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.
30
datasets available to search
ShareScore release 0.7.1
Dataset results
30 results for “Myrtales”
Fig. 4 in Eugenia sapoensis Jongkind from Liberia and Eugenia breteleri Jongkind from Gabon, two new forest species (Myrtales: Myrtaceae)
Fig. 4. Eugenia breteleri sp. nov. A. Branch with leaves. B. Detail of leaf from below showing secretory cavities. C. Fruit (from pickled specimen) with style and part of the calyx still present. D. Cross section of fruit and single seed. A & B from Breteler 11457, C & D from Breteler 11546. Drawing by Hans de Vries.
Fig. 2. A–C in Eugenia sapoensis Jongkind from Liberia and Eugenia breteleri Jongkind from Gabon, two new forest species (Myrtales: Myrtaceae)
Fig. 2. A–C. Eugenia sapoensis sp. nov. A. Branchlet with fruit. B. Cross section of the fruit and single large seed. C. Lateral view of embryo (r = radicular protuberance). D–E. Morphology of the seed of Eugenia "Group X" as described by van Wyk (1980). D. Seed with part of the thin testa removed showing the surface of the embryo beneath (h = hilum). E. Lateral view of embryo (r = radicular protuberance). A–C from Jongkind 9351; D & E from van Wyk & Botha (1984: 66). Photographed by the author.
Fig. 1 in Eugenia sapoensis Jongkind from Liberia and Eugenia breteleri Jongkind from Gabon, two new forest species (Myrtales: Myrtaceae)
Fig. 1. Eugenia calophylloides DC. Branchlet with leaves and fruits. From Jongkind 8311. Photographed by the author.
Fig. 2 in Susceptibility of Eucalyptus spp. (Myrtales: Myrtaceae) and clones to Leptocybe invasa (Hymenoptera: Eulophidae) in Paraná, Brazil
Fig. 2. Percentage of leaves and stems with galls caused by Leptocybe invasa in plants in each stratum (lower, middle, upper) of approx. 2-m-tall Eucalyptus spp. and clones at Umuarama, PR, Brazil, in 2013.
Fig. 3 in Response of two chemotypes of Melaleuca quinquenervia (Myrtales: Myrtaceae) saplings to colonization by specialist herbivores
Fig. 3. Total mean (± SE) leaf biomass shed via abscission by Melaleuca quinquenervia saplings subjected to unrestricted or restricted herbivory by Oxyops vitiosa and Boreioglycaspis melaleucae. **: P = 0.01.
Fig. 1 in Response of two chemotypes of Melaleuca quinquenervia (Myrtales: Myrtaceae) saplings to colonization by specialist herbivores
Fig. 1. Mean (± SE) dry weight biomass of leaves shed via abscission by saplings of 2 Melaleuca quinquenervia chemotypes subjected to 2 levels of herbivory by Oxyops vitiosa and Boreioglycaspis melaleucae.
Fig. 1 in Use of crape myrtle, Lagerstroemia (Myrtales: Lythraceae), cultivars as a pollen source by native and non-native bees (Hymenoptera: Apidae) in Quincy, Florida
Fig. 1. Cultivar positions in crape myrtle experimental block. Each small circle is 1 crape myrtle. Each quadrat has 4 crape myrtle plants of the same cultivar. Legend for cultivar abbreviations: Apalach = 'Apalachee', Bwhite = 'Byers Wonderful White', Cbeau = 'Carolina Beauty', Natch = 'Natchez', and Tuske = 'Tuskegee'.
Fig. 2 in Merianthera calyptrata sp. nov. (Melastomataceae, Myrtales), a new candelabriform species from Minas Gerais, Brazil
Fig. 2. Field photographs of Merianthera calyptrata R.Goldenb., Bochorny & Fraga sp. nov. A. Fertile branch. B. Branch apex, longitudinal section showing the fistulose structure of the stem, with the chambers filled with parenchyma. C–E. Sequence of flower anthesis, showing the calyptrate calyx with its circumscissile dehiscence. F. Flowers, frontal view. G. Stamens and style, lateral view. H. Old flower, lateral view; this photo shows the single, ebracteolate flower and the absence of a peduncle. I. Mature fruit. From: Fraga & Couto 4144 (A–H), Amorim et al. 11854 (I). Photos by C.N. Fraga (A–H) and Y. Gouvea (I).
Fig. 1 in Merianthera calyptrata sp. nov. (Melastomataceae, Myrtales), a new candelabriform species from Minas Gerais, Brazil
Fig. 1. Illustration of Merianthera calyptrata R.Goldenb., Bochorny & Fraga sp. nov. A. Fertile branch. B. Detail of the branch showing leaf and flower scars plus two lenticels, each at one side of the leaf scar. C. Branch tip with leaves, flower buds, an open flower and a fruit. D. Flower opening sequence, from left to right: flower bud, with the calyptrate calyx still attached to the hypanthium; flower bud, with a circumscissile dehiscence, but the calyptra still holding the petals together; and young flower, with the calyptrate calyx falling from the petal tips. E. Petal, adaxial surface. F. Flower in longitudinal section (calyx, petals and stamens removed) with detail of trichomes at the base of style. G. Antesepalous stamens, from bud (left) and mature flower (right). H. Antepetalous stamens, from bud (right) and mature flower (left). I. Antepetalous stamen, detail of the pore. From Fraga & Couto 4144 (all drawings). Drawn by Diana Carneiro.
Fig. 4. Merianthera calyptrata R in Merianthera calyptrata sp. nov. (Melastomataceae, Myrtales), a new candelabriform species from Minas Gerais, Brazil
Fig. 4. Merianthera calyptrata R.Goldenb., Bochorny & Fraga sp. nov. in its habitat. A. Inselberg and granitic outcrops where the plant can be found. B. Vegetation cluster growing on a cleft, on a granitic outcrop, with M. calyptrata to the right and front, with flowers. C. Three individuals with spreading crowns, behind some Alcantarea (É.Morren ex Mez) Harms (Bromeliaceae). From Fraga & Couto 4144. Photos by C.N. Fraga.
Fig. 3. Merianthera calyptrata R in Merianthera calyptrata sp. nov. (Melastomataceae, Myrtales), a new candelabriform species from Minas Gerais, Brazil
Fig. 3. Merianthera calyptrata R.Goldenb., Bochorny & Fraga sp. nov., scanning electron micrographs of the abaxial surface of the leaf. A. General view. B. Detail of the dense vermiform trichomes (arrow) mixed with sessile glands (arrowhead). Scale bars: A = 200 µm; B = 100 µm. From A.M Amorim et al. 11854 (UPCB).
Fig. 5 in Merianthera calyptrata sp. nov. (Melastomataceae, Myrtales), a new candelabriform species from Minas Gerais, Brazil
Fig. 5. Distribution of Merianthera calyptrata R.Goldenb., Bochorny & Fraga sp. nov. and its closest relative, Merianthera burlemarxii Wurdack. BA = Bahia; ES = Espírito Santo; MG = Minas Gerais.
Fig. 3 in Eugenia sapoensis Jongkind from Liberia and Eugenia breteleri Jongkind from Gabon, two new forest species (Myrtales: Myrtaceae)
Fig. 3. Distribution map of Eugenia sapoensis sp. nov. and Eugenia breteleri sp. nov.
Figures 5-7 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 5-7. Lopesia pleromatis, sp. nov. Maia, male: (5) Wing; (6) 6th-8th abdominal segments (lateral view); (7) Terminalia, dorsal view.
Figures 12-14 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 12-14. Lopesia pleromatis, sp. nov. Maia, female: (12) 6th-8th abdominal segments (dorsal view); (13) 6th-8th abdominal segments (ventral view); (14) Cerci (ventral view).
Figures 19-24 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 19-24. Lopesia pleromatis, sp. nov. Maia, pupa: (19) Prothoracic spiracle; (20-22) Apex of prothoracic spiracle; (23) 2nd-4th abdominal segments (dorsal view); (24) terminal segment (dorsal).
Figures 25-26 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 25-26. Lopesia pleromatis, sp. nov. Maia, larva: (25) Prothoracic spatula and associated papillae (ventral view); (26) Terminal segment (dorsal view).
Figures 15-18 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 15-18. Lopesia pleromatis, sp. nov. Maia, pupa: (15) Head (frontal view); (16-18) Antennal horns.
Figures 1-4 in A new species of gall midge (Diptera, Cecidomyiidae) associated with Pleroma raddianum (DC.) Gardner (Myrtales: Melastomatacea), an endenic plant to Brazil
Figures 1-4. Lopesia pleromatis, sp. nov. Maia, male: (1) Head (ventral view); (2) 5th flagellomere; (3) Last flagellomere; (4) Hindleg, tarsal claw and empodium (lateral view).
A nuclear phylogenomic study of the angiosperm order Myrtales, exploring the potential and limitations of the universal Angiosperms353 probe set
<p>The premise of this study is to further advance the understanding of the species-rich, economically and ecologically important Myrtales, an angiosperm order in the rosid clade comprising nine families, approximately 400 genera and almost 14000 species occurring on all continents (except Antarctica). The potential of High Throughput Sequencing (HTS) and target enrichment with the Angiosperms353 probe kit is evaluated on a sample of 485 species in 305 genera (76% of all genera in the order). Results provide technical considerations for processing HTS data and the most comprehensive phylogenetic hypothesis for the order to date. Relationships at all ranks such as the relationship of the early diverging families, often reflect previous studies, but gene conflict is evident, and relationships previously found to be uncertain often remain so. HTS and the Angiosperms353 probe kit are powerful tools for phylogenomic analysis, but better understanding of the genetic data available is required to enable selection of genes and gene trees that account for incomplete lineage sorting and hybridisation events. </p>
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.