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48 results for “Tessaratomidae”
Fig. 4 in Dinidoridae, Megarididae e Tessaratomidae
Fig. 4. Megaris sp. (adulto).
Fig. 1 in Dinidoridae, Megarididae e Tessaratomidae
Fig. 1. Dinidor mactabilis (adulto).
FIGURES 5 – 7. 5-6 in New data on the genus Tamoli a Horváth, 1900 (Hemiptera: Heteroptera: Tessaratomidae), with description of a new species
FIGURES 5 – 7. 5-6: Tamolia ramifera: Fig. 5. Female terminalia; Fig. 6. Male pygophore, caudal view. Fig. 7. Tamolia ancalagon n. sp. Male pygophore, caudal view.
FIGURES 1 - 4. 1, 3 in New data on the genus Tamoli a Horváth, 1900 (Hemiptera: Heteroptera: Tessaratomidae), with description of a new species
FIGURES 1 - 4. 1, 3: Tamolia ramifera: Fig.1. Habitus; Fig.3. Male pygophore, ventral view. Figs. 2, 4: Tamolia ancalagon n. sp.: Fig. 2. Habitus; Fig. 4. Male pygophore, ventral view.
FIGURES 15–18 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURES 15–18: male genitalia, phallus and paramere—top: phallus (lateral view)—middle: ventral processus (ventral view, right side)—bottom: paramere (dorsal and lateral view, pilosity omitted in lateral view)—15 Hypencha sp. (same specimen as Fig. 10)—16: Oukhypencha clemenceae n. sp.—17: Oukhypencha florenceae n. sp.—18: Oukhypencha ophthalmica sumaterensis n. subsp. Abbreviations: a—apophysis, c—conjunctiva, d—membranous dorsal process, lv—latero-ventral processus, mv—membranous ventral process, ph—phallobase, sd—sclerified dorsal processus, sl—sensorial lobe, v—vesica, vp—ventral processus. All scales 1 mm.
FIGURES 19–23 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURES 19–23: Oukhypencha, female genitalia, evaporatoria.—19–22: female genitalia.—23: evaporatoria.—19, 23: Oukhypencha clemenceae n. sp.—20: Oukhypencha ophthalmica ophthalmica—21: Oukhypencha ophthalmica sumaterensis— 22: Oukhypencha stali. Abbreviations: ad—anterior duct, ev—evaporatoria field, ip—intermediate part, o—ostiole, pd—posterior duct, pw—posterior wall of vagina, r—receptacle, rs—ring sclerite, sd—striated dilation All scales 1 mm.
FIGURES 7–9 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURES 7–9: habitus.—7 Oukhypencha stali n. sp. ♀ (holotype); 8–9: Homoiacoris annemarieae n. sp.—8: ♂ (holotype)— 9: ♀ (paratype). Scale 10 mm
FIGURES 24–28 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURES 24–28: Homoiacoris annemarieae n. sp. (holotype ♂, paratype ♀); 24: phallus (lateral view)—25: ventral processus (ventral view, right side)—26: paramere (dorsal and lateral view, pilosity omitted in lateral view)—27: spermatheca and sclerotized rings—28: evaporatoria. Abbreviations: ad—anterior duct, ev—evaporatoria field, ip—intermediate part, o—ostiole, pd—posterior duct, pw—posterior wall of vagina, r—receptacle, rs—ring sclerite, sd— striated dilation, sld—sclerified latero-dorsal processus, slv—slerified latero-ventral processus, sml—slerified medio-lateral processus. All scales 1 mm.
FIGURES 4–6 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURES 4–6: habitus.—4 Oukhypencha ophthalmica ophthalmica Stål ♀ (holotype); 5–6: Oukhypencha ophthalmica sumaterensis n. sp.—5: ♂ (holotype)—6: ♀ (paratype). Scale 10 mm
FIGURES 1–3 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURES 1–3: habitus.—1–2 Oukhypencha clemenceae n.sp.; 1:—♂ (paratype, Sabah)—2: ♀ (West Kalimantan)—3: Oukhypencha florenceae n. sp. (holotype ♂). Scale 10 mm
FIGURE 29 in New genera, species and subspecies of tessaratomine true bugs (Heteroptera: Tessaratomidae, Tessaratominae)
FIGURE 29: distribution map of Oukhypencha n. gn. and Homoiacoris n. gn.: ✦: Oukhypencha clemenceae n.sp.—⦿: Oukhypencha florenceae n.sp. △: Oukhypencha ophthalmica sumaterensis n.subsp.—▲: Oukhypencha ophthalmica s.str.—❀: Oukhypencha stali n. sp.—★: Homoiacoris annemarieae n. sp.
FIGURES 1–8 in Kaytuesso flavolateralis gen. and sp. nov., a new monotypic genus of Oncomerinae (Hemiptera: Heteroptera: Tessaratomidae) from Papua New Guinea
FIGURES 1–8. Kaytuesso flavolateralis gen. and sp. nov. 1. Habitus, 2. Ventral spine and thoracic sterna. 3. Profemoral spine. 4. Metapleuron. 5. Male pygophore in natural position. 6. Female terminalia, ventral view. 7. Male pygophore, caudal view. 8. Male pygophore, posteroventral view (Scale bars = 1mm.).
FIGURES 3–16. 3–11 in A new species of Agapophyta Guérin-Meneville, 1828 from the Tanimbar Islands, Indonesia (Hemiptera: Heteroptera: Tessaratomidae: Oncomerinae)
FIGURES 3–16. 3–11: Agapophyta kmenti sp. nov.; 12–15: A. aurantiaca Blöte, 1945; 16—A. boschmai Blöte, 1945. 3, 12— phallus (lateral view, in fig 3 the vesica is completely extended, in fig. 12 it is folded after the apex of ejaculatory reservoir); 4—vesica (lateral view); 5, 13—ejaculatory reservoir (dorsal view); 6, 14—paramere; 7, 15—pygophore (dorsal view); 8— detail of inferior processus (lateral view); 9—spermatheca; 10—external genitalia (ventral view); 11—evaporatorium; 16— apex of pygophore (dorsal view, the type have not been dissected, only the part protruding from the abdomen apex is displayed). Abbreviations: alp—antero-latersal conjunctival process; dd—distal ductus; ds—ductus seminis; ef—evaporatrial field; er—ejaculatory reservoir; ipp—inferior processus of pygophore; ms—metasternal spiracle; os—ostiole; pd—proximal ductus; pi—intermediate part; pp—posterior processus; pf—pygophore; r—receptacle. Scale: 3, 7, 9–11, 12, 15, 16: 1 mm; 4– 6, 13–14: 0.5 mm.
FIGURE 5 in The complete mitochondrial genome of a tessaratomid bug, Eusthenes cupreus (Hemiptera: Heteroptera: Pentatomomorpha: Tessaratomidae)
FIGURE 5. Control region of the E. cupreus mitogenome. (A) Structure elements found in the control region of E. cupreus. The red, yellow and green box represent three different repetitive sequences found in the control region and tRNAIle -tRNAGln - tRNAMet -ND2 gene cluste. (B) The putative stem-loops structure was found in the control region. The light green and pink indicates highly conserved flanking sequence. (C) Predicted secondary clover-leaf structure of one extra tRNAGln-like sequences in the control region (gray indicates the sequences are identical to the typical tRNAGln; the light green indicates the different sequences). Alignments with the corresponding regular tRNAGln sequences also provided. The boxed nucleotides indicate the anticodon, which designates the corresponding tRNA.
FIGURE 2 in The complete mitochondrial genome of a tessaratomid bug, Eusthenes cupreus (Hemiptera: Heteroptera: Pentatomomorpha: Tessaratomidae)
FIGURE 2. Inferred secondary structure of 22 tRNAs of the E. cupreus mitogenome. The tRNAs are labeled with the abbreviations of their corresponding amino acids (gray indicates the mismatches). Dashed (-) indicate Watson-Crick base pairing and () indicate G-U base pairing.
FIGURE 3 in The complete mitochondrial genome of a tessaratomid bug, Eusthenes cupreus (Hemiptera: Heteroptera: Pentatomomorpha: Tessaratomidae)
FIGURE 3. Predicted secondary structure of the rrnL gene in E. cupreus. Roman numerals denote the conserved domain structure. The numbering system follows Gillespie et al. (2006) (established at the Comparative RNA Website). Dashed (–) indicate Watson-Crick base pairing and dot () indicate G-U base pairing.
FIGURE 1 in The complete mitochondrial genome of a tessaratomid bug, Eusthenes cupreus (Hemiptera: Heteroptera: Pentatomomorpha: Tessaratomidae)
FIGURE 1. Map of the mitogenome of E. cupreus. The tRNAs are denoted by the color blocks and are labeled according to the IUPAC-IUB single-letter amino acid codes. Gene name without underline indicates the direction of transcription from left to right, and with underline indicates right to left. Overlapping lines within the circle denote PCR fragments amplified used for cloning and sequencing.
FIGURES 108–113 in Thoracic scent efferent system of the Tessaratomidae sensu lato (Hemiptera: Heteroptera: Pentatomoidea) with implication to the phylogeny of the family
FIGURES 108–113. Meso- and metapleuron, most exposed view: 10—Eurostus moutoni Montandon, 1894; 109— Eusthenes robustus (Lepeletier & Serville, 1825); 110—Eurypleura bicornis (Lepeletier & Serville, 1825); 111— Mattiphus aurifer Stål, 1870; 112—Pseudopycanum nigromarginatum (Stål, 1863); 113—Pycanum rubens (Fabricius, 1794). Abbreviations: apl—anterior peritremal lobe, ev—evaporatorium (dotted), mam—median area on posterior margin of mesopleuron, o—ostiole, ppl—posterior peritremal lobe, sp—metathoracic spiracle.
FIGURES 128–134. Platytatus ambiguus Bergroth, 1892 in Thoracic scent efferent system of the Tessaratomidae sensu lato (Hemiptera: Heteroptera: Pentatomoidea) with implication to the phylogeny of the family
FIGURES 128–134. Platytatus ambiguus Bergroth, 1892, SEM-photographs of internal orifice and vestibule. 128— internal view of meso- and metapleura (magnification 22x). 129—position of internal orifice and vestibule (43x). 130— apex of vestibule and external scent efferent system viewed from inside (130x). 131–132—internal orifice (131—600x; 132—detail of mycoid surface, 1200x). 133–134—longitudinal section of vestibule with mycoid surface (133—600x; 134 detail of Fig. 133—1200x). Abbreviations: apl—depression corresponding to median (= anterior) peritremal lobe, cx2—mesocoxa, cx3—metacoxa, ev—elevation corresponding to the evaporatorium, io—internal orifice, o—ostiole, ppl—depression corresponding to lateral (= posterior) peritremal lobe, ve—vestibule; the arrows and numbers indicate positions of the details.
FIGURES 135–137 in Thoracic scent efferent system of the Tessaratomidae sensu lato (Hemiptera: Heteroptera: Pentatomoidea) with implication to the phylogeny of the family
FIGURES 135–137. Phylogenetic trees (unsupported nodes supressed). 135—strict consensus of 25 most parsimonious trees derived by unweighted parsimony analysis (tree length = 148 steps, consistency index = 0.46, retention index = 0.59); 136—strict consensus of 7 most parsimonious trees derived by implied weighting analysis (tree length = 10.40714, consistency index = 0.45, retention index = 0.58); 137—strict consensus of 18 most parsimonous trees derived by successive weighting analysis (tree length = 92.25 steps, consistency index = 0.48, retention index = 0.62).
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