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.
156
datasets available to search
ShareScore release 0.9.0
Dataset results
156 results for “Camellia”
FIGURE 1. Camellia luteocalpandria S.X.Yang & E.D. Liu. A. Habitat. B. Habit. C in Camellia luteocalpandria (Theaceae), a new species and the first discovery of sect. Calpandria in China
FIGURE 1. Camellia luteocalpandria S.X.Yang & E.D. Liu. A. Habitat. B. Habit. C. Adaxial surface of leaves. D. Abaxial surface of leaves. E. Front view of the flower and the indumentum of adaxial leaf surface. F. Side view of the flower and the indumentum of abaxial leaf surface, petiole and young branches. G. Back view of the flower. H. Bracteoles (the first two) and sepals (the last five). I. Petals. J. Front view of the androecium. K. Side view of the androecium. L. Outerside of the dried bracteoles. M. Inside of the dried bracteoles.
Camellia sinensis decontaminated gx
<p>.</p>
FIGURE 2 in Camellia hainingii, a new species of Theaceae in China
FIGURE 2. Morphological comparison between Camellia hainingii (A–G) and C. pachyandra (H–N). A, H. Abaxial surface of leaves. B, I. Young branches, terminal buds and petioles. C, J. Adaxial surface of 'Perules' (bracteoles and sepals). D, K. Stamens. E, L. Inner filaments. F, M. Pistils, showing the indumentum of ovaries. G, N. Capsules, showing furfuraceous (G) and smooth (N) pericarp. Photos by S.X. Yang.
FIGURE 1. Camellia hainingii S.X.Yang et Y.S. Huang. A. Habitat. B. Adaxial leaves. C. Abaxial leaves. D. Semitransparent veins. E in Camellia hainingii, a new species of Theaceae in China
FIGURE 1. Camellia hainingii S.X.Yang et Y.S. Huang. A. Habitat. B. Adaxial leaves. C. Abaxial leaves. D. Semitransparent veins. E. Front view of the flower. F. Back view of the flower. G. Side view of the flower. H. 'Perules' (bracteoles and sepals). I. Stamens. J. Pistil. K. Peltals. L. Front view of the fruit. M. Side view of the fruit. N. Seed (left) and dehiscent pericarp (right). Photos by S.X. Yang.
FIGURES 3–6 in A new whitefly genus and species, Aleuroparvus theae Dubey (Hemiptera: Aleyrodidae) colonising Assam tea (Camellia sinensis) and Cinnamomum bejolghota, in North-East India
FIGURES 3–6. Aleuroparvus theae gen. et sp. nov., camera lucida drawings, 3, puparium, dorsal and ventral views; 4, thoracic tracheal pore and submarginal wax gland; 5, vasiform orifice and caudal furrow; 6, legs and antenna.
FIGURES 21–27 in A new whitefly genus and species, Aleuroparvus theae Dubey (Hemiptera: Aleyrodidae) colonising Assam tea (Camellia sinensis) and Cinnamomum bejolghota, in North-East India
FIGURES 21–27 Aleuroparvus theae gen. et sp. nov., scanning electron microscope images, puparium, 21, dorsal view; 22, abdominal area; 23, caudal furrow; 24, margin and submarginal bands; 25, thoracic tracheal pore opening; 26, submarginal wax gland; 27, eighth abdominal setae (broken), vasiform orifice and caudal furrow.
FIGURES 28–33 in A new whitefly genus and species, Aleuroparvus theae Dubey (Hemiptera: Aleyrodidae) colonising Assam tea (Camellia sinensis) and Cinnamomum bejolghota, in North-East India
FIGURES 28–33. Aleuroparvus theae gen. et sp. nov., scanning electron microscope images, puparium, 28, puparium, ventrolateral view showing obliquely downward extension of submargin; 29, ventral view; 30, thoracic tracheal fold; 31, legs, rostrum and adhesive sacs; 32, ventral setae and caudal tracheal fold; 33, antenna (RS– rostrum, AP– adhesive pads, ANT– antenna).
FIGURES 1–2 in A new whitefly genus and species, Aleuroparvus theae Dubey (Hemiptera: Aleyrodidae) colonising Assam tea (Camellia sinensis) and Cinnamomum bejolghota, in North-East India
FIGURES 1–2. Aleuroparvus theae gen. et sp. nov., habitus, 1, puparium on Cinnamomum bejolghota showing white wax secretion at thoracic tracheal pore area, and submarginal ridge; 2, puparium on tea leaf.
FIGURES 7–14 in A new whitefly genus and species, Aleuroparvus theae Dubey (Hemiptera: Aleyrodidae) colonising Assam tea (Camellia sinensis) and Cinnamomum bejolghota, in North-East India
FIGURES 7–14. Aleuroparvus theae gen. et sp. nov., photomicrographs, holotype puparium, 7, dorsal and ventral views; 8, margin, tracheal pore, submarginal wax secreting gland; 9, cephalothorax, partly separated submargin; 10, abdominal segment sutures, pockets and depressions; 11, submarginal wax glands and geminate pores; 12, vasiform orifice, caudal furrow and 8th abdominal setae; 13, cephalic seta; 14, first abdominal seta (FAS– first abdominal seta).
FIGURES 15–20 in A new whitefly genus and species, Aleuroparvus theae Dubey (Hemiptera: Aleyrodidae) colonising Assam tea (Camellia sinensis) and Cinnamomum bejolghota, in North-East India
FIGURES 15–20. Aleuroparvus theae gen. et sp. nov., photomicrographs, paratype puparium, dorsal and ventral views, 15, submarginal wax secreting gland laterad of abdominal segment V; 16, ventral surface, separated; 17, cephalothorax, adhesive pads; 18, thoracic tracheal fold; 19, imprints of abdominal segment sutures and stomata; 20, ventral 8th abdominal setae, caudal fold.
FIGURE 4 in New records of Pestalotioid species associated with leaf spot disease on Camellia sinensis from northern Thailand
FIGURE 4. Pseudopestalotiopsis chinensis (MFLU23-0398 (a–e), MFLUCC 23-0261 (f–r), new geographical record). a Diseased leaf of Camellia sinensis var. assamica. b Close-up of the lesion. c Acervular fruiting bodies on the lesion. d Section of a fruiting body on specimen. e Conidiogenous cells of a fruiting body on the specimen. f Upper view of culture on the PDA (at 25 °C). g Reverse view of culture on the PDA (at 25 °C). h–i Pycnidia on the PDA. j Mycelium on the PDA. k–l Conidiogenous cells in culture. m–r Conidia. Scale bars: d, k–r = 20 μm, e = 5 μm, i =100 μm, j = 200 μm.
FIGURE 1 in New records of Pestalotioid species associated with leaf spot disease on Camellia sinensis from northern Thailand
FIGURE 1. Maximum-likelihood tree inferred by IQ-TREE analysis of the combined ITS, tub2 and tef1-α sequence data. Bootstrap support values for maximum likelihood (ML) / maximum parsimony (MP) ≥ 50% and Bayesian posterior probability values (BYPP) ≥ 0.80 are given at the nodes (MLBS/ MPBS/ BYPP). The tree is rooted with Pestalotiopsis diversiseta (MFLUCC 12-0287) and P. spathulata (CBS 356.86). Type species are indicated in bold, and the newly generated strains are in bold red.
FIGURE 2. Camellia mingii S.X.Yang. A. Habit. B. Habitat. C. Adaxial leaves. D. Abaxial leaves. E. Flower. F. Ovary and style. G. Stamens. H. Petals. I. Fruit. J in Camellia mingii, a new species of yellow camellias from Southeast Yunnan, China
FIGURE 2. Camellia mingii S.X.Yang. A. Habit. B. Habitat. C. Adaxial leaves. D. Abaxial leaves. E. Flower. F. Ovary and style. G. Stamens. H. Petals. I. Fruit. J. Seeds. Scale=1cm.
FIGURE 1 in Camellia mingii, a new species of yellow camellias from Southeast Yunnan, China
FIGURE 1. Maximum Likelihood phylogram based on nrDNA GBSSI sequence data matrix showing placement of C. mingii within Camellia. BS ≥ 50% and PP ≥ 0.95 are indicated above branches as BS/PP. Camellia mingii labeled in bold.
FIGURE 2. Camellia psilocarpa X.G. Shi & C.X in Camellia psilocarpa (Theaceae), a new species from Guangdong, China, based on morphological and molecular data
FIGURE 2. Camellia psilocarpa X.G. Shi & C.X. Ye, sp. nov. A. Flowering branch; B. Dissection of a flower; C. Pistil showing ovary, style and stigma; D. Partial stamens, front view(left) and dorsal view(right); E. Undifferentiated bracteoles and sepals; F and G. Loculicidal capsule, apical view(F) and bottom view(G); H. Fruiting branch, showing globose capsule; I. Seed. Drawn by Yun-Xiao Liu.
FIGURE 1 in Camellia psilocarpa (Theaceae), a new species from Guangdong, China, based on morphological and molecular data
FIGURE 1. The MP tree and NJ tree inferred from the chloroplast DNA dataset. MP and NJ bootstrap values over 50 % are given at nodes.
Camellia sinensis SPAdes preassembly
<p>.</p>
FIGURE 4. Conidia with appendages and conidiophore. a. Chaetospermum camelliae b in Morphology and phylogeny of Chaetospermum (asexual coelomycetous Basidiomycota)
FIGURE 4. Conidia with appendages and conidiophore. a. Chaetospermum camelliae b. Chaetospermum artocarpi.
FIGURE 2. Camellia proensis. A. Leaf. B in Camellia proensis (Theaceae, sect. Piquetia), a new species from Southern Vietnam
FIGURE 2. Camellia proensis. A. Leaf. B. Venation of leaf (adaxial surface). C. Venation of leaf (abaxial surface). D. Flower bud. E, F. Flower. G. Sepals. H. Petals. I. Stamens. K. Styles and gynoecium. L. Fruit. M. Seed. Drwaing by Luong Van Dung.
FIGURE 1. Camellia proensis. A, B. Young twig. C, E in Camellia proensis (Theaceae, sect. Piquetia), a new species from Southern Vietnam
FIGURE 1. Camellia proensis. A, B. Young twig. C, E. Flowering shoot and arrangement of petals. D. Open flower. F, G. Fruits. H. Seeds. Photos by Quach Van Hoi.
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.