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135 results for “Analgoidea”
Figure 5 Montesauria caeruleasp. n in Two new feather mite species of the genus Montesauria Oudemans (Analgoidea: Proctophyllodidae) from thrushes (Passeriformes: Turdidae) in the Indian Subcontinent
Figure 5 Montesauria caeruleasp. n., Male: A – dorsal view; B – ventral view.
Figure 1 Montesauria hernandesisp. n in Two new feather mite species of the genus Montesauria Oudemans (Analgoidea: Proctophyllodidae) from thrushes (Passeriformes: Turdidae) in the Indian Subcontinent
Figure 1 Montesauria hernandesisp. n., Male: A – dorsal view; B – ventral view.
Figure 3 Montesauria hernandesisp. n in Two new feather mite species of the genus Montesauria Oudemans (Analgoidea: Proctophyllodidae) from thrushes (Passeriformes: Turdidae) in the Indian Subcontinent
Figure 3 Montesauria hernandesisp. n., Female: A – dorsal view; B – ventral view.
Figure 7 Montesauria caeruleasp. n in Two new feather mite species of the genus Montesauria Oudemans (Analgoidea: Proctophyllodidae) from thrushes (Passeriformes: Turdidae) in the Indian Subcontinent
Figure 7 Montesauria caeruleasp. n., Female: A – dorsal view; B – ventral view.
FIGURE 4 in Like A Glove: Do The Dimensions Of Male Adanal Suckers And Tritonymphal Female Docking Papillae Correlate In The Proctophyllodidae (Astigmata: Analgoidea)?
FIGURE 4: Size distributions of Proctophyllodes troncatus adult females, adult males and nymphs with and without docking papillae. Body size was measured as the length of the idiosoma (µm) from the anterior margin of the prodorsum to the posterior region of the body excluding the terminal hyaline appendages in adult females and the opisthosomal lamellae in males. Nymphs were catego- rized as having docking papillae or lacking docking papillae. Adult females were significantly larger than adult males as indicated by an unpaired t-test (t38 = 22.6, P <0.001). Similarly, nymphs with docking papillae were larger on average than were those without docking papillae (t194 = 20.6, P <0.001).
FIGURE 3 in Like A Glove: Do The Dimensions Of Male Adanal Suckers And Tritonymphal Female Docking Papillae Correlate In The Proctophyllodidae (Astigmata: Analgoidea)?
FIGURE 3: Correlations in morphology between adult male and tritonymphal female Neodectes spp., Proctophyllodes spp., and Proterothrix spp. feather mites (Astigmata: Proctophyllodidae). Correlations are illustrated between widths (A-B) and lengths (C-D) of the male adanal suckers and the female docking papillae. R2 values indicate how well variation in one variable is predicted by that of the other variable.
FIGURE 2 in Like A Glove: Do The Dimensions Of Male Adanal Suckers And Tritonymphal Female Docking Papillae Correlate In The Proctophyllodidae (Astigmata: Analgoidea)?
FIGURE 2: Correlation between adult male and tritonymphal female body length (µm) in Neodectes spp., Proctophyllodes spp., and Proterothrix spp. (Astigmata: Proctophyllodidae). Length of the idiosoma was measured from the anterior margin of the prodorsum to the posterior region of the body excluding the opisthosomal lamellae in males. Body size was positively correlated between the sexes (rs = 0.66, n = 32, P <0.01) whereby larger tritonymphal females were paired with larger conspecific males.
FIGURE 1 in Like A Glove: Do The Dimensions Of Male Adanal Suckers And Tritonymphal Female Docking Papillae Correlate In The Proctophyllodidae (Astigmata: Analgoidea)?
FIGURE 1: Length of the idiosoma in Proctophyllodes spp. in A. female tritonymphs, B. adult females and C. adult males. Measurements (dashed line) were taken from the margin of the prodorsum to the posterior margin of the body. In female tritonymphs we measured the lateral length (A), medial length (B), and width (C) of the docking papillae. In adult males (D; ventral), we measured the distal (D) and basal (E) widths of the adanal suckers as well as sucker depth (F). Line drawings are modeled after Proctophyllodes glandarinus for adults and from Proctophyllodes pari for tritonymphs (Atyeo and Braasch, 1996). Diagrams of the docking papillae and adanal suckers are drawn after scanning electron images published in Witali´nski et al. (1992).
FIGURE 5 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 5. Morphological differences between Glaucalges tytonis sp. n. (left) and G. attenuatus (right). A – male hysteronotum, B – epimerites I of male, C – female hysteronotal shield with associated setae.
FIGURE 7 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 7. Idiosoma dimensions in Glaucalges tytonis sp. n. (white circles, N=12) and G. attenuatus (black circles, N=12).
FIGURE 3 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 3. Glaucalges tytonis sp. n., female. A – ventral view, B – dorsal view. CO – copulatory opening.
FIGURE 2 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 2. Distal podomeres of Glaucalges tytonis sp. n., dorsal view, male. Designations of setae after Gaud and Atyeo (1996). A – tarsus I, B – tibia and tarsus II, C – tarsus III, D – tarsus IV.
FIGURE 1 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 1. Glaucalges tytonis sp. n., male. A – ventral view, B – dorsal view. Setal designations after Gaud and Atyeo (1996).
FIGURE 6. Atelophyllodes species, details. A–E in Atelophyllodes gen. n., a new feather mite genus of the family Proctophyllodidae (Astigmata: Analgoidea) from lyrebirds (Passeriformes: Menuridae)
FIGURE 6. Atelophyllodes species, details. A–E—Atelophyllodes menurae sp. n., F–I A. atyeoi sp. n. A—tarsus I of female, B—tarsus II of female, C—tibia and tarsus III of female, D—tibia and tarsus IV of female, E—spermatheca and spermaducts, F—femur and genu I of male, G—femur and genu II of male, H—tibia and tarsus IV of male, Ispermatheca and spermaducts. co—copulatory opening, hs—head of spermatheca, pd—primary spermduct, sdsecondary spermduct.
FIGURE 2 in Two new species of feather mites (Acarina: Analgoidea) from the Moustached Warbler, Acrocephalus melanopogon (Passeriformes, Acrocephalidae), in Romania
FIGURE 2. Ingrassiella melanopogoni Constantinescu sp. nov., female. A—idiosoma, dorsal view; B—idiosoma, ventral view.
FIGURE 5 in Two new species of feather mites (Acarina: Analgoidea) from the Moustached Warbler, Acrocephalus melanopogon (Passeriformes, Acrocephalidae), in Romania
FIGURE 5. Trouessartia mironovi Constantinescu sp. nov., female. A—idiosoma, dorsal view; B—spermatheca; C—dorsal idiosoma, ventral view.
FIGURE 1 in Two new species of feather mites (Acarina: Analgoidea) from the Moustached Warbler, Acrocephalus melanopogon (Passeriformes, Acrocephalidae), in Romania
FIGURE 1. Ingrassiella melanopogoni Constantinescu sp. nov., male. A—idiosoma, dorsal view; B—idiosoma, ventral view.
FIGURE 4 in Two new species of feather mites (Acarina: Analgoidea) from the Moustached Warbler, Acrocephalus melanopogon (Passeriformes, Acrocephalidae), in Romania
FIGURE 4. Trouessartia mironovi Constantinescu, sp. nov., male. A—idiosoma, dorsal view; B.—idiosoma, ventral view; C—genital apparatus.
FIGURE 3 in Two new species of feather mites (Acarina: Analgoidea) from the Moustached Warbler, Acrocephalus melanopogon (Passeriformes, Acrocephalidae), in Romania
FIGURE 3. Ingrassiella melanopogoni Constantinescu sp. nov., dorsal view of male legs. A—D, legs I–IV, respectively.
FIGURE 6 in Two new species of feather mites (Acarina: Analgoidea) from the Moustached Warbler, Acrocephalus melanopogon (Passeriformes, Acrocephalidae), in Romania
FIGURE 6. Trouessartia mironovi Constantinescu sp. nov., dorsal view of male legs. A—D, legs I–IV, respectively.
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