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.
55
datasets available to search
ShareScore release 0.9.0
Dataset results
55 results for “micromoth”
Fig. 1 in PAST DISTRIBUTION OF TILIA-FEEDING PHYLLONORYCTER MICROMOTH (LEPIDOPTERA: GRACILLARIIDAE) IN THE RUSSIAN FAR EAST BASED ON SURVEY OF HISTORICAL HERBARIUM
Fig. 1. Accumulation of Tilia herbarium during one century period in the Russian Far East (A) and number of herbarized Tilia specimens with Phyllonorycter mines (B). VLA –
Fig. 3 in PAST DISTRIBUTION OF TILIA-FEEDING PHYLLONORYCTER MICROMOTH (LEPIDOPTERA: GRACILLARIIDAE) IN THE RUSSIAN FAR EAST BASED ON SURVEY OF HISTORICAL HERBARIUM
Fig. 3. Historical records of Tilia-feeding Phyllonorycter occurrence in the Russian Far East retrieved from on one century-old herbarium. For locations 1–61 see Table 1. In the left
Fig. 2 in Genetic divergence of a newly documented population of the cecidogenous micromoth Eugnosta azapaensis Vargas & Moreira (Lepidoptera: Tortricidae) in the Atacama Desert of northern Chile
Fig. 2. Median joining network of the haplotypes of the DNA barcode fragment (658 bp) of the cytochrome c oxidase subunit I (COI) gene of Eugnosta azapaensis from Azapa (white) and Chaca (black) valleys, Atacama Desert of northern Chile. H1, H2, H3, H4 haplotypes; circles proportional to the frequency of the respective haplotype; numbers between circles indicates variable sites; gray triangle a median vector.
Fig. 1 in Genetic divergence of a newly documented population of the cecidogenous micromoth Eugnosta azapaensis Vargas & Moreira (Lepidoptera: Tortricidae) in the Atacama Desert of northern Chile
Fig. 1. The study area in South America (left) and the sampling sites (right) of Eugnosta azapaensis in the Atacama Desert of northern Chile. The type locality Azapa Valley (black circle) and the newly documented locality Chaca Valley (black triangle).
Figs 1, 2. Micromoths from Kunashir Island, dorsal view. 1 in Autumn moths and butterflies (Lepidoptera) new for the fauna of Kunashir Island
Figs 1, 2. Micromoths from Kunashir Island, dorsal view. 1 – Deuterogonia kamonjii Fujisawa, 1991, ♀ (Oecophoridae); 2 – Epinotia autumnalis Oku, 2005, ♀ (Tortricidae).
Fig. 2 in PAST DISTRIBUTION OF TILIA-FEEDING PHYLLONORYCTER MICROMOTH (LEPIDOPTERA: GRACILLARIIDAE) IN THE RUSSIAN FAR EAST BASED ON SURVEY OF HISTORICAL HERBARIUM
Fig. 2. Herbarium specimens of Tilia amurensis with Phyllonorycter mines, originating
Supplementary material 5 from: Moreira GRP, Eltz RP, Pase RB, Silva GT, Bordignon SAL, Mey W, Gonçalves GL (2017) Cecidonius pampeanus, gen. et sp. n.: an overlooked and rare, new gall-inducing micromoth associated with Schinus in southern Brazil (Lepidoptera, Cecidosidae). ZooKeys 695: 37-74. https://doi.org/10.3897/zookeys.695.13320
Figure S2. : Explanation note: Neighbor-Joining tree of Cecidonius pampeanus with the evolutionary distances computed using the Kimura 2-parameter method based on 1.6 Kb of cytochrome oxidase sequences. The analysis involved 60 individuals from 10 populations.
Supplementary material 4 from: Moreira GRP, Eltz RP, Pase RB, Silva GT, Bordignon SAL, Mey W, Gonçalves GL (2017) Cecidonius pampeanus, gen. et sp. n.: an overlooked and rare, new gall-inducing micromoth associated with Schinus in southern Brazil (Lepidoptera, Cecidosidae). ZooKeys 695: 37-74. https://doi.org/10.3897/zookeys.695.13320
Figure S1. : Explanation note: Graphs depicting the results of the mismatch distribution analysis for the total samples (C. pampeanus) and populations alone (P6 to P9). The analysis was performed with 1420 bp of COI sequences (excluding all sites with missing information or gaps).
Supplementary material 3 from: Moreira GRP, Eltz RP, Pase RB, Silva GT, Bordignon SAL, Mey W, Gonçalves GL (2017) Cecidonius pampeanus, gen. et sp. n.: an overlooked and rare, new gall-inducing micromoth associated with Schinus in southern Brazil (Lepidoptera, Cecidosidae). ZooKeys 695: 37-74. https://doi.org/10.3897/zookeys.695.13320
Table S3. : Explanation note: Specimens used in this study for phylogenetic reconstruction and genetic structure analysis of C. pampeanus.
Supplementary material 1 from: Moreira GRP, Eltz RP, Pase RB, Silva GT, Bordignon SAL, Mey W, Gonçalves GL (2017) Cecidonius pampeanus, gen. et sp. n.: an overlooked and rare, new gall-inducing micromoth associated with Schinus in southern Brazil (Lepidoptera, Cecidosidae). ZooKeys 695: 37-74. https://doi.org/10.3897/zookeys.695.13320
Table S1. : Explanation note: Primers and conditions used in polymerase chain reaction (PCR) to amplify COI, 16S and Wg genes.
Supplementary material 2 from: Moreira GRP, Eltz RP, Pase RB, Silva GT, Bordignon SAL, Mey W, Gonçalves GL (2017) Cecidonius pampeanus, gen. et sp. n.: an overlooked and rare, new gall-inducing micromoth associated with Schinus in southern Brazil (Lepidoptera, Cecidosidae). ZooKeys 695: 37-74. https://doi.org/10.3897/zookeys.695.13320
Table S2. : Explanation note: Analysis of Molecular Variance (AMOVA) using φ-statistics based on cytochrome oxidase subunit I mitochondrial sequences for groups of C. pampeanus, defined according to different dispersal barriers.
FIGURE 2 in Rediscovery of the mysterious Taiwanese micromoth Pachyrhabda citrinacma Meyrick, 1936 (Stathmopodidae) in museum and field, with notes on the fern-spore feeding larva
FIGURE 2. Adults of Pachyrhabda citrinacma Meyrick, 1936. A, B: Male specimen, TAIWAN: Kaohsiung, Taoyuan, Fenggangshan. C, D: Female specimen, TAIWAN: Kaohsiung, Taoyuan, Fenggangshan. Scale bars: A, B, C, D = 5 mm.
FIGURE 1 in Rediscovery of the mysterious Taiwanese micromoth Pachyrhabda citrinacma Meyrick, 1936 (Stathmopodidae) in museum and field, with notes on the fern-spore feeding larva
FIGURE 1. Issiki collected specimen of Pachyrhabda citrinacma Meyrick, 1936. Specimen of Pachyrhabda citrinacma from NTUE, TAIWAN: New Taipei City, Xindian. Scale bar = 1 mm.
FIGURE 4 in Rediscovery of the mysterious Taiwanese micromoth Pachyrhabda citrinacma Meyrick, 1936 (Stathmopodidae) in museum and field, with notes on the fern-spore feeding larva
FIGURE 4. Immatures and adults of Pachyrhabda citrinacma. A: Immature artifacts on Asplenium antiquum. B: Larva and its artifacts on Antrophyum formosana. C: Pupa on A. formosana. D: Adult and its resting posture.
FIGURE 3 in Rediscovery of the mysterious Taiwanese micromoth Pachyrhabda citrinacma Meyrick, 1936 (Stathmopodidae) in museum and field, with notes on the fern-spore feeding larva
FIGURE 3. Genitalia of Pachyrhabda citrinacma Meyrick, 1936. A, B: Male genitalia of Issiki-collected specimen. C, D: Male genitalia, TAIWAN: New Taipei City, Wulai, Fushan (Gen. Prep. ZYS-0083, NTNU). E: Female genitalia, TAIWAN: New Taipei City, Wulai, Fushan (Gen. Prep. ZYS-0204, NTNU). Scale bars: A, B, C, D, E = 0.5 mm.
FIGURE 13 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 13. Mines of Phyllonorycter spp. from the Russian Far East. (A–B) Ph. ringoniella, host plant Malus mandshurica; (C–D) Ph. sorbicola, Prunus padus and Prunus maackii respectively; (E) Ph. strigulatella, Alnus hirsuta; (F) Phyllonorycter sp. 1, Tilia mandshurica; (G–H) Phyllonorycter sp. 6, Acer pseudosieboldianum. Indications: (m) mine; (t) epidermal tunnel; (b) blotch. Close up: (B–C, F, H) mine. Sampling locations: (A–D, F–H) PK, Gornotaezhnoe, MTS and forest, 22–26.VII.2016; (E) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 11–20.VII.2017.
FIGURE 15 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 15. Similarity of gracillariid faunas of the Russian regions and Japan. Gracillariid species number is given in the corresponding bar, number of shared species is in the circles. The similarity Sørensen–Dice coefficient is given in red.
FIGURE 12 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 12. Mines of Phyllonorycter spp. from the Russian Far East. (A) Ph. cretata, host plant Quercus mongolica; (B) Ph. ermani, B. platyphylla; (C) Ph. issikii, Tilia mandshurica; (D) Ph. japonica, Corylus mandshurica; (E) sampling location of Ph. junoniella; (F) Ph. nigristella, Quercus dentata; (G) Ph. orientalis, Acer pictum; (H) Ph. pastorella, Salix sp. Indications: (m) mine; (t) epidermal tunnel; (l) larva; (p) pupa. Close up: (B) deformation of the leaf due to mines (the view from the upper side); (C, F–H) mine, (E) the bush from that the specimens were collected. Sampling locations: (A–B, F) SO, Sakhalin Isl., Yuzhno- Sakhalinsk, Gagarin's Park, 11–20.VII.2017; (E) SO, Sakhalin Isl., Susunay mountain range, 14.VII.2017; (C–D, G–H) PK, Gornotaezhnoe, MTS and forest, 22–26.VII.2016.
FIGURE 8 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 8. Male genitalia of Phyllonorycter and Cameraria spp. from the Russian Far East. (A) Ph. reduncata, host plant Lonicera maackii, [23Pr-2016-male]; (B) Ph. ringoniella, Malus mandshurica, [10Prin-2016-male]; (C) Ph. similis, Quercus dentata, [8Psim-2016-male]; (D) Ph. ulmifoliella [15Pu-2016-male]; (E) Cameraria niphonica, Acer pseudosieboldianum, [1Cn-2016-male]. Sampling location: Gornotaezhnoe, Primorskii Krai, 22–26.VII.2016. Scale bars: (A–D) 200, (E) 250 µm.
FIGURE 4 in Exploring species diversity and host plant associations of leaf-mining micromoths (Lepidoptera: Gracillariidae) in the Russian Far East using DNA barcoding
FIGURE 4. Forewing pattern of Phyllonorycter spp. from the Russian Far East. (A) Ph. caraganella, host plant Caragana fruticosa, NK- 184-16-9A; (B) Ph. cavella, Betula dahurica, 111.1; (C) Ph. cretata, Quercus mongolica, NK-85-17-4; (D) Ph. issikii, T. mandshurica, NK596; (E) Ph. japonica, Corylus mandshurica, 36.2; (F) Ph. jozanae, Crataegus sp., 44.1; (G) Ph. kisoensis, Alnus hirsuta, 45.1; (H) Ph. pastorella, Salix sp., 49.1; (I) Ph. reduncata, Lonicera maackii, 55.3; (K) Ph. ringoniella, Malus mandshurica, NK-179-16-1A; (L) Ph. similis, Quercus dentata, 42.1; (M) Ph. ulmifoliella, 37.1. Sampling locations: (A) PK, Rakovka, 27.VII.2016; (B, D–M) ibidem, Gornotaezhnoe, 16.VII.2013 (D), 22-25.VII.2016 (B, E–M); (C) SO, Sakhalin Isl., Yuzhno-Sakhalinsk, 12.VII.2017. Scale bars 1 mm.
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.