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.
64
datasets available to search
ShareScore release 0.7.1
Dataset results
64 results for “mycoheterotrophic”
FIGURE 1 in Sciaphila sugimotoi (Triuridaceae), a new mycoheterotrophic plant from Ishigaki Island, Japan
FIGURE 1. Habit (A) and microscopic images (B, C, D) of Sciaphila sugimotoi. A. Flowering plant. B–C. Male flower. D. Female flower. Photographed by Takaomi Sugimoto in the type locality.
FIGURE 3 in Thismia inconspicua (Thismiaceae), a new mycoheterotrophic species from Borneo
FIGURE 3. Phylogenetic position of T. inconspicua in Thismiaceae and related taxa based on SSU rDNA (A) and atpA mitochondrial gene (B). Branch length corresponds to number of mutational changes, bootstrap values shown at the branches.
FIGURE 1 in Thismia inconspicua (Thismiaceae), a new mycoheterotrophic species from Borneo
FIGURE 1. Thismia inconspicua: flowering plant (A), immature capsule with stigma (B), bifid type of stigma (C), longitudinal section of perianth tube (D) and outer view of stamens (E). Drawn by K. Janošíková.
FIGURE 2 in Thismia inconspicua (Thismiaceae), a new mycoheterotrophic species from Borneo
FIGURE 2. Thismia inconspicua: flowering plant (A), plants in different developmental stages (B, C, E), capsule with stigma (D), outer view of stamens (F), appendages on connective apices (G), mature capsule with seeds (H) and the type locality (I).
FIGURE 1 in Lecanorchis sarawakensis (Orchidaceae, Vanilloideae), a new mycoheterotrophic species from Sarawak, Borneo
FIGURE 1. Lecanorchis sarawakensis in the type locality. A. Habit. B. Flower, side view. C. Flower, front view.
FIGURE 2. Lecanorchis sarawakensis. A. Flowering plant. B. Flower and pedicellate ovary. C. Flower, front view. D–E. Lip and column. F. Dorsal sepal. G. Lateral sepal. H. Lateral petal. I. Flattened lip. J. Column. K. Anther cap. L in Lecanorchis sarawakensis (Orchidaceae, Vanilloideae), a new mycoheterotrophic species from Sarawak, Borneo
FIGURE 2. Lecanorchis sarawakensis. A. Flowering plant. B. Flower and pedicellate ovary. C. Flower, front view. D–E. Lip and column. F. Dorsal sepal. G. Lateral sepal. H. Lateral petal. I. Flattened lip. J. Column. K. Anther cap. L. Anterior portion of column. Scale bars: A = 1 cm, B–I = 5 mm, K–L = 1 mm. Materials from Tagane et al. SWK4060 (SAR). Drawn by Kumi Hamasaki.
FIGURE 2. Sciaphila kozushimensis from type locality. A. Rachis. B–H. Male flower. I–J in Sciaphila kozushimensis (Triuridaceae), a new mycoheterotrophic plant from Kozu Island, Izu Islands, Japan, based on morphological and molecular data
FIGURE 2. Sciaphila kozushimensis from type locality. A. Rachis. B–H. Male flower. I–J. Female flower (I. Above view. J. Bottom view). K. Immature carpel with stigma. G. Immature fruit. Bar = 2 mm (A), 1 mm (B–J) and 0.5 mm (K).
FIGURE 5 in Sciaphila kozushimensis (Triuridaceae), a new mycoheterotrophic plant from Kozu Island, Izu Islands, Japan, based on morphological and molecular data
FIGURE 5. Maximum likelihood phylogeny of Sciaphila kozushimensis (bold) and its related taxa based on the rDNA ITS sequences. Maximum likelihood and neighbor-joining branching supports are indicated below branches as ML/NJ.
FIGURE 3. A in Sciaphila kozushimensis (Triuridaceae), a new mycoheterotrophic plant from Kozu Island, Izu Islands, Japan, based on morphological and molecular data
FIGURE 3. A flowering plant of Sciaphila kozushimensis (drawn from the holotype). Drawn by Kumi Hamasaki. Bar = 1 cm.
FIGURE 4 in Sciaphila kozushimensis (Triuridaceae), a new mycoheterotrophic plant from Kozu Island, Izu Islands, Japan, based on morphological and molecular data
FIGURE 4. Sciaphila kozushimensis (drawn from the holotype). A. Flowering plant. B–C. Female flower. D–I. Male flower. J–K. Immature carpel with stigma. G. Immature fruits. Bar = 1 cm (A), 1 mm (B–I) and 0.3 mm (J–K). Drawn by Kumi Hamasaki.
FIGURE 2 in Gastrodia flexistyloides (Orchidaceae), a new mycoheterotrophic plant with complete cleistogamy from Japan
FIGURE 2. Gastrodia flexistyloides (from the holotype). A. Habit. B–D. Flower. (B, back view; C, front view; D, side view). E. Flattened flower. F. Flattened perianth tube with lip. G. Longitudinal section of the flower. H. Lip. I–K. Column (I, front view; J, back view; K, lateral view). A. Bar = 3 cm. B–G. Bar = 5 mm. I–K = 3 mm. H. Bar = 1 mm.
FIGURE 1. A in Gastrodia flexistyloides (Orchidaceae), a new mycoheterotrophic plant with complete cleistogamy from Japan
FIGURE 1. A. Flowering plants of Gastrodia flexistyloides (from the type locality; bar = 2 cm). B. Dissected flower. C. Lip. D–F. Column (D, front view; E, back view; F, lateral view). A. Bar = 2 cm. B. Bar = 5 mm. C–F. Bar = 2 mm.
FIGURE 3. Gastrodia damingshanensis A.Q in Gastrodia damingshanensis (Orchidaceae: Epidendroideae): a new mycoheterotrophic orchid from China
FIGURE 3. Gastrodia damingshanensis A.Q. Hu & T.C. Hsu (Plate based on T.C. Hsu & A.Q. Hu 6407). A. Habit. B–E. Flower (B. Top view, C. Side view, D. Bottom view, E. Frontal view). F. Perianth tube, expanded and flattened. G. Lip and column, side view. H. Column with anther attached, side view. I–K. Column without anther (I. Back view, J. Front view, showing melted pollinia on stigma, K. side view). L–M. Lip. N–O. Anther cap (N. top view, O. bottom view). P. Pollinia. Photographed by T.C. Hsu.
FIGURE 1 in Gastrodia damingshanensis (Orchidaceae: Epidendroideae): a new mycoheterotrophic orchid from China
FIGURE 1. Habitat and habit of Gastrodia damingshanensis A.Q. Hu & T.C. Hsu (at the type locality). Photographed by T.C. Hsu.
FIGURE 2. Gastrodia damingshanensis A.Q in Gastrodia damingshanensis (Orchidaceae: Epidendroideae): a new mycoheterotrophic orchid from China
FIGURE 2. Gastrodia damingshanensis A.Q. Hu & T.C. Hsu (drawing based on T. C. Hsu & A. Q. Hu 6407). A. Habit. B–E. Flower (B. Top view, C. Bottom view, D. Longitudinal section, E. Frontal view). F. Perianth tube, expanded and flattened. G. Lip and column, side view. H. Lip. I–J. Column (I. Front view, J. Back view). K–L. Anther cap (K. Top view, L. Bottom view). M. Pollinia. Illustrated by T.C. Hsu.
FIGURE 3. A in Checklist of mycoheterotrophic species of the genus Exacum (Gentianaceae) and new species, E. zigomorpha, from northern Vietnam
FIGURE 3. A: Flowering plants in native habitat. B: Flower bud at the beginning of anthesis. C–E: open flowers, views from different sides. All photos from the type—CPC 6183 by Khang Sinh Nguyen, correction and design by L.Averyanov.
FIGURE 1. A, B in Checklist of mycoheterotrophic species of the genus Exacum (Gentianaceae) and new species, E. zigomorpha, from northern Vietnam
FIGURE 1. A, B: Flowering plants. C: Opened flower, half side view. D: Flower with artificially recurved and flattened petals and stamens. E: Flowers, side views. F: Outer sepal. G: Inner sepal. H: Flower, side view with sagittal section of the calyx. I: Flowers, side view with sagittal section of the calyx and two petals removed from place of their junction into tube. J: Flower, side view, sagittal section. K: Removed and flattened petals, view from outside. L: Removed and flattened petals, view from inside. M: Flattened sepal, adaxial surface. N: Stamens, abaxial, adaxial and side views. O: Ovary with removed corolla and sagittal section of the calyx. All drawn from the
FIGURE 2. A–F in Checklist of mycoheterotrophic species of the genus Exacum (Gentianaceae) and new species, E. zigomorpha, from northern Vietnam
FIGURE 2. A–F: Ovary sections: A—transversal section of ovary along line 5 (designated on fig C); B—transversal section of ovary along line 5 (designated on fig. C) with ovules removed; C—longitudinal tangential ovary section along line 1 (designated on fig. B); D—longitudinal tangential ovary section along line 2 (designated on fig. B); E—sagittal radial ovary section along line 3 (designated on fig. B); F—sagittal radial ovary section along line 4 (designated on fig. B). G: Floral diagram; x and y—symmetry axes of bisymmetric (biaxial) decussate calyx; z—approximate symmetry axis and bending direction of zygomorphic corolla, stamens and style. All drawn from the type—CPC 6183 by L.Averyanov and T.Maisak.
FIGURE 2 in Gastrodia longiflora (Orchidaceae: Epidendroideae: Gastrodieae), a new mycoheterotrophic species from Ishigaki Island, Ryukyu Islands, Japan
FIGURE 2. Gastrodia longiflora (from the holotype). A. Habit. B. Flattened perianth tube. C. Flower (side view, dorsal view and ventral view). D. Column and lip. E. Lip. F. Free portions of lateral sepal and petal. G. Anther cap. H. Column (side view, dorsal view and ventral view). Size bars: A–C, 1 cm; D–F, H, 5 mm; G, 2 mm.
FIGURE 1. Gastrodia longiflora from the type locality. A. Flowering plants, view from above. B. Flowering plants, side view. C. Flowers, side view. D in Gastrodia longiflora (Orchidaceae: Epidendroideae: Gastrodieae), a new mycoheterotrophic species from Ishigaki Island, Ryukyu Islands, Japan
FIGURE 1. Gastrodia longiflora from the type locality. A. Flowering plants, view from above. B. Flowering plants, side view. C. Flowers, side view. D. Flower, front view. Photographed by Hiroshi Kazui.
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.