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.
123
datasets available to search
ShareScore release 0.9.0
Dataset results
123 results for “Steinernema”
FIGURE 8 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 8. Phylogenetic relationships of Steinernema taiwanensis n. sp. with other species in Longicaudum-clade based on the sequences of D2D3 region of 28S rDNA. Steinernema khoisanae, S. tophus, and S. innovationi as outgroups.
FIGURE 6 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 6. Scanning electron micrographs of first-generation adults of Steinernema taiwanensis n. sp. A,B) male, posterior region showing genital papillae and a single papilla (s). C–G) young female: C,D) anterior and lateral view of head region showing mouth, labial papillae, and cephalic papillae; E) vulva; F,G) tail region with anus, showing not well-developed postanal swelling and papilla-like structures on tip.
FIGURE 7 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 7. Phylogenetic relationships of Steinernema taiwanensis n. sp. with other species in Longicaudum-clade based on the sequences of rDNA ITS region. Steinernema khoisanae, S. jeffreyense, S. tophus, and S. innovationi as outgroups.
FIGURE 5 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 5. Scanning electron micrographs of infective juvenile of Steinernema taiwanensis n. sp. A) anterior region showing smooth cuticle, three of four cephalic papillae (CP), and one amphid (AM); B) anterior area showing the beginning of lateral field pattern with one incisure (arrow) maintaining a short distance; C,D) lateral field pattern of anterior area where several incisures appear to form ridges; E,F) from lateral field pattern, ridges extend rearward; G) two ridges and phasmid (PH) in tail region; H) tail region showing the lateral field and phasmid.
FIGURE 4 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 4. Light micrographs of female of Steinernema taiwanensis n. sp. A) anterior region (pharyngeal region) showing excretory pore (arrow) (young first generation); B) vulva (young first generation); C,D) tail region (young first generation); E) tail region (second generation). (Scale bars: A–E = 20µm)
FIGURE 2 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 2. Light micrographs of infective juvenile of Steinernema taiwanensis n. sp. A) anterior region showing excretory pore (arrow); B) anterior region (pharyngeal region); C) tail region showing anus (arrow); D) tail region showing no dorsal constriction. (Scale bars: A–D = 20µm).
FIGURE 3 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 3. Light micrographs of male of Steinernema taiwanensis n. sp. A) full view of a first-generation adult; B) anterior region (pharyngeal region) showing excretory pore (arrow) (first generation); C) tail region showing spicule and gubernaculum (first generation); D) tail region (second generation); E) spicules and gubernaculum (first generation). (Scale bars: A–B = 100µm; C–D = 50µm; E = 20µm)
FIGURE 1. Steinernema taiwanensis n in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 1. Steinernema taiwanensis n. sp. A–C) infective juvenile: A) anterior region with nerve ring and excretory pore; B) anterior region showing pharyngeal part; C) tail with anus and hyaline region. D–I) first generation male: D) anterior region of first generation with nerve ring, excretory pore and pharynx; E) tail region with anus; F) tail region showing spicule and gubernaculum; G) spicule; H–I) gubernaculum. J–L) young first generation female: J) anterior region with nerve ring, excretory pore and pharynx; K) vulva; L) tail region with anus, showing not well-developed post-anal swelling. (Scale bars: A, C, F–I = 20µm; B, E, L = 10µm; D = 30µm; J–K = 100µm)
FIGURE 1. Steinernema taiwanensis n in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 1. Steinernema taiwanensis n. sp. A–C) infective juvenile: A) anterior region with nerve ring and excretory pore; B) anterior region showing pharyngeal part; C) tail with anus and hyaline region. D–I) first generation male: D) anterior region of first generation with nerve ring, excretory pore and pharynx; E) tail region with anus; F) tail region showing spicule and gubernaculum; G) spicule; H–I) gubernaculum. J–L) young first generation female: J) anterior region with nerve ring, excretory pore and pharynx; K) vulva; L) tail region with anus, showing not well-developed post-anal swelling. (Scale bars: A, C, F–I = 20µm; B, E, L = 10µm; D = 30µm; J–K = 100µm)
FIGURE 7 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 7. Phylogenetic relationships of Steinernema taiwanensis n. sp. with other species in Longicaudum-clade based on the sequences of rDNA ITS region. Steinernema khoisanae, S. jeffreyense, S. tophus, and S. innovationi as outgroups.
FIGURE 6 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 6. Scanning electron micrographs of first-generation adults of Steinernema taiwanensis n. sp. A,B) male, posterior region showing genital papillae and a single papilla (s). C–G) young female: C,D) anterior and lateral view of head region showing mouth, labial papillae, and cephalic papillae; E) vulva; F,G) tail region with anus, showing not well-developed postanal swelling and papilla-like structures on tip.
FIGURE 4 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 4. Light micrographs of female of Steinernema taiwanensis n. sp. A) anterior region (pharyngeal region) showing excretory pore (arrow) (young first generation); B) vulva (young first generation); C,D) tail region (young first generation); E) tail region (second generation). (Scale bars: A–E = 20µm)
FIGURE 3 in Steinernema taiwanensis n. sp. (Rhabditida: Steinernematidae), a new entomopathogenic nematode from Taiwan
FIGURE 3. Light micrographs of male of Steinernema taiwanensis n. sp. A) full view of a first-generation adult; B) anterior region (pharyngeal region) showing excretory pore (arrow) (first generation); C) tail region showing spicule and gubernaculum (first generation); D) tail region (second generation); E) spicules and gubernaculum (first generation). (Scale bars: A–B = 100µm; C–D = 50µm; E = 20µm)
FIGURE 6. Phylogenetic relationships between 23 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 6. Phylogenetic relationships between 23 species and strains of Steinernema with bootstrap analysis of ITS regions. The eight strains of S. feltiae from a monophyletic group. Numbers at the nodes represent bootstrap proportion.
FIGURE 5 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 5. SEM of infective juvenile of S. feltiae strain BC showing lateral field pattern. A, anterior region showing smooth head, amphid, and one line in lateral field. B, lateral field with two ridges. C, lateral field with two ridges anteriorly, seven ridges posteriorly. D, lateral field with eight ridges. E, lateral field in posterior region showing four ridges near anus. F, lateral field with two ridges and phasmid. Scale bars: A=4.29 µm, B=5.0 µm, C=7.5 µm, D=7.5 µm, E=23.1 µm, F=1.67 µm.
FIGURE 4 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 4. Light microscope photographs of S. feltiae strain BC. A–C, infective juvenile showing excretory pore, basal bulb and long tail. D–F, second generation female, D, tail, E, young, F, old specimen. Scale bars: A–C=14 µm, D=32 µm, E, F=20 µm.
FIGURE 3 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 3. SEM of female of S. feltiae strain BC. A, an abnormal face view. B, a normal face view. C, vulva. D–E, variations of female tail tip. Scale bars: A=6.67 µm, B=10.0 µm, C=15 µm, D=12 µm, E=15 µm, F=16.7 µm.
FIGURE 2 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 2. SEM and light microscopy. Comparative morphology of spicules S. feltiae and S. oregonense. A, spicule of S. feltiae strain SN. B, spicule of S. oregonense. C,D, variation of spicule of S. feltiae strain BC. Scale bars: A=21 µm, B=24 µm, C=24 µm, D=16 µm (in C).
FIGURE 1 in Morphological and molecular characterization of a new isolate of Steinernema feltiae (Filipjev, 1934) from Vancouver, Canada, with morphometrical comparison with the topotype population from Russia
FIGURE 1. SEM of male of S. feltiae strain BC. A, face view. B, C, posterior regions with prominent genital papillae in B and not very prominent in C. D–F, variation of mucron and tail tip. Scale bars: A=7.5 µm, B=50.0 µm, C=85.7 µm, D=23.1 µm, E=10 µm, F=8.57 µm.
FIGURE 8 in Morphological and molecular profiling of an entomopathogenic nematode Steinernema feltiae: Unlocking its biocontrol potential against vegetable insect pests
FIGURE 8. Median lethal time (LT50) of Steinernema feltiae in the larvae of different insect pests at different time intervals and at different nematode concentrations, respectively.
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.