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”
Figures 117-124 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 117-124 - Pectinivalva spp., larval leaf-mines. 117 Pectinivalva (Casanovula) brevipalpa on Tristaniopsis collina 118 Pectinivalva (Casanovula) minotaurus vacated mine on Lophostemon confertus 119 Pectinivalva (Menurella) scotodes on Eucalyptus pilularis 120 Pectinivalva (Menurella) acmenae on Syzygium smithii 121, 122 Pectinivalva (Menurella) quintiniae on Quintinia verdonii 123 Pectinivalva (Menurella) xenadelpha on Syzygium acuminatissimum 124 Pectinivalva (Menurella) tribulatrix vacated mine on Rhodomyrtus macrocarpa.
Figures 77-79 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 77-79 - Pectinivalva (Menurella) spp., female genitalia, ventral view. 77 Pectinivalva (Menurella) acmenae 78 Pectinivalva (Menurella) quintiniae 79 Pectinivalva (Menurella) quintiniae, apophyses and papillae anales.
Figure 1 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figure 1 - Phylogeny of Pectinivalvinae, based on 27 morphological characters of larva, pupa and adult, and 1 behavioural character of larva. Strict Consensus Tree of 147 equally most parsimonious trees (CI = 0.6667, RI = 0.8450 and RC = 0.5633). Outgroups are Notiopostega atrata Davis (Opostegidae), Enteucha acetosae (Stainton) and Roscidotoga callicomae Hoare (Nepticulidae).
Figures 67-72 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 67-72 - Pectinivalva (Menurella) spp., male genitalia, ventral view. 67–69 Pectinivalva (Menurella) quintiniae, holotype, slide ANIC18720 and paratype, slide EJvN3736 (69): 67, 68 genitalia with aedeagus in situ 69 aedeagus 70–72 Pectinivalva (Menurella) tribulatrix, holotype, slide ANIC18721: 70 genitalia with aedeagus in situ 71 close-up of gnathos and pectinifer 72 close-up of aedeagus showing tubular sclerite associated with cathrema. Scales 100 μm, 50 μm (71, 72).
Figure 3 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figure 3 - Neighbor Joining Tree of DNA barcodes of Pectinivalvinae species, showing specimen registry numbers. Outgroup is Opostega salaciella (Treitschke, 1833). Stigmella anomalella (Goeze, 1783) chosen as extra outgroup, but groups here with Pectinivalva subgenus Menurella.
Figures 125- 126 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 125- 126 - Pectinivalva (Casanovula) and Pectinivalva (Menurella) spp., cocoon, pupa, live adults. 125 Pectinivalva (Casanovula) minotaurus cocoon 126 Pectinivalva (Casanovula) minotaurus male pupa (pharate adult), ventral view 127 Pectinivalva (Casanovula) minotaurus male pupa (pharate adult), dorsal view 128 Pectinivalva (Menurella) quintiniae live adult male 129 Pectinivalva (Menurella) xenadelpha, female holotype, live.
Figures 58-66 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 58-66 - Pectinivalva spp., male genitalia, ventral view. 58, 59 Pectinivalva (Pectinivalva) mystaconota, paratype, slide EJvN 4106: 58 genital capsule 59 aedeagus 60, 61 Pectinivalva (Casanovula) brevipalpa, holotype, slide ANIC12111: 60 genital capsule 61 aedeagus 62, 63 Pectinivalva (Casanovula) minotaurus, paratype, slide CvdB110: 62 genital capsule 63 aedeagus 64, 65 Pectinivalva (Menurella) scotodes, paratype, slide ANIC11262: 64 genital capsule 65 aedeagus 66 Pectinivalva (Menurella) acmenae, paratype, slide ANIC10213 66 genital capsule with aedeagus almost in situ. Scales 100 μm (59 same scale as 58).
Figures 89-97 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 89-97 - Pectinivalva(Menurella) spp., female genitalia, ventral view. 89–91 Pectinivalva (Menurella) scotodes, paratype, slideANIC11263 92–94 Pectinivalva (Menurella) acmenae, paratype, slideANIC11242 95–97 Pectinivalva (Menurella) quintiniae, paratype, slide EJvN3961. Scales 200 μm (89, 92, 95), 100 μm.
Figures 80-88 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 80-88 - Pectinivalva spp., female genitalia, ventral view. 80–82 Pectinivalva (Pectinivalva) mystaconota, paratype, slide ANIC10161 83–85 Pectinivalva (Casanovula) brevipalpa, paratypes, slides ANIC11328, ANIC11238 (85) 86–88 Pectinivalva (Casanovula) minotaurus, paratypes, slides ANIC11327 (86), ANIC10209. Scales 100 μm, 200 μm (80, 88).
Figures 109-114 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 109-114 - Pectinivalva spp., larval prothoracic sclerites. 109–113 Prosternites: 109 Pectinivalva (Pectinivalva) 138 110 Pectinivalva (Casanovula) brevipalpa 111 Pectinivalva (Casanovula) minotaurus 112 Pectinivalva (Menurella) scotodes 113 Pectinivalva (Enteucha) acmenae. 114 Pectinivalva (Pectinivalva) 5, dorsal sclerite, showing surrounding reticulate cuticle; rings indicate positions of setae D1 and XD1.
Figure 2 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figure 2 - Phylogeny of Pectinivalvinae, characters and outgroups as for Fig. 1. 50% Majority Rule Consensus Tree from 147 equally most parsimonious trees; bootstrap support (200 replicates) shown on branches.
Figures 98-103 from: Hoare R, van Nieukerken E (2013) Phylogeny and host-plant relationships of the Australian Myrtaceae leafmining moth genus Pectinivalva (Lepidoptera, Nepticulidae), with new subgenera and species. ZooKeys 278: 1-64. https://doi.org/10.3897/zookeys.278.4743
Figures 98-103 - Pectinivalva (Menurella) spp., female genitalia, ventral view. 98–100 Pectinivalva (Menurella) xenadelpha, holotype, slide EJvN3738 101–103 Pectinivalva (Menurella) tribulatrix, paratype, slide EJvN3963. Scales 100 μm, 50 μm (99, 100, 102).
Figure 8-9 from: Tartally A, Koschuh A, Varga Z (2014) The re-discovered Maculinea rebeli (Hirschke, 1904): Host ant usage, parasitoid and initial food plant around the type locality with taxonomical aspects (Lepidoptera, Lycaenidae). ZooKeys 406: 25-40. https://doi.org/10.3897/zookeys.406.7124
Figure 8-9 - 8 Maculinea alcon X (Hochschwab area) 9 Maculinea rebeli (Hochschwab area) (photo: AK).
Figure 5-7 from: Tartally A, Koschuh A, Varga Z (2014) The re-discovered Maculinea rebeli (Hirschke, 1904): Host ant usage, parasitoid and initial food plant around the type locality with taxonomical aspects (Lepidoptera, Lycaenidae). ZooKeys 406: 25-40. https://doi.org/10.3897/zookeys.406.7124
Figure 5-7 - 5 Maculinea rebeli eggs on Gentianella rhaetica at Präbichl 6 Maculinea rebeli pupae under a stone in a Myrmica lobulicornis nest at Zeiritz 7 Maculinea alcon X pupae and a small larva found in Myrmica sabuleti nest at Sankt Ilgen, arrows sign infections with Ichneumon cf. eumerus (photo: AK).
Figure 1-4 from: Tartally A, Koschuh A, Varga Z (2014) The re-discovered Maculinea rebeli (Hirschke, 1904): Host ant usage, parasitoid and initial food plant around the type locality with taxonomical aspects (Lepidoptera, Lycaenidae). ZooKeys 406: 25-40. https://doi.org/10.3897/zookeys.406.7124
Figure 1-4 - 1–2 Maculinea rebeli site at Zeiritz above the coniferous zone (1750 m) 3 Maculinea rebeli site at Präbichl above the coniferous zone (1600 m) 4 Maculinea alcon X site at Sankt Ilgen within the coniferous zone (photo: AK).
Figure 3 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 3 - Ancestral reconstruction of host plant affiliations in the studied species of Chrysolina and Oreina. Terminal taxa are coded according to the available host plants records from the literature (Table 1). Pie charts at selected nodes show probabilities of each state from the Bayesian analysis in BayesTraits. Clades mentioned in the text are highlighted.
Figure 2 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 2 - Maximum likelihood phylogenetic tree obtained from the combined analysis of cox1, rrnL and H3. Node numbers represent bootstrap support values. Only support values higher than 0.7 are shown. Numbers accompanying the subgeneric classification of the Chrysolina species on the right correspond to the systematic groups defined by Bourdonné and Doguet (1991). Clades mentioned in the text are highlighted.
Figure 1 from: Jurado-Rivera JA, Petitpierre E (2015) New contributions to the molecular systematics and the evolution of host-plant associations in the genus Chrysolina (Coleoptera, Chrysomelidae, Chrysomelinae). In: Jolivet P, Santiago-Blay J, Schmitt M (Eds) Research on Chrysomelidae 5. ZooKeys 547: 165–192. https://doi.org/10.3897/zookeys.547.6018
Figure 1 - Bayesian phylogenetic tree obtained from the combined analysis of cox1, rrnL and H3. Node numbers represent Bayesian posterior probability values. Only support values higher than 0.9 are shown. Numbers accompanying the subgeneric classification of the Chrysolina species on the right correspond to the systematic groups defined by Bourdonné and Doguet (1991). Clades mentioned in the text are highlighted.
Figure 2 from: Pujade-Villar J, Wang Y, Guo R, Chen X (2015) Revision on Palaearctic species of Periclistus Förster with description of a new species and its host plant gall (Hymenoptera, Cynipidae). ZooKeys 596: 65-75. https://doi.org/10.3897/zookeys.596.5945
Figure 2 - Periclistus qinghainensis, sp. n.: a antenna and head of female in lateral view b–c male antenna and detail of first flagellomeres d forewing e–f detail of radial cell indicating the R1 prolongation in margin of forewing g galls h longitudinal section of gall.
Figure 1 from: Pujade-Villar J, Wang Y, Guo R, Chen X (2015) Revision on Palaearctic species of Periclistus Förster with description of a new species and its host plant gall (Hymenoptera, Cynipidae). ZooKeys 596: 65-75. https://doi.org/10.3897/zookeys.596.5945
Figure 1 - Periclistus qinghainensis sp. n.: a head of female in front view b head of female in dorsal view c head and mesoscutum of female in dorsal view d general habitus of female in lateral view.
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.