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.
18
datasets available to search
ShareScore release 0.9.0
Dataset results
18 results for “Xiphydria”
The mycobiome of the gut of willow wood borer, Xiphydria prolongata (Hymenoptera: Xiphydriidae): a rich source of rare yeasts
<p>A high-throughput amplicon sequencing as a culture-independent approach was used to identify the gut mycobiome of the willow wood borer <em>Xiphydria prolongata</em>. The findings of this study are significance in terms of the insect-fungal interactions and indicate the unexpected richness of the mycobiome and the presence of many rare yeast species in the wood borer gut. A total of 40 fungal genera were found, and among them, only one endophytic fungi, <em>Daldinia</em> (Hypoxylaceae), has been previously reported in <em>Xiphydria.</em> <em>Zygosaccharomyces siamensis</em> is the most prevalent ascomycete species, while <em>Rhodosporidiobolus colostri</em> is the most abundant basidiomycetous yeast in <em>X. prolongata</em>. Some of the species identified in here was known as very rare fungus such as <em>Skoua fertilis</em>, <em>Chaetomium nepalense, R. colostri </em>and<em> Vustinia terrae</em>. This study is also the first report to <em>S. fertilis </em>and<em> V. terrae</em> in the insect gut flora. These funguses most likely aid in the digestion of lignocellulose in the gut of wood borer. Therefore, further researches are required to know the source of acquisition and functional role of these yeast and their industrial potential.</p>
Fig. 1 in Records of Four Xiphydriidae (Hymenoptera) Collected in Traps in Japan, with Notes on Xiphydria melanoptera
Fig. 1. Apical part of abdomen, lateral view, Xiphydria melanoptera (A–C) and X. kastsheevi (D).—A, Holotype, reproduced from Shinohara et al., 2020, laterally reversed; B, C, specimens from Nakasatsunai; D, holotype, reproduced from Ermolenko (1979).
Linked collectors and determiners for: The Xiphydria palaeanarctica group from Japan (Hymenoptera, Xiphydriidae).
Natural history specimen data linked to collectors and determiners held within, "The Xiphydria palaeanarctica group from Japan (Hymenoptera, Xiphydriidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/65d843de-4c04-449f-8e5b-168e825cd314">https://bionomia.net/dataset/65d843de-4c04-449f-8e5b-168e825cd314</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/65d843de-4c04-449f-8e5b-168e825cd314">https://gbif.org/dataset/65d843de-4c04-449f-8e5b-168e825cd314</a>. Formatted as a Frictionless Data package.
FIG. 1 in The Xiphydria annulitibia group in northeastern Asia (Hymenoptera, Xiphydriidae)
FIG. 1. Xiphydria spp., females.—A, X. annulitibia, holotype; B, C, X. konishii, paratype, Bibai; D, X. konishii, holotype; E, X. konishii, paratype, Take; F, X. melanoptera, holotype.
FIG. 2 in The Xiphydria annulitibia group in northeastern Asia (Hymenoptera, Xiphydriidae)
FIG. 2. Xiphydria kanba, female (A–F) and male (G–M), paratopotypes.—A, G, Dorsal view; B, H, I, lateral view (I, showing lateral pale spots on abdomen); C, J, ventral view; D, K, head, dorsal view; E, L, head, frontal view; F, M, head lateral view.
FIG. 5 in The Xiphydria annulitibia group in northeastern Asia (Hymenoptera, Xiphydriidae)
FIG. 5. Apical parts of abdomens, holotypes, lateral view.—A, Xiphydria annulitibia; B, X. kanba; C, X. konishii; D, X. melanoptera.
FIGURE 1 in DNA barcodes and morphology revealed three species masquerading in Xiphydria camelus of authors (Hymenoptera, Xiphydriidae) in Northeast Asia: X. eborata sp. rev. and X. albopicta sp. nov.
FIGURE 1. The maximum likelihood tree based on 558 bp of mitochondrial COI gene sequence (-ln likelihood = 1510.28). Numbers on branches indicate bootstrap values for MP, NJ and ML analyses (shown only for higher nodes with>50). Numbers of each terminal label represent the sample ID or GenBank accession number.
FIGURE 2 in DNA barcodes and morphology revealed three species masquerading in Xiphydria camelus of authors (Hymenoptera, Xiphydriidae) in Northeast Asia: X. eborata sp. rev. and X. albopicta sp. nov.
FIGURE 2. Xiphydria camelus (A, B), X. albopicta (C–E) and X. eborata (F–I), females.—A, Izumisawa, Hokkaido, Japan; B, Kangaslampi, Finland; C, D, holotype; E, Fuuren, Hokkaido, Japan; F, syntype of X. eborata; G, lectotype of X. kawakamii; H, lectotype of X. kuccharonis; I, Shintoku, Hokkaido, Japan.
FIGURE 4 in DNA barcodes and morphology revealed three species masquerading in Xiphydria camelus of authors (Hymenoptera, Xiphydriidae) in Northeast Asia: X. eborata sp. rev. and X. albopicta sp. nov.
FIGURE 4. Xiphydria camelus (A, F), X. albopicta (B, G) and X. eborata (C–E, H), females (A–D) and males (E–H).—A, Kangaslampi, Finland; B, holotype; C, syntype of X. eborata; D, Sounkyo, Hokkaido, Japan; E, H, lectotype of X. jozana; F, Satsunaigawa, Hokkaido, Japan; G, Pirikaneppu, Hokkaido, Japan.
FIGURE 3 in DNA barcodes and morphology revealed three species masquerading in Xiphydria camelus of authors (Hymenoptera, Xiphydriidae) in Northeast Asia: X. eborata sp. rev. and X. albopicta sp. nov.
FIGURE 3. Xiphydria camelus (A, B), X. albopicta (C–E) and X. eborata (F–I), heads in dorsofrontal view, females.—A, Hikawa-rindo, Honshu, Japan; B, Kangaslampi, Finland; C, holotype; D, Fuuren, Hokkaido, Japan; E, Ashibetsu, Hokkaido, Japan; F, Sounkyo, Hokkaido, Japan; G, syntype of X. eborata; H, lectotype of X. kawakamii; I, lectotype of X. kuccharonis.
FIGURE 2 in The Xiphydria palaeanarctica group from Japan (Hymenoptera, Xiphydriidae)
FIGURE 2. Head, female, Xiphydria ogasawarai (A, B), X. palaeanarctica (C, D) and X. nagasei (E, F)—A, Lectotype of X. alnivora Matsumura; B, Yunohana; C, D, lectotype of X. jezoensis Matsumura; E, F, holotype. Left arrow in B and arrows in D, F: genal carina; right arrow in B: occipital carina (crassa).
FIGURE 1 in The Xiphydria palaeanarctica group from Japan (Hymenoptera, Xiphydriidae)
FIGURE 1. Xiphydria ogasawarai (A–C), X. palaeanarctica (D–G) and X. nagasei (H, I)—A, Holotype, female; B, lectotype of Xiphydria alnivora Matsumura, female; C, Hikawa-rindo, male; D, lectotype of X. jezoensis Matsumura, female; E, Maruyama, female; F, Meakan Spa, male; G, "allolectotype" of Xiphydria alnivora Matsumura; H, Futamata, male; I, holotype, female.
FIGURE 4 in The Xiphydria palaeanarctica group from Japan (Hymenoptera, Xiphydriidae)
FIGURE 4. Abdomen, male, ventrolateral view—A, Xiphydria ogasawarai, Hikawa-rindo; B, X. palaeanarctica, "allolectotype" of Xiphydria alnivora Matsumura; C, X. nagasei, Oyama; D, X. nagasei, Ten'nouji-one.
FIGURE 3 in The Xiphydria palaeanarctica group from Japan (Hymenoptera, Xiphydriidae)
FIGURE 3. Antenna, female (A, C, E) and tip of male abdomen, dorsal view (B, D, F)—A, Xiphydria ogasawarai, Komotsurushi-yama; B, X. ogasawarai, Hikawa-rindo; C, X. palaeanarctica, "Sahoro"; D, X. palaeanarctica, Meakan Spa; E, X. nagasei, holotype; F, X. nagasei, Futamata.
Fig. 2 in Records of Four Xiphydriidae (Hymenoptera) Collected in Traps in Japan, with Notes on Xiphydria melanoptera
Fig. 2. Xiphydria melanoptera, male, three specimens (A–H, I and J) from Nakasatsunai. — A, Lateral view; B, head, dorsofrontal view; C, head, frontal view; D, antenna; E, head and thorax, lateral view; F, apex of abdomen, dorsal view; G, apex of abdomen, lateral view, arrows showing hair groups on sterna 7 and 8; H, apex of abdomen, ventral view; I, J, head, laterofrontal view.
FIG. 6. A in The Xiphydria annulitibia group in northeastern Asia (Hymenoptera, Xiphydriidae)
FIG. 6. A, View of the type locality of Xiphydria kanba in Horobinai, August 24, 2019; B, a female emerging, July 24, 2019; C–J, another female, emerging, July 25, 2019.
FIG. 4 in The Xiphydria annulitibia group in northeastern Asia (Hymenoptera, Xiphydriidae)
FIG. 4. Xiphydria annulitibia (A) and X. kanba (B), females, holotypes, wings, with names of cells (A) and veins and crossveins (B). Four large arrows show open or nearly open (A) or closed (B) apices of cell 3R1 in forewing and cell R1 in hindwing.
FIG. 3 in The Xiphydria annulitibia group in northeastern Asia (Hymenoptera, Xiphydriidae)
FIG. 3. Heads, females, Xiphydria annulitibia, holotype (A–C), X. kanba, holotype (D–F), X. konishii, holotype (G–I) and X. melanoptera, holotype (J–L).—A, D, G, J, Dorsal view; B, E, H, K, frontal view; C, F, I, L, frontolateral view.
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.