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152 results for “termitophilous”
FIGURES 3–5 in A review of the baconii species group of the termitophilous genus Orthogonius Macleay (Coleoptera: Carabidae: Orthogoniini)
FIGURES 3–5. Orthogonius baconii Chaudoir (3. Habitus; 4. Aedeagus, right lateral view; 5. Apical lamella, dorsal view)
Fig. 11 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 11. Series of post-imaginal growth. (A–H) Gradative development of the metendesternite and sternite II of Thyreoxenus major stenogastric to the full-grown physogastric specimen. (I) Termitozophilus laetus, habitus lateral. (J) Primary and secondary sclerotization on the paratergite. Scale bars: 0.4 mm.
Fig. 8 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 8. Sternite VIII and spermatheca in Xenogaster species. Tergite VIII of (A) Xenogaster lugens sp. nov. (B) X. pilosula. (C) X. subuda. (D) X. inflata. Spermatheca of: (E) X. lugens sp. nov. (F) X. pilosula. (G) X. subnuda. (H) X. inflata. Scale bars: A, B, F = 0.2 mm; C, D = 0.1 mm; E, G, H = 0.025 mm.
Fig. 9 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 9. Termitogaster emersoni Mann. Comparison between stenogastric and physogastric specimens. Blue arrows point to the metendesternite; red arrows to sternite II (absent on the stenogastric). (A–B) Ventral view of stenogastric specimen. (C–D) Ventral view of physogastric specimen. Scale bars: A: 0.5 mm; B = 0.77 mm. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 5 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 5. (A) Termitogaster emersoni Mann, 1923, stenogastric individual (lateral). Note that in Corotocini, stenogastric specimens have well-developed membranous wings, not always present in subsequent stages. Scale bar = 0.5 mm.
Fig. 6 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 6. Xenogaster lugens sp. nov. and X. pilosula (habitus and abdomen, lateral view). Blue arrows indicate post-sternal sclerotization (PSS). (A–B) absent in X. lugens sp. nov. (C–D) Well-developed in X. pilosula. Scale bars: A = 0.67 mm; C = 0.37 mm. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 3. Xenogaster pilosula Seevers, 1957 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 3. Xenogaster pilosula Seevers, 1957, holotype. (A) Habitus lateral. (B) Labels. (C) Habitus dorsal. Scale on figure.
Fig. 7 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 7. Development of sternite II (indicated by red arrows) and PSS development (indicated by blue arrows). (A, D) X. lugens sp. nov. (early) and (C, F). X. pilosula (intermediate): totally absent or partially developed in early and/or intermediate forms (B, E) X. pilosula (full-grown): conspicuously and well-developed. Scale bars: A = 0.67 mm; B, C = 0.37 mm. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 4. Xenogaster pilosula Seevers, 1957 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 4. Xenogaster pilosula Seevers, 1957. (A) Ventral view of head. (B) Antennae (apex collapsed). (C) Mandibles (prostheca indicated by arrows). (D) Labrum and clypeus (clypeus indicated by arrow). (E) Labium (dorsal view). (F) Maxilla (dorsal view). (G) Pronotum. (H) Meso- metanotum, and tergite I. (I) Meso- metasternum. (J) Elytron. (K) Prothoracic leg. (L) Mesothoracic leg. (M) Metathoracic leg. (N) tergite VII. (O) Sternite VIII (female). (P) Protarsus. (Q) Mesotarsus. (R) Metatarsus. (S) Sternite VIII (male). (T) Sternite IX, tergites IX and X (male). (U) Aedeagus (parameral view). (V) tergites IX and X (female). (W) Spermatheca. Scale bars: A, B, J, M, N, P, Q, R, T, U, V, W = 0.1 mm; G, K, L, O, S = 0.2 mm; D, E = 0.2 mm; F, H, I = 0.05 mm; C = 0.03 mm.
Fig. 2 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 2. Xenogaster lugens sp. nov. last segments dissected. (A) Tergite VII. (B) Tergites IX and X. (C) Tergite VIII. (D) Sternite VIII. (E) Spermatheca. Scale bars: A, C, D = 0.2 mm; B, E = 0.05 mm.
Fig. 1 in The underestimation and evolutionary significance of post-imaginal growth in the termitophilous Termitogastrina: Insights from a new species of Xenogaster from Brazil (Staphylinidae: Aleocharinae: Corotocini)
Fig. 1. Xenogaster lugens sp. nov., holotype. (A) Habitus lateral. (B) Habitus ventral. (C) Habitus dorsal. Scale bars: 0.67 mm.
FIGURES 25 in Dilacera, a new astonishing Amazonian genus of termitophilous rove beetle (Staphylinidae: Aleocharinae: Termitonannini) and updated checklist of the subtribe Termitonannina with their termite hosts
FIGURES 25– 31. Dilacera exokosmos Zilberman & Pires-Silva gen. et sp. nov., female. 25, paratergites and tergite VII; 26, sternite VII; 27, tergite X and sternite IX; 28, sternite IX (one side); 29, tergite X; 30, tergite VIII; 31, spermatheca. Scale bars = 0.01 mm
FIGURES 32 in Dilacera, a new astonishing Amazonian genus of termitophilous rove beetle (Staphylinidae: Aleocharinae: Termitonannini) and updated checklist of the subtribe Termitonannina with their termite hosts
FIGURES 32– 39. Dilacera exokosmos Zilberman & Pires-Silva gen. et sp. nov. schemes, 32, maxilla; 33, labrum; 34, tergite VIII (male); 35, tergite VIII (female); 36, tergite VII and paratergites VII; 37, sternite VII; 38, pronotum (male); 39, pronotum (female).
FIGURES 7 in Dilacera, a new astonishing Amazonian genus of termitophilous rove beetle (Staphylinidae: Aleocharinae: Termitonannini) and updated checklist of the subtribe Termitonannina with their termite hosts
FIGURES 7– 24. Dilacera exokosmos Zilberman & Pires-Silva gen. et sp. nov., female. 7, mandibles; 8, antenna; 9, labrum; 10, prementum; 11, maxilla; 12, pronotum; 13, prosternum; 14, meso- metasternum; 15, metendesternite; 16, meso- metanotum; 17, scutellum; 18, elytron; 19, proleg; 20, protarsus; 21, mesoleg; 22, mesotarsus; 23, metaleg; 24, metatarsus. Scale bars = 0.004 mm (9), 0.005 mm (7, 8, 10– 18, 20, 22, 24), 0.02 (19, 21, 23).
FIGURES 3 in Dilacera, a new astonishing Amazonian genus of termitophilous rove beetle (Staphylinidae: Aleocharinae: Termitonannini) and updated checklist of the subtribe Termitonannina with their termite hosts
FIGURES 3– 4. Dilacera exokosmos Zilberman & Pires-Silva gen. et sp. nov., habitus lateral. 3, male; 4, female. Both are about 4.5 mm in body length, with the abdomen distended.
FIGURES 5 in Dilacera, a new astonishing Amazonian genus of termitophilous rove beetle (Staphylinidae: Aleocharinae: Termitonannini) and updated checklist of the subtribe Termitonannina with their termite hosts
FIGURES 5– 6. Dilacera exokosmos Zilberman & Pires-Silva gen. et sp. nov., habitus ventral. 5, male; 6, female. Both are about 4.5 mm in body length, with the abdomen distended.
FIGURES 1 in Dilacera, a new astonishing Amazonian genus of termitophilous rove beetle (Staphylinidae: Aleocharinae: Termitonannini) and updated checklist of the subtribe Termitonannina with their termite hosts
FIGURES 1– 2. Dilacera exokosmos Zilberman & Pires-Silva gen. et sp. nov., habitus dorsal. 1, male; 2, female. Both are about 4.5 mm in body length, with the abdomen distended.
FIGURE 6 in Zyras (Diaulaconia) artemis sp. n., a new termitophilous species from Taiwan (Coleoptera: Staphylinidae: Aleocharinae: Lomechusini)
FIGURE 6. Variations of tHe spermatHeCa of Zyras (Diaulaconia) artemis sp. n. LoCality of eaCH speCimens: A, Gaupo (Taoyuan Co.); B, Hsilin trail (Hualien Co.); C, DaHasHan (Pingtung Co.); D, E, Dakeng (TaiCHung City); F, Xiaping (Nantou Co.); G, H, LuansHan (Taitung Co.); I, SHeding (Pingtung Co.); J, K, PengHu Islands (PengHu Co.).
FIGURE 5 in Zyras (Diaulaconia) artemis sp. n., a new termitophilous species from Taiwan (Coleoptera: Staphylinidae: Aleocharinae: Lomechusini)
FIGURE 5. Zyras (Diaulaconia) artemis sp. n., female. A, eigHt abdominal tergite, dorsal vieW; B 8th abdominal sternite, ventral vieW; C, spermatHeCa; D, tHe pHotograpH of tHe apiCal part and spermatHeCal gland; E, tHe pHotograpH of tHe inner Wall of apiCal 1/3 of tHe basal part; F, tHe base of tHe basal part and tHe spermatHeCal duCt.
FIGURE 3 in Zyras (Diaulaconia) artemis sp. n., a new termitophilous species from Taiwan (Coleoptera: Staphylinidae: Aleocharinae: Lomechusini)
FIGURE 3. Zyras (Diaulaconia) artemis sp. n. A, male 4th tergite WitH a pair of projeCtions on posterior margin, large individual, dorsal vieW; B, ditto, projeCtion bilobed apiCally, lateral vieW; C, ditto, small individual, dorsal vieW; D, ditto, projeCtion WitH no bilobed apiCally, lateral vieW; E, male 7th tergite WitH apiCal median tuberCle, dorsal vieW; F, ditto, lateral vieW; G, female 7th tergite WitH no small median tuberCle, dorsal vieW.
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