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.
193
datasets available to search
ShareScore release 0.9.0
Dataset results
193 results for “Vitaceae”
FIGURE 15 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 15. Cissococcus braini Hodgson & Millar, first-instar nymph (sex unknown). Lettering as for Figure 4, except T1 = claw and part of tarsus of prothoracic leg, and T2 = claw and part of tarsus of metathoracic leg.
FIGURE 14 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 14. Cissococcus braini Hodgson & Millar, sp. n. third-instar female. Lettering as in Figure 4 apart from T = entire metathoracic leg.
FIGURE 13 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 13. Cissococcus braini Hodgson & Millar, sp. n. adult female. The true dorsum is restricted to the anal plates and the sclerotised area surrounding the anal plates. Thus the greatly expanded venter comprises most of the main figure. Lettering as for Figure 4 except X = side view showing how dorsum becomes ⊃-shaped.
FIGURE 12. Cissococcus fulleri Cockerell, adult male. A in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 12. Cissococcus fulleri Cockerell, adult male. A = reticulations on gena; B = reticulations on ocular sclerite; C = cranial apophysis; D = apical antennal segment; E = distal end of metathoracic leg; G = dorsal view of penial sheath, H = ventral view of penial sheath. Also: aas = ante-anal setae; ab = antennal bristle; ads = dorsal abdominal setae; aed = aedeagus; als = alar setae; an = anus; as = abdominal sternite VIII; at = abdominal tergite VIII; avs = ventral abdominal setae; bma = basal membranous area; bra = basal rod of aedeagus; c = claw; caps = capitate setae; cd = claw denticle; cdt = claw digitule; cx = coxa; dhs = dorsal head setae; dpls = dorsal pleural setae; dse = dorsal simple eye; epm3 = metepimeron; eps2 = mesepisternum; f = furca; fem = femora; fs = fleshy seta; g = gena; gls = glandular pouch setae; gp = glandular pouch; gpp = glandular pouch pores; gts = penial sheath setae; gtp = penial sheath pores; h = hamulus; ham = hamulohaltere; lpl = lateropleurite; mc = median crest; mdr = median ridge; mr = marginal ridge; mts = metatergal setae; o = ocellus; ocs = ocular sclerite; pa = postalare; pcr2 = precoxal ridge of mesothorax; pdc = pedicel; pepcv = proepisternum + cervical sclerite; plr3 = metapleural ridge; pmss = posterior metasternal setae; pn2 = mesopostnotum; pn3 = metapostnotum; pocr = postocular ridge; prn = lateral pronotal sclerite; prnr = pronotal ridge; procr = preocular ridge; prsc = prescutum; ps = penial sheath; pscr = prescutal ridge; pscs = prescutal sclerite; s = spur-like seta; scl = scutellum; scp = scape; sct = scutum; ser = subepisternal ridge; sma = membranous area of scutum; sp2 = anterior spiracle; sp3 = posterior spiracle; stn1 = prosternum; stn2 = basisternum (mesosternum); ta = tarsus; tdt = tarsal digitules; teg = tegular; tegs = tegular setae; ti = tibia; tr = trochanter; vhs = ventral head setae; vmcr = ventral midcranial ridge; vmcrs = ventral midcranial ridge setae, and vpls = ventral pleural setae.
FIGURE 10 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 10. Cissococcus fulleri Cockerell, prepupa. Where ads = dorsal abdominal setae; an = anus; avs = ventral abdominal setae; dhs = dorsal head setae; dpls = dorsal pleural setae; ps = penial sheath; spds = spiracular disc-pores; vhs = ventral head setae; vpls = ventral pleural setae, and wb = wingbud.
FIGURE 9 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 9. Cissococcus fulleri Cockerell, first-instar nymph (sex unknown). Lettering as for Figure 4 except T = tibia, tarsus + claw.
FIGURE 6 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 6. Cissococcus fulleri Cockerell, young second-instar female. Lettering as for Figure 4 except that X = shape and limb distribution on older specimen.
FIGURE 4 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 4 Cissococcus fulleri Cockerell, adult female. The greatly expanded venter comprises most of the main figure. Unless otherwise stated, on this and the following figures: A = section of dorsum showing fissures; B = dorsal seta; C = dorsal pore; D = dorsal cone-shaped secretory spine; E = dorsal tubular duct; F = dorsal view of anal plate; G = ventral view of anal area; H = dermal nodulations; J = marginal spinose seta; K = stigmatic spine; L = ventral multilocular pore; M = ventral seta from medially on surface of lower venter; N = ventral seta from more lateral areas of upper surface of venter; O = preantennal pore; P = ventral microduct; Q = antenna; R = ventral tubular duct; S = spiracle; T = tarsus plus claw; V = spiracular disc-pores; X = dorsal view of venter of old specimen showing enlarged apodemes.
FIGURE 3 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 3. Map of Republic of South Africa, showing distribution of Cissococcus fulleri Cockerell and C. braini Hodgson & Millar sp. n., where Ο = collection localities of C. fulleri, ● = those for C. braini and * = approximate site where original material of C. fulleri was collected. Crosshatching shows distribution of the host plants Rhoicissus tridentata (/////) and R. digitata (\\\\\). (Data on plant distribution taken from Coates Palgrave, 2002.)
FIGURE 1 in Cissococcus Cockerell (Hemiptera: Coccoidea: Coccidae), a unique gall-inducing soft scale genus on Vitaceae from South Africa, with description of a new species
FIGURE 1. Cissococcus fulleri Cockerell on Rhoicissus tridentata, East London: A, galls of adult females on main twig and immature females on twig leading to leaf; B, two galls of adult females with the one on right cut open to reveal the anal area and stigmatic wax of a female, and one on left showing gall apex (in middle of gall); C, gall cut open to show middle venter of adult female; D, first- and second-instar male nymphs on the underside of a leaf; E, close-up of two second-instar male nymphs (note glassy-wax tubes emanating from cone-shaped pores on dorsum); F, an adult male recently emerged from one of the cocoon-like tests underneath him; G, adult male a few hours after eclosion. Galls of young adult females of Cissococcus braini Hodgson & Millar sp. n. on Rhoicissus digitata: H, immature gall viewed from side with large orifice visible, at Boesmanriviermond; I, same gall as in H viewed from top, with atrium below orifice visible; J, mature gall at Gxulu River (Photos by PJG).
Figs. 1–2. 1 in Orchestomerus wickhamiDietz (Coleoptera: Curculionidae: Ceutorhynchinae) Reared from Leaf Mines in Virginia Creeper (ParthenocissusPlanch., Vitaceae)
Figs. 1–2. 1) Two Virginia creeper leaflets mined by Orchestomerus wickhami larvae; 2) A common mine backlit to show the excrement trails left by the two larvae.
FIGURE 4 in Notes on the identity of Leea setuligera and Leea talbotii (Vitaceae)
FIGURE 4. Lectotype of Leea mastersii C.B.Clarke var. siamensis Craib (K000323726 image!) "© Board of Trustees of the Royal Botanic Gardens, Kew." Reproduced with permission.
FIGURE 2 in Notes on the identity of Leea setuligera and Leea talbotii (Vitaceae)
FIGURE 2. Leea setuligera: A. Flowering branch; B. Lamina portion enlarged; C. Calyx; D. Flower; E. Corolla lobe; F. Stamen; G. Pistil; H. Seeds. (Drawn by Amrutha from Amrutha 153249).
FIGURE 1 in Notes on the identity of Leea setuligera and Leea talbotii (Vitaceae)
FIGURE 1. Leea setuligera: A. Habit; B. & C. Inflorescence; D. Tuberous root; E. & F. Petiolar stipule; G. Bract; H. Bud; I. Flower; J. Calyx; K. Corolla lobe; L. Corolla tube with floral disc; M. & N. Corolla tube with floral disc split open; O. Stamen; P. Pistil; Q. Fruit; R. Seeds.
Data from: X-rays and virtual taphonomy resolve the first Cissus (Vitaceae) macrofossils from Africa as early diverging members of the genus
Open the record for dataset details and reuse information.
Data from: Congruent deep relationships in the grape family (Vitaceae) based on sequences of chloroplast genomes and mitochondrial genes via genome skimming
Vitaceae is well-known for having one of the most economically important fruits, i.e., the grape (Vitis vinifera). The deep phylogeny of the grape family was not resolved until a recent phylogenomic analysis of 417 nuclear genes from transcriptome data. However, it has been reported extensively that topologies based on nuclear and organellar genes may be incongruent due to differences in their evolutionary histories. Therefore, it is important to reconstruct a backbone phylogeny of the grape family using plastomes and mitochondrial genes. In this study, next-generation sequencing data sets of 27 species were obtained using genome skimming with total DNAs from silica-gel preserved tissue samples on an Illumina HiSeq 2500 instrument. Plastomes were assembled using the combination of de novo and reference genome (of V. vinifera) methods. Sixteen mitochondrial genes were also obtained via genome skimming using the reference genome of V. vinifera. Extensive phylogenetic analyses were performed using maximum likelihood and Bayesian methods. The topology based on either plastome data or mitochondrial genes is congruent with the one using hundreds of nuclear genes, indicating that the grape family did not exhibit significant reticulation at the deep level. The results showcase the power of genome skimming in capturing extensive phylogenetic data: especially from chloroplast and mitochondrial DNAs.
FIGURE 7 in Tydeid and triophtydeid mites (Acari: Tydeoidea) associated with grapevine (Vitaceae: Vitis spp.) in Brazil, with the descriptions of species of Prelorryia (André, 1980) and Tydeus Koch, 1835
FIGURE 7. Prelorryia labrusca sp. nov. (Female) A. Dorsal view; B. Anogenital area; C. Leg I.
FIGURE 4 in Tydeid and triophtydeid mites (Acari: Tydeoidea) associated with grapevine (Vitaceae: Vitis spp.) in Brazil, with the descriptions of species of Prelorryia (André, 1980) and Tydeus Koch, 1835
FIGURE 4. Tydeus californicus (Female) A. Dorsal view; B. Anogenital area; C. Leg I; D. Leg II.
FIGURE 3 in Tydeid and triophtydeid mites (Acari: Tydeoidea) associated with grapevine (Vitaceae: Vitis spp.) in Brazil, with the descriptions of species of Prelorryia (André, 1980) and Tydeus Koch, 1835
FIGURE 3. Neolorryia pandana (Female) A. Dorsal view; B. Anogenital area.
FIGURE 2 in Tydeid and triophtydeid mites (Acari: Tydeoidea) associated with grapevine (Vitaceae: Vitis spp.) in Brazil, with the descriptions of species of Prelorryia (André, 1980) and Tydeus Koch, 1835
FIGURE 2. Brachytydeus podocarpa (Female) A. Dorsal view; B. Palp; C. Leg I.
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.