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79 results for “Xiphinema”
Figure 2 in Description of a new dagger nematode, Xiphinema barooghii n. sp. (Nematoda: Longidoridae) and additional data on the three known species of the genus from northwest of Iran
Figure 2: Xiphinema barooghii n. sp. Female (A, B) anterior end; (C, G) uterine differentiation spines; (D) entire body; (E) reproductive system; (F) vagina; (H) tail; (I) caudal pores in lateral optical view; (J) amphidial pouch; (K) pharyngeal expansion. (Scale bars: A–K = 10 μm, D = 70 μm).
Figure 4 in Description of a new dagger nematode, Xiphinema barooghii n. sp. (Nematoda: Longidoridae) and additional data on the three known species of the genus from northwest of Iran
Figure 4: Xiphinema barooghii n. sp. Graph of correlation of functional and replacement odontostyle to body length in all developmental stages from Jl to mature females.
Figure 1 in First report of Xiphinema ifacolum Luc, 1961 (Dorylaimida: Longidoridae) from Nigeria
Figure 1: Light micrographs of Xiphinema ifaCOlUm Luc, 1961 from Nigeria (A–I). (A) Whole female, (B,C) Female lip region showing amphidial fovea, (D–G) Detail of Z-organ in uterus, (H–I) Female tail regions. IndiCatOrS: af = amphidial fovea; a = anus; Zorg = Z-organ. (Scale bars: A = 200 µm; B, C, G–I = 10 µm; D–F = 20 µm).
Fig. 2. Enchodelus macrodorns. A in Description of Xiphinema karachiense sp. n. and morphometric data on Enchodelus macrodorus (de Man, 1880), Thorne, 1939 (Nematoda : Dorylaimida) from Pakistan
Fig. 2. Enchodelus macrodorns. A: Female, entire; B: Anterior body region; C Head end showing amphid; D: Female sexual system; E: Female tail; F: Expanded region of oesophagus.
Fig. 1. Xiphinema karachiense n in Description of Xiphinema karachiense sp. n. and morphometric data on Enchodelus macrodorus (de Man, 1880), Thorne, 1939 (Nematoda : Dorylaimida) from Pakistan
Fig. 1. Xiphinema karachiense n. sp. A: Oesophageal region; B: Anteriorbodyregion; C: Male, entire; D: Female, emire; E: Posterior branch of female reproductive system; F, G: Four spherical inclusionsofpseudo-Z-differemiation; H: Maletail; l: Posterior body region of male;].- M.: Tails of juveniles; N: Female tail.
ییولج یسنج هلول و یلسانت فاکش:D ،ندب ییولج تمسق و رس:C ،مد و جرخم:B ،ندب یلک یامن:A.Xiphinema utahense -5 لکش Figure 5- Xiphinema utahense. A: Entire body, B: Tail, pre-rectum and rectum, C: Head and anterior part of body, D: Vulva and anterior genital system in Report of Six Dorylaim Nematodes from Arasbaran Forestry- Iran
ییولج یسنج هلول و یلسانت فاکش:D ،ندب ییولج تمسق و رس:C ،مد و جرخم:B ،ندب یلک یامن:A.Xiphinema utahense -5 لکش Figure 5- Xiphinema utahense. A: Entire body, B: Tail, pre-rectum and rectum, C: Head and anterior part of body, D: Vulva and anterior genital system
Figure 11. Phylogenetic relationships within the Xiphinema americanum-group complex. Bayesian 50 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 11. Phylogenetic relationships within the Xiphinema americanum-group complex. Bayesian 50% majority rule consensus tree as inferred from partial cytochrome c oxidase subunit I (coxI) sequence alignment under a transversional of invariable sites and gamma-shaped distribution model TVM + I + G model. Posterior probabilities more than 65% are given for appropriate clades; bootstrap values greater than 50% are given on appropriate clades in the maximum likelihood analysis. Sequences newly obtained in this study in this study are in bold. Scale bar = expected changes per site.
Figure 7 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 7. Factor analysis of 11 morphometric characters used to characterize Xiphinema plesiopachtaicum sp. nov., Xiphinema vallense sp. nov., and Xiphinema pachtaicum-subgroup species. Left-hand side of panels: projection of morphometric characters on the plane of factors 1 and 2 (A), 1 and 3 (B), 1 and 4 (C), and 2 and 3 (D). Abbreviations: L, body length; V, (distance from anterior end to vulva/body length) × 100; OaGR, oral aperture-guiding ring distance; Lip, lip region width; Tail, female tail length; Hyaline, hyaline region length; a, body length/maximum body width; b, body length/pharyngeal length; c, body length/tail length; c′, tail length/body width at anus.
Figure 6 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 6. Light micrographs of Xiphinema astaregiense sp. nov. A, B, entire female and male, respectively. C–F, female neck region. G, pharyngeal bulb. H, vulval region. I–K, female tail regions from different specimens showing the morphological variability. L, M, male tail region, ventromedian supplements arrowed. Abbreviations: a, anus; gr, guiding ring; V, vulva. Scale bars: A, B = 200 μm; C–M = 20 μm.
Figure 4 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 4. Light micrographs of Xiphinema vallense sp. nov. A, entire female. B, E, female neck region. C, D, F, female lip region. G, vulval region. H–M, female tail regions from different specimens showing the morphological variability. N–O, male tail, ventromedian supplements arrowed. Abbreviations: a, anus; gr, guiding ring; V, vulva. Scale bars: A = 200 μm; B–O = 20 μm.
Figure 3 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 3. Light micrographs of Xiphinema plesiopachtaicum sp. nov. A, entire female. B, female neck region. C, D, female lip region. E, vulval region. F–K, female tail regions from different specimens showing the morphological variability. Abbreviations: a, anus; gr, guiding ring; V, vulva. Scale bars: A = 100 μm; B–K = 20 μm.
Figure 8 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 8. Factor analysis of 11 morphometric characters used to characterize Xiphinema plesiopachtaicum sp. nov., Xiphinema vallense sp. nov., and Xiphinema pachtaicum-subgroup species. Projection of Xiphinema americanum- group species on the plane of factor 1 and 2 (A), 1 and 3 (B), 1 and 4 (C), and 2 and 3 (D).
Figure 1 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 1. Line drawings of: A–D, Xiphinema plesiopachtaicum sp. nov.; E–H, Xiphinema vallense sp. nov.; I–L, Xiphinema astaregiense sp. nov. A, E, I, female lip regions. B–D, F, G, J, K, female tail regions. H, L, male tail regions.
Figure 2 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 2. Line drawings of pharyngeal bulb and anterior genital branch of: A, B, Xiphinema plesiopachtaicum sp. nov.; C, D, Xiphinema vallense sp. nov.; E, F, Xiphinema astaregiense sp. nov.
Figure 10. Phylogenetic relationships within the Xiphinema americanum-group complex. Bayesian 50 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 10. Phylogenetic relationships within the Xiphinema americanum-group complex. Bayesian 50% majority rule consensus tree as inferred from internal transcribed spacer 1 (ITS1) rRNA sequence alignment under the general timereversible and gamma-shaped distribution model. Posterior probabilities more than 65% are given for appropriate clades; bootstrap values greater than 50% are given on appropriate clades in the maximum likelihood analysis. Sequences newly obtained in this study are in bold. Scale bar = expected changes per site.
Figure 5 in Cryptic diversity and species delimitation in the Xiphinema americanum-group complex (Nematoda: Longidoridae) as inferred from morphometrics and molecular markers
Figure 5. Relationship between body length and functional and replacement odontostyle (Ost and rOst, respectively) length in all developmental stages from first-stage juveniles (J1) to mature females of: A, Xiphinema vallense sp. nov. and B, Xiphinema astaregiense sp. nov.
Figure 4 from: Daramola FY, Knoetze R, Swart A, Malan AP (2019) First report and molecular characterization of the dagger nematode, Xiphinema oxycaudatum (Nematoda, Dorylaimidae) from South Africa. ZooKeys 894: 1-17. https://doi.org/10.3897/zookeys.894.35281
Figure 4 Phylogenetic relationship within species of the Xiphinema americanum-group, based on analysis of the coxI regions with maximum parsimony (MP), using Pratylenchus bolivianus and Caenorhabditis elegans as outgroups. Newly obtained sequences are indicated by bold letters.
Figure 1 from: Daramola FY, Knoetze R, Swart A, Malan AP (2019) First report and molecular characterization of the dagger nematode, Xiphinema oxycaudatum (Nematoda, Dorylaimidae) from South Africa. ZooKeys 894: 1-17. https://doi.org/10.3897/zookeys.894.35281
Figure 1 Scanning electron micrographs of Xiphinema oxycaudatumA–C head region with stirrup-shaped amphidial pouch and slit-like aperture, vulva opening and tail showing a caudal pore. Scale bars: 2 µm.
Figure 3 from: Daramola FY, Knoetze R, Swart A, Malan AP (2019) First report and molecular characterization of the dagger nematode, Xiphinema oxycaudatum (Nematoda, Dorylaimidae) from South Africa. ZooKeys 894: 1-17. https://doi.org/10.3897/zookeys.894.35281
Figure 3 Phylogenetic relationship within species of the Xiphinema americanum-group, based on analysis of the D2D3 regions with maximum parsimony (MP) using Xiphinema index and Longidorus crataegi as outgroups. Newly obtained sequence is indicated by bold letters.
Figure 2 from: Daramola FY, Knoetze R, Swart A, Malan AP (2019) First report and molecular characterization of the dagger nematode, Xiphinema oxycaudatum (Nematoda, Dorylaimidae) from South Africa. ZooKeys 894: 1-17. https://doi.org/10.3897/zookeys.894.35281
Figure 2 Light microscopy of Xiphinema oxycaudatumA–D head region, female reproductive system with didelphic ovary, tail region and vulva. Scale bars: 10 µm (A, C, D), 20 µm (B).
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