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.
298
datasets available to search
ShareScore release 0.7.1
Dataset results
298 results for “Iridaceae”
FIGURE 18. Habit and floral details. A in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 18. Habit and floral details. A) Eremiris lactea (Lindley 1840: t. 1); B) Sclerosiphon songaricum (photo: Vladimir Kolobincev); C) Joniris ruthenica (photo: Aleksandr Kostjukov); D) Joniris ruthenica (Ker Gawler 1811: t. 1393); E) Phaeiris fulva (Small 1927: t. 388).
FIGURE 4 in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 4. Flower morphology: falls, standards and stylar branches, sometimes with spathe bracts (cont.). A) Limniris sibirica (photo: Frank Hoehnel); B) Limniris chrysographes (photo: Ken Walker); C) Limniris sanguinea (photo: Andrej Baryshenko); D) Eremiris lactea (photo: Andrey Korzun); E) Sclerosiphon songaricum (photo: Vladimir Kolobincev); F) Joniris brevituba (photo: Georgy Lazkov); G) Phaeiris giganticaerulea (photo: Rodney Barton); H) Zhaoanthus henryi (photo: Ken Walker); I) Zhaoanthus minutoaureus (photo: Dennis Kramb); J) Iridodictyum reticulatum (photo: Sean Zera); K) Iridodictyum danfordiae (photo: Peter Bohnert); L) Cryptobasis mariae (photo: Yuriy Danilevsky).
FIGURE 6. Carpology. A in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 6. Carpology. A) Belamcanda chinensis, seeds black, long persistent on the central axis of fruit (photo: Stanislav Doronenko); B) Pardanthopsis dichotoma, seeds shortly winged (photo: Ken Walker); C) Gattenhofia verna var. smalliana, seeds with fleshy raphe and ribbed surface (photo: Ken Walker); D) Tectiris tectorum, seeds glossy, pyriform, apiculate, with inconspicuous aril (photo: Ken Walker); E) Evansia wattii, seeds matte, angulose, with small aril (photo: Dennis Kramb); F) Chamaeiris foetidissima, seeds reddish, persistent on valves of the opened fruit (photo: Ken Walker); G) Chamaeiris halophila, seeds with papery, loose testa (photo: David Pilling); H) Hermodactylus tuberosus, seeds globose with gelatinous aril (photo: Ken Walker); I) Lophiris cristata, seeds with long coiled appendage (photo: Jan Sacks); J) Zhaoanthus speculatrix, seeds with aril withering early as a wing (photo: Ken Walker); K) Phaeiris giganticaerulea, seeds large, flattened, with thickened, corky testa (photo: Robert R. Pries); L) Joniris uniflora, seeds with fleshy raphe vanishing on drying (photo: Robert R. Pries); M) Limniris sibirica, seeds discoidal, without aril, with subcorky testa (photo: Ken Walker); N) Rodionenkoa gracilipes, seeds with fleshy raphe and testa surface pitted (photo: Robert R. Pries); O) Junopsis collettii, seeds oblong with conspicuous whitish aril (photo: Ken Walker); P) Zhaoanthus koreanus, seeds globosecompressed, with fleshy raphe withering early as a wing (photo: Robert R. Pries); Q) Iris hoogiana, seeds with prominent aril and testa surface reticulate-wrinkled (photo: Robert R. Pries); R) Iris pumila, seeds without aril and testa surface reticulate-wrinkled (photo: Steve Hurst); S) Juno bucharica, seeds apiculate with fleshy appendage (photo: Ken Walker); T) Siphonostylis lazica, seeds angulose with testa surface covered with sessile glands (photo: Ken Walker). Scale bars in mm.
FIGURE 3 in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 3. Flower morphology: falls, standards and stylar branches in most cases, sometimes with spathe bracts. A) Siphonostylis lazica (photo: Ken Walker); B) Gattenhofia verna (photo: Jim McCormac); C) Pardanthopsis dichotoma (photo: Christy Hensler); D) Belamcanda chinensis, with all tepals subequal and also with fruits (photo: Tom Murphy); E) Iris germanica (photo: Ken Walker); F) Iris acutiloba (photo: Aleksandr Ivanov); G) Iris tigridia (photo: Vladimir Y. Arkhipov); H) Iris bloudowii (photo: Vesa Muurinen); I) Juno planifolia (photo: Mario Martínez-Azorín); J) Evansia japonica (photo: Ken Walker); K) Tectiris tectorum (photo: Ken Walker); L) Junopsis decora (photo: Ken Walker).
FIGURE 2 in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 2. External morphology of rootstock (bulbs, rhizomes and roots). A) Iridodictyum reticulatum, bulb with reticulate outer tunics (photo: Ken Walker); B) Xiphion heracleanum, bulb with membranous outer tunics and stem bulbil (photo: Manuel B. Crespo); C) Juno narbutii, bulb with persistent fleshy roots (photo: Ken Walker); D) Juno rosenbachiana, bulb with persistent fleshy roots (photo: Ken Walker); E) Limniris pseudacorus, rhizome with swollen annulate annual growths (photo: G.–U. Tolkiehn); F) Hermodactylus tuberosus, rhizome with pseudodigitate tubercles (photo: Attilio Marzorati); G) Junopsis barbatula, fleshy tuberous roots surrounding the inconspicuous central rhizome (photo: Ken Walker); H) Phaeiris hexagona, rhizome with fibrous remains of old leaves on scars, and fibrosus roots (photo: Ken Walker); I) Siphonostylis lazica, rhizome dichotomously branched and fibrous roots (photo: Ken Walker); J) Zhaoanthus odaesanensis, slender stoloniferous rhizomes with long, thin roots bearing nodules (photo: Christy Hensler); K) Rodionenkoa gracilipes, heterogeneous rhizome with cord-like branches (photo: Ken Walker); L) Cryptobasis bungei, short rizhomes with reddish-brown remains of leaf sheaths forming an apical neck-like structure (MO s.n.).
FIGURE 1 in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 1. The summary of selected analyses, modified from Mavrodiev et al. (2014). On the left: topology resulting from both Maximum Likelihood and Bayesian Analyses (195 taxa). Statistical support mentioned above and below branches (ML Bootstrap\Bayesian posterior probabilities). On the right: topology resulting from the Three-taxon statement Analysis (80 taxa). Selected synonyms of the accepted taxa are indicated in brackets (see the text for additional names), new taxa indicated in red font. See Mavrodiev et al. (2014) for additional details.
FIGURE 7. Habit and floral details. A in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 7. Habit and floral details. A) Siphonostylis cretensis (Baker 1878: t. 6343); B) Gattenhofia verna (Small 1931: t. 520); C) Pardanthopsis dichotoma (Baker 1879: t. 6428); D) Belamcanda chinensis (Curtis 1791: t. 171).
FIGURE 5 in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 5. Flower morphology: falls, standards and stylar branches, sometimes with spathe bracts (cont.). A) Hermodactylus tuberosus (photo: Paul Tyerman); B) Syrianthus grant-duffii (photo: Gideon Pisanty); C) Xiphion xiphium (photo: Mario MartínezAzorín); D) Xiphion heracleanum (photo: Alicia Vicente); E) Alatavia kolpakowskiana (photo: Joyce Fingerut); F) Chamaeiris foetidissima (photo: Mario Martínez-Azorín); G) Chamaeiris graminea (photo: José Quiles); H) Chamaeiris reichenbachiana (photo: José Quiles); I) Chamaeiris anguifuga (photo: Jim Murrain); J) Dielsiris longipetala (photo: Ken Walker); K) Rodionenkoa gracilipes (photo: Ken Walker); L) Lophiris cristata (photo: Ken Walker).
FIGURE 25. Habit and floral details. A in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 25. Habit and floral details. A) Chamaeiris anguifuga (photo: Jim Murrain); B) Dielsiris missouriensis (Baker 1881: t. 6579); C) Rodionenkoa gracilipes (Hemsley 1903: t. 7926); D) Lophiris cristata (Small 1924: t. 320).
FIGURE 23. Habit and floral details. A in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 23. Habit and floral details. A) Syrianthus grant-duffii (Baker 1889: t. 7604); B) Xiphion boissieri (Baker 1890: t. 7097); C) Alatavia kolpakowskiana (Baker 1880: t. 6489); D) Chamaeiris orientalis (Trew et al. 1773: t. 100).
FIGURE 22 in Can a rainbow consist of a single colour? A new comprehensive generic arrangement of the 'Iris sensu latissimo' clade (Iridaceae), congruent with morphology and molecular data
FIGURE 22. Approximate distribution areas: A) Xiphion (red); B) Iridodictyum (yellow); C) Alatavia (green).
FIGURE 10. Cypella suffusa. A in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 10. Cypella suffusa. A. holotype, at herbarium SI. B. detail of the spathes. Cypella ravenniana. C. paratype, at herbarium SI (material cited as a paratype of C. suffusa by Ravenna). D. detail of the spathes.
FIGURE 3. Cypella gutatta. A. Habit. B. Distal branch. C in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 3. Cypella gutatta. A. Habit. B. Distal branch. C. Flower and spathe, lateral view. D. Flower, upper view. E. Flowers, tepals removed F. Inner tepal, lateral view. G. Spathe with immature capsule H. Capsule. I. Seed. J. Cauline leaf. K. Distal bract. L. Crests of the style branches. (A–L from L.P. Deble et al. 14991).
FIGURE 7. Cypella suffusa. A. Habit. B in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 7. Cypella suffusa. A. Habit. B. Distal part of the plant. C. Flower and spathe, lateral view. D. Flower, upper view. E. Flowers, tepals removed. F. Inner tepal. G. Capsule. H. Seed. I. Spathe with immature capsule. J. Distal cauline leaf (A–J from Deble et Alves 15511).
FIGURE 5. Cypella aurinegra. A. flower, upper view. B. flower, lateral view. C in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 5. Cypella aurinegra. A. flower, upper view. B. flower, lateral view. C. Detail of stamens and style. Cypella gutatta. D. Flower, upper view. E. Flower, lateral view. F. Detail of stamens and style (A–B from L.P. Deble et al. 15105; C from González 2250; D from L.P. Deble et al. 14990; E–F from L.P. Deble et al. 14991).
FIGURE 6. Cypella ravenniana. A. Habit. B. Flower, lateral view. C. Flower, upper view. D. Flowers, tepals removed. E. Inner tepal. F. Capsule. G. Seed. H. Spathe with immature capsule. I in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 6. Cypella ravenniana. A. Habit. B. Flower, lateral view. C. Flower, upper view. D. Flowers, tepals removed. E. Inner tepal. F. Capsule. G. Seed. H. Spathe with immature capsule. I. Stamen (A–C, E–I from Deble et Alves 15505; D from Deble & Alves 15504).
FIGURE 1. Cypella aurinegra. A. Habit. B in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 1. Cypella aurinegra. A. Habit. B. Flower and spathe, lateral view. C. Flower, upper view. D. Flowers, tepals removed. E. Inner tepal. F. Capsule. G. Seed. H. Spathe with immature capsule. I. Crests of the style branches. J. Cauline leaf. K. Stamen (A–K from L.P. Deble et al. 15105).
FIGURE 9. Cypella ravenniana. A. flower, upper view. B. flower, inclinate view. C. Flower, lateral view. Cypella suffusa. D. Flower, upper view. E. Flower, inclinate view. F in Three new species of Cypella (Iridaceae) from South America, and taxonomic delimitation of C. suffusa Ravenna
FIGURE 9. Cypella ravenniana. A. flower, upper view. B. flower, inclinate view. C. Flower, lateral view. Cypella suffusa. D. Flower, upper view. E. Flower, inclinate view. F. Flower, lateral view (A from Deble et al. 15504; B–C from Deble et Alves 15505; D–F from Deble et Alves 15511).
FIGURE 1 in Two new species of Pseudotrimezia (Iridaceae) endemic to Diamantina Plateau, Minas Gerais, Brazil
FIGURE 1. Pseudotrimezia nana (from the holotype). A. Habit; B. Rhipidium with mature fruits; C. Flowering stem (peduncle) with papillae; D. Underground system (corm) in longitudinal section; Pseudotrimezia striata (from the holotype); E. Habit; F. Flower; G. Rhipidium with mature fruits; H. Underground system in longitudinal section.
FIGURE 4 in Two new species of Pseudotrimezia (Iridaceae) endemic to Diamantina Plateau, Minas Gerais, Brazil
FIGURE 4. Geographic distribution of Pseudotrimezia nana and P. striata in Diamantina Plateau, Minas Gerais State.
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.