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49 results for “Sirthenea”
FIGURES 197–200 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURES 197–200. Color figures of habitus: 197—Sirthenea rodhaini Schouteden, 1913; 198—S. caiana Chłond, 2008; 199—S. dimidiata Horváth, 1911, male; 200—S. dimidiata, female.
FIGURES 193–196 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURES 193–196. Color figures of habitus: 193—Sirthenea africana Distant, 1903; 194—S. flaviceps var. adelpha Horváth, 1909; 195—S. flaviceps var lugubris Horváth, 1909; 196—S. picescens Reuter, 1887.
FIGURES 169–182 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURES 169–182. Trichobothrial setae on pedicel: 169—Sirthenea africana Distant, 1903; 170—S. flaviceps (Signoret, 1860); 171—S. picescens Reuter, 1887; 172—S. rodhaini Schouteden, 1913; 173—S. caiana Chłond, 2008; 174—S. dimidiata Horváth, 1911; 175—S. flavipes (Stål, 1855); 176—S. kali sp. nov.; 177—S. nigronitens (Miller, 1958); 178—S. nitida Chłond, 2008; 179—S. nigra Cai & Tomokuni, 2004; 180—S. setosa sp. nov.; 181—S. laevicollis Horváth, 1909; 182—S. obscura (Stål, 1866).
FIGURES 16–27 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURES 16–27. Sirthenea flaviceps (Signoret, 1860): 16—styloids, outer view; 17—gonapophysis of VIII segment, inner view; 18—gonocoxite of VIII segment, inner view; 19—pygophore, dorsal view; 20—left paramere, inner view; 21—left paramere, outer view; 22—right paramere, inner view; 23—right paramere, outer view; 24—median process of pygophore, lateral view; 25—phallus, right lateral view; 26—phallus, left lateral view; 27—phallus, dorsal view.
FIGURES 156–158 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURES 156–158. Brachypterous hemelytron of females: Figs.: 156—Sirthenea dimidiata Horváth, 1911; 157—S. kali sp. nov.; 158—S. laevicollis Horváth, 1909.
FIGURES 3–14. Sirthenea africana Distant, 1903 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURES 3–14. Sirthenea africana Distant, 1903: 3—styloids, outer view; 4—gonapophysis of VIII segment, inner view; 5— gonocoxite of VIII segment, inner view; 6—pygophore, dorsal view; 7—left paramere, inner view; 8—left paramere, outer view; 9—right paramere, inner view; 10—right paramere, outer view; 11—median process of pygophore, lateral view; 12— phallus, right lateral view; 13—phallus, left lateral view; 14—phallus, dorsal view.
FIGURE 1 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 1. General morphology of Sirthenea: AAP—anterolateral angles of the anterior collar of the pronotum; ADapodeme depression of pronotum; AEC—apical external cell; AH—apodeme depression of head; AIC—apical internal cell; APL—anterior pronotal lobe; AT—antennifer; BF—basiflagellum; CL—clavus; CO—anterior collar of pronotum; DFdistiflagellum; FE—femur; FS—fossula spongiosa; HL—head length; IO—interocellar distance (synthlipsis); IS—intercalar segment of antenna; LAP—length of anteocular part of the head; LES—latero-external sulcus; LPPL—lateral parts of posterior pronotal lobe; LIS—latero-internal sulcus; LPP—length of postocular part of the head; LMS—latero-medial sulcus; MSmedian sulcus; OC—ocelli; PD—pedicel; PPL—posterior pronotal lobe; SC—scape; SCU—scutellum; TA1—tarsomere I; TA2—tarsomere II; TA3—tarsomere III; TC—tubercles of ocelli; TI—tibia; TR—trochanter.
FIGURE 6 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 6. Phylogenetic tree of four sequenced assassin bugs. Bayesian inference and Maximum likelihood analysis inferred from all genes recovered the same topological structure. Bootstrap values and Bayesian posterior probabilities are indicated at each node.
FIGURE 3 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 3. Predicted secondary structure of the rrnL in S. flavipes. Regions in red indicate the high variability in the four assassin bugs. Roman numerals denote the conserved domain structure. Dashed (-) indicate Watson-Crick base pairing and dot () indicate G-U base pairing.
FIGURE 2 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 2. Inferred secondary structures of 22 tRNAs of S. flavipes. The tRNAs are labeled with the abbreviations of their corresponding amino acids. Dashed (-) indicate Watson-Crick base pairing and dot () indicate G-U base pairing.
FIGURE 4 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 4. Predicted secondary structure of the rrnS in S. flavipes. Regions in red indicate the high variability in the four assassin bugs. Roman numerals denote the conserved domain structure. Dashed (-) indicate Watson-Crick base pairing and dot () indicate G-U base pairing.
FIGURE 5 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 5. (A) The conserved region of the mitochondrial control region of S. flavipes, A. dohrni, T. dimidiata and V. hoffmanni. (B) The structural organization of the mitochondrial control region of S. flavipes. The control region flanking genes rrnS, trnI (I), trnQ (Q), and trnM (M) are represented in purple and green boxes. The light blue boxes with roman numerals indicate the tandem repeat region. "G+C" indicates high G+C content region. "A+T" indicates high A+T content region. The black box indicates G element.
FIGURE 1 in Complete nucleotide sequence and organization of the mitochondrial genome of Sirthenea flavipes (Hemiptera: Reduviidae: Peiratinae) and comparison with other assassin bugs
FIGURE 1. Map of the mtochondrial genome of S. flavipes. Direction of gene transcription is indicated by the arrows. PCGs are shown as blue arrows, rRNA genes as purple arrows, tRNA genes as red arrows and large non-coding regions (>100 bp) as cyan rectangles. tRNA genes are labeled according to single-letter IUPAC-IUB abbreviations (L1: UUR; L2:CUN; S1:AGN; S2:UCN). The GC content is plotted using a black sliding window, as the deviation from the average GC content of the entire sequence. GC Skew is plotted as the deviation from the average GC skew of the entire sequence. Ticks in the inner cycle indicate the sequence length.
FIGURE 122 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 122. Sirthenea setosa sp. nov.—dorsal habitus.
FIGURE 113 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 113. Sirthenea nigra Cai & Tomokuni, 2004—dorsal habitus.
FIGURE 103 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 103. Sirthenea nitida Chłond, 2008—dorsal habitus After Chłond (2008a), modified.
FIGURE 94 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 94. Sirthenea kali sp. nov.—dorsal habitus.
FIGURE 66 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 66. Sirthenea dimidiata Horváth, 1911—brachypterous female, dorsal habitus.
FIGURE 65 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 65. Sirthenea dimidiata Horváth, 1911—dorsal habitus.
FIGURE 79 in A taxonomic revision of the genus Sirthenea (Hemiptera: Heteroptera: Reduviidae) of the Old World
FIGURE 79. Sirthenea flavipes var. apicalis Horváth, 1909—dorsal habitus.
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