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204 results for “Pusilla”
FIGURES 31–33 in A comparative description of the larvae of Psychomyia pusilla (Fabricius 1781), Metalype fragilis (Pictet 1834), and Paduniella vandeli Décamps 1965 (Trichoptera: Psychomyiidae) and comments on the larvae of other species belonging to these three genera
FIGURES 31–33. Psychomyiidae spp., left anal prolegs, anal claws, and teeth of instar V larvae, left lateral. (31) Psychomyia pusilla; (32) Metalype fragilis; (33) Paduniella vandeli. ac = anal claw, t = teeth.
FIGURES 26–27. Metalype fragilis, instar V in A comparative description of the larvae of Psychomyia pusilla (Fabricius 1781), Metalype fragilis (Pictet 1834), and Paduniella vandeli Décamps 1965 (Trichoptera: Psychomyiidae) and comments on the larvae of other species belonging to these three genera
FIGURES 26–27. Metalype fragilis, instar V larva. (25) Left prothoracic leg and coxopleurite, posterolateral; (26) tarsus and tarsal claw, posterolateral. am = articular membrane, b = brush of setae; bsp = basal spur, cx = coxa, epm = epimeron, eps = episternum, fe = femur, hc = head of coxa, pt = protrochantin, se = seta, s = suture, ta = tarsus, tc = tarsal claw, ti = tibia, tr = trochanter. Except for the dark basal seta of the tarsal claw (se) and the brush of setae of the tarsus (b), the other setae are not shown.
FIGURE 35 in A comparative description of the larvae of Psychomyia pusilla (Fabricius 1781), Metalype fragilis (Pictet 1834), and Paduniella vandeli Décamps 1965 (Trichoptera: Psychomyiidae) and comments on the larvae of other species belonging to these three genera
FIGURE 35. Psychomyia spp. world distribution. EP = East Palearctic Region, MASEA = Maritime Southeast Asian Region, MLSEA = Mainland Southeast Asian Region, NE = Nearctic Region, WP = West Palearctic Region. In each circles, number of species.
FIGURES 42–44 in A comparative description of the larvae of Psychomyia pusilla (Fabricius 1781), Metalype fragilis (Pictet 1834), and Paduniella vandeli Décamps 1965 (Trichoptera: Psychomyiidae) and comments on the larvae of other species belonging to these three genera
FIGURES 42–44. Paduniella, prothoraces, ventral. (42) Pad. vandeli; (43) Pad. undetermined South African species; (44) Pad. nearctica (from a photograph). The yellow dotted line underlines the path of the colourless roll of membrane.
FIGURES 17–21 in A comparative description of the larvae of Psychomyia pusilla (Fabricius 1781), Metalype fragilis (Pictet 1834), and Paduniella vandeli Décamps 1965 (Trichoptera: Psychomyiidae) and comments on the larvae of other species belonging to these three genera
FIGURES 17–21. Psychomyiidae spp., pronota, procoxopleurites, and proximal parts of prothoracic legs of instar V larvae, left lateral. (17) Psychomyia pusilla; (18) Metalype fragilis (larva from English population); (19) Paduniella vandeli. The arrows indicate the diagonal dark thickening. For procoxopleurite and procoxa, see figure 26; (20) Tinodes waeneri, no diagonal dark thickening; ventrolateral extensions (ve) of the pronotum are present. (21) Pad. vandeli, the arrows indicate the distal extremities of the diagonal dark thickenings of Fig 19.
FIGURES 37–41 in A comparative description of the larvae of Psychomyia pusilla (Fabricius 1781), Metalype fragilis (Pictet 1834), and Paduniella vandeli Décamps 1965 (Trichoptera: Psychomyiidae) and comments on the larvae of other species belonging to these three genera
FIGURES 37–41. Psychomyiidae spp., submental sclerites, ventral apotomes and anterior margins of the heads, ventral. (37) Psychomyia lumina (adapted from a drawing by Wiggins 1996); (38) P. flavida (adapted from a photograph); (39) Psy. ctenophora (adapted from a photograph by Vieira-Lanero 2000); (40) Psy. undetermined South Korean species (adapted from a photograph); (41) Metalype fragilis (re-used Fig. 11 for comparisons).
FIGURE 5. Petta pusilla Malmgren, 1866 in A revision of the genus Petta Malmgren, 1866 (Annelida: Pectinariidae), with two new species from deep waters of southeastern Australia, and comments on phylogeny of the family
FIGURE 5. Petta pusilla Malmgren, 1866. Methyl green stained body and chaetae (AM W.50333): A. Ventral view of anterior end; B. Lateral view of anterior end; C. Close-up view of anterior margin on cephalic veil, in dorsal view; D–G. Close-up view of notochaetae from segment 14; E. Notochaetae from posterior row; F–G. Notochaetae from anterior row; H–I. Uncini from segment 14. Abbreviations: br, branchiae; bt, buccal tentacles; cv, cephalic veil; dlp, dorso-lateral pad; lcv, lappets of cephalic veil; lel, lateral ear-shaped lobe; ll, lower lip; op, operculum; or, opercular rim; p, paleae; s, segment; tc, tentacular cirri; vl, ventral lappet.
FIGURE 4. Petta pusilla Malmgren, 1866 in A revision of the genus Petta Malmgren, 1866 (Annelida: Pectinariidae), with two new species from deep waters of southeastern Australia, and comments on phylogeny of the family
FIGURE 4. Petta pusilla Malmgren, 1866. Methyl green stained body of the holotype (SMNH T361): A. Ventral view of anterior end; B. Close-up view of right branchia, dorsal view; C. Dorso-lateral view of anterior end; D. Close-up view of cephalic veil, ventral view; E. Lateral ear-shaped lobe; F. Scaphal hooks; G. Dorsal view of posterior end; H. Ventro-lateral view of posterior end; I. Lateral view of posterior end, showing lobes on lateral margin of scaphe. Abbreviations: ac, anal cirrus; an, anus; br, branchiae; bt, buccal tentacles; cv, cephalic veil; dms, dorsal margin of scaphe; hb, hump of branchia; lb, lamellae of branchia; lcv, lappets of cephalic veil; lel, lateral ear-shaped lobe; ll, lower lip; nec, neurochaetae; nep, neuropodium; noc, notochaetae; p, paleae; s, segment; sc, scaphe; tc, tentacular cirri; sh, scaphal hooks; vl, ventral lappet.
FIGURE 3. Petta pusilla Malmgren, 1866 in A revision of the genus Petta Malmgren, 1866 (Annelida: Pectinariidae), with two new species from deep waters of southeastern Australia, and comments on phylogeny of the family
FIGURE 3. Petta pusilla Malmgren, 1866. Tube and methyl green stained body of the holotype (SMNH T361): A. Tube; B. Lateral view of entire body; C. Ventral view of entire body; D. Dorsal view of anterior end. Abbreviations: br, branchiae; bt, buccal tentacles; cv, cephalic veil; dlp, dorso-lateral pad; nep, neuropodium; op, operculum; or, opercular rim; p, paleae; s, segment; sc, scaphe; tc, tentacular cirri.
Supplementary material 5 from: Cabezas MP, Ros M, Santos AM, Martínez-Laiz G, Xavier R, Montelli L, Hoffman R, Fersi A, Dauvin JC, Guerra-García JM (2019) Unravelling the origin and introduction pattern of the tropical species Paracaprella pusilla Mayer, 1890 (Crustacea, Amphipoda, Caprellidae) in temperate European waters: first molecular insights from a spatial and temporal perspective. NeoBiota 47: 43-80. https://doi.org/10.3897/neobiota.47.32408
: Explanation note: A Phylogenetic tree of nuclear 28S rRNA. Unfortunately, this gene could not be amplified in P.tenuis species. In P.pusilla, only two haplotypes were detected, differing only by the presence of an indel. B Phylogenetic tree of nuclear ribosomal internal transcribed spacer (ITS). No variation was observed among P.pusilla sequences. Trees were rooted with Caprelladanilevskii and Caprellaliparotensis. Values at the nodes correspond to ML bootstrap support and Bayesian posterior probabilities, respectively.
Figs 12-14. Drapetis pusilla Loew male 12 in Drapetis bruscellensis (Diptera: Hybotidae) a new species for science from the outskirts of Brussels, a not so cryptic species supported by COI barcoding
Figs 12-14. Drapetis pusilla Loew male 12. Right epandrial lamella; 13. Epandrium with cerci dorsally; 14. Left surstyli. Scale 0.1 mm.
FIGURE 2 in Pustula junggarensis (Albuginales, Oomycota), a new species of white blister rust on Takhtajaniantha pusilla from Junggar Basin in China
FIGURE 2. Phylogenetic relationship between Pustula junggarensis specimens and some reference sequences retrieved from GenBank, inferred by Minimum Evolution, Maximum Liklihood and Bayesian analysis using the cox2 mtDNA. Sequences of Pustula junggarensis are shown in bold. Numbers above the branches represent bootstrap support values of over 50% obtained from 1,000 bootstrap replicates. Bar = Number of nucleotide substitutions per site.
FIGURE 1. Pustula junggarensis. A, B in Pustula junggarensis (Albuginales, Oomycota), a new species of white blister rust on Takhtajaniantha pusilla from Junggar Basin in China
FIGURE 1. Pustula junggarensis. A, B: Disease symptoms and signs of the pathogen in stems and leaves. C: Sporangia; D: Sporogenous hyphae; E: Surface ornamentation of oospores; F: Oospores; G: Oogonium and antheridium; Bar: C, D = 20μm; E, F, G = 50 μm.
Figure 5 in Geographical variations in waving display and barricade-building behaviour, and genetic population structure in the intertidal brachyuran crab Ilyoplax pusilla (de Haan, 1835)
Figure 5. Mean number of barricades per burrow in Ilyoplax pusilla at six localities (bar indicates SD). Localities arranged according to latitude. Shared alphabetical letters indicate no significant difference (p.0.05) by Tukey's honestly significant difference test.
Figure 2 in Geographical variations in waving display and barricade-building behaviour, and genetic population structure in the intertidal brachyuran crab Ilyoplax pusilla (de Haan, 1835)
Figure 2. Cheliped path movement in Ilyoplax pusilla: circular type and vertical type. Arrows indicate wave path.
Figure 6 in Geographical variations in waving display and barricade-building behaviour, and genetic population structure in the intertidal brachyuran crab Ilyoplax pusilla (de Haan, 1835)
Figure 6. Parsimony network of mitochondrial DNA cytochrome oxidase subunit I (COI) haplotypes of Ilyoplax pusilla. Haplotypes correspond to Table 5. Single solid line indicates one base. Circle size indicates number of each haplotype. Largest circle, n542; second largest, n514 or 15; third, n58; fourth, n54 or n55; fifth, n52; smallest circle, n51.
Figure 1 in Geographical variations in waving display and barricade-building behaviour, and genetic population structure in the intertidal brachyuran crab Ilyoplax pusilla (de Haan, 1835)
Figure 1. Geographic distribution of Ilyoplax pusilla in Japan (broken line) from Wada et al. (1992), and six localities studied.
Figure 4 in Geographical variations in waving display and barricade-building behaviour, and genetic population structure in the intertidal brachyuran crab Ilyoplax pusilla (de Haan, 1835)
Figure 4. Proportion of extended waves in 30 waving motions of Ilyoplax pusilla at six localities (bar indicates SD). Localities arranged according to latitude. Shared alphabetical letters indicate no significant difference (p.0.05) by Tukey's honestly significant difference test.
Figure 3 in Geographical variations in waving display and barricade-building behaviour, and genetic population structure in the intertidal brachyuran crab Ilyoplax pusilla (de Haan, 1835)
Figure 3. Maximum cheliped extension during waving movements in Ilyoplax pusilla: extended type and non-extended type.
FIGURE 2. Cyclocypris pusilla Sars, 1895 in On the recent Cyclocypridinae (Podocopida, Candonidae) with description of two new genera and one new species 2820
FIGURE 2. Cyclocypris pusilla Sars, 1895, type (NHMO F11355): A—carapace, dorsal view; B—carapace, exterior view from the left side (carapace slightly tilted); C—T2, D—UR; E—T3, withouth basal segment; F—hemipenis, outline only. Scales = 0.1 mm.
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