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56 results for “Phytoptidae”
FIGURE 2 in A revision of the genus Sierraphytoptus Keifer 1939 (Eriophyoidea, Phytoptidae)
FIGURE 2. Sierraphytoptus ambulans sp. n., female. D—female in dorsal view, AD—prodorsal shield, CGcoxogenital region, em—empodium and tarsal solenidion (enlarge), L1—leg I, L2—leg II. Scale: D= 60 µm; AD, CG, L1, L2 = 40 µm; D = 20 µm.
FIGURE 3 in A revision of the genus Sierraphytoptus Keifer 1939 (Eriophyoidea, Phytoptidae)
FIGURE 3. Sierraphytoptus setiger (Nalepa, 1894), female. LM—lateral view, AD—prodorsal shield, em— empodium and tarsal solenidion, L1—leg I, L2—leg II, CG—coxogenital region. Scale: LM= 90 µm; AD, CG = 40 µm; em = 25; L1, L2 = 40; CG = 65 µm.
FIGURE 1 in A revision of the genus Sierraphytoptus Keifer 1939 (Eriophyoidea, Phytoptidae)
FIGURE 1. Austracus taiwanensus (K.-W. Huang, 2006) comb. n. L1-f—leg I of female, L1-n—leg I of nymph. Scale: 30 µm.
FIGURE 7 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 7. Factor score distributions of protogyne females of mites Phytoptus atherodes and Phytoptus hirtae from samples #1 and ## 6–9 (characteristics of the samples are given in Table 2). Samples ## 2, 3, 4 and 5 were not incorporated to avoid the inclusion of deutogyne females.
FIGURE 4 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 4. The percentage ratio of different variants of empodia of females (both protogyne and deutogyne forms) of Phytoptus atherodes sp. n. from samples ##1–5 (characteristics of the samples are given in Table 2). Remark: a decrease in the red columns reflects the reduction of protogynes and an increase in the yellow columns reflects a rise in the number of deutogynes.
FIGURE 1 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 1. Phytoptus atherodes sp. n. A. dorsal view of protogyne female, B. prodorsal shield of protogyne female, C. prodorsal shield of deutogyne female, D. coxogenital area of protogyne female, E. epiandrium, F. leg I, G. leg II, H. empodium of protogyne female, I. empodium of deutogyne female, J. empodium of male. Scale bar (μm): A=150; B–G=45; H–J= 15.
FIGURE 3 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 3. Phytoptus hirtae (Roivainen, 1950), female. A. prodorsal shield; B. coxogenital area; C. dorsal mite; D. leg I; E. leg II; F. empodium. Scale bar (μm): A, B, D, E=50; C=200; F=10.
FIGURE 6 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 6. The percentage ratio of different variants of empodia of females of Phytoptus hirtae Roivainen, 1950 from samples #8, #9 and #10 (characteristics of the samples are given in Table 2).
FIGURE 5 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 5. The percentage ratio of protogyne (s) and deutogyne (w) females of Phytoptus atherodes sp. n. in samples ##1–5 (characteristics of the samples are given in Table 2).
FIGURE 2 in Phytoptus atherodes sp. n. (Acari: Eriophyoidea: Phytoptidae) and a supplementary description of Phytoptus hirtae Roivainen 1950 from sedges (Cyperaceae)
FIGURE 2. Distribution of Phytoptus atherodes sp. n. and P. h i r t a e Roivainen 1950. Legend: ․—distribution of P. atherodes; *— type locality P. h i r t a e, ●— other findings of P. h i r t a e in Europe.
FIGURE 8 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 8. CLSM image of the internal genitalia of Oziella sibirica sp. nov. A. Spermatheca; B. Pre-spermathecal swelling (distal segment of spermathecal tube); C. Proximal segment of spermathecal tube; D. Longitudinal bridge; E. Transverse apodeme; F. Laterodistal fold of transversal apodeme.
FIGURE 6 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 6. Oziella sibirica sp. nov., nymph. A. Dorsal view of the mite; B. Ventral view; C. Prodorsal shield; D. Coxigenital area; E. Right leg I (arrow indicates a spine); F. Right leg II; G. Typical 4/3-rayed empodium; H. Typical 4/4-rayed empodium; I. Abnormal empodium. Scale bar: A & B = 140; C & D = 50; E & F = 45; G, H & I = 12.
FIGURE 1. 3D in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 1. 3D model of Oziella sibirica sp. nov. prodorsal shield (the same female as Fig. 2C). A. Gray scale prodorsal shield, B. Colourised prodorsal shield (notifications of lines follows that of Amrine et al. 1994 & Amrine et al. 2003; admedian lines colourised in red, additional line between admedian and submedian-2 line colourised in black). Scale bar A & B = 30 mkm. Note: setae ve and c1 are short on images A & B because only proximal parts of the setae of eriophyoid mites can be observed on CLSM images using blue laser, 405 nm (Chetverikov 2012b).
FIGURE 2 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 2. Variation of the prodorsal shield design among four females of Oziella sibirica sp. nov. (black & white inverted CLSM images). Admedian lines colourised in red (A & D), additional lines in green (B) and red (C; the same female as in Fig. 2A & 2B). Scale bar = 30 mkm.
FIGURE 4 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 4. Microphotographs under light phase contrast microscopy (A & B) and CLSM (C & D) of Oziella sibirica sp. nov. A. Coxigenital region; B. Female prodorsal shield (arrows indicate the eye-like structures); C. Position and view of internal genitalia inside female; D. Epiandrium on male venter. Scale bar A, B, C, D = 20 mkm.
FIGURE 9 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 9. Morphometrics of the internal genitalia of Oziella sibirica sp. nov. Length (A–B) and width (C–D) of spermatheca; length (E–F) and width (G–H) of prespermathecal swelling (distal segment of spermathecal tube); length (I–J) of proximal segment of spermathecal tube; length (J–K) of longitudinal bridge; half-length (K–L) of genital apodeme; maximal distance between left and right parts of transversal apodeme (L–M).
FIGURE 3 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 3. Oziella sibirica sp. nov., female. A. Ventral view of the mite, B. Coxigenital area, C. Female prodorsal shield; D. Female internal genitalia, E. Empodium; F. Epiandrium, G. Leg I (arrow indicates a spine), H. Leg II. Scale bar: A = 130; B & C = 45; D = 35; E = 15; F = 45; G & H = 35.
FIGURE 5 in Oziella sibirica (Acari: Eriophyoidea: Phytoptidae), a new eriophyoid mite species described using confocal microscopy, COI barcoding and 3 D surface reconstruction
FIGURE 5. Oziella sibirica sp. nov., larva. A. Ventral view; B. Prodorsal shield and anterior part of opisthosoma; C. Coxisternal area and anteroventral region of opisthosoma; D. Right leg I, dorsal view; E. Right leg II, dorsal view; F. Typical 4/3-rayed empodium. Scale bar: A = 100; B & C = 45; D & E = 35; F = 10.
FIGURE 10 in CLSM anatomy of internal genitalia of Mackiella reclinata n. sp. and systematic remarks on eriophyoid mites from the tribe Mackiellini Keifer, 1946 (Eriophyoidea: Phytoptidae)
FIGURE 10. Spermathecal apparatus and anterior genital apodemes (in horizontal ventral aspect) of Retracrus (A,B) and Propilus (C,D) mites (redrawn from original descriptions and coloured). A—Retracrus johnstoni Keifer, 1965b; B—Retracrus elaeis Keifer, 1975; C—Propilus gentyi Keifer, 1975; D—Propilus spinosus Keifer, 1975. Note: spermathecae (a), spermathecal tube (b), horizontal part of anterior genital apodeme (c) and apical plates of the apodeme (d) are coloured in yellow, green, grey and red respectively.
FIGURE 3 in CLSM anatomy of internal genitalia of Mackiella reclinata n. sp. and systematic remarks on eriophyoid mites from the tribe Mackiellini Keifer, 1946 (Eriophyoidea: Phytoptidae)
FIGURE 3. LT SEM images of female Mackiella reclinata n. sp. A—frontal lobe; B—gnathosoma; C—apical tarsus and lateral empodium, leg II; D—postero-dorsal opisthosoma; E—postero-ventral opisthosoma; F—external genitalia; G—lateral mite; H—dorsal mite. Scale bar: A, C = 1 µm; B = 3 µm; D, E, F = 5 µm; G = 10 µm; H = 15 µm. Note. Small bubble-like light granules on the surface of mite present on this figure are artifacts appearing because of the LT SEM method used; palpi are telescoped in Fig. 3A and rest in Fig. 3B. Notation: a—basal part of frontal lobe, b—apical part of frontal lobe, c—palpcoxae, d—lateral notch, e—?rudimentary pregenital plate.
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Allen Brain Atlas
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