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.
88
datasets available to search
ShareScore release 0.7.1
Dataset results
88 results for “Aceria”
Data from: Thermal niches of wheat curl mite, Aceria tosichella (Acari: Eriophyidae): congruence between physiological and geographical distribution data
<p><strong>Filename: parm.csv</strong></p> <p>Population growth rate of the two wheat curl mite (WCM) lineages reared in different temperatures.</p> <ol> <li>lineage - mitochondrial lineage (MT-1 or MT-8)</li> <li>temp - the rearing temperature (ºC)</li> <li>n - no. of replications of the experiment</li> <li>r, r.lower, r.upper - estimated intrinsic population growth rate and its 95% confidence intervals</li> </ol> <p><strong>Filename: aceria.csv</strong></p> <p>Data on field sampling localities, WCM abundance and thermal niche suitabiity.</p> <ol> <li>julian - Julian date</li> <li>x, y - geodetic coordinates (EPSG: 2180)</li> <li>stems - no. of stems collected</li> <li>MT1, MT8- mitochondrial lineage (MT-1 or MT-8)</li> <li>TNS1, TNS8 - thermal niche suitability for lineages</li> </ol>
Data from: Spatial and host-related variation in prevalence and population density of wheat curl mite (Aceria tosichella) cryptic genotypes in agricultural landscapes
<p><strong>Filename: coord.csv</strong></p> <p>Names of the sampling locations and their geographic coordinates.</p> <ol> <li>Name - sampling locality identifier</li> <li>Lat - latitude</li> <li>Long - longitude</li> </ol> <p> </p> <p><strong>Filename: lineages.csv</strong></p> <ol> <li>id.sample - sample identifier</li> <li>host - host species (Arrela=<em>Arrhenantherum elatius</em>, Avesat=<em>Avena sativa</em>, Broine=<em>Bromus inermis</em>, Elyres=<em>Elymus repens</em>, Horvul=<em>Hordeum vulgaris</em>, Seccer=<em>Secale cereale</em>, Triaes=<em>Triticum aestivum</em>, Tririm=<em>Triticale rimpaui</em></li> <li>x, y - geodetic coordinates</li> <li>stems - no. of stems in a sample</li> <li>leaves - no. of leaves in a sample</li> <li>MT.01 to MT.27 - no. of mites belonging to each genetic lineage</li> </ol>
Figure 5 in A gall mite, Aceria rhodiolae (Acari: Eriophyidae), altering the phytochemistry of a medicinal plant, Rhodiola rosea (Crassulaceae), in the Canadian Arctic
Figure 5. Coxigenital region of Aceria rhodiolae females from (A) Russia, and (B,C,E) Nunavik, Canada. (A,B) Differential interference contrast light microscopy, (C,E) scanning electron micrograph, (D) line drawing. Scale on (B) also applies to (A). Notations on (D) indicate palp, leg and idiosomal setae, and coxal apodemes (ap1, ap2, ap; pra, prosternal apodeme). Other arrows elsewhere indicate characteristic ridges on coxal plates (a,b,c); genital flange (fl), and underlying postgenital plate (pp), which bears setae 3a and extends anterolaterally into lateral flaps (f) that flank the genital coverflap; and ventral ridges on femur, genu, and coxal fields (E).
Figure 8 in A gall mite, Aceria rhodiolae (Acari: Eriophyidae), altering the phytochemistry of a medicinal plant, Rhodiola rosea (Crassulaceae), in the Canadian Arctic
Figure 8. (A) Healthy infructescence of a Rhodiola rosea plant from Nunavik (Canada) versus (B) a mite-infested inflorescence (mostly pale green or yellowish) that partly (centrally) developed into fruits (yellow to red). (C) Dried inflorescences from Labrador (Canada) with a few (upper right) to most (lower left) flowers galled, and a galled leaf (isolated, in the middle). (D) Dried inflorescences from western Russia that were preserved in an herbarium for over 100 years. (E,F) Enlargement of a galled flower and galled leaf from Labrador (same scale). Arrows point at some of the galled flowers (B‒D) or leaves (C). The scale on (C) also applies to (D), and is approximate for (A,B).
Figure 1 in A gall mite, Aceria rhodiolae (Acari: Eriophyidae), altering the phytochemistry of a medicinal plant, Rhodiola rosea (Crassulaceae), in the Canadian Arctic
Figure 1. (A) Map of Canada, showing the area surveyed for Rhodiola rosea in Nunavik, Québec (in white). The small arrow indicates a site where additional samples were taken in Labrador, Newfoundland. (B) Region along the coast of Ungava Bay where populations of R. rosea were surveyed (geographic extremes of study sites: northwest 61.078°N, 69.632°W; northeast 60.422°N, 64.839°W; south 58.023°N). Open circles indicate sites with at least a few galled plants, whereas solid circles indicate sites with no galled plants.
FIGURES 2 – 3 in A new Aceria species (Acari: Prostigmata: Eriophyoidea) from Minuartia frutescens (Caryophyllaceae) in Hungary
FIGURES 2 – 3. SEM micrographs of Aceria wassalberti n. sp. (2) anterodorsal view of probably a female and (3) ventrolateral view of anterior region of male.
Figure 1 in Aceria sadeghii sp. nov. (Acari: Eriophyidae) from Northeast Iran
Figure 1. Line drawings of Aceria sadeghii sp. nov. – AD. Prodorsal shield; AL. Lateral view of anterior body region; CG. Female coxigenital region; em. Empodium; GM. Male genital region; IG. Internal female genitalia; LO. Lateral view of annuli; L1. Leg I; PM. Lateral view of posterior opisthosoma. Scale bar: 10 μm for AD, AL, CG, IG, PM; 5 μm for LO, L1; 2.5 μm for em.
Figure 2 in Aceria sadeghii sp. nov. (Acari: Eriophyidae) from Northeast Iran
Figure 2. Leaves' distortions of Krascheninnikovia ceratoides (L.) Güldenstädt by Aceria sadeghii sp. nov. Scale bar: 10 mm.
Figure 2. Aceria guerreronis Keifer, 1965. a. Female complete body, lateral view. b. Female prodorsum. c. Female genital plate. d in First record of Aceria guerreronis Keifer, 1965 (Acari: Eriophyidae) in Panama
Figure 2. Aceria guerreronis Keifer, 1965. a. Female complete body, lateral view. b. Female prodorsum. c. Female genital plate. d. Male genital plate. / Figura 2. Aceria guerreronis Keifer, 1965. a. Cuerpo completo de la hembra, vista lateral. b. Prodorsum de la hembra. c. Placa genital de la hembra. d. Placa genital del macho.
Figure 1 in First record of Aceria guerreronis Keifer, 1965 (Acari: Eriophyidae) in Panama
Figure 1. Damage levels to Cocos nucifera fruit caused by Aceria guerreronis. / Figura 1. Niveles de daños en los frutos de Cocos nucifera causados por Aceria guerreronis.
Fig. 3 in Association of Aceria cernuus (MASSE, 1927) (Acari: Eriophyidae) with Dolicolepta micrura (BAGNALL, 1914) (Thysanoptera: Phlaeothripdae) on two species of Zizipus
Fig. 3. close-up view of the gall (a); Aceria cernuus (b); eggs of A. cernuus (c) and Dolicolepta micrura (d).
Fig. 1 in Association of Aceria cernuus (MASSE, 1927) (Acari: Eriophyidae) with Dolicolepta micrura (BAGNALL, 1914) (Thysanoptera: Phlaeothripdae) on two species of Zizipus
Fig. 1. Aceria cernuus; (A) prorodorsal shield, (B) coxigenital region, (C) leg I and II and lateral view of prodorsum, (D) internal female genitalia, (E) dorsal view of annuli, (F) empodium. Scale bar: 1 μm.
Figure 1 Aceria alhagi n in A new Aceria species (Acari:Trombidiformes: Eriophyoidea) from West Asia, a potential biological control agent for the invasive weed camelthorn, Alhagi maurorum Medik. (Leguminosae)
Figure 1 Aceria alhagi n.sp.: AD – Antero-dorsal mite; AL – Antero-lateral view of mite; CG – Coxigenital region of female; em – Empodium; GM – Genital region of male; IG – Internal female genitalia; L1 – Leg I of female; LO – Lateral opisthosoma; PM – Postero-lateral mite. Scale bar: 20μm for AD, AL,CG, GM, IG, LO, PM; 10μm for L1; 5μm for em.
Figure 2 SEM images ofAceria alhagi n in A new Aceria species (Acari:Trombidiformes: Eriophyoidea) from West Asia, a potential biological control agent for the invasive weed camelthorn, Alhagi maurorum Medik. (Leguminosae)
Figure 2 SEM images ofAceria alhagi n. sp.: A – prodorsal shield; B – tarsal empodia on legs I and II; C – ventral view of coxigenital area of female; D – ventral view of coxigenital area of male.
FIGURE 2 in Environmental Management And Biological Aspects Of Two Eriophyid Mango Mites In Egypt: Aceria Mangiferae And Metaculus Mangiferae
FIGURE 2: Population trends of the mango rust mite, Metaculus mangiferae and the phytoseiid predators on Alphonse mango leaves in relation to temperature and relative humidity over a two-year period (2003-2004).
FIGURE 1 in Environmental Management And Biological Aspects Of Two Eriophyid Mango Mites In Egypt: Aceria Mangiferae And Metaculus Mangiferae
FIGURE 1: Population trends of eriophyids and their predatory mites associated with mango trees in relation to temperature and relative humidity over a two-year period (2003-2004).
FIGURE 4 in Environmental Management And Biological Aspects Of Two Eriophyid Mango Mites In Egypt: Aceria Mangiferae And Metaculus Mangiferae
FIGURE 4: Population density of Metaculus mangiferae on terminal and lateral buds and leaves of sunny and shady zones of Alphonse mango trees during summer seasons in abandoned orchard.
FIGURE 7 in Environmental Management And Biological Aspects Of Two Eriophyid Mango Mites In Egypt: Aceria Mangiferae And Metaculus Mangiferae
FIGURE 7: Population trends of, Metaculus mangiferae on upper and lower leave surfaces of Alphonso mango trees in abandoned orchard from January to December and weather records.
FIGURE 6 in Environmental Management And Biological Aspects Of Two Eriophyid Mango Mites In Egypt: Aceria Mangiferae And Metaculus Mangiferae
FIGURE 6: Population trends of, Metaculus mangiferae on terminal and lateral buds of Alphonse mango trees in abandoned orchard from January to December and weather records.
FIGURE 5 in Environmental Management And Biological Aspects Of Two Eriophyid Mango Mites In Egypt: Aceria Mangiferae And Metaculus Mangiferae
FIGURE 5: Population trends of, Aceria mangiferae on terminal and lateral buds of Alphonse mango trees in abandoned orchard from January to December and weather records.
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.