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53 results for “Argasidae”

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Figure 1 in Molecular detection of Borrelia anserina in Argas persicus (Acari: Argasidae) ticks collected from Lorestan province, west of Iran

Figure 1. The aggregated Argas persicus ticks at different stages around a thatched birdhouse in Lorestan province.

opencc-by-4.0Oct 2017View details →
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Figure 2 in Otobius megnini (Acari: Argasidae) in Iran: exotic or established?

Figure 2. Phylogenetic tree of ixodid and argasid ticks including Otobius megnini taxa inferred from COI sequence data constructed using Bayesian Inference (BI) method; main clades in right side of tree were separated with grayish rectangular shapes and yellow colored box for O. megnini. Taxa are as species name following GenBank accession number, taxon of the present study indicated as bold. Nodes indicated with bootstrap value. Branch lengths are proportional to evolutionary changes. The members of Ixodidae clade are indicated as out-group.

opencc-by-4.0Apr 2018View details →
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Figure 3 in Molecular detection of Borrelia anserina in Argas persicus (Acari: Argasidae) ticks collected from Lorestan province, west of Iran

Figure 3. The phylogenetic tree inferred from flaB amino acids sequence data of B. anserina (clade I) and other Borrelia taxa (clade II, KX171816 and JF693808) constructed using Neighbor-Joining (NJ) method with bootstrap test (1,000 replicates). The main clade in right side of tree separated with colored rectangular shape. Taxa are as species name following GenBank accession number, taxon of the present study indicated as bold. Nodes indicated with bootstrap value. Branch lengths are proportional to evolutionary changes, the units of the number of amino acid substitutions per site. The analysis involved 12 amino acid sequences. All positions containing gaps and missing data were eliminated. There were a total of 166 positions in the final dataset. The more diverged Pakistani strain of B. anserina (JF693808) located outside the main B. anserina (clade I). The members of clade II and B. hermsii are as outgroup.

opencc-by-4.0Oct 2017View details →
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Figure 1 in Otobius megnini (Acari: Argasidae) in Iran: exotic or established?

Figure 1. Otobius megnini collected from Iran (Famenin County): A. Nymph dorsal aspect; B. a section of it's spiny cuticle.

opencc-by-4.0Apr 2018View details →
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Figure 2 in Molecular detection of Borrelia anserina in Argas persicus (Acari: Argasidae) ticks collected from Lorestan province, west of Iran

Figure 2. The stereomicroscopic view of dissected salivary glands (A); ovary and uterus (B) of female Argas tick in normal saline.

opencc-by-4.0Oct 2017View details →
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Figure 4 in Molecular detection of Borrelia anserina in Argas persicus (Acari: Argasidae) ticks collected from Lorestan province, west of Iran

Figure 4. The phylogenetic tree inferred from flaB nucleotide sequence data of B. anserina (clade I) and other Borrelia taxa (clade II and KX171816) constructed using Neighbor-Joining (NJ) method with bootstrap test (1000 replicates). The main clade in right side of tree separated with colored rectangular shape. Taxa are as species name following GenBank accession number, taxon of the present study indicated as bold. Nodes indicated with bootstrap value. Branch lengths are proportional to evolutionary changes, the units of the number of base substitutions per site the units of the number of amino acid substitutions per site. The analysis involved 12 nucleotide sequences. All positions containing gaps and missing data were eliminated. There were a total of 500 positions in the final dataset. The more diverged Pakistani strain of B. anserina (JF693808) located inside the main B. anserina (clade I). The members of clade II and B. hermsii are as outgroup.

opencc-by-4.0Oct 2017View details →
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Figure 1 in Aegyptianella pullorum (Rickettsiales: Anaplasmataceae) in tick Argas persicus (Acari: Argasidae) from Iran: a preliminary assessment

Figure 1. Phylogenetic tree generated based on 16SrRNA sequence data of the Aegyptianella pullorum species generated in this study and similar sequences from GenBank database constructed using Bayesian Inference method. Main clade of tree is separated by a rectangular shape. The taxa of the present study are bold and defined with a name and GenBank accession number. Posterior probability values are inserted at nodes. Branch lengths are proportional to the evolutionary changes. Tree is re-rooted by Rickettsia slovaca as out-group.

opencc-by-4.0Jul 2018View details →
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Figure 4 in Ornithodoros faccinii n. sp. (Acari: Ixodida: Argasidae) parasitizing the frog Thoropa miliaris (Amphibia: Anura: Cycloramphidae) in Brazil

Figure 4 Scanninc electron microscopy of nymphs of Ornithodoros faccinii n. sp. A. Idiosoma, dorsal view. B. Idiosoma, ventral view, showinc the preanal croove reachinc the sides of the body (white arrow). C. Genital primordium (white arrow) on the ventral idiosoma. D. Capitulum. E. Tarsi I and U-shaped capsule (white arrow), partially covered by a V-shaped membrane. Scale bars: A. 500 μm; B. 500 μm; C. 250 μm; D. 100 μm; E. 100 μm.

opencc-by-4.0May 2015View details →
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Figure 1 in Ornithodoros faccinii n. sp. (Acari: Ixodida: Argasidae) parasitizing the frog Thoropa miliaris (Amphibia: Anura: Cycloramphidae) in Brazil

Figure 1 Scanninc electron microscopy of idiosoma and capitulum of larvae of Ornithodoros faccinii n. sp. A. Idiosoma, dorsal view. B. Part of basis capituli and hypostome. C. Idiosoma, ventral view. D. Dorsal plate. E. Detail of ventral idiosoma, showinc the pair of setae VPL (ventral posterolateral) (black arrow). Scale bars: A. 500 μm; B. 50 μm; C. 500 μm; D. 100 μm; E. 250 μm.

opencc-by-4.0May 2015View details →
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Figure 3 in Ornithodoros faccinii n. sp. (Acari: Ixodida: Argasidae) parasitizing the frog Thoropa miliaris (Amphibia: Anura: Cycloramphidae) in Brazil

Figure 3 Scanninc electron microscopy of cnatosoma and tarsus of larvae of Ornithodoros faccinii n. sp. A. Capitulum, ventral view. B. Details of capitulum showinc small spurs at the base of hypostome in the lateral position (black arrow). C. Detail of hypostome, palpi and chelicerae. D. Trochanter of palpi with 11 short spurs in the inner side, some of them are bifid (black arrow). E. Tibiotarsus of palpi. F. Hypostome with dental formula 3/3 in the anterior third, and then 2/2 posteriorly to the base. G. Tarsi I. Scale bars: A. 100 μm; B. 500 μm; C. 25 μm; D. 15 μm; E. 15 μm; F. 10 μm; G. 50 μm.

opencc-by-4.0May 2015View details →
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Figure 2 in Ornithodoros faccinii n. sp. (Acari: Ixodida: Argasidae) parasitizing the frog Thoropa miliaris (Amphibia: Anura: Cycloramphidae) in Brazil

Figure 2 Larvae of Ornithodoros faccinii n. sp. A. Chaetotaxy of dorsal idiosoma: DAL (dorsal anterolateral setae), DC (dorsal central setae), DPL (dorsal posterolateral setae). B. Chaetotaxy of ventral idiosoma: ST (sternal setae), CA (circumanal setae), VPL (ventral posterolateral setae). C. Chaetotaxy of tarsus I, A (anterior), DM (dorsomedian), PC (paracapsular), PM (posteromedian), B (basal), AV (anteroventral), MV (midventral), BV (basiventral), PL (posterolateral). D. Licht microcraph of tarsus I, capsule of Haller's orcan. Scale bars: A and B. 100 μm; C. 50 μm; D. 20 μm.

opencc-by-4.0May 2015View details →
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Figure 5 in Ornithodoros faccinii n. sp. (Acari: Ixodida: Argasidae) parasitizing the frog Thoropa miliaris (Amphibia: Anura: Cycloramphidae) in Brazil

Figure 5 Phylocenetic tree based on the 16S rDNA ticks. The alicnment was produced usinc Clustal X and the tree was inferred by means of the MP method with 500 replicates of random addition taxa. The species Ixodes holocyclus and Ixodes uriae were used as outcroup. The Bayesian support (posterior probability) values are derived from 1,000,000 replicates.

opencc-by-4.0May 2015View details →
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Fig. 2. Ornithodoros huajianensis n in Ornithodoros (Ornithodoros) huajianensis sp. nov. (Acari, argasidae), a new tick species from the Mongolian marmot (Marmota bobak sibirica), Gansu province in China

Fig. 2. Ornithodoros huajianensis n. sp. (female, holotype): E) Tarsi I ∼ IV; F) Spiracle plate; G) genital apron.

opencc-by-4.0Aug 2019View details →
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Fig. 4. Ornithodoros huajianensis n in Ornithodoros (Ornithodoros) huajianensis sp. nov. (Acari, argasidae), a new tick species from the Mongolian marmot (Marmota bobak sibirica), Gansu province in China

Fig. 4. Ornithodoros huajianensis n. sp. (nymph, paratype): A) ventral view, entire; B) Coxa I ∼ IV; C) basis capitulum; D) tarsi II and IV; E) Spiracular plate.

opencc-by-4.0Aug 2019View details →
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Fig. 3 in The complete mitogenome of Argas vulgaris (Filippova, 1961) and its phylogenetic status in subgenus Argas (Acari: Argasidae)

Fig. 3. Phylogenetic tree of Argas species based on the 16S rRNA gene contained in the mitochondrial genome. Numbers at the nodes are bootstrap values of the ML analysis. The GenBank accession numbers are listed after the species names.

opencc-by-4.0Apr 2024View details →
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Fig. 2 in The complete mitogenome of Argas vulgaris (Filippova, 1961) and its phylogenetic status in subgenus Argas (Acari: Argasidae)

Fig. 2. Evolutionary relationships among ticks of the Argasidae families. The phylogenetic tree of complete sequences of mitochondrial genomes. Numbers at the nodes are bootstrap values of the ML analysis. The GenBank accession numbers are listed after the species names.

opencc-by-4.0Apr 2024View details →
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Fig. 1 in The complete mitogenome of Argas vulgaris (Filippova, 1961) and its phylogenetic status in subgenus Argas (Acari: Argasidae)

Fig. 1. The assembled mitogenome of Argas vulgaris. All the annotated genes are plotted in the outer circle and the inner tract shows the GC content.

opencc-by-4.0Apr 2024View details →
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Fig. 5 in The complete mitogenome of Argas vulgaris (Filippova, 1961) and its phylogenetic status in subgenus Argas (Acari: Argasidae)

Fig. 5. Key morphological characters of female Ar. vulgaris. (a) Dorsal view of female Ar. vulgaris. (b) Ventral view of female Ar. vulgaris. (c) Posthypostomal seta, ventral view. (d) Details structure of the marginal cells between the dorsal and ventral surfaces. (e) Genital aperture of female Ar. vulgaris. (f) Ventral view of anus location. (g) Ventral view of capitulum. (h) Ventral view of hypostome of the dentition formula.

opencc-by-4.0Apr 2024View details →
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Fig. 4 in The complete mitogenome of Argas vulgaris (Filippova, 1961) and its phylogenetic status in subgenus Argas (Acari: Argasidae)

Fig. 4. Phylogenetic tree of Argas species based on the COI gene contained in the mitochondrial genome. Numbers at the nodes are bootstrap values of the ML analysis. The GenBank accession numbers are listed after the species names.

opencc-by-4.0Apr 2024View details →
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Figure 1 in Argas hermanni Audouin (Acari: Argasidae), a new member of Iranian tick fauna

Figure 1. Diagnostic morphological characteristics of adult Argas hermanni – General body shape from dorsal (A) and ventral (B) views, legs I-IV (C), capitulum from ventral view (D), dorsal integumental texture (E), Haller's organ and its structure including cell or bottle-shaped sensilium, capsule and internal sensilium or inner chamber (F), body lateral margin (G).

opencc-by-4.0Apr 2020View details →

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