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.
35
datasets available to search
ShareScore release 0.7.1
Dataset results
35 results for “Boraginales”
FIGURE 3. A–I in A new species of Varronia (Cordiaceae) and a checklist of Boraginales for the State of Sergipe, Brazil
FIGURE 3. A–I Boraginales species of Sergipe State, Brazil. A. Cordia sellowiana. B. C. trichotoma. C. Euploca polyphylla. D. Heliotropium elongatum. E. Myriopus salzmannii. F. M. villosus. G. Tournefortia bicolor. H. Varronia curassavica. I. V. leucocephala. (Photos: A, H, I, D.D. Vieira; B, L. Nusbaumer; C–E, J.I.M. Melo; F, L. Cavalheiro; G, J.D. García G.).
FIGURE 6. A–H in Flora of Rio Grande do Norte, Brazil: Boraginales
FIGURE 6. A–H. Myriopus candidulus: A. Reproductive branch; B, C. Leaves, adaxial surface; D. Calyx; E. Gynoecium; F–H: Fruit. F. Fruit, within an inflorescence; G. Lateral view; H. Frontal view. (Drawn by R.R. Pessoa).
FIGURE 5. A–H in Flora of Rio Grande do Norte, Brazil: Boraginales
FIGURE 5. A–H. Varronia dardani: A. Reproductive branch; B, C. Leaves, adaxial surface; D. Inflorescence; E. Flower; F. Stamens; G. Gynoecium; H. Fruit. (Drawn by R.R. Pessoa).
FIGURE 3. A–G in Flora of Rio Grande do Norte, Brazil: Boraginales
FIGURE 3. A–G. Cordia glazioviana: A. Reproductive branch; B. Flower; C. Stamens, lateral view; D. Stamens, front view; E. Gynoecium; F. Fruit, showing an accrescent calyx; G. Fruit, frontal view. H–N. C. oncocalyx. H. Reproductive branch; I. Flower; J, K. Stamens, front view; L. Gynoecium; M, N: M. Fruit, showing an accrescent calyx; N. Fruit, frontal view. (Drawn by R.R. Pessoa).
FIGURE 2 in Flora of Rio Grande do Norte, Brazil: Boraginales
FIGURE 2. Map of Rio Grande do Norte, based on the grid system of the map prepared for "Flora do Rio Grande do Norte, Brazil". (Prepared by O.F. Oliveira).
FIGURE 4 in Flora of Rio Grande do Norte, Brazil: Boraginales
FIGURE 4. Reproductive branches of species: A. Cordia trichotoma; B. Varronia leucocephala; C. Euploca polyphylla; D. Euploca procumbens; E. Heliotropium elongatum; F. Myriopus rubicundus. (Photo credits: A and B of M. Oliveira; C of M.J. Silva; D–F of J.I.M. Melo).
Fig. 1 in Observations on flower and fruit anatomy in dioecious species of Cordia (Cordiaceae, Boraginales) with evolutionary interpretations
Fig. 1 Flower and perianth of C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–C, L–N: field images; D–K: stack shot images). A, B Inflorescence in bud. C inflorescence at anthesis. D Anthetic flower. E Opening calyx. F Calyx, longitudinally opened. G Bud, calyx partly removed to show the corolla still closed. H Postanthetic corolla, androecium %both turning brown) and gynoecium. J Postanthetic corolla with disrupting corolla tube. K Opened corolla tube with stamen insertion and anthers showing red lines and spots %exemplarily indicated by an arrow). L Shrubby habitus. M, N Inflorescence %abbreviations: a, anther; b, bud; c, calyx; co, corolla; f, filament; fl, flower; g, gynoecium; t, trichomes)
FIGURE 2 in A new species of Rochefortia (Ehretiaceae, Boraginales) from the Lesser Antilles
FIGURE 2. Holotype of Rochefortia barloventensis sp. nov. (Proctor 21020, A!).
FIGURE 4 in A new species of Rochefortia (Ehretiaceae, Boraginales) from the Lesser Antilles
FIGURE 4: Distribution of Rochefortia barloventensis sp. nov.
FIGURE 1 in Flora of Rio Grande do Norte, Brazil: Boraginales
FIGURE 1. Location of the State of Rio Grande do Norte, Brazil.
Figure 1 from: Feuillet C (2016) Two new combinations in Euploca Nutt. (Heliotropiaceae, Boraginales) and a conspectus of the species of the Guiana Shield area. PhytoKeys 61: 101-124. https://doi.org/10.3897/phytokeys.61.6260
Figure 1 - Euploca humistrata. Guyana, Upper Takutu-Upper Essequibo, Rupununi savanna, savanna near Mountain Point, 27 Feb–5 Mar 1985, Feuillet 1632 (CAY). Picture by Ingrid Lin at US.
Figure 2 from: Feuillet C (2016) Two new combinations in Euploca Nutt. (Heliotropiaceae, Boraginales) and a conspectus of the species of the Guiana Shield area. PhytoKeys 61: 101-124. https://doi.org/10.3897/phytokeys.61.6260
Figure 2 - Euploca lagoensis. French Guiana, SE of Tonate-Macouria, Savane Maillard, 25 Nov 1999, Raynal-Roques and Jérémie 24694 (CAY). (Picture by Piero Delprete at CAY).
Fig. 5 Gynoecial architecture and intraspecific variability. A–C, F, G, C in Flower and fruit anatomy of Cordia nodosa Lam. and Varronia bonplandii Desv. (Cordiaceae, Boraginales) with phylogenetic implications
Fig. 5 Gynoecial architecture and intraspecific variability. A–C, F, G, C. nodosa (blue frames). D, E, H–K, V. bonplandii (yellow frames). A, LS of carpel with two hemianatropous ovules. B, LS of stigma with pollen. C, LS of gynoecium. D, LS of hemianatropous ovule. E, F, LS of egg apparatus (white arrow indicates stalk under chalazal haustorium). G, TS of gynoecium with four locules and only two fertile ovules (i.e., one ovule per carpel). H, flower at anthesis with two styles, ten stamens and ten petals (arrow indicates dehiscence line of thecae). J, flower after
Fig. 2 Flower and perianth. A–E, G, V in Flower and fruit anatomy of Cordia nodosa Lam. and Varronia bonplandii Desv. (Cordiaceae, Boraginales) with phylogenetic implications
Fig. 2 Flower and perianth. A–E, G, V. bonplandii (yellow frames). F, H–L, C. nodosa (blue frames). A, inflorescence. B, bud (arrow indicates detached adaxial calyx epidermis). C, flower. D, gynoecium after anthesis in opened calyx (arrow indicates delaminated adaxial calyx epidermis). E, F, TS of sepals, petals and gynoecium (level of corolla tube). G, LSs of bud (left) and developing fruit (right; upper arrow indicates delaminated adaxial calyx epidermis, lower arrow indicates abscission area of the detached corolla tube). H, inflorescence. J, bud (right) and flower. K, operculate calyx (corolla shed). L, LSs of bud (left; arrow indicates constriction between the receptacle and the pedicel), flower at anthesis (middle) and flower after anthesis (right). Abbreviations: a, anther; c, corolla; d, disc; g, ovary; k, calyx; LS, longisection; o, ovule (or young seed); stg, stigma; sty, style; tr, trichomes; TS, transverse section
Fig. 3 Anthers and pollen. A, C, D, F, K–M, V in Flower and fruit anatomy of Cordia nodosa Lam. and Varronia bonplandii Desv. (Cordiaceae, Boraginales) with phylogenetic implications
Fig. 3 Anthers and pollen. A, C, D, F, K–M, V. bonplandii (yellow frames). B, E, G–J, C. nodosa (blue frames). A, opened corolla tube with trichomes (arrow). B–D, TS of anthers (arrows indicate dehiscence line, note crystals under phase-contrast microscopy in D). E, flower, stamens and yellow trichomes (arrow). F–H, TS of anther walls (arrows indicate binuclear tapetum cells). J, K, tricolporate and triporate pollen
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.