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.
68
datasets available to search
ShareScore release 0.9.0
Dataset results
68 results for “Anthonomus”
Figure 5 in First record of Anthonomus sorbi Germar, 1821 (Coleoptera, Curculionidae) in Western Siberia with remarks on other Siberian species
Figure 5. Distribution of Anthonomus incurvus in Northern Asia.
Figure 1 in First record of Anthonomus sorbi Germar, 1821 (Coleoptera, Curculionidae) in Western Siberia with remarks on other Siberian species
Figure 1. Anthonomus sorbi, female, habitus, Novosibirsk Oblast.
Figure 3 in First record of Anthonomus sorbi Germar, 1821 (Coleoptera, Curculionidae) in Western Siberia with remarks on other Siberian species
Figure 3. Distribution of Anthonomus conspersus in Siberia.
Figure 4 in First record of Anthonomus sorbi Germar, 1821 (Coleoptera, Curculionidae) in Western Siberia with remarks on other Siberian species
Figure 4. Distribution of Anthonomus pedicularis in Western Siberia.
Forecasting model of seasonal dynamics of boll weevil Anthonomus grandis grandis (Coleoptera: Curculionidae) in cotton crops using artificial neural networks
Open the record for dataset details and reuse information.
Anthonomus grandis
<pre>Record of Anthonomus grandis in cotton flower.</pre>
FIGURES 14–22 in Revision of the subgenus Persexarthrus Voss of the genus Anthonomus Germar (Coleoptera: Curculionidae: Anthonomini)
FIGURES 14–22. Habitus of (14) Anthonomus baudueri ♂, (15) idem ♀; (16) A. brevispinus ♂, (17) idem ♀; (18) A.variabilis ♂, (19) idem ♀.
FIGURES 5–8 in Revision of the subgenus Persexarthrus Voss of the genus Anthonomus Germar (Coleoptera: Curculionidae: Anthonomini)
FIGURES 5–8. Male genitalia: penis in ventrodorsal (a) and lateral (b) view, apex of penis in dorsoventral view (c) and plates of sternite IX (d) of (5) Anthonomus baudueri; (6) A. brevispinus; (7) A. variabilis; (8) A. behnei.
FIGURES 1–4 in Revision of the subgenus Persexarthrus Voss of the genus Anthonomus Germar (Coleoptera: Curculionidae: Anthonomini)
FIGURES 1–4. Right profemur of (1) Anthonomus baudueri; (2) A. brevispinus; (3) A. behnei; (4) A. fraudulentus. Not to scale.
FIGURES 24‒27 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 24‒27. Field photos of Anthonomus santacruzi and Solanum mauritianum: 24—A. santacruzi on S. mauritianum inflorescence, 25, 26—S. mauritianum inflorescences exhibiting A. santacruzi damaged (brown) buds, 27—S. mauritianum with inflorescences in the field.
FIGURES 20‒23 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 20‒23. Anthonomus santacruzi, pupa: 20, 21—head and pronotum (20—ventral, 21—lateral), 22—dorsal chaetotaxy, 23a, b—terminalia, ventral (a—female, b—male), ur—urogomphus, setae: as—apical, d—dorsal, ds—discal, l— lateral, os—orbital, pas—postantennal, pls—posterolateral, rs—rostral, sls—superlateral, vs—vertical.
FIGURES 14–16 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 14–16. Anthonomus santacruzi, mature larva, mouth parts: 14—maxillolabial complex, ventral, 15a, b—left maxillia and part of praelabium (a—dorsal side, b—ventral side), 16—maxillae and prelabium, sn—sensillium, setae: dmsdorsal malar, ligs—ligular, mbs—malar basiventral, mxps—maxillary palps, pfs—palpiferal, prms—prelabial, pms—postlabial, stps—stipal, vms—ventral malar.
FIGURES 17‒19 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 17‒19. Anthonomus santacruzi, pupa: 17—ventral, 18—dorsal view, 19—lateral, Th1–3—pro-, meso- and metathorax, Abd1–9—abdominal segments I̅IX, ur—urgomphus.
FIGURES 12, 13 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 12, 13. Anthonomus santacruzi, mature larva, mouthparts: 12—clypeus, labrum, and epipharynx (a—dorsal side, b, c—ventral side), 13—left mandible, clss—clypeal sensorium, esc—epipharynx sensillium clusters, lr—labral rods, snpsensory pore, setae: als—anterolateral, ams—anteromedial, cls—clypeal, lms—labral, mds—mandibular, mes—median.
FIGURES 4‒9 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 4‒9. Anthonomus santacruzi, mature larva, chaetotaxy: 4, 6, 8—thorax and abdominal segment I, 5, 7, 9— abdominal segments V̅X, 4, 5—dorsal, 6, 7—lateral, 8, 9—ventral. Th1–3—pro-, meso- and metathorax, Abd1–9— abdominal segments I̅IX, setae: as—alar, ds—dorsal, eps—epipleural, eus—eusternal, lsts—laterosternal, pda—pedal, pds— postdorsal, prns—pronotal, prs—prodorsal, ps—pleural, sps—spiracular, sts—sternal.
FIGURES 10, 11 in Description of the mature larva and pupa of Anthonomus santacruzi Hustache (Coleoptera, Curculionidae), a biological control agent of Solanum mauritianum Scop. (Solanaceae), and remarks about its biology
FIGURES 10, 11. Anthonomus santacruzi, mature larva: 10—head, 11—antenna. HH—head height, HW—head width, ststemmata, Se—sensorium, sensiliae: sa—apullacea, sb—basiconium, ss—styloconium, setae: des—dorsal epicranial, fs— frontal, les—lateral epicranial, pes—postepicranial, ves—ventral.
Morphological and olfactory tree traits influence the susceptibility and suitability of the apple species Malus domestica and M. sylvestris to Anthonomus pomorum
<p><span>The florivorous apple blossom weevil, <em>Anthonomus pomorum</em> (Coleoptera: Curculionidae), is the most economically relevant insect pest of European apple orchards in early spring. Neither efficient monitoring nor ecologically sustainable management of this insect pest has yet been implemented. To identify heritable traits of apple trees that might influence host selection of <em>A. pomorum</em>, we compared susceptibility of apple tree species using infestation rates of the domesticated apple, <em>Malus domestica</em> (Rosaceae: Pyreae), and the European crab apple, <em>M. sylvestris</em>. We evaluated the suitability of the two apple species for <em>A. pomorum</em> by quantifying the mass of weevil offspring. Because volatile organic compounds (VOCs) emitted from flower buds of domesticated apple have previously been suggested to mediate female weevil preference via olfactory cues, we conducted bioassay experiments with blossom buds of both apple species to explore the olfactory preference of adult weevils and, furthermore, identified the headspace VOCs of blossom buds of both apple species through GC-MS analysis. The infestation analysis showed that<em> A. pomorum</em> infested the native European crab apple stronger than the domesticated apple, which originated from Central Asia. The European crab apple also appeared to be better suited for weevil larval development than the domesticated apple, as weevils emerging from <em>M. sylvestris</em> had a higher body mass than those emerging from <em>M. domestica</em>. These field observations were supported by olfactory bioassays, which showed that <em>A. pomorum</em> significantly preferred the odor of <em>M. sylvestris</em> buds compared to the odor of <em>M. domestica</em> buds. The analysis of headspace VOCs indicated differences in the blossom bud volatiles separating several <em>M. domestica</em> individuals from <em>M. sylvestris</em> individuals. This knowledge might be employed in further studies to repel <em>A. pomorum</em> from <em>M. domestica</em> blossom buds.</span></p> <p> </p>
Fig. 3. Dicranopteris pectinata overhanging a in Anthonomus trica Clark (Coleoptera: Curculionidae: Curculioninae: Anthonomini) New for Colombia and Representing the First Fern Association for the Genus
Fig. 3. Dicranopteris pectinata overhanging a narrow secondary road near Santa Mar´ıa, Boyacá, Colombia.
FIGURES 98–106 in Contribution to the knowledge of the immature stages of Palaearctic species of the genus Anthonomus Germar (Coleoptera: Curculionidae)
FIGURES 98–106. Antennae and maxillary palpi of Anthonomus (SEM images). 98—A. pinivorax, 99—antenna of A. rubripes, 100—maxillary palp of A. rubripes, 101—A. incurvus, 102—A. conspersus, 103—A. latior, 104—A. pedicularius, 105—A. pomorum, 106—A. rubi (se—sensorium, sa—sensilla ampullacea, sd—sensilla digitiform, ss—sensilla styloconium, sb—sensilla basiconicum). Scale bars 10 μm.
FIGURES 95–97 in Contribution to the knowledge of the immature stages of Palaearctic species of the genus Anthonomus Germar (Coleoptera: Curculionidae)
FIGURES 95–97. Anthonomus rubi, pupa habitus and chaetotaxy. 95—ventral view, 96—dorsal view, 97—lateral view (Th1– 3—number of thoracic segments, Ab1–9—number of abdominal segments, sp—spiracle, pd—prothoracic depression; setae: as—apical, d—dorsal, ds—discal, lt—laterotergal, os—orbital, pls—posterolateral, sls—superlateral, sos—superorbital, v— ventral, vs—vertical).
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.