinae and Geotrupidae: Geotrupinae) in Great Smoky Mountains National Park, USA
Fig. 2. Seasonality and abundance for nine dung beetle species trapped in Great Smoky Mountains National Park during mid-April to late September 2017. Species varied in their seasonality and length of active period. The number of individuals trapped per species varies; for some species, very few individuals were recovered throughout the study so their observed seasonal distribution is likely to be less representative of the species' true active period than the species with increased sample size.
Fig. 5 in Diversity of Scarabaeinae Dung Beetles (Coleoptera: Scarabaeidae) on Cattle Ranches of Tabasco, Mexico
Fig. 5. Principal component analysis of monthly Scarabaeinae abundance throughout the year. A) Both ranches, axes show 89.7% of the variation in abundance, B) Tacotalpa ranch, axes show 90% of the variation in abundance, C) Centro ranch, axes show 98.5% of the variation in abundance.
Fig. 4 in Diversity of Scarabaeinae Dung Beetles (Coleoptera: Scarabaeidae) on Cattle Ranches of Tabasco, Mexico
Fig. 4. Seasonal variability of Scarabaeinae richness, abundance, millimeters of precipitation (dashed line, solid line, and gray bars, respectively, in A and B), roller beetle abundance, burrower beetle abundance, and species richness (dotted line, solid line, and gray bars, respectively, in C and D) on two ranches in Tabasco, Mexico. Precipitation data from 2018 to 2020 were provided by the CONAGUA office for Tabasco. A, C) Tacotalpa ranch, B, D) Centro ranch.
Fig. 3 in Diversity of Scarabaeinae Dung Beetles (Coleoptera: Scarabaeidae) on Cattle Ranches of Tabasco, Mexico
Fig. 3. Ecological segregation of Scarabaeinae on two ranches in Tabasco, Mexico. R1 = Tacotalpa ranch, R2 = Centro ranch, n = number of individuals.
Fig. 2 in Diversity of Scarabaeinae Dung Beetles (Coleoptera: Scarabaeidae) on Cattle Ranches of Tabasco, Mexico
Fig. 2. Rank-abundance curves of Scarabaeinae on two ranches in Tabasco, Mexico. Ocy: Onthophagus cyclographus, Oba: O. batesi, Ola: O. landolti, Oan: O. anthracinus, Ppe: Pseudocanthon perplexus, Eme: Eurysternus mexicanus, Ein: Euoniticellus intermedius, Aca: Ateuchus candezei, Dga: Digitonthophagus gazella, Cco: Coprophanaeus corythus, Cin: Canthon indigaceus, Cle: C. leechi, Clu: Copris lugubris.
Fig. 1 in Diversity of Scarabaeinae Dung Beetles (Coleoptera: Scarabaeidae) on Cattle Ranches of Tabasco, Mexico
Fig. 1. Rarefaction interpolated and extrapolated abundance-based diversity estimations of Scarabaeinae on two ranches in Tabasco, Mexico.
Fig. 1 in The Importance of Body Size Standardization in Functional Diversity Studies of Dung Beetles (Coleoptera: Scarabaeidae: Scarabaeinae)
Fig. 1. Spearman correlation results for the measurements used to assess body size in three Atlantic Forest dung beetle species (Canthon quinquemaculatus, Deltochilum komareki, and Eurysternus parallelus).
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.