Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
140
datasets available to search
ShareScore release 0.9.0
Dataset results
140 results for “fungus beetles”
FIGURE 5. Endomychids from Baltic and Bitterfeld ambers. 1-3 in New handsome fungus beetles (Coleoptera: Coccinelloidea: Anamorphidae, Endomychidae) from European amber of the Upper Eocene
FIGURE 5. Endomychids from Baltic and Bitterfeld ambers. 1-3, Laima andreei gen. et sp. nov. (No. 1222-5 [CCHH], holotype), habitus in lateral (1), dorsal (2), and ventral (3) views. 4-5, Trochoideus koenigsbergicus sp. nov. (No. 1506-1 [CCHH], holotype), habitus in dorsal view (4), and antenna in lateral view (5). 6-7, Trochoideus resinatissimus sp. nov., antenna (6) and maxillary palp (7) in lateral views.
FIGURE 2 in New handsome fungus beetles (Coleoptera: Coccinelloidea: Anamorphidae, Endomychidae) from European amber of the Upper Eocene
FIGURE 2. Kleinzaches germanicianus gen. et sp. nov. (No. 181-1 [CCHH], holotype) (Anamorphidae) from Bitterfeld amber. 1-2, Habitus in dorsal (1) and ventral (2) views. 3, A reconstruction of the habitus in dorsal view. 4, Close-up of the anterior part of body in latero-ventral view.
FIGURE 1 in New handsome fungus beetles (Coleoptera: Coccinelloidea: Anamorphidae, Endomychidae) from European amber of the Upper Eocene
FIGURE 1. Gramboale prutenorum gen. et sp. nov. (No. 1799-1 [CCHH], holotype) (Anamorphidae) from Baltic amber. 1-3, Habitus in lateral (1), dorsal (2), and ventral (3) views. 4, A reconstruction of the habitus in ventral view.
FIGURE 4. Anamorphid and Endomychid from Baltic amber. 1-3 in New handsome fungus beetles (Coleoptera: Coccinelloidea: Anamorphidae, Endomychidae) from European amber of the Upper Eocene
FIGURE 4. Anamorphid and Endomychid from Baltic amber. 1-3, Symbiotes borussiaeorientalis sp. nov. (No. 1799-2 [CCHH], holotype), habitus in dorso-lateral (1) and ventro-lateral (2) views, and a reconstruction of the habitus in dorsal view (3). 4, Laima andreei gen. et sp. nov., a reconstruction of the habitus in dorsal view.
FIGURE 6. Endomychids from Bitterfeld and Baltic ambers. 1-2 in New handsome fungus beetles (Coleoptera: Coccinelloidea: Anamorphidae, Endomychidae) from European amber of the Upper Eocene
FIGURE 6. Endomychids from Bitterfeld and Baltic ambers. 1-2, Trochoideus resinatissimus sp. nov. (No. 53-2 [CCHH], holotype), habitus in dorsal view (1), and forebody in ventral view (2). 3-5, Glesirhanis bercioi Shockley and Alekseev, 2014 (No. 1219-2 [CCHH]), habitus in dorsal (3), ventro-lateral (4), and lateral (5) views. 6-7, Phymaphoroides antennatus Motschulsky, 1856 (No. 1219-3 [CCHH]), close-up of antenna (6), and habitus in dorso-lateral view (7).
FIGURE 3. Anamorphids from Baltic amber. 1-3 in New handsome fungus beetles (Coleoptera: Coccinelloidea: Anamorphidae, Endomychidae) from European amber of the Upper Eocene
FIGURE 3. Anamorphids from Baltic amber. 1-3, Palaecoryphus viktori gen. et sp. nov. (No. 1222-3 [CCHH], holotype), habitus in left lateral (1), dorsal (2), and right lateral (3) views. 4-6, Giltine ampeensis gen. et sp. nov. (No. AWI- 133 [CVIA], holotype), a reconstruction of the habitus in dorsal view (4) and habitus in dorsal (5) and ventro-lateral (6) views.
Group composition of individual personalities alters social network structure in experimental populations of forked fungus beetles
<p><span>Social network structure is a critical group character that mediates the flow of information, pathogens, and resources among individuals in a population, yet little is known about what shapes social structures. In this study, we experimentally tested whether social network structure depends on the personalities of group members. Replicate groups of forked fungus beetles (<i>Bolitotherus cornutus</i>) were engineered to include only members previously assessed as either more social or less social. We found that individuals behaved consistently across social contexts, exhibiting repeatable numbers of interactions and numbers of partners. At the group level, networks composed of more social individuals had higher interaction rates, higher tie density, higher global clustering, and shorter average shortest paths than those composed of less social individuals. We highlight group composition of personalities as a source of variance in group traits and a potential mechanism by which networks could evolve.</span></p>
Group and individual social network metrics are robust to changes in resource distribution in experimental populations of forked fungus beetles
<p>Social interactions drive many important ecological and evolutionary processes. It is therefore essential to understand the intrinsic and extrinsic factors that underlie social patterns. A central tenet of the field of behavioral ecology is the expectation that the distribution of resources shapes patterns of social interactions.</p> <p>We combined experimental manipulations with social network analyses to ask how patterns of resource distribution influence complex social interactions.</p> <p>We experimentally manipulated the distribution of an essential food and reproductive resource in semi-natural populations of forked fungus beetles (Bolitotherus cornutus). We aggregated resources into discrete clumps in half of the populations and evenly dispersed resources in the other half. We then observed social interactions between individually marked beetles. Half-way through the experiment, we reversed the resource distribution in each population, allowing us to control any demographic or behavioral differences between our experimental populations. At the end of the experiment, we compared individual and group social network characteristics between the two resource distribution treatments.</p> <p>We found a statistically significant but quantitatively small effect of resource distribution on individual social network position and detected no effect on group social network structure. Individual connectivity (individual strength) and individual cliquishness (local clustering coefficient) increased in environments with clumped resources, but this difference explained very little of the variance in individual social network position. Individual centrality (individual betweenness) and measures of overall social structure (network density, average shortest path length, and global clustering coefficient) did not differ between environments with dramatically different distributions of resources.</p> <p>Our results illustrate that the resource environment, despite being fundamental to our understanding of social systems, does not always play a central role in shaping social interactions. Instead, our results suggests that sex differences and temporally fluctuating environmental conditions may be more important in determining patterns of social interactions.</p>
Multilevel selection on social network traits differs between sexes in experimental populations of forked fungus beetles
<p>Both individual and group behavior can influence individual fitness, but multilevel selection is rarely quantified on social behaviors. Social networks provide a unique opportunity to study multilevel selection on social behaviors, as they describe complex social traits and patterns of interaction at both the individual and group levels. In this study, we used contextual analysis to measure the consequences of both individual network position and group network structure on individual fitness in experimental populations of forked fungus beetles (<em>Bolitotherus</em> <em>cornutus</em>) with two different resource distributions. We found that males with high individual connectivity (strength) and centrality (betweenness) had higher mating success. However, group network structure did not influence their mating success. Conversely, we found that individual network position had no effect on female reproductive success but that females in populations with many social interactions experienced lower reproductive success. The strength of individual-level selection in males and group-level selection in females intensified when resources were clumped together, showing that habitat structure influences multilevel selection. Individual and emergent group social behavior both influence variation in components of individual fitness but impact male mating success and female reproductive success differently, setting up intersexual conflicts over patterns of social interactions at multiple levels. </p>
Figs. 13-14 in Annotated checklist of the handsome fungus beetles of Connecticut, USA (Coleoptera: Cucujoidea: Endomychidae).
Figs. 13-14.- Mycetaea subterranea (Fabricius, 1801). 13.- Habitus (Photo by Christoph Benisch-www.kerbtier.de). 14.- Distributional map.
Figs. 3-4 in Annotated checklist of the handsome fungus beetles of Connecticut, USA (Coleoptera: Cucujoidea: Endomychidae).
Figs. 3-4.- Phymaphora pulchella Newman, 1838. 3.- Habitus (Photo by Tom Murray). 4.- Distributional map. Figs. 5-6.- Rhanidea unicolor (Ziegler, 1845). 5.- Habitus (Photo by Tom Murray). 6.- Distributional map.
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
Figure 1 in Two new silken fungus beetle species (Coleoptera, Cucujiformia, Cryptophagidae) from Rovno amber
Figure 1. Atomaria (Anchicera) bukejsi sp. nov.: A – dorsal view (image), B – ventral view (image), C – antenna (drawing), D – lateral view (image).
Figure 2 in Two new silken fungus beetle species (Coleoptera, Cucujiformia, Cryptophagidae) from Rovno amber
Figure 2. Fossil Atomaria sp.: A – A. (Anchicera) bukejsi sp. nov., legs and abdomen (image), B – A. (Anchicera) archibaldi sp. nov., ventrolateral view (image).
Figure 3 in Two new silken fungus beetle species (Coleoptera, Cucujiformia, Cryptophagidae) from Rovno amber
Figure 3. Atomaria (Anchicera) archibaldi sp. nov.: A – lateral view (image), B – total view (drawing).
Figure 2 in New silken fungus beetle species (Coleoptera, Cucujiformia, Cryptophagidae) from Rovno amber
Figure 2. Cryptophagus vorontsovi sp. nov.: A – lateral view (image), B – dorsolateral view (image), C – antenna (drawing).
Fig. 1. 3D in First fossil record of polypore fungus beetles from Lower Cretaceous amber of France
Fig. 1. 3D reconstruction of the holotype of polypore fungus beetle Synchrotronia idinineteena Soriano and Pollock gen. et sp. nov., University of Rennes I, Archingeay-Les Nouillers, Albian. Specimen tomographied in beamline ID19 of the ESRF, at 30 keV and 5.06 μ voxel size. In ventral (A), lateral (B, C), dorsal (D), frontal (E), and posterior (F) views.
Fig. 2 in First fossil record of polypore fungus beetles from Lower Cretaceous amber of France
Fig. 2. Sagittal cut of the 3D volume of the holotype of polypore fungus beetle Synchrotronia idinineteena Soriano and Pollock gen. et sp. nov., University of Rennes I, Archingeay-Les Nouillers, Albian. Arrows mark the wings preserved under the collapsed notum.
Linked collectors and determiners for: A new Central American genus of pleasing fungus beetles (Coleoptera: Erotylidae) from the Ischyrus-Megischyrus complex.
Natural history specimen data linked to collectors and determiners held within, "A new Central American genus of pleasing fungus beetles (Coleoptera: Erotylidae) from the Ischyrus-Megischyrus complex". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/dd598c34-9798-48d1-8cd8-200b329ca86c">https://bionomia.net/dataset/dd598c34-9798-48d1-8cd8-200b329ca86c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/dd598c34-9798-48d1-8cd8-200b329ca86c">https://gbif.org/dataset/dd598c34-9798-48d1-8cd8-200b329ca86c</a>. Formatted as a Frictionless Data package.
Figures 10–16 in Dyslexia, a new remarkable genus of pleasing fungus beetles (Coleoptera: Erotylidae: Erotylinae) from the Andes
Figures 10–16. Dyslexia belamyi Skelley and Gasca-Álvarez, holotype male, unless stated otherwise. 10) Dorsal habitus. 11) Ventral habitus. 12) Lateral habitus. 13) Anterior dorsal oblique view of head and pronotum. 14) Anterior ventral oblique view of head and pronotum, not male protibial dimorphism. 15) Male genitalia. 16) Female genitalia, allotype.
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.