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.
6,523
datasets available to search
ShareScore release 0.9.0
Dataset results
6,523 results for “New record genus”
Fig. 2 in Australoluciola thailandica Sriboonlert, Swatdipong, and Sartsanga, New Species (Coleoptera: Lampyridae: Luciolinae) from Thailand: First Record of the Genus Australoluciola Ballantyne from Southeast Asia
Fig. 2. Australoluciola thailandica, holotype male (KU-2016-08-23). A) Dorsal habitus, B) Ventral habitus, C) Pronotum, D) Abdomen (V5–7), paratype male (KU-2016-08-24), E) Aedeagus and sheath within T8, dorsal view, F) Aedeagal sheath with aedeagus still contained, dorsal view, G) T8, ventral view, H) Head and part of thorax, ventral view, I) Aedeagal sheath, dorsal view, J) Aedeagal sheath, lateral view, K) Aedeagal sheath, ventral view, L) Left elytron, dorsal view, M) Aedeagus, dorsal view, N) Aedeagus, right lateral view, O) Aedeagus, right ventral view, P) Abdominal tergites.
Fig. 1 in Australoluciola thailandica Sriboonlert, Swatdipong, and Sartsanga, New Species (Coleoptera: Lampyridae: Luciolinae) from Thailand: First Record of the Genus Australoluciola Ballantyne from Southeast Asia
Fig. 1. Type locality of Australoluciola thailandica. A) Map of Thailand indicating type locality in Tak province near the Myanmar border (acquired from commons.wikimedia.org/wiki/File:Thailand_Topography.png), B) Habitat.
Figs. 1–2. Euschaefferia mclayi, specimen collected 3.2 in New Records of the Genus Euschaefferia Leng, 1920 (Coleoptera: Trogossitidae: Trogossitinae: Trogossitini) from Mexico
Figs. 1–2. Euschaefferia mclayi, specimen collected 3.2 km east of Tehuacán, Puebla, Mexico on 8 July 1967 by S. L. Wood. 1) Dorsal habitus with prominent outer angles of the submentum clearly visible (arrow); 2) Lateral habitus. Scale bar = 1 mm.
Fig. 3 in New Records of the Genus Euschaefferia Leng, 1920 (Coleoptera: Trogossitidae: Trogossitinae: Trogossitini) from Mexico
Fig. 3. Map of southwestern USA and Mexico showing published collecting records for Euschaefferia mclayi: 1 = Westwood Hills, Los Angeles County, California (type locality, Van Dyke 1944); 2 = Sedona, Arizona (Bright 1976); 3 = 24 km west of Tehuantepec, Oaxaca (BYUC); 4 = 3.2 km east of Tehuacán, Puebla (BYUC).
FIGURE 5 in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 5. Polyalthia pumila: A. Habit; B. Inflorescence, showing supra-axillary attachment; C. Base of flower, with petals removed to show stamens and carpels; D. Sepals (outside below, inside above); E. Outside of outer petal; F. Outside of inner petal; G. Stamens (inside view on left, outside view on right); H. Carpel; I. Fruit; J. Monocarp. The illustration was drawn by Thadanai Saensuk from Leeratiwong 20-1528 (PSU).
FIGURE 1 in Phaeorrhiza (Physciaceae), a new lichen genus record to China
FIGURE 1. Morphology and anatomy of Phaeorrhiza nimbosa. a–c Thallus and apothecia. a Thallus and apothecia growing in the open. b Thallus surface covered with pruina. c Thallus and apothecia surface covered with pruina. d The lower surface of thallus and rhizoyphae. e Section of apothecia. f Beltraminia-type ascospores. Scale bars: 3 mm (a–c); 0.2 mm (d); 50 μm (e); 10 μm (f).
FIGURE 1 in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 1. Polyalthia heliopetala: A. Habit; B. Leaf bases (upper side) and inflorescences, with point of inflorescence attachments to stem indicated by arrows; C. Flower showing recurved petals; D. Flower, top view showing the embossed patch on the inner base of the petals; E. Outer surfaces of outer petals; F. Outer surfaces of inner petals; G. Stamens and persistent sepal on pedicel; H. Torus with some stamens removed to show attachment of stamens and carpels on the convex torus surface; I. Carpel; J. Stamens (outside on left, inside on right); K. Monocarps. The illustration was drawn by Nattapong Chomlok from Leeratiwong 20-1527 (BKF).
FIGURE 4 in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 4. Polyalthia taweensis: A. Leaves and inflorescences; B. Upper surface of leaf base; C. Lower surface of leaf base; D. Inflorescence; E. Sepals (outside on left, inside on light); F. Outsides of petals (outer petal on left, inner petal on right); G. Insides of petals (outer petal showing raised rugose border on left, inner petal on right). A, B & C are from Middleton, Phuphat, Pooma & Williams 2900 (BKF); E, F & G are from Leeratiwong 20-1534 (PSU, spirit material); all photographs by Pasakorn Bunchalee. Photograph in D was taken by Yamilah Sama-ae in Narathiwat, Ra Ngae District, Bo Ngo Subdistrict, Ta We Mountain, 20 April 2020.
FIGURE 3 in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 3. Polyalthia taweensis: A. Habit; B. Close-up of petiole and leaf base (lower side); C. Inflorescence; D. Flower; E. Sepals (outside above, inside below); F. Outside of outer petal; G. Inside of outer petal, showing raised rugose area (arrow); H. Outside of inner petal; I. Inside of inner petal; J. Inner petal, side view showing inward curvature to midpoint (arrow) and erect apex; K. Carpel; L. Stamen, outer view. The illustration was drawn by Nattapong Chomlok from Leeratiwong 20-1534 (BKF).
FIGURE 7. A. & B in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 7. A. & B. Maps showing distributions of Polyalthia heliopetala (●), P. taweensis (▲) and P. pumila (■) in southern Peninsular Thailand. Map in B is an enlargement of the area shown in the rectangle in A. Maps by Pasakorn Bunchalee.
FIGURE 2 in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 2. Polyalthia heliopetala: A. Leaves and inflorescences; B. Lower surface of leaf base and flower; C. Flower showing the embossed basal patch of the inner surface of the petals; D. Upper surface of leaves and flower; E. Lower surface of leaf showing venation; F. Monocarps. A, B, D and E are from Leeratiwong 20-1527 (BKF); F is from Puudjaa 626 (BKF)]; all photographs by Pasakorn Bunchalee. Photograph in C was taken by Yamilah Sama-ae in Narathiwat, Ra Ngae District, Bo Ngo Subdistrict, Bue Chaeng Village, 7 April 2020.
FIGURE 6 in Two new species and a new record of the genus Polyalthia (Annonaceae) from Peninsular Thailand
FIGURE 6. Polyalthia pumila: A. Twig and flowers; B. Flowers and a single monocarp; C. Upper surface of leaf base; D. Lower surface of leaf; E. Fruit; F. Seed (Side view). Photographs in A & B were taken Charan Leeratiwong in Narathiwat, Cha Nae District, Dusong Yo Subdistrict, Ruepoh village, Mo Tae Mountain, 4 April 2020. C, D, E & F are from Leeratiwong 20-1528 (PSU); photographs by Pasakorn Bunchalee.
FIGURE 3 in Phaeorrhiza (Physciaceae), a new lichen genus record to China
FIGURE 3. Bayesian Inference (BI) phylogeny of the genus Phaeorrhiza and related genera of Physicaceae, based on combined nrITS, mtSSU and nrLSU sequences. ML bootstrap value ≥ 70% and posterior probabilities ≥ 0.95 from the Bayesian analysis are given adjacent to nodes.
FIGURE 2 in Phaeorrhiza (Physciaceae), a new lichen genus record to China
FIGURE 2. Morphology and anatomy of Phaeorrhiza sareptana var. sphaerocarpa a–c Thallus and apothecia. a Scattered thallus with non-pruinose surface in open area. b Scattered thallus with pruinose surface. c Continuous thallus with pruinose surface in the shade. d Beltraminia-type ascospores. e Section of apothecia. f Paraphyses. Scale bars: 3 mm (a–c); 10 μm (d); 50 μm (e); 20 μm (f).
FIGURE 3. A in Amylotheca cleofei sp. nov. (Loranthaceae), a new species and genus record for the Philippines
FIGURE 3. A) Map of the Philippines. B) Map of Mindanao showing Davao Oriental. C) Map of Mount Hamiguitan Range Wildlife Sanctuary, San Isidro Municipality, Davao Oriental, showing the distribution of Amylotheca cleofei. Map generated by Tomas Reyes Jr. using ARC-GIS (2010).
FIGURE 2 in Amylotheca cleofei sp. nov. (Loranthaceae), a new species and genus record for the Philippines
FIGURE 2. General morphological details of Amylotheca cleofei. A) Stems, leaves and inflorescence. B) Detail of a dichasium. Note the sessile central flower (corolla removed) of the triad. C) Detail of a single flower. D) Inflorescence with mature buds and two blooms in anthesis. E) Detail of ripe fruit. Note remains of bract of a sessile flower below centre. F) Detail of a bract subtending the peduncle (removed) of a dichasium. G) Epicortical runner appressed against the stem of its Melastoma host. Note the haustorial disk on the right side of the stem. H.) A. cleofei (foliage to left) growing on its host (central foliage), with each of its haustorial disks indicated (white arrows). Scale bars: B = 1 cm; C, E, G = 5 mm; F = 1 mm. Photographs by D.N. Tandang © 2019 (A, D, & F) and C.M.B. Cleofe © 2020 (B, C, E, G, & H).
FIGURE 1 in Amylotheca cleofei sp. nov. (Loranthaceae), a new species and genus record for the Philippines
FIGURE 1. Amylotheca cleofei Tandang, Galindon & A.S.Rob. A) Twig with young inflorescence. B. Single dichasium (triad). Note the sessile central flower. C) Cupule. D) Corolla tube. E) Expanded corolla) F. Corolla lobes with fused anthers and filaments. G) Pistil. H) Floral bract of sessile flower. I) Floral bract of pedicellate flower J) Seed. K) Fruit in longitudinal section. L) Fruit in cross section. Scale bars: A = 1 cm; B = 5 mm; C, H, I = 1 mm; D, E, G, J, K, L = 5.0 mm; F = 2.0 mm. Illustration: Bing Famoso Tac-an.
FIGURE 2 in New record genus and a new species of Allodiatrype from China based on morphological and molecular characters
FIGURE 2 Allodiatrype trigemina (FCATAS841, Holotype). a, c Stromata on host substrate. b Cross section of stroma. d Close up of stromata surface, showing ostiolar opening appearing with Y-shaped or trigeminal-shaped structure.) e–g Vertical section of stroma, showing perithecia. h–j Asci. k–m Ascospores. n Paraphyses. Bars: a–g = 500 μm, h–j = 20 μm, n = 10 μm, k–m = 5 μm.
FIGURE 1 in New record genus and a new species of Allodiatrype from China based on morphological and molecular characters
FIGURE 1. Phylogeny of Diatrypaceae inferred from ITS-SSU-TUB2 sequences. Topology is from RaxML analysis with maximum likelihood bootstrap values (≥75 former) and Bayesian posterior probability values (≥0.95, latter) shown along the branches. Different genera are indicated as coloured blocks. The new species is set in bold. Scale bar: 0.1 nucleotide substitutions per site. Branches with 100% ML and 1.00 BYPP are shown with a blue dot.
FIGURE 1. Acrobolbus knightii. A in An account of the genus Acrobolbus Nees (Marchantiophyta: Acrobolbaceae) in Thailand with a new record, Acrobolbus knightii (Mitt.) Briscoe
FIGURE 1. Acrobolbus knightii. A. Portion of branch, dorsal view. B. Leaves, dorsal view. C. Marginal cells. D. Apical cells. E. Median cells. F. Basal cells. [All from Tagawa & Kitagawa T4972 (BKF)].
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.