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.
99
datasets available to search
ShareScore release 0.9.0
Dataset results
99 results for “Tylenchidae”
Figure 6 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 6. Length of cephalopharyngeal skeleton against body length of larvae of Fergusonina lockharti.
Figure 5 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 5. Fergusobia brittenae sp. nov., scanning electron micrographs: (A) vulva and lateral field of parthenogenetic female; (B) head of parthenogenetic female. Black arrows indicate position of openings of two (of six) labial sensillae; white arrow indicates position of one (of two) amphids. Scale bar: 10 µm.
Figure 8 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 8. Distribution of Fergusonina lockharti and Fergusobia brittenae sp. nov. Scale bar: 500 km.
Figure 1 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 1. Fergusonina lockharti: (A) wing; (B) male epandrium; (C) male aedeagus; (D) male aedeagus (detail); (E) female terminalia, dorsal, extended; (F) female terminalia, dorsal, retracted; (G) female terminalia, ventral. Scale bars: D–G, 0.05 mm; B, C, 0.1 mm; A, 1 mm.
Figure 4 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 4. Fergusobia brittenae sp. nov.: (A) entire parthenogenetic female, with habitus outlines; (B) entire infective preparasitic female; (C) entire parasitic female; (D) entire male; (E) stylets of infective female (left), parthenogenetic female (middle), male (right); (F) outlines of heads of male (top row), infective female (middle), parthenogenetic female (bottom row); (G) spicules. Scale bars: A, E–G, 10 µm; B–D, 50 µm.
Figure 2 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 2. Fergusonina lockharti: (A) first instar larva, lateral; (B) second instar larva, lateral; (C) third instar larva, dorsal; (D) third instar larva, lateral; (E) puparium, dorsal aspect. Abbreviations: abs 1–9, abdominal segments 1–9; ceph, cephalic segment; ds, dorsal shield; sa, anterior spiracle; sp, posterior spiracle; ts 1–3, thoracic segments 1–3. Scale bars: A, B, 0.2 mm; C–E, 1 mm.
FIGURE 3. Discotylenchus brevicaudatus. A, B in First record of the genus Discotylenchus Siddiqi, 1980 (Nematoda: Tylenchidae) from Iran, with description of one new and data on two known species
FIGURE 3. Discotylenchus brevicaudatus. A, B: Female and male entire body; C: Anterior end in detail; D: Pharyngeal region; E: Male posterior end; F: Female tail.
FIGURE 2. Discotylenchus iranicus n in First record of the genus Discotylenchus Siddiqi, 1980 (Nematoda: Tylenchidae) from Iran, with description of one new and data on two known species
FIGURE 2. Discotylenchus iranicus n. sp. A–D: Morphology of lip region; E: Male posterior end; F: Bursa; G: Female tail; H: Part of pharyngeal region (all scale bars = 10 µm).
FIGURE 1. Discotylenchus iranicus n in First record of the genus Discotylenchus Siddiqi, 1980 (Nematoda: Tylenchidae) from Iran, with description of one new and data on two known species
FIGURE 1. Discotylenchus iranicus n. sp. A: Female entire body; B: Male entire body; C: Anterior end in detail; D, E: Male posterior end; F, G: Female tail; H: Pharyngeal region.
FIGURE 5 in First record of the genus Discotylenchus Siddiqi, 1980 (Nematoda: Tylenchidae) from Iran, with description of one new and data on two known species
FIGURE 5. Discotylenchus brevicaudatus (A–E) and Discotylenchus discretus (F–I). A: Anterior end; B: Female tail; C: Male posterior end; D: Bursa; E: Neck region showing bottle shaped terminal bulb; F: Anterior end; G: Vagina and spermatheca; H: Male posterior end; I: Female tail (all scale bars = 10 µm).
FIGURE 4. Discotylenchus discretus. A, B in First record of the genus Discotylenchus Siddiqi, 1980 (Nematoda: Tylenchidae) from Iran, with description of one new and data on two known species
FIGURE 4. Discotylenchus discretus. A, B: Female and male entire body; C: Anterior end in detail; D: Male posterior end; E: Female tail; F: Female pharyngeal region.
FIGURE 2 in Review of the genus Scutylenchus Jairajpuri, 1971 (Nematoda: Tylenchida), with description of Scutylenchus dongtingensis n. sp. from rhizosphere soil of grass in China
FIGURE 2. Digital photomicrographs of Scutylenchus dongtingensis n. sp. Female. A. Anterior of body; B. Head region; D. Pharyngeal gland; G: Posterior of body; H–I. Tails in lateral view; J. Vulval region with epiptygma in lateral view; K. reproductive system with spermatheca; L. Cuticle marked into blocks by longitudinal striae in middle body, in ventral view; M. Incisures in middle body in lateral view. Male. C. Head region with stylet; E. Tails in lateral view; F. Tails in ventral view. (Scale bars: A–C, E–J, M=10 μm; D, L=15 μm; K=20 μm)
FIGURE 1. Scutylenchus dongtingensis n in Review of the genus Scutylenchus Jairajpuri, 1971 (Nematoda: Tylenchida), with description of Scutylenchus dongtingensis n. sp. from rhizosphere soil of grass in China
FIGURE 1. Scutylenchus dongtingensis n. sp. Female. A. Anterior with pharynx; C. Vulva region in lateral view; D–F, K, M. Tails in lateral view; G. Entire body. Male. B. Head region; H–I. Entire body; J. Cloacal region; L. Tail in ventral view, the arrow shows genital papilla; N–O. Tails in lateral view.
Figure 7 in The gall fly, Fergusonina lockharti Tonnoir (Diptera: Fergusoninidae) and description of its associated nematode, Fergusobia brittenae sp. nov. (Tylenchida: Neotylenchidae)
Figure 7. Body length against body width of larvae of Fergusonina lockharti.
Figure 4 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 4 - Un-weighted Pair Group Method with Arithmetic Mean (UPGMA) tree showing estimated average genetic distances among all Ditylenchus species based on simple matching coefficient obtained from RAPD analysis.
Figure 3 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 3 - Random Amplified Polymorphic DNA (RAPD) profiles of all Ditylenchus species using primer OPG-05.
Figure 1 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 1 - The 10001st Bayesian likelihood tree inferred from ITS sequences under GTR+I+G model (lnL = 9697.1895; freqA = 0.2646; freqC = 0.2062; freqG = 0.2602; freqT = 0.269; R(a) = 0.9399; R(b) = 3.4936; R(c) = 2.4954; R(d) = 0.5528; R(e) = 5.2698; R(f) = 1; Pinva = 0.4389; Shape = 0.7862). Posterior probability values exceeding 50% are given on appropriate clades.
Figure 2 from: Qiao Y, Yu Q, Badiss A, Zaidi MA, Ponomareva E, Hu Y, Ye W (2016) Paraphyletic genus Ditylenchus Filipjev (Nematoda, Tylenchida), corresponding to the D. triformis-group and the D. dipsaci-group scheme. ZooKeys 568: 1-12. https://doi.org/10.3897/zookeys.568.5965
Figure 2 - The 10001st Bayesian likelihood tree inferred from 18S sequences under GTR+I+G model (lnL = 9697.1895; freqA = 0.2646; freqC = 0.2062; freqG = 0.2602; freqT = 0.269; R(a) = 0.9399; R(b) = 3.4936; R(c) = 2.4954; R(d) = 0.5528; R(e) = 5.2698; R(f) = 1; Pinva = 0.4389; Shape = 0.7862). Posterior probability values exceeding 50% are given on appropriate clades.
FIGURE 3 in Redescription of Basiria gracilis (Thorne, 1949) Siddiqi, 1963 (Rhabditida, Tylenchidae) from South Africa
FIGURE 3. Basiria gracilis (Thorne, 1949) Siddiqi, 1963 (scanning electron microscope, female). A, I: Anterior end, in ventral and lateral views, respectively (arrow pointing to excretory pore); B–D: Lip region in lateral, ventral and frontal views, respectively (arrows indicating the amphids); E: Excretory pore (arrow); F, G: Vagina in ventral and right lateral views, respectively; H: Posterior end; J: Lateral field; K: Anus.
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.