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324 results for “Tanypodinae”
FIGURES 2A–B in Connecting the dots: DNA barcoding and lectotype designation shedding light on Labrundinia longipalpis (Goetghebuer, 1921), an intriguing non-biting midge (Chironomidae, Tanypodinae)
FIGURES 2A–B. Map illustrating the known occurrence records of Labrundinia longipalpis (Goetghebuer). A. Nearctic and Caribbean regions. (B) Palearctic region.
FIGURE 3 in Review of the genus Amnihayesomyia Niitsuma (Diptera: Chironomidae: Tanypodinae), with descriptions of three new species from China
FIGURE 3. Amnihayesomyia subflava sp. n., male. A, Palpomere 2; B, hypopygium, dorsal view.
FIGURE 8 in A new phytotelmatic species of Monopelopia Fittkau, 1962 (Insecta: Diptera: Chironomidae: Tanypodinae) from South Brazil
FIGURE 8: Monopelopia caraguata sp. n. pupa: abdominal tergites.
FIGURES 6–8 in Denopelopia Roback & Rutter from China with emendation of the generic diagnosis (Diptera: Chironomidae: Tanypodinae)
FIGURES 6–8. Denopelopia diaoluonica sp. n. male imago. 6, wing. 7, antenna. 8, hypopygium.
FIGURES 9–11 in Denopelopia Roback & Rutter from China with emendation of the generic diagnosis (Diptera: Chironomidae: Tanypodinae)
FIGURES 9–11. Denopelopia viridula sp. n. male imago. 9, abdomen. 10, wing. 11, hypopygium.
FIGURES 1–4 in Review of Hayesomyia Murray & Fittkau (Diptera: Chironomidae: Tanypodinae) from China
FIGURES 1–4. Hayesomyia aquila sp. n. male imago. 1, thorax. 2, abdomen. 3, wing. 4, hypopygium.
FIGURE 36. Relations between wing length and spot distance 3–4 in A systematic review of the genus Tan yp u s Meigen from Japan, with a description of T. n ak aza toi sp. nov. (Diptera: Chironomidae: Tanypodinae)
FIGURE 36. Relations between wing length and spot distance 3–4.
FIGURE 35 in A systematic review of the genus Tan yp u s Meigen from Japan, with a description of T. n ak aza toi sp. nov. (Diptera: Chironomidae: Tanypodinae)
FIGURE 35. Relations between lengths of gonocoxite and gonostylus.
FIGURE 6a in Macropelopia nebulosa group (Diptera, Chironomidae, Tanypodinae) — karyotype and morphology of larvae and pupae
FIGURE 6a. Somatic heterozygous inversion in arm D. Bar is 100 µm.
FIGURE 5 in Macropelopia nebulosa group (Diptera, Chironomidae, Tanypodinae) — karyotype and morphology of larvae and pupae
FIGURE 5. Inherited heterozygous inversion in arm F. Bar is 100 µm.
FIGURE 6b in Macropelopia nebulosa group (Diptera, Chironomidae, Tanypodinae) — karyotype and morphology of larvae and pupae
FIGURE 6b. Somatic heterozygous inversions in arms EF. Bar is 100 µm.
TABLE 1 in Connecting the dots: DNA barcoding and lectotype designation shedding light on Labrundinia longipalpis (Goetghebuer, 1921), an intriguing non-biting midge (Chironomidae, Tanypodinae)
<p><b>TABLE 1.</b> List of analyzed specimens, including their sample localities, life stage, and voucher reference and GenBank accession numbers.</p><table><tbody><tr><th><b>Taxon</b></th><th><b>Country</b></th><th><b>Stage</b></th><th><b>Voucher number</b></th><th><b>Accession number</b></th></tr></tbody><tbody><tr><th><i>Labrundinia amandae</i></th><td>Brazil</td><td>Immature</td><td>NEOTA044-12</td><td>JX887502.1</td></tr><tr><th><i>Labrundinia fiorelinii</i></th><td>Brazil</td><td>Immature</td><td>MPCB005-09</td><td>HM379514.1</td></tr><tr><th><i>Labrundinia jasoni</i></th><td>Brazil</td><td>Immature</td><td>NEOTA059-12</td><td>JX887518.1</td></tr><tr><th><i>Labrundinia longipalpis</i></th><td>Finland</td><td>Adult</td><td>ZMUO.025300</td><td>MZ660598.1</td></tr><tr><th><i>Labrundinia longipalpis</i></th><td>Finland</td><td>Adult</td><td>ZMUO.025299</td><td>MZ658837.1</td></tr><tr><th><i>Labrundinia maculata</i></th><td>USA</td><td>Immature</td><td>CATP8. 8</td><td>MW283530.1</td></tr><tr><th><i>Labrundinia mayaca</i></th><td>Brazil</td><td>Immature</td><td>NEOTA029-12</td><td>JX887525.1</td></tr><tr><th><i>Labrundinia parafittkaui</i></th><td>Brazil</td><td>Adult</td><td>NEOTA073-12</td><td>JX887508.1</td></tr><tr><th><i>Labrundinia parareniformis</i></th><td>Brazil</td><td>Immature</td><td>NEOTA035-12</td><td>JX887496.1</td></tr><tr><th><i>Labrundinia paravirescens</i></th><td>Brazil</td><td>Adult</td><td>NEOTA041-12</td><td>JX887527.1</td></tr><tr><th><i>Labrundinia reniformis</i></th><td>Brazil</td><td>Adult</td><td>NEOTA033-12</td><td>JX887489.1</td></tr><tr><th><i>Labrundinia sofiae</i></th><td>Brazil</td><td>Adult</td><td>NEOTA076-12</td><td>JX887517.1</td></tr></tbody></table>
Figure 4 from: Costa BG, Pellegrini TG, Bernardi LFO, Ferreira RL (2017) Notes on predator-prey relationships among Tanypodinae larvae (Diptera, Chironomidae) and mites (Acariformes) in Brazilian subterranean aquatic environments. Subterranean Biology 22: 67-74. https://doi.org/10.3897/subtbiol.22.13925
Figure 4 - A General view of gut contents from a specimen of Tanypodinae (Chironomidae), where the arrow shows an specimen of Tyrophagus sp. (Acariformes: Sarcoptiformes: Acaridae) among alimentary items B Detail view of the partially digested Tyrophagus sp. C Detail of specimen already partially digested which possibly belongs to the family Frontipodopsidae (Acariformes: Trombidiformes).
Figure 3 from: Costa BG, Pellegrini TG, Bernardi LFO, Ferreira RL (2017) Notes on predator-prey relationships among Tanypodinae larvae (Diptera, Chironomidae) and mites (Acariformes) in Brazilian subterranean aquatic environments. Subterranean Biology 22: 67-74. https://doi.org/10.3897/subtbiol.22.13925
Figure 3 - A–C Teratopiidae (Acariformes: Sarcoptiformes) found in gut contents of four specimens of Tanypodinae (Chironomidae).
Figure 2 from: Costa BG, Pellegrini TG, Bernardi LFO, Ferreira RL (2017) Notes on predator-prey relationships among Tanypodinae larvae (Diptera, Chironomidae) and mites (Acariformes) in Brazilian subterranean aquatic environments. Subterranean Biology 22: 67-74. https://doi.org/10.3897/subtbiol.22.13925
Figure 2 - Mites found in gut contents of four specimens of Tanypodinae (Chironomidae). A Two examples of Limnesiidae larvae (Acariformes: Trombidiformes), probably belonging to the genus Limnesia B–D partially digested mites, probably Hydrachnidia.
Figure 2 from: Silva FL, Stur E (2019) Pentaneurella katterjokki Fittkau & Murray (Chironomidae, Tanypodinae): redescription and phylogenetic position. ZooKeys 833: 107-119. https://doi.org/10.3897/zookeys.833.30936
Figure 2 Pentaneurellakatterjokki Fittkau & Murray, pupa. A Thoracic horn with basal lobe and thoracic comb B abdominal segments with chaetotaxy, dorsal aspect C anal lobe and male genital sac, ventral aspect.
Figure 1 from: Silva FL, Stur E (2019) Pentaneurella katterjokki Fittkau & Murray (Chironomidae, Tanypodinae): redescription and phylogenetic position. ZooKeys 833: 107-119. https://doi.org/10.3897/zookeys.833.30936
Figure 1 Pentaneurellakatterjokki Fittkau & Murray, adult male (A–F), adult female (G–H). A Wing B fore tibial spur C mid tibial spurs D hind tibial spurs E tarsal claw F hypopygium, left: ventral aspect, right: dorsal aspect G female genitalia, dorsal aspect H female genitalia, ventral aspect. Scale bars: 500 µm (A); 100 µm (G, H).
Figure 3 from: Silva FL, Stur E (2019) Pentaneurella katterjokki Fittkau & Murray (Chironomidae, Tanypodinae): redescription and phylogenetic position. ZooKeys 833: 107-119. https://doi.org/10.3897/zookeys.833.30936
Figure 3 Pentaneurellakatterjokki Fittkau & Murray, larva. A Head with chaetotaxy. Left: ventral aspect, right: dorsal aspect B antenna C apex of antenna D maxillary palp E mandible F mentum and M-appendage G ligula and paraligula H pecten hypopharyngis I simple claw of posterior parapod.
Figure 7. A in Two new species of Hudsonimyia Roback, 1979 (Diptera: Chironomidae: Tanypodinae) from Neotropical Region unveiled by morphology and DNA barcoding
Figure 7. A Kimura two-parameter neighbour-joining tree of sampled Hudsonimyia species.
FIGURES 1–2 in New species of Clinotanypus Kieffer, 1913 (Chironomidae: Tanypodinae) from China
FIGURES 1–2. Clinotanypus dismegasetus sp. n., male. 1-wing; 2-hypopygium, ventral and dorsal view.
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