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.
44
datasets available to search
ShareScore release 0.9.0
Dataset results
44 results for “edible mushroom”
Local communities' perceptions of wild edible plant and mushroom change: A systematic review
<p>These datasets are the basis of publication "Local communities’ perceptions of wild edible plant and mushroom change: A systematic review", DOI: https://doi.org/10.1016/j.gfs.2021.100601<br> File GFS_paperIDs.csv lists the articles that are included in the systematic review with their identification numbers.<br> File GFS_data_papers.csv contains data related to the articles reporting on changes of wild edible plants.<br> File GFS_data_plants.csv contains data related to the plant species that are affected by the changes.<br> File GFS_variable_desriptions.txt informs about the variables in files GFS_data_papers.csv and GFS_data_plants.csv.</p>
Figure S2 in Collembola associated with edible mushrooms in China
Figure S2. Photos of mushroom Collembola. A. Ceratophysella communis in the soil and feeding on the hyphae of morels (the dark purple region), taken on 14.XI.2017 in Zhumadian, Henan; B. Mushroom (Lentinus edodes) infested by Ceratophysella liguladorsi, taken on 08.XII.2014 in Wuyi, Zhejiang; C. Ceratophysella communis on Pleurotus ostreatus (black dots), taken on 07.XII.2014 in Pinghu, Zhejiang; D. Hypogastrura yosiii in alcohol extracted from Pleurotus ostreatus, taken on 06.V.2014 in Liaocheng, Shandong; E. Hypogastrura quadritenenta in alcohol extracted from Stropharia rugosoannulata, taken on 07.V.2014 in Tai'an, Shandong; F. Thalassaphorura biquaternata in alcohol extracted from Pleurotus ostreatus, taken on 08.V.2014 in Laiwu, Shandong.
Figure 2 in Collembola associated with edible mushrooms in China
Figure 2. Reconstructed phylogenetic tree based on mitochondrial COI marker. Maximum-likelihood bootstrap support values are shown in the branches. The codes of sampling sites are referred in Fig. 1. The codes inserted before the species name are named for distinguishing samples from different collection locations in molecular experiments and the information in detail is listed in Table S2.
Figure S1 in Collembola associated with edible mushrooms in China
Figure S1. Neighbour‐joining tree based on COI for 161 specimens with node bootstrap values and species grouping shown.
Fitness of two mushroom flies Bradysia minpleuroti (Diptera: Sciaridae) and Coboldia fuscipes (Diptera: Scatopsidae) fed on two edible mushrooms
<p><a name="OLE_LINK220"></a><a name="OLE_LINK189"></a><em>Dictyophora</em> <em>rubrovolvata</em> and <a name="OLE_LINK87"></a><em>Pleurotus</em> <em>ostreatus</em> are economically important mushrooms in China. <a name="_Hlk146231531"></a><em>Bradysia</em> <em>minpleuroti</em> Yang et Zhang and <a name="OLE_LINK71"></a><em>Cobolidia</em> <em>fuscipes</em> (Meigen, 1830) are important mushroom flies that damage the two mushrooms. In this study we used the age-stage, two-sex life table method assessed <a name="_Hlk146230932"></a>the fitness of <a name="_Hlk143696432"></a><em>B</em>. <em>minpleuroti</em> and <em>C</em>. <em>fuscipes</em> when they were respectively fed on <a name="OLE_LINK20"></a><em>D</em>. <em>rubrovolvata</em> and <em>P</em>. <em>ostreatus</em>. Our results showed that the 1st (2.39 days) and 2nd (1.41 days) instar larvae, pupa (2.87 days) and total longevity (18.19 days) of <em>B</em>. <em>minpleuroti</em> were shorter when fed on <em>P</em>. <em>ostreatus</em> than fed on <em>D</em>. <em>rubrovolvata </em>(3.46, 1.86, 3.10, 20.19 days). <a name="OLE_LINK233"></a><em>B</em>. <em>minpleuroti</em> had similar fecundity when fed on the two edible mushrooms. <em>B</em>. <em>minpleuroti</em> had higher values of net reproductive rate (<em>R</em><sub>0</sub>, 87.73), intrinsic rate of increase (<em>r</em>, 0.2604), and finite rate of increase (<em>λ</em>, 1.2974) and shorter mean generation time (<em>T</em>, 17.19) when fed on <em>P</em>. <em>ostreatus</em> than fed on <em>D</em>. <em>rubrovalvata</em>. The developmental period of larvae stage and pupa stage of <em>C</em>. <em>fuscipes</em> were significantly affected by the two edible mushrooms. Female fecundity, total longevity, <em>R</em><sub>0</sub>, <em>r</em>, <em>λ</em> and <em>T</em> of <em>C</em>. <em>fuscipes</em> were not significantly different between the two edible mushrooms. We found that<a name="OLE_LINK174"></a> fitness of <em>B</em>. <em>minpleuroti</em> larvae had higher fitness when fed on <em>P</em>. <em>ostreatus</em> than fed on <em>D</em>. <em>rubrovolvata</em>. However, <a name="OLE_LINK183"></a>the fitness of <em>C</em>. <em>fuscipes</em> larvae had no significant difference fed on the two edible mushrooms. This study has provided valuable data and insights by delving into the adaptability of two significant pests on two edible mushrooms. It facilitates the development of more effective pest management strategies, contributing to the development of the mushroom industry.</p>
Poisonous and Edible Mushrooms in the Northeastern Region of Thailand
<p><strong>Mushroom dataset is divided into two parts: CNN and R-CNN. CNN will use an image size of 227x227 pixels, R-CNN will use an image of 300x300 pixels. Image data of mushrooms was collected in the northeastern region of Thailand. The mushroom datasets containing 2,000 images were divided into two sets: a poisonous mushroom set containing 527 images and an edible mushroom set containing 1,473 images. There are 5 species in all.</strong></p> <p><strong>Edible mushroom:</strong></p> <p><strong> 1. <em>Amanita citrina</em>.</strong></p> <p><strong> 2. <em>Russula delica</em>.</strong></p> <p><strong> 3. <em>Phaeogyroporus portentosus</em>.</strong></p> <p><strong>Poisonous mushroom: </strong></p> <p><strong> 1. <em>Amanita phalloides</em>.</strong></p> <p><strong> 2. <em>Inocybe rimosa</em>. </strong></p> <p><strong>Format: JPEG, provided in .zip format</strong></p> <p><strong>Period covered: 13 July - 23th August 2020</strong></p>
Figure 1 in Collembola associated with edible mushrooms in China
Figure 1. Sampling sites of recorded collembolan species on edible mushrooms in China.
Data sets of preference for Mucor circinelloides over edible mushrooms in the fungus gnat Bradysia impatiens
<p>This is the raw data for the olfactory response experiments on preference for <em>Mucor circinelloides</em> over edible mushrooms in the fungus gnat <em>Bradysia impatiens</em> (Diptera: Sciaridae).</p>
Supplementary material 3 from: Mandić R, Adžemović M, Marjanović Ž (2018) Conservation and trade of wild edible mushrooms of Serbia – history, state of art and perspectives. Nature Conservation 25: 31-53. https://doi.org/10.3897/natureconservation.25.21919
Annual amounts of mushrooms allowed to harvest (in kg, according to INCS) : Explanation note: The document provides table with official data on mushroom and truffle amounts that have been allowed to harvest since 1993, according to INCS.
Supplementary material 1 from: Mandić R, Adžemović M, Marjanović Ž (2018) Conservation and trade of wild edible mushrooms of Serbia – history, state of art and perspectives. Nature Conservation 25: 31-53. https://doi.org/10.3897/natureconservation.25.21919
Overview of mycological literature, research and herbaria collections on macro fungi of Serbia with reference list : Explanation note: The document provides brief descriptions of the scientific and hobbyist published data on epigeic and hypogeic macro fungi in Serbia, including the history of their recognition with reference lists. It also provides information on official herbaria collections of macro fungi.
Supplementary material 2 from: Mandić R, Adžemović M, Marjanović Ž (2018) Conservation and trade of wild edible mushrooms of Serbia – history, state of art and perspectives. Nature Conservation 25: 31-53. https://doi.org/10.3897/natureconservation.25.21919
The lists of strictly protected and protected species of macro fungi in Serbia : Explanation note: The document lists the legal acts that regulate macro fungi and their habitats in Serbia, as well as species that are regulated by The Regulation and The Bylaw.
FIGURE 12 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 12. Termitomyces microcarpus (Herbarium code: USJ-GMBU-001). a,b. Mature basidiomata in situ. Scale bars = 1 cm. Photography by Naduni Dasanthi.
FIGURE 7 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 7. Schizophyllum radiatum (Herbarium code: USJ-H-016). a. Mature basidiomata in situ. b,c. Mature basidiomata ex-situ. Scale bars: a, b, c = 1.5 cm. Photography by Naduni Dasanthi.
FIGURE 4 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 4. Pleurotus giganteus (Herbarium code: USJ-GMBU-002) a, b. Mature basidiomata in situ. Scale bars = 2.5 cm. Photography by Naduni Dasanthi.
FIGURE 5 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 5. Pleurotus giganteus (Herbarium code: USJ-GMBU-002) a. Spores. b. Basidia. c. Cheilocystidia. d. Generative hyphae. e. Skeletal hyphae. Scale bars: a = 5 µm; b,c = 20 µm; d, e = 10 µm. Illustration by Aseni Ediriweera.
FIGURE 3. A in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 3. A phylogenetic tree for ITS sequences was constructed using maximum likelihood (ML) analysis for the genus Calvatia. The newly generated strain is in red. ML bootstrap values are given at the nodes. Bootstrap support values equal to or higher than 70% are provided. The tree is rooted with Chlorophyllum pseudoglobosum.
FIGURE 11 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 11. Termitomyces heimii (Herbarium codes: USJ-GMBU-003, USJ-GMBU-004, USJ-GMBU-006) a. Spores. b. Basidia, c. Pleurocystidia. d. Cheilocystidia. Scale bars: a, b = 5 µm; c, d = 10 µm. Illustration by Aseni Ediriweera.
FIGURE 1 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 1. Calvatia candida (Herbarium code: USJ-H-014). a,b. Mature basidiomata in situ. Scale bars = 2 cm. Photography by Naduni Dasanthi.
FIGURE 6. A in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 6. A phylogenetic tree for ITS sequences was constructed using maximum likelihood (ML) analysis for the genus Pleurotus. The newly generated strain is in red. ML bootstrap values are given at the nodes. Bootstrap support values equal to or higher than 70% are provided. The tree is rooted with Hohenbuehelia mastrucata and H. auriscalpium.
FIGURE 13 in Morphological and molecular insights into the hidden edible mushroom diversity in Sri Lanka
FIGURE 13. Termitomyces microcarpus (Herbarium code: USJ-GMBU-001). a. Spores. b. Basidia. c. Pleurocystidia. d. Cheilocystidia. Scale bars: a = 5 µm; b, c, d = 10 µm. Illustration by Aseni Ediriweera.
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.