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28 results for “Ditylenchus”
Fig. 3 in Communities Of Ditylenchus Destructor Satellite Species Of Nematodes In Infected Potato Tubers: Species Composition Of Phytonematode Complex And The Structure Of Their Infracommunities
Fig. 3. The dynamics of the ratio of the total number of various trophoecological group nematodes during the disease of potato tubers caused by D. destructor.
Fig. 1 in Communities Of Ditylenchus Destructor Satellite Species Of Nematodes In Infected Potato Tubers: Species Composition Of Phytonematode Complex And The Structure Of Their Infracommunities
Fig. 1. Ditylenchus destructor (Thorne, 1945) potato nematode: A — female; B — head end of the female; C — spicules; D — male; E — head end of the male; F, G — lateral field by the Thorne, 1945.
Fig. 5 in Communities Of Ditylenchus Destructor Satellite Species Of Nematodes In Infected Potato Tubers: Species Composition Of Phytonematode Complex And The Structure Of Their Infracommunities
Fig. 5. Occurrence of various species of phytonematodes during successive stages of the pathological process.
FIGURE 1 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 1. Ditylenchus sturhani sp. n. from Iran. Female (A, C–F, H–J) and male (B, G, K, L). A, B: Entire body; C, D: Anterior end; E: Reproductive system; F, G: Pharyngeal region; H–L: Posterior end. (Scale bars: A, B = 100 µm; C, D = 10 µm; E = 25 µm; F–L = 15 µm).
FIGURE 5 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 5. Iranian population of Ditylenchus virtudesae, female (A, C–H) and male (B, I). A, B: Entire body; C: Reproductive system; D: Pharyngeal region; E–I: Tail. (Scale bars: A, B= 40 µm; C–I= 10 µm).
FIGURE 2 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 2. Ditylenchus sturhani sp. n. Female (B, D–F, H, I, K, M) and male (C, G, J, L). A: Entire body; B–D: Anterior end; E–G: Posterior part of pharynx (arrow shows pharyngo-intestinal junction); H: Gonoduct; J: Cloacal region; K, L: Posterior end; M: Mid-body showing lateral lines. (Scale bars: A= 50 µm; B–M= 10 µm).
FIGURE 4 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 4. Iranian population of Ditylenchus valveus, female (B, D, E, G, H, J, M) and male (C, F, I, K, L). A: Male and female entire body; B–D: Anterior end; E: Vulval region; F, G, J–M: Posterior end; H: Mid-body showing lateral lines; I: Cloacal region. (Scale bars: A= 100 µm; B–D, E, H–M= 10 µm; F, G: 20 µm).
FIGURE 3 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 3. Iranian population of Ditylenchus valveus, female (A, C–F) and male (B,G, H). A, B: Entire body; C: Mid-body showing lateral lines; D: Pharyngeal region; E–H: Tail. (Scale bars: A, B= 80 µm; C, D= 20 µm; E–F= 10 µm).
FIGURE 6 in Morphological characterisation of a new and two known species of Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) from Iran
FIGURE 6. Iranian population of Ditylenchus virtudesae, female (A–J) and male (K). A: Pharyngeal region; B–D: Anterior end; E: Entire body; F: Mid-body showing lateral lines; H: Gonoduct; I–K: Posterior end. (Scale bars: A–D, F–K= 10 µm; E: 50 µm).
FIGURE 7 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 7. Lateral fields (A-C) and tail shape variations (D-I). A. Four lateral lines in Ditylenchus dipsaci; B. Six lateral lines in D. myceliophagus; C. Additional lines between main lines in D. destructor; D. Pointed tail terminus in male of D. destructor; E. Thick tail with rounded terminus in D. myceliophagus; F. Thin tail with pointed terminus in D. medicaginis; G & H. Finely rounded tail terminus in D. geraerti and D. destructor; I. Mucronate tail terminus in D. parvus. All scale-bars = 10 µm.
FIGURE 6 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 6. Effect of different temperature treatments on means of morphometric indices of pure population of Ditylenchus myceliophagus. Bars with the same letter(s) are not significantly different (P <0.05), according to Duncan's Multiple Range Test.
FIGURE 5 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 5. Effect of different temperature treatments on means of morphometric indices of pure populations of Ditylenchus dipsaci (Garlic and alfalfa populations). In each population, bars with the same letter(s) are not significantly different (P <0.05), according to Duncan's Multiple Range Test.
FIGURE 3 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 3. Effect of different diet treatments on means of morphometric indices of pure population of Ditylenchus myceliophagus. Bars with the same letter(s) are not significantly different (P <0.05), according to Duncan's Multiple Range Test.
FIGURE 4 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 4. Effect of different temperature treatments on means of morphometric indices of pure populations of Ditylenchus destructor (Hamadan, Kerman and Fars populations; codes 188, 347 and 348, respectively). In each population, bars with the same letter(s) are not significantly different (P <0.05), according to Duncan's Multiple Range Test.
FIGURE 2 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 2. Effect of different diet treatments on means of morphometric indices of pure populations of Ditylenchus dipsaci (Garlic and alfalfa populations). In each population, bars with the same letter(s) are not significantly different (P <0.05), according to Duncan's Multiple Range Test.
FIGURE 1 in Intraspecific variations of morphometric indices of some species of the genus Ditylenchus Filipjev, 1936 (Nematoda: Anguinidae) in relation to diet and temperature
FIGURE 1. Effect of different diet treatments on means of morphometric indices of pure population of Ditylenchus destructor (Hamadan population, code 188). Bars with the same letter(s) are not significantly different (P <0.05), according to Duncan's Multiple Range Test.
FIGURE 2 in Ditylenchus sarvarae sp. n. (Tylenchina: Anguinidae) from Iran
FIGURE 2. Ditylenchus sarvarae sp. n. (LM) A: Anterior end; B: Stylet; C: Entire Female; D: Entire male; E: Lateral Field.
FIGURE 1 in Ditylenchus sarvarae sp. n. (Tylenchina: Anguinidae) from Iran
FIGURE 1. Ditylenchus sarvarae sp. n. A, G: Anterior end; B: Entire male; C: Entire Female; D, E: Lip region and stylet; F: Female reprodUctive system; H: Lateral Field incisUres; I: Cross section oF midbody showing lateral Field; J: Post Uterine sac; K, L: Female posterior end; M: Male posterior end.
FIGURE 4. Bayesian tree inFerred From 28S in Ditylenchus sarvarae sp. n. (Tylenchina: Anguinidae) from Iran
FIGURE 4. Bayesian tree inFerred From 28S rDNA seqUences in Ditylenchus and newly seqUenced From Iran (Bold).
FIGURE 3 in Ditylenchus sarvarae sp. n. (Tylenchina: Anguinidae) from Iran
FIGURE 3. Ditylenchus sarvarae sp. n. (LM) A: Vagina; B: Post Uterine sac; C: QUadricolUmella; D: Female reprodUctive system; E, G: Male posterior end; F, H: Female posterior end.
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