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.
1,854
datasets available to search
ShareScore release 0.9.0
Dataset results
1,854 results for “Host plant”
FIGURE 5 in Pseudopestalotiopsis gilvanii sp. nov. and Neopestalotiopsis formicarum leaves spot pathogens from guarana plant: a new threat to global tropical hosts
FIGURE 5. Pathogenicity assay on guarana plants. Negative control showing absence of symptoms (A) and scanning electron microscopy of control (B). Symptoms of leaf spot caused by Pseudopestalotiopsis gilvanii, strain INPA 2913 (C) and scanning electron microscopy of inoculated leaf showing conidia, red arrow (D). Symptoms of leaf spot caused by Neopestalotiopsis formicarum, strain INPA 2016 (E) and scanning electron microscopy of inoculated leaf showing conidia, red arrow (F), fall of the leaves caused by Ps. gilvanii (G) and N. formicarum (H).
FIGURE. Puccinia caulophylli on Caulophyllum robustum (A–G) and Milium effusum (H–N). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecia surrounded with peridia. D, E. Aecia on the leaf surface observed by SEM. F. Aeciospores with verrucose surface observed by SEM. G. Aeciospores. H. Telia on the lower leaf surface. I. Uredinia on the leaf surface observed by SEM. J. Uredinia and telia on the leaf surface. K. Vertical section of an uredinium with paraphyses. L. Urediniospore observed by SEM. M. Vertical section of telia covered by host epidermis. N. Vertical section of a telium covered by host epidermis observed by SEM. Scale bars: B, G, N = 30 μm, C, E, I = 100 μm, F, L = 10 μm, K, M = 20 μm. in Phylogenetic approach for identification and life cycles of Puccinia (Pucciniaceae) species on Poaceae from northeastern China
FIGURE. Puccinia caulophylli on Caulophyllum robustum (A–G) and Milium effusum (H–N). A. Plants producing spermogonia and aecia on leaf surface in the field. B. Vertical section of a spermogonium. C. Vertical section of an aecia surrounded with peridia. D, E. Aecia on the leaf surface observed by SEM. F. Aeciospores with verrucose surface observed by SEM. G. Aeciospores. H. Telia on the lower leaf surface. I. Uredinia on the leaf surface observed by SEM. J. Uredinia and telia on the leaf surface. K. Vertical section of an uredinium with paraphyses. L. Urediniospore observed by SEM. M. Vertical section of telia covered by host epidermis. N. Vertical section of a telium covered by host epidermis observed by SEM. Scale bars: B, G, N = 30 μm, C, E, I = 100 μm, F, L = 10 μm, K, M = 20 μm.
FIGURES 7 in Status of Patania harutai (Inoue, 1955) in Korea, with a new species (Lepidoptera, Crambidae, Spilomelinae), and clarification of their host plants
FIGURES 7. Male genitalia of Patania harutai from Korea. 7a. Genital capsule (slide no. INU-8010). 7b. 8th segment of abdomen. 7c. Aedeagus. 7d. Vesica. Scale bar = 1 mm.
FIGURES 7–12. Adults. 7 in New data on the taxonomy, distribution and host plants of Australian Epermeniidae (Lepidoptera: Epermenioidea)
FIGURES 7–12. Adults. 7, Gnathifera bipunctata, ♂, W.A., Kununurra, emg. 3.v.1999, leg. A. Postle, Larva mining leaf of seedling Santalum album, genitalia slide ANIC 13890, ANIC. 8, Gnathifera luridicapitella, holotype ♂, 29 miles SW of Whyalla, S. A., 8 May 1970, [leg.] I. F. B. Common, genitalia slide Gaedike Nr. 9240, ANIC. 9, Gnathifera queenslandi, ♀, Barren Grounds Fauna Res., N.S.W., 27.vii.1976, leg. V. J. Robinson, ANIC. 10, Gnathifera acacivorella, ♂, CSIRO Exp. Fm., Wilton, N.S.W., 20.xii.1976, leg. V. J. Robinson, genitalia slide Gaedike Nr. 9171, ANIC. 11, Gnathifera fuscostriata, holotype ♂, 27°34'S, 152°02'E, 400m, 6.5km E of Toowoomba, QLD, 6 Aug. 1985, [leg.] I. F. B. Common, genitalia slide Gaedike Nr. 9197, ANIC. 12, Gnathifera fuscostriata, paratype ♀, Murphys Creek nr. Toowoomba, Q. 18 Oct. 1982, [leg.] I. F. B. Common, genitalia slide Gaedike Nr. 9189, ANIC.
FIGURES 107–110 in Rearrangements in some species groups of Amblycerus Thunberg, 1815 (Coleoptera: Chrysomelidae: Bruchinae) including keys, description of a new species, new host plant and distributional records
FIGURES 107–110. Male genitalia, tegmen, group spondiae: 107. A. alternatus, 108. A. cuernavacensis, 109. A. spondiae and 110. A. vitis. Scale bars = 0.25 mm.
FIGURES 84–87 in Rearrangements in some species groups of Amblycerus Thunberg, 1815 (Coleoptera: Chrysomelidae: Bruchinae) including keys, description of a new species, new host plant and distributional records
FIGURES 84–87. Pygidium. group spondiae: 84. A. alternatus, 85. A. cuernavacensis, 86. A. spondiae and 87. A. vitis. Scale bars = 1.0 mm.
FIGURES 48–53 in Rearrangements in some species groups of Amblycerus Thunberg, 1815 (Coleoptera: Chrysomelidae: Bruchinae) including keys, description of a new species, new host plant and distributional records
FIGURES 48–53. Pronotum, group dispar: 48. Amblycerus crassipunctatus. 49. A. dispar. 50. A. insuturatus. 51. A. schwarzi. 52. A. taeniopygus and 53. Amblycerus goianiensis Santos & Ribeiro-Costa, sp. n. Scale bars = 1.0 mm.
FIGURE 119 in Rearrangements in some species groups of Amblycerus Thunberg, 1815 (Coleoptera: Chrysomelidae: Bruchinae) including keys, description of a new species, new host plant and distributional records
FIGURE 119. Map with the geographical distribution of A. taeniopygus and Amblycerus goianiensis Santos & Ribeiro-Costa, sp. n. Leaked symbols refer to bibliography data.
FIGURES 15–18 in Rearrangements in some species groups of Amblycerus Thunberg, 1815 (Coleoptera: Chrysomelidae: Bruchinae) including keys, description of a new species, new host plant and distributional records
FIGURES 15–18. Dorsal, group spondiae: 15. A. alternatus, 16. A. cuernavacensis, 17. A. spondiae, 18. A. vitis. Scale bars = 1.0 mm.
FIGURE 3 in A new species of Coelidiana Oman (Hemiptera: Cicadellidae: Neocoelidiinae) from Brazil with key to Brazilian species, description of immature stages, and notes about parasitoids and host plant
FIGURE 3. Coelidiana aroeira sp. nov. A, holotype male, dorsal view. B, holotype male, lateral view. C, paratype female, dorsal view. D, paratype female, lateral view. E, living specimen at Curitiba, Paraná. F, Nymph parasitized by dryinid larva, G, Adult female parasitized by Pipunculidae. Scale bars in mm.
FIGURES 73–77 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 73–77. Immature stages of South African Gracillariidae. 73, Amblyptila cynanchi, mines on Cynanchum obtusifolium (Asclepiadaceae), Western Cape, S. Mecenero leg. 74, Telamoptilia cordati sp. nov., mine on Syzygium cordatum (Myrtaceae), Limpopo Hoedspruit, A. & I. Sharp leg. 75, Leucocercops dasmophora, mine on Parinari capensis, (Chrysobalanaceae), Gauteng, Tshwane, A. Sharp leg. 76, Telamoptilia cordati sp. nov., larva on Syzygium cordatum (Myrtaceae), Limpopo Hoedspruit, A. & I. Sharp leg. 77, Leucocercops curatellifoliae sp. nov., larva on Parinari curatellifolia, Limpopo, Hoedspruit, A. & I. Sharp leg.
FIGURES 89–93 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 89–93. Habitats of Afrotropical Gracillariidae species. 89, Casketts farm, Limpopo, in spring. 90, Ian Sharp collecting leaf mines of the new species Phyllocnistis allisonae on Protea rubropilosa leaves at Mariepskop in the northern Drakensberg mountain range. 91, Casketts farm, Limpopo, in summer. 92, Mariepskop, type locality of Phyllocnistis allisonae. 93, Tshwane, the collecting area is situated in the Northern part of the Gauteng province at an altitude of about 1200 m.
FIGURES 52–55 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 52–55. Male genitalia of South African Gracillariidae. 52-54, Phyllocnistis magalismontani sp. nov., holotype: 52, phallus (175 μm) (ae: aedeagus; an; anellus; be: bulbus ejaculatorius; de: ductus ejaculatorius; ma: manica; pb: phallobase; ve: vesica); 53, ventral view (175 μm); 54, segments VII and VIII in ventral view (190 μm); 55, Telamoptilia sp.: ventral view, phallus not visible, scale not available.
FIGURES 47–51 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 47–51. Male genitalia of South African Gracillariidae. 47-49, Telamoptilia cordati sp. nov., holotype (120 μm): 47, ventral view; 48, segment VIII in ventral view; 49, phallus with bulbus ejaculatorius. 50-51, Cameraria melhaniella sp. nov., holotype (190 μm): 50, phallus (ae: aedeagus; an; anellus; be: bulbus ejaculatorius; de: ductus ejaculatorius; ma: manica; pb: phallobase); 51, ventral view.
FIGURES 35–39 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 35–39. Male genitalia of South African Gracillariidae. 35-37, Ectropina spirostachydis sp. nov., holotype: 35, ventral view (240 μm); 36, tergum VIII detail (140 μm); 37, phallus (120 μm). 38, Cryptolectica capnodecta: ventral view (240 μm). 39, Conopobathra gravissima: valva detail (280 μm).
FIGURES 40–43 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 40–43. Male genitalia of South African Gracillariidae. 40, Amblyptila cynanchi: valva detail. 41-43, Leucocercops curatellifoliae sp. nov., holotype: 41, ventral view, anellus in situ; 42, segment VIII in ventral view; 43, phallus (ae: aedeagus; pb: phallobase; be: bulbus ejaculatorius; an: anellus). (All scale bars 190 μm).
FIGURES 19–24 in Exploring the diversity of Gracillariidae (Lepidoptera) in South Africa: host plants, distribution, and DNA barcoding analysis, with the description of nine new species
FIGURES 19–24. Adults of South African Gracillariidae. 19, Leucocercops curatellifoliae, Limpopo, Hoedspruit, A. & I. Sharp leg. 20, Telamoptilia cordati, Limpopo, Hoedspruit, A. & I. Sharp leg. 21, Cameraria melhaniella sp. nov., Limpopo, Hoedspruit, A. & I. Sharp leg. 22, Phyllonorycter grewiella, Limpopo, Hoedspruit, A. & I. Sharp leg. 23, P. pseudogrewiella sp. nov., Limpopo, Hoedspruit, A. & I. Sharp leg. 24, Acrocercops loxias, Rajputana, Jodhpur (India), syntype.
FIGURES 652–656 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 652–656. Phytomyza senecionis Kaltenbach; 652: cephalopharyngeal skeleton; 653: frontal view of head; 654: head viewed from the side; 655: oviscape, ventral receptacle and spermathecae proportionally; 656 a–b: spermatheca and ventral receptacle proportionally; a: spermathecae; b: ventral receptacle.
FIGURES 572–576 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 572–576. Phytomyza hellebori Kaltenback; 572: cephalopharyngeal skeleton; 573: frontal view of head; 574: head viewed from the side; 575: oviscape, ventral receptacle and spermathecae proportionally; 576 a–b: the largest spermatheca and ventral receptacle proportionally; a: spermatheca; b: ventral receptacle.
FIGURES 599–605 in Rearing mining flies (Diptera: Agromyzidae) from host plants as an instrument for associating females with males, with the description of seven new species
FIGURES 599–605. Phytomyza nowakowskiana Beiger; 599: cephalopharyngeal skeleton; 600: frontal view of head; 601: head viewed from the side; 602: wing; 603: hypophallus; 604: oviscape, ventral receptacle and spermatheca proportionally; 605 a–b: spermatheca and ventral receptacle proportionally; a: spermatheca; b: ventral receptacle.
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.