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.
91
datasets available to search
ShareScore release 0.9.0
Dataset results
91 results for “Beauveria”
FIGURE 7 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 7. RT-qPCR analysis of 11 immune-related DEGs in ML vs. PBS group. The y-axis shows relative expression levels (Blue colour represents the PBS control group and yellow colour represents the M. luteus treatment group, * p <0.05, **p <0.01).
FIGURE 6 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 6. RT-qPCR analysis of 19 immune-related DEGs in Bb vs. PBS group. The y-axis shows relative expression levels (Blue colour represents the PBS control group and red colour represents the B. bassiana treatment group, * p <0.05, **p <0.01).
FIGURE 4 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 4. GO classification of annotated differentially expressed genes in Bb vs. PBS group. The DEGs were categorized into 41 functional groups and were summarized in three main categories: biological process, cellular component and molecular function. The X-axis represents the number of genes noted on the GO item, and the Y-axis represents the GO functional classification.
FIGURE 5 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 5. GO classification of annotated differentially expressed genes in ML vs. PBS group. The DEGs were categorized into 41 functional groups and were summarized in three main categories: biological process, cellular component and molecular function. The X-axis represents the number of genes noted on the GO item, and the Y-axis represents the GO functional classification.
FIGURE 3 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 3. KEGG classification map of differentially expressed genes in ML vs. PBS group. The X axis was the number of genes annotated into a certain KEGG Pathway category, and the Y axis was the KEGG Pathway category. Different colors present different metabolic functions.
FIGURE 2 in The RNA-seq approach to discriminate gene expression profiles in response to Beauveria bassiana and Micrococcus luteus microbial pathogens on Actias selene (Lepidoptera: Saturniidae)
FIGURE 2. KEGG classification map of differentially expressed genes in Bb vs. PBS group. The X axis was the number of genes annotated into a certain KEGG Pathway category, and the Y axis was the KEGG Pathway category. Different colors present different metabolic functions.
FIGURE 1 in A new araneogenous fungus in the genus Beauveria from Guizhou, China
FIGURE 1. Phylogenetic tree inferred from the analysis of a concatenated dataset for the genes TEF, RPB1 and Bloc. Statistical support values (≥50%) are shown at nodes, for maximum likelihood/ Bayesian method.
FIGURE 2 in A new araneogenous fungus in the genus Beauveria from Guizhou, China
FIGURE 2. Beauveria araneola sp. nov. a. Infected spider; b. The colony on PDA after 14d at 25°C; c. Conidia; d. e. Conidiogenous cells solitary and usually in dense lateral clusters. Bar: b = 10 mm; c, d, e = 10 μm.
FIGURE 2 in Beauveria majiangensis, a new entomopathogenic fungus from Guizhou, China
FIGURE 2. Beauveria majiangensis (holotype GZAC GZU1214) a. Infected grub. b, c. Colony (top and reverse view, respectively) on PDA after 14 d at 25 °C. d, e. Conidiogenous cells solitary and usually in dense lateral clusters. f. Conidia. Scale bars: b, c = 10 mm, d, e, f = 10 μm.
FIGURE 3 in Beauveria majiangensis, a new entomopathogenic fungus from Guizhou, China
FIGURE 3. Phylogenetic analysis of GZU12141, GZU12142, and related Beauveria species based on ITS sequences. Statistical support values (≥50 %) are shown at nodes, and represent maximum likelihood bootstrap values/Bayesian posterior probabilities.
FIGURE 1 in Beauveria majiangensis, a new entomopathogenic fungus from Guizhou, China
FIGURE 1. Phylogenetic analysis of GZU12141, GZU12142, and related Beauveria species based on combined partial TEF+RPB1+Bloc sequences. Statistical support values (≥50 %) are shown at nodes, and present bootstrap values/Bayesian posterior probabilities.
Selection and characterization of Beauveria bassiana isolates highly thermotolerant and toxic against Aphis gossypii (Hemiptera: Aphididae)
<p>these raw data are supporting the results of the paper entiled "<strong>Selection and characterization of <em>Beauveria bassiana </em>isolates highly thermotolerant and toxic against <em>Aphis gossypii</em> (Hemiptera: Aphididae)"</strong></p>
Insecticidal activity of Beauveria bassiana against Monochamus alternatus adults
Open the record for dataset details and reuse information.
Figure 1 in Late effects of Beauveria bassiana on larval stages of Aedes aegypti Linneo, 1762 (Diptera: Culicidae)
Figure 1. Mortality of 3rd instar Aedes aegypti larvae by conidia of Beauveria bassiana under laboratory conditions [25 ± 2 ° C; 12:12 h (light: darkness)] at ten days of incubation.
Fig. 1 in Effects of a pathogenic Beauveria bassiana (Hypocreales: Cordycipitaceae) strain on detoxifying and protective enzyme activities in Xylotrechus rusticus (Coleoptera: Cerambycidae) larvae
Fig. 1. Symptoms of Xylotrechus rusticus larvae following infection by Beauveria bassiana. A. Control larvae. B. Mycelium covering the larval body at 120 h postinfection. C. Mycelium on intersegmental membranes. D. Blackish-brown discolored infected larval cuticle.
Fig. 1 in Lethal and sub-lethal effects of Beauveria bassiana (Cordycipitaceae) strain NI8 on Chrysoperla rufilabris (Neuroptera: Chrysopidae)
Fig. 1. Fertility table data and reproductive values of Chrysoperla rufilabris females exposed to Beauveria bassiana strain NI8 at different concentrations (spores per mm2) under laboratory conditions. Insects were fed with a Lygus species solid diet afer being sprayed with fungus. A. Survival probability at age x (lx) (p = 0.05, LIFETEST of Equality over Strata); B. Net fecundity (lxmx); and C. Reproductive value (Vx).
Figure 3 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970
Figure 3 Principal component analysis (PCA) and hierarchical clustering of the observations based on the fungal isolations. aPC1 vs. PC2. bPC1 vs. PC3. cPC2 vs. PC3. d PCA 3D plot e Hierarchical clustering dendrogram to access the ecological proximities of obtained fungi based on their respective isolation profiles. Software R 4.3.2 was used to obtain the PCA plots and the hierarchical clustering. There was no fungal isolation from hedgerows from the farm Granja when bait-insect T.molitor was used and hence, it could not be included in any of the analysis which relies on proportions, i.e. PCA plots, hierarchical clustering. To reduce any bias, the authors also discarded the soil samples (N=1) which yielded the fungal isolations, when G.mellonella was used, from the hedgerows of the farm Granja. The blue balls represent relatively more frequent EPF, i.e. Beauveriabassiana, Beauveriapseudobassiana, Clonostachysroseaf.rosea, Cordycepscicadae, Purpureocilliumlilacinum and Metarhiziumrobertsii. The red balls represent other fungi such as Cordyceps sp., Lecanicilliumaphanocladii, Lecanicilliumdimorphum, Metarhiziumguizhouense and Purpureocilliumlavendulum. Hierarchical clustering based dendrogram classified isolated EPF into two clusters, i.e. rarely occurring EPF (cluster 1) and relatively more frequent EPF (cluster 2). Abbreviations used are: Beauveriabassiana (B.b), Beauveriapseudobassiana (B.p), Cordycepscicadae (C.c), Cordyceps sp. (C.sp), Lecanicilliumaphanocladii (L.a), Lecanicilliumdimorphum (L.d), Metarhiziumguizhouense (M.g), Purpureocilliumlavendulum (P.la), Purpureocilliumlilacinum (P.l), Clonostachysroseaf.rosea (C.rr) and Metarhiziumrobertsii (M.r).
Figure 2 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970
Figure 2 Effect of insect baiting and habitat-type on the isolation of the entomopathogenic fungi. a Occurrence (% of soil samples ± SE) of entomopathogenic fungi when different bait-insects were incorporated b Occurrence (% of soil samples ± SE) of entomopathogenic fungi when soils were collected from different habitat-types. Bars with asterisk (*) show significant isolations, i.e. (P<0.05).
Figure 1 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970
Figure 1 Geographic coordinates and altitudes of the farms and details of the soil sampling strategy adopted. a Details of the six farms of the Douro Wine Region, Portugal, which were considered in this study b Details of the soil sampling strategy from vineyards and adjacent hedgerows.
Supplementary material 1 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970
Supplementary tables :
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.