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177 results for “Enoplidae”
FIGURE 10 in Five new species of the genus Tripylella (Nematoda: Enoplida: Tripylidae)
FIGURE 10. Bayesian posterior probability consensus tree inferred from the SSU rDNA sequence data. MCMC posterior probabilities are shown above branches. GenBank accession numbers are listed for each taxon and isolate designations are given when provided in the original publication or accession. Newly described species are indicated in boldface. GenBank accession no. AY284737 was originally deposited as Paratripyla sp., but was subsequently used as Tripylella sp. by van Megen et al. (2009), and Zhao et al. (2014) in their analyses of Tripylella.
FIGURE 3 in Two new species of free-living marine nematodes of the family Oxystominidae Chitwood, 1935 (Enoplida) with a review of the genus Thalassoalaimus de Man, 1893 from the Argentine coast
FIGURE 3. Thalassoalaimus nestori sp. n.: (A) head region of holotype male (internal); (B) head region of holotype male (external); (C) posterior end of holotype male showing copulatory apparatus; (D) uterus view with vulva and ovary of paratype female; (E) head region of paratype female (external); (F) posterior end of paratype female. Scale bars: 20µm.
FIGURE 2 in Two new species of free-living marine nematodes of the family Oxystominidae Chitwood, 1935 (Enoplida) with a review of the genus Thalassoalaimus de Man, 1893 from the Argentine coast
FIGURE 2. Litinium australis sp. n.: (A) head region of holotype male (internal); (B) head region of holotype male (external); (C) posterior end of holotype male showing copulatory apparatus; (D) uterus view with vulva of paratype female; (E) head region of paratype female (external); (F) posterior end of paratype female. Scale bars: 20µm.
FIGURE 4 in Two new species of free-living marine nematodes of the family Oxystominidae Chitwood, 1935 (Enoplida) with a review of the genus Thalassoalaimus de Man, 1893 from the Argentine coast
FIGURE 4. Litinium australis sp. n.: (A) posterior end of holotype male showing copulatory apparatus; (B) general view of male; (C) head region of holotype male (external). Thalassoalaimus nestori sp. n.: (D) posterior end of holotype male showing copulatory apparatus; (E) general view of male; (F) head region of holotype male (external). Scale bars: 20µm.
FIGURE 9 in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 9. Syringolaimus elegans sp. n. posterior body. A: holotype male, tail; B: holotype male, spicules and precloacal region; C: juvenile, tail. Scale bars: A, C = 100 µm, B = 20 µm.
FIGURE 8 in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 8. Syringolaimus elegans sp. n., anterior body. A: holotype male, anterior end; B: juvenile, anterior end. C: holotype male, pharyngeal region. Scale bars: A–B = 20 µm; C = 100 µm.
FIGURE 5. Syringolaimus smolae. A in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 5. Syringolaimus smolae. A: head of a male; B: head of a female; C: pharyngeal region of a male. Scale bars: A–B = 20 µm; C = 50 µm.
FIGURE 2. Syringolaimus annae. A in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 2. Syringolaimus annae. A: male, entire body; B: female, entire body; C: male, anterior end; D: female, anterior end. Scale bars: A–B = 200 µm; C–D = 20 µm.
FIGURE 1 in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 1. Male tails of Syringolaimus species arranged from top to bottom with increasing of relative length (expressed in c- index); tail shape is expressed in ratio of anterior conical and posterior cylindrical portions.
FIGURE 7 in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 7. Syringolaimus elegans sp. n., entire. A: holotype male; B: paratype juvenile. Scale bars: A–B = 500 µm.
FIGURE 3. Syringolaimus annae. A in Free-living nematodes of the genus Syringolaimus de Man, 1888 (Nematoda, Enoplida, Ironidae) from the Angola Basin, South-East Atlantic Abyss
FIGURE 3. Syringolaimus annae. A: male, anterior body; B: female, anterior body; C: male, tail; D: female, tail; E: male, pericloacal region. Scale bars: A–E = 50 µm.
FIGURE 3 in A new species of the genus Tripylina Brzeski, 1963 (Nematoda: Enoplida: Trischistomatidae) from Zhejiang Province, eastern China
FIGURE 3. SEM photos of Tripylina zhejiangensis n. sp. A–B: En-face view. C: Head region. D: Tail. (Scale bars: A = 20µm, B = 10µm, C–D = 30µm)
FIGURE 6. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50 in A new species of the genus Tripylina Brzeski, 1963 (Nematoda: Enoplida: Trischistomatidae) from Zhejiang Province, eastern China
FIGURE 6. Bayesian tree inferred from LSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species and GenBank numbers are listed for each taxon.
FIGURE 4. Tripylina zhejiangensis n in A new species of the genus Tripylina Brzeski, 1963 (Nematoda: Enoplida: Trischistomatidae) from Zhejiang Province, eastern China
FIGURE 4. Tripylina zhejiangensis n. sp. A: Pharynx region. B: Head. C: Tail. D: Entire body. E: Female reproductive system. (Scale bars = 20 µm)
FIGURE 5. Bayesian tree inferred from SSU gene DNA sequences. Posterior probabilities exceeding 50 in A new species of the genus Tripylina Brzeski, 1963 (Nematoda: Enoplida: Trischistomatidae) from Zhejiang Province, eastern China
FIGURE 5. Bayesian tree inferred from SSU gene DNA sequences. Posterior probabilities exceeding 50% are given on appropriate clades. Nematode species and GenBank numbers are listed for each taxon.
FIGURE 2. A in A new species of the genus Tripylina Brzeski, 1963 (Nematoda: Enoplida: Trischistomatidae) from Zhejiang Province, eastern China
FIGURE 2. A large portion of ingested nematode within intestine of a specimen of Tripylina zhejiangensis.
FIGURE 1 in A new species of the genus Tripylina Brzeski, 1963 (Nematoda: Enoplida: Trischistomatidae) from Zhejiang Province, eastern China
FIGURE 1. Female of Tripylina zhejiangensis n. sp. A: Entire body. B: Pharynx region. C: Reproductive region. D: Tail. E: Anterior body region (ventro-median seta indicated by arrow). F: Head. G: Cardia. H–J: Heads.
FIGURE 7 in Taxonomic review of Thoracostomopsidae (Nematoda, Enoplida): state of the art, list of valid species and dichotomous keys
FIGURE 7. Diagnostic key to species of Paramesacanthion based on the morphology of adult males. ......Figure captions continued on the next page
FIGURE 4 in Taxonomic review of Thoracostomopsidae (Nematoda, Enoplida): state of the art, list of valid species and dichotomous keys
FIGURE 4. Diagnostic key to species of Mesacanthion based on the morphology of adult males. 1: Asymmetric spicules; 2: Symmetric spicules; 3: Smooth cuticle; 4: Finely striated cuticle; 5: Distance of precloacal supplement from cloaca> 60 µm and left spicule unipartite; 6: Distance of precloacal supplement from cloaca <60 µm and right spicule bipartite; 7: Outer labial setae cbd and right spicule transversely striated; 9: Right spicule left spicule; 11: Tail> 4 abd; 12: Tail <4 abd; 13: Right spicule of 180 µm; 14: Right spicule> 500 µm; 15: Spicules <2 abd; 16: Spicules> 2 abd; 17: Precloacal supplement absent; 18: Precloacal supplement present; 19: Stout post-cloacal setae present; 20: Stout post-cloacal setae absent; 21: Tail long (c= 14– 19), long spicules (150–200 µm); 22: Tail stout (c= 43–51), short spicules (41 µm); 23: Gubernaculum absent; 24: Gubernaculum present; 25: Body length> 3 mm; 26: Body length <2 mm; 27: Several cervical setae at cephalic capsule with spicules arrow shape with sharp distal end; 28: No cervical setae at cephalic capsule with simple spicules slightly curved with blunt distal end; 29: Mandible decorated by longitudinal marks; 30: Mandible without decoration; 31: Somatic setae absent; 32: Somatic setae present; 33: Dorsal tooth missing; 34: Dorsal tooth present; 35: Enlarged cervical setae (flaps) present below lateral outer labial seta at posterior end of cephalic capsule; 36: Enlarged cervical setae (flaps) absent; 37: Inner labial setae stout. Index c' 4.0–5.7; 38: Inner labial setae thin index c' 3; 39: Subventral precloacal setae absent; 40: Subventral precloacal setae present; 41: Gubernaculum simple with dorsal appendage; 42: Gubernaculum triangular; 43: Gubernaculum with two parts; 44: Gubernaculum with just one part; 45: Precloacal supplement close to cloaca and L-shaped spicules; 46: Precloacal supplement far to cloaca, arcuate spicules; 47: Spicules bipartite; 48: Spicules unipartite; 49: Subcephalic setae absent, precloacal supplement 2.2 abd away from cloaca; 50: Four subcephalic setae very thin near end of cephalic capsule, precloacal supplement 3 abd away from cloaca; 51: Proximal end of spicules with massive process; 52: Proximal end of spicules without massive process; 53: Distal end of spicules with backwardly pointing spines; 54: Distal end of spicules without backwardly pointing spines; 55: Spicules distally dilated; 56: Spicules without dilation; 57: Precloacal supplement located close (~1 spicules length) to proximal end of the spicules; 58: Precloacal supplement located further (>1.1 spicules length) away from the cloaca; 59: Precloacal supplement <2 abd distant to cloaca; 60: Precloacal supplement> 2 abd distant to cloaca; 61: Gubernaculum without dorsal apophysis; 62: Gubernaculum with dorsal apophysis; 63: de Man´s b index> 5; 64: de Man´s b index <5; 65: Small size (<3 mm), spicules <200 µm; 66: Large body (> 3mm), spicules> 200 µm; 67: Large spicules (570–610 µm), presence of two subventral stout setae between cloaca and proximal tip of spicules; 68: Small spicules (<510 µm), absent or sparsed setae at cloacal level; 69: Conico-cylindrical tail—5–6 abd length with large and narrow cylindrical portion; 70: Conico-cylindrical tail—4 abd length with short cylindrical portion.
FIGURE 10 in Taxonomic review of Thoracostomopsidae (Nematoda, Enoplida): state of the art, list of valid species and dichotomous keys
FIGURE 10. Diagnostic key to species of Trileptium based on the morphology of adult males. 1: Cuticle annulated, gubernaculum absent; 2: Cuticle smooth or annulated, gubernaculum present; 3: Buccal cavity with a single forwardly-directed dorsal onchium; 4: Buccal cavity with dorsal and two sub-ventral onchia; 5: Precloacal supplement absent, gubernaculum without apophysis; 6: Precloacal supplement present, gubernaculum with a dorso-caudal apophysis; 7: Precloacal supplement absent; 8: Precloacal supplement present; 9: Dorsal onchium does not reach the mandibular transverse bar, ventrosublateral onchia extend beyond bar; 10: Dorsal and ventrosublateral onchia at same level, extend beyond mandibular bar; 11: Precloacal supplement close to cloaca (6–11 µm); 12: Precloacal supplement not close to cloaca (29 µm); 13: Spicules strongly curved distally, gubernaculum with ventral peg, loops over both spicules; 14: Spicules shallow arcs, gubernaculum does not loop over spicules; 15: Gubernaculum with dorso-caudal apophysis; 16: Gubernaculum without apophysis; 17: Tail long and thin, 5 abd; 18: Tail ≤ 4 abd; 19: Spicules length> 8 abd; 20: Spicules length <4 abd; 21: Tip of gubernaculum ends in small plates each, with two lateral projections; 22: Spicules cylindrical tapering to point, gubernaculum reduced to knob obscuring spicules tip.
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Allen Brain Atlas
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International Brain Laboratory public data
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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.