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139 results for “Chironomids”
FIGURE 2 in Taxonomic review of the chironomid genus Cricotopus v. d. Wulp (Diptera: Chironomidae) from Australia: keys to males, females, pupae and larvae, description of ten new species and comments on Paratrichocladius Santos Abreu
FIGURE 2. Cricotopus male genitalia, part, (inset variations in inferior volsella above, gonostylus below). A. C. acornis, B. C. albitarsis, C. C. annuliventris, D. C. brevicornis, E. C. conicornis, F. C. hillmani.
FIGURE 9. Cricotopus pupa, tergites. A. C. howensis, B. C. parbicinctus, C. C. tasmania, D. C. varicornis, E. C in Taxonomic review of the chironomid genus Cricotopus v. d. Wulp (Diptera: Chironomidae) from Australia: keys to males, females, pupae and larvae, description of ten new species and comments on Paratrichocladius Santos Abreu
FIGURE 9. Cricotopus pupa, tergites. A. C. howensis, B. C. parbicinctus, C. C. tasmania, D. C. varicornis, E. C. wangi.
FIGURE 3. Cricotopus male genitalia, part. A. C. howensis, B. C in Taxonomic review of the chironomid genus Cricotopus v. d. Wulp (Diptera: Chironomidae) from Australia: keys to males, females, pupae and larvae, description of ten new species and comments on Paratrichocladius Santos Abreu
FIGURE 3. Cricotopus male genitalia, part. A. C. howensis, B. C. parbicinctus (inset variation in inferior volsella above, gonostylus below), C. C. tasmania, D. C. varicornis, E. C. wangi. Tergite III, IV setation: F. C. varicornis, G. C. hillmani.
FIGURE 3 in DNA Barcode of symbiotic chironomids: Findings in the genus Symbiocladius (Diptera: Chironomidae)
FIGURE 3. Neighbor joining tree of partial COX 1 sequences (655bp) of some Orthocladinae species. Bootstrap values on nodes. Scale is based on the number of base substitutions per site. Tags shown the GenBank or BOLD system accession code| species|collection number|country of the record.
FIGURE 2. Symbiocladius wygodzinskyi, A–B in DNA Barcode of symbiotic chironomids: Findings in the genus Symbiocladius (Diptera: Chironomidae)
FIGURE 2. Symbiocladius wygodzinskyi, A–B, larva on a Leptophlebidae host, C, larvae in process of pupation on a Leptophlebidae host, D cephalic capsule, E thoracic horn.
FIGURE 1 in DNA Barcode of symbiotic chironomids: Findings in the genus Symbiocladius (Diptera: Chironomidae)
FIGURE 1. Records in provinces or states of Symbiocladius in the world. Records of S. wygodzinskyi and Symbiocladius species with available COX1 sequences.
FIGURE 26 in Two new chironomid species of the genus Pseudokiefferiella Zavřel (Diptera: Chironomidae: Diamesinae) from the Amur River basin of Russia
FIGURE 26. Ultrametric Bayesian inference (BI) tree based on the cytochrome c oxidase I (COI) nucleotide sequence data of the genus Pseudokiefferiella Zavřel and Diamesa alpina Tokunaga as outgroup. Bayesian posterior probabilities (higher than 0.7) are given above tree nodes. Specimens obtained in this study are in bold.
FIGURES 13–18 in Two new chironomid species of the genus Pseudokiefferiella Zavřel (Diptera: Chironomidae: Diamesinae) from the Amur River basin of Russia
FIGURES 13–18. Fourth instar larva of Pseudokiefferiella matafonovi sp. nov. 13, mentum; 14, mandible; 15, antenna; 16, distal part of premandible; 17, anal segments in dorsal view; 18, anal segments in lateral view. SaS – supraanal setae. Scale bars: Fig. 4 – 50 μm; Figs. 15–16 – 20 μm.
FIGURES 1–6 in Two new chironomid species of the genus Pseudokiefferiella Zavřel (Diptera: Chironomidae: Diamesinae) from the Amur River basin of Russia
FIGURES 1–6. Adult male of Pseudokiefferiella matafonovi sp. nov. 1, hypopygium in dorsal view; 2–3, anal point; 4, basal plate of gonocoxite; 5, gonostylus; 6, transverse sternapodeme, aedeagal lobes and phallapodeme. Scale bars: 50 μm.
Chironomid-based temperature reconstruction from Burgäschisee, Switzerland
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Chironomid assemblages and inferred summer temperature, late Rissian, Eemian and earliest Würmian, S Germany
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Data from: Quorum-sensing signaling by chironomid egg masses’ microbiota affects haemagglutinin/protease (HAP) production by Vibrio cholerae
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Data from: Trace DNA from insect skins: a comparison of five extraction protocols and direct PCR on chironomid pupal exuviae
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Figure 5 from: Imada Y (2020) A novel leaf-rolling chironomid, Eukiefferiella endobryonia sp. nov. (Diptera, Chironomidae, Orthocladiinae), highlights the diversity of underwater chironomid tube structures. ZooKeys 906: 73-111. https://doi.org/10.3897/zookeys.906.47834
Figure 5 Summary of the biology of chironomids, with special focus on their tube structures. Some taxa without apparent tube structures (F, G) are included to give some accounts of their biology. Rock material-bound type (A–D): A three types of tubes, U-shaped (left), J-shaped (middle), and open-ended (right), built by the mud-dwelling species Chironomus plumosus, redrawn from McLachlan and Cantrell (1976)B larval (left) and pupal (right) tubes of Orthocladius (Euorthocladius) rivulorum, redrawn from Taylor (1903). CRheotanytarsus rivulorum, redrawn from Walshe (1951)DRheotanytarsus reissi, encrusted to form tufa, redrawn from Burmeister and Reiss (2003). Tubes on symbiotic animals (E–H): EEukiefferiella brulini on Ancylus fluviatilis, redrawn from Moubayed-Breil and Ashe (2013)FSymbiocladius sp., an obligate parasite of the heptageniid mayfly Heptagenia lateralis, redrawn from Codreanu (1939)GTonnoirocladius commensalis (Tonnoir), which is commensal to the larvae of the net-winged midge (Blephariceridae), redrawn from Tonnoir (1922)H silk tube of a Neotropical species of Eukiefferiella phoretically attached to Cryphocricos peruvianus De Carlo (Naucoridae), in which the open-ended tube is made between the meso- and meta-thoracic coxae of the host, redrawn from Roback (1977). Tubes on/within plants, algae, cyanobacteria (I–L): I silk tube made among algae by the marine species Clunio takahashii, shown in copula, redrawn from Hashimoto (1976)J a cone-shaped net constructed in the leaf mine of Endochironomus, redrawn from Walshe (1951)K a tunnel made by Cricotopus nostocicola in a spherical colony of cyanobacteria, Nostoc parmelioides, redrawn from Brock (1960)L a case formed by leaf-rolling on the shoots of Fontinalis mosses by Eukiefferiella endobryonia sp. nov., based on this study. Portable cases (M–P): M a solid tube composed of fine detritus constructed by Stempellinella minor, redrawn from Brundin (1948)N a tubular, firmly constructed case armored with diatoms and rhizopod shells constructed by Zavrelia pentatoma, redrawn from Lauterborn (1905)O a slightly curved, conifer needle case of Micropsectra pharetrophora, redrawn from Fittkau and Reiss (1998)P a laterally flattened purse case with concentric growth strips constructed by Lauterborniella agrayloides, redrawn from Lauterborn (1905).
Figure 3 from: Imada Y (2020) A novel leaf-rolling chironomid, Eukiefferiella endobryonia sp. nov. (Diptera, Chironomidae, Orthocladiinae), highlights the diversity of underwater chironomid tube structures. ZooKeys 906: 73-111. https://doi.org/10.3897/zookeys.906.47834
Figure 3 A Bayesian phylogeny based on the COI dataset. Information on the sequences used for this analysis is shown in Table 1. Bayesian Posterior Probabilities were given on each node. Caution is needed to interpret the phylogenetic relationship between and among the members of the species groups (e.g., devonica group, consisting of E. devonica and E. ilkleyensis) included herein, due to the scarcity of available genetic data of the species belonging to the genus Eukiefferiella.
Figure 2 from: Imada Y (2020) A novel leaf-rolling chironomid, Eukiefferiella endobryonia sp. nov. (Diptera, Chironomidae, Orthocladiinae), highlights the diversity of underwater chironomid tube structures. ZooKeys 906: 73-111. https://doi.org/10.3897/zookeys.906.47834
Figure 2 Eukiefferiella endobryonia sp. nov., fourth-instar larva and pupa. Larva (A–C): A general appearance of larva B larval antenna, maxilla and mandible, lateral view C mentum. Pupa (D, E): D pupa, ventral aspect E ditto, dorsal aspect. Abbreviations (larva). Abl: accessory blade; Ap: anterior parapods; As: anal seta; Bl: blade; M: mentum; Mx: maxilla; Pc: procercus; Pm: premandible; Pp: posterior parapods; Ro: ring organ; Sa: supraanal seta; Si: seta interna; Ssd: seta subdentalis; Ta: anal tubules. Abbreviations (pupa). Al: anal lobe; Am: anal macroseta; Ho: orally curved hooklets. Scale bars: 0.1 mm (C), 1 mm (A).
Figure 4 from: Imada Y (2020) A novel leaf-rolling chironomid, Eukiefferiella endobryonia sp. nov. (Diptera, Chironomidae, Orthocladiinae), highlights the diversity of underwater chironomid tube structures. ZooKeys 906: 73-111. https://doi.org/10.3897/zookeys.906.47834
Figure 4 Biology of Eukiefferiella endobryonia sp. nov. A a colony of Fontinalis dalecarlica growing on the sides of pebbles in a gently flowing inlet connected to Mountain Lake, VA, USA (type locality) B a colony of Fontinalis novae-angliae occurring in a rapidly flowing stream at Sparks Lane, TN, USA C early fourth-instar larva, undulating its body in the tube D immature capsule of Fontinalis dalecarlica attached to the stem underwater E fourth-instar larva F fourth-instar larva feeding on a leaf margin of F. dalecarlicaG a tube structure of the third-instar larva, which was mainly built from particles from the feces of mature larvae H amorphous, jelly-like silk mass spotted with detritus and diatoms, ripped off of the inner wall of the inner end of the pupal case I a dissected leaf-rolling case, consisting of five leaves and the resident pupa; the leaves used as the case materials are placed in the order of leaf arrangement, with the outermost leaf at the left-most; the innermost leaf (right next to the pupa) contains the head capsule (white arrow) and exuvium of the fourth-instar larva; some debris (pink arrow) and silk mass (black arrow) stuffed in at both ends can be seen J a pupa in its case: the pupal head is oriented toward the distal end of the shoot tip; most of the leaves near the pupal case were consumed by the larva early in the fourth instar stage.
Figure 1 from: Imada Y (2020) A novel leaf-rolling chironomid, Eukiefferiella endobryonia sp. nov. (Diptera, Chironomidae, Orthocladiinae), highlights the diversity of underwater chironomid tube structures. ZooKeys 906: 73-111. https://doi.org/10.3897/zookeys.906.47834
Figure 1 Eukiefferiella endobryonia sp. nov., adult. A Female head B male antenna C thorax D right wing E hypopygium with tergite IX and with left gonocoxite and gonostylus, in dorsal view with gonostylus (left) and in ventral view without gonostylus (right) F female genitalia, dorsal (left) and ventral view (right) G female tergum IX. Abbreviations (adult). Al: alula; An: anal vein; Ap: antepronotum; Aps: antepronotals; B: brachiolum; C: costa; Ca: coxapodeme; Ce: cercus; Cl: clypeus; Co: cornua; Cp: cibarial pump; Csa: coxosternapodeme; Dc: dorsocentrals; F: fulcrum; Gc: gonocoxite; Gca: gonocozapodeme; Gc IX: gonocoxite IX; Gp IX: gonapophysis IX; Gs: gonostylus; H: humerals; Ivo: inferior volsella; Ll: labial lonchus; No: notum; Pa: prealars; Pha: phallapodeme; Pm: palpal segments; Pn: postnotum; Ps: pseudospurs; Sa: sternapodeme; Sc: subcosta; Sca: seminal capsule; Scts: scutellars; Scu: scutum; Se: spermathecal eminence; Spt: scopula thoracalis; Sq: squama; T IX: tergum IX.
Figure 1. A in Intense inhabitation and relaxed host-leaf preference of aquatic chironomid leaf-miners in headwater streams in Asian lucidophyllous forests
Figure 1. A map showing sampling sites in the Japanese Island Arc. Triangles, sites where leafmines were not found; circles, sites where leaf-mines were found (S1–S11). Northern limit of lucidophyllous forests is also shown.
FIGURE 23 in Subfossil chironomids (Diptera, Chironomidae) of lakes in the Tatra Mountains an illustrated guide
FIGURE 23. Prodiamesa sp.: 23—head capsule.
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