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.
393
datasets available to search
ShareScore release 0.9.0
Dataset results
393 results for “New Hybrids”
FIGURE 4 in The Origin of New Natural hybrid, Goodyera maximo-velutina (Orchidaceae) from Jeju Island, Korea
FIGURE 4. Phylogenetic tree obtained by Bayesian phylogenetic inference of the combined three cpDNA regions. Numbers above branches represent posterior probabilities.
FIGURE 3 in The Origin of New Natural hybrid, Goodyera maximo-velutina (Orchidaceae) from Jeju Island, Korea
FIGURE 3. Phylogenetic tree obtained by Bayesian phylogenetic inference of ITS region. Numbers above branches represent posterior probabilities. The clone sequences are indicated by "c" following the name of taxa.
FIGURE 8 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 8. Pleione × baoshanensis (A–B) and Pleione × maoershanensis (C–D). Pleione × baoshanensis, A. Habit; B. Lip. Pleione × maoershanensis, C. Habit; D. Lip. Drawn by Jiao Qin.
FIGURE 5 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 5. Flower of an individual from Maoer Shan, Northern Guangxi (A) and the holotype of Pleione chunii Tso (B).
FIGURE 6 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 6. Pleione × baoshanensis. A. Plant with flower; B. Flower—side view; C. Flower, different parts in separation; D. Mature leaf. Bar=2cm.
FIGURE 7 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 7. Pleione × maoershanensis. A. Plant with flower in the natural habitat; B. Flower—side view; C. Flower, different parts in separation; D. Mature leaf. Bar=2cm.
FIGURE 4 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 4. Phylogenetic tree inferred from trnT-trnL and trnL-trnF sequences using Bayesian inference. Bayesian posterior probability (PP≥ 0.90) and bootstrap values (≥ 50) derived from ML analyses (ML-BS) are showed above branches in a follow of PP/ML-BS. The new hybrids were shown in bold.
FIGURE 3 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 3. Phylogenetic tree inferred from ITS sequences using Bayesian inference. Bayesian posterior probability (PP, ≥ 0.90) and bootstrap values (≥ 50) derived from ML analyses (ML-BS) are showed above branches in a follow of PP/ML-BS. The new hybrids were shown in bold.
FIGURE 2 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 2. Flower morphology of Pleione × maoershanensis and putative parents. A. Flower shape; B. Lip flattened. A1. P. hookeriana; A2. P. × maoershanensis; A3. P. pleionoides. B1. Lip of P. hookeriana; B2-B5. Lips of P. × maoershanensis; B6. Lip of P. pleionoides.
FIGURE 1 in Two new natural hybrids in the genus Pleione (Orchidaceae) from China
FIGURE 1. Flower morphology of Pleione × baoshanensis and putative parents. A. Flower shape; B. Lip flattened. A1. P. yunnanensis; A2. P. × baoshanensis; A3. P. albiflora. B1. Lip of P. yunnanensis; B2. Lip of P. × baoshanensis; B3. Lip of P. albiflora.
FIGURE 2 in Narcissus × munozii-alvarezii (Amaryllidaceae): a new hybrid from southern Spain
FIGURE 2. Frontal and lateral view of: a, N. cantabricus; b, e, N. × munozii-alvarezii; c, N. jonquilla subsp. jonquilla; d, N. cantabricus and N. jonquilla subsp. jonquilla.
FIGURE 4 in The hybrid origin of Phai Liang, a bamboo of recent introduction into horticulture in Southeast Asia, and a new nothogenus, ×Thyrsocalamus (Bambuseae: Bambusinae)
FIGURE 4. Characteristics in the type collection (K.M. Wong & D. Ohrnberger WKM 3555) of × Thyrsocalamus liang from the Mae Hia Bamboo Collection, Royal Project Foundation, Chiang Mai, Thailand. A. Culm internode with scattered white hairs at the uppermost part; B. Culm leaves with erect blades, leafy branches, and branches with inflorescences at the peak of anthesis. Photographs by K.M. Wong.
FIGURE 1 in The hybrid origin of Phai Liang, a bamboo of recent introduction into horticulture in Southeast Asia, and a new nothogenus, ×Thyrsocalamus (Bambuseae: Bambusinae)
FIGURE 1. Schematic diagram showing the position of haplotype-specific primers and their site numbers in the partial GBSSI gene. Arrows indicate the directions of primers.
FIGURE 3 in The hybrid origin of Phai Liang, a bamboo of recent introduction into horticulture in Southeast Asia, and a new nothogenus, ×Thyrsocalamus (Bambuseae: Bambusinae)
FIGURE 3. Phai Liang cultivated in the Rimba Ilmu Botanic Garden of the University of Malaya (A–C) and Penang Botanical Garden (D–H). A. Clump habit; B. Internodes and elliptic branch buds; C. Culm sheaths with pale brown hairs; D. Clump habit; E. Subrotundovate primary branch bud at a culm node; F. Spreading culm-sheath blades on a shoot; G. Foliage leaves; H. Pseudospikelets with purpleblue to maroon anthers extruded from florets. Photographs by K.M. Wong.
FIGURE 2 in The hybrid origin of Phai Liang, a bamboo of recent introduction into horticulture in Southeast Asia, and a new nothogenus, ×Thyrsocalamus (Bambuseae: Bambusinae)
FIGURE 2. Phylogenetic tree reconstructed based on partial nuclear GBSSI marker. Numbers above nodes are bootstrap values for maximum parsimony analysis; numbers below nodes are posterior probabilities for Bayesian inference.
FIGURE 5. Thyrsostachys siamensis. A in The hybrid origin of Phai Liang, a bamboo of recent introduction into horticulture in Southeast Asia, and a new nothogenus, ×Thyrsocalamus (Bambuseae: Bambusinae)
FIGURE 5. Thyrsostachys siamensis. A. Planted clump at Gurun, Kedah, Malaysia; B. Clump base showing persistent culm sheaths, planted clump (WKM 3511) along Holland Road, Singapore; C. Dense silvery white appressed hairs on culm sheaths of a shoot (WKM 3511); D. Subrotund-ovate primary branch bud (WKM 3511); E. Stiffly erect clump habit, Kuching, Malaysia. Photographs by K.M. Wong.
FIGURE 1 in Isoetes ×gopalkrishnae (Isoetaceae), a new interspecific sterile hybrid from central India
FIGURE 1. Isoetes ×gopalkrishnae. A–C. Plants growing in habitat. C. Location of plants (Image taken from www.googlemap.com). D–E. Sporangial wall showing long thread like and irregular shaped dark brown cells with internal pigments. F–G. Megasporangia under SEM and LM. H. Transvers section of leaf shows terete (rounded) in outline, interstellar canal 1 and 4 longitudinal transversally septate air chambers.
FIGURE 2 in Isoetes ×gopalkrishnae (Isoetaceae), a new interspecific sterile hybrid from central India
FIGURE 2. Scanning electron microphotographs of Isoetes ×gopalkrishnae. A–D, I. Larger megaspore. E–F. Smaller megaspore. G–H, J. Microspore. A, E. Distal view of megaspores showing coarsely rugulate surface ornamentation. B. Distal view of megaspore showing coarsely rugulate surface ornamentation with presence of smooth equatorial girdle. C, F. Proximal view of trilete megaspore showing rugulae with pustules. D. Proximal view of monolete megaspore showing coarse rugulae with pustules. G. Microspores with distal and proximal view showing densely echinate to short-cristate surface ornamentation. H. Proximal view. I. Infrastructural details of megaspore. J. Infrastructural details of the surface of microspore showing echinae rounded, simple or branched.
FIGURE 3 in A natural laboratory in southern Spain: new hybrids of wild daffodils (Narcissus, Amaryllidaceae)
FIGURE 3. Inflorescence details of the nine daffodils: a, N. fernandesii; b, N. assoanus subsp. baeticus; c, N. jonquilla subsp. jonquilla; d, N. papyraceus; e, N. ×trianoi; f, N. ×repulloi; g, N. ×egabrensis; h, N. ×christopheri nothosubsp. sanchezii showing bicolor flowers; i, N. ×christopheri nothosubsp. sanchezii showing monocolor flowers. Pictures authorship: e, Enrique Triano; f, Joaquín Ramírez.
FIGURE 2. Comparative plate depicting A. N. triandrus subsp. pallidulus, B. N in Two New Hybrid Daffodils (Narcissus, Amaryllidaceae) From Northern Extremadura (Cáceres, Spain)
FIGURE 2. Comparative plate depicting A. N. triandrus subsp. pallidulus, B. N. vitekii, and C. N. rupicola. The two first species hybridize to form N. × richardianus (D1. Offspring of N. triandrus subsp. pallidulus ♀ × N. vitekii ♂; D2. Offspring of N. triandrus subsp. pallidulus ♂ × N. vitekii ♀; E. N. × kirchnerianus: offspring of N. rupicola ♀ × N. vitekii ♂, note the widely open corona in contrast with Fig. 1E.
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.