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Figure 14 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 14 - Ancyronyx pseudopatrolus Freitag & Jäch, 2007, larva (SEM photographs): A lateral detail of abdomen, dorsal, with posterolateral projections and spiracles; B anterior portion of pronotum and head, lateral; C head, ventral; D head, frontal; E pronotum and head, dorsal; F thoracic segments, ventral; G foreleg, ventral; H distal portion of abdominal segment IX with operculum, ventral; I abdominal segment IX, dorsal.
Figure 12 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 12 - Ancyronyx punkti Freitag & Jäch, 2007, (SEM photographs) larva: A Posterolateral detail of abdominal segment VI, dorsal, with with posterolateral projections and spiracles, B pronotum and head, dorsal, C head, dorsolateral, D head, ventral, E antenna, ventral, F apical portions of labium and maxilla, ventral, G prothorax, ventral, H thoracic and first abdominal segments, ventral, I lateral and parts of median sclerites of abdominal venter, with asperities, setiferous tubercles and lateral projections, J operculum, lateroventral, K abdominal segments VIII and IX, dorsal.
Figure 11 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 11 - Ancyronyx minerva Freitag & Jäch, 2007, larva (SEM photographs), A abdominal segments, lateral, with posterolateral projections and spiracles, B posterior portion of metanotum and first abdominal segment, dorsal, with different setae, posterolateral trichoid tooth and spiracle, C abdominal spiracle, D posterolateral detail of abdominal segment V, dorsal, with different types of setae, E thoracic and first abdominal segments, ventra, F head and pronotum, lateral, G head, dorsal, H head, ventral, I antenna and distal parts of maxilla, labium and mandible, ventral, J operculum, ventral, K abdominal segments VIII and IX, dorsal, L distal portion of abdominal segment IX, lateral, with opened operculum, abdominal gill chamber and terminal hooks.
Figure 16 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 16 - Ancyronyx montanus Freitag & Balke, sp. n., (SEM photographs with grey background, stereo microscope photographs with white background) adult male: A head, dorsal, B head, ventral, C pronotum, dorsal, D pro-, meso-, and metaventrite, ventral, E elytra, dorsal, F meso- and metacoxae, metaventrite, ventrites 1–2, ventral, G hind claw, H ventrite 5, ventral; adult female: I ventrite 5, ventral; adult male: J ventrite 5, ventral, K sternite IX, L & M aedeagus, ventral, N aedeagus, lateral; adult female: O ovipositor, ventral, P sternite VIII, ventral, Q tergite VIII, dorsal; adult male: R tergite VIII, dorsal.
Figure 2 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 2 - Phylogram of the consensus tree of the Bayesian analysis with branch lengths measured in expected substitutions per site. Posterior probability values (printed when > 0.5) at respective branches. Sample labels with island of origin and code of the collection site or genbank code.
Figure 3-10 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 3-10 - Habitus of 3 Ancyronyx minerva Freitag & Jäch, 2007, larva, 4 Ancyronyx punkti Freitag & Jäch, 2007, larva, 5 Ancyronyx pseudopatrolus Freitag & Jäch, 2007, larva, 6 Ancyronyx patrolus Freitag & Jäch, 2007, larva, 7 Ancyronyx montanus Freitag & Balke, sp. n., adult, 8 Ancyronyx montanus Freitag & Balke, sp. n., larva, 9 Ancyronyx procerus Jäch, 1994, larva, 10 Ancyronyx helgeschneideri Freitag & Jäch, 2007, larva.
Figure 13 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 13 - Ancyronyx pseudopatrolus Freitag & Jäch, 2007, adult male: A aedeagus in ventral few (SEM photograph); adult female: B ovipositor in ventral view; C sternite VIII in ventral view; D ventrite 4 & 5 in ventral view; E tergite VIII in dorsal view.
Figure 20 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 20 - Collecting sites of the Ancyronyx species treated herein in Palawan and Busuanga, including enlarged map of St. Paul National Park. See Freitag & Jäch, 2007, Fig. 17 for previous records.
Figure 18 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 18 - Ancyronyx procerus Jäch, 1994, larva (SEM photographs): A pronotum and head, dorsal, B detail of abdominal segment III, ventral, C abdominal posterolateral projections, ventral, D head, ventral, E apical portions of labium and maxilla, ventral, F antenna, ventral, G thoracic segments, ventral, H hindleg, ventral, I operculum, ventral, J abdominal segment IX, ventral.
Figure 19 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 19 - Ancyronyx helgeschneideri Freitag & Jäch, 2007, larva (SEM photographs): A lateral portion of abdominal segment VI with posterolateral trichoid tooth and spiracle, dorsal, B head, dorsal, C head portion with labrum, frontodorsal, D head, frontoventral, E maxillae & labium, ventral, F thoracic segments, ventral, G hindleg, ventral, H portion of abdominal segments, ventral, I abdominal posterolateral projections, ventral, J abdominal segment VIII & IX, dorsal, K abdominal segment IX, ventral, L operculum, ventral.
Figure 17 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 17 - Ancyronyx montanus Freitag & Balke, sp. n., larva (SEM photographs), A abdominal segments VI–VIII, dorsal, B lateral and parts of median sclerites of abdominal venter, with different types of setae and lateral projections, C posterolateral abdominal projection with trichoid tooth, D head, dorsolateral, E head, dorsal, F head, ventral, G prothorax, ventral, H thoracic and first abdominal segments, ventral, I hindleg, lateral, J operculum, ventral, K abdominal segments VIII and IX, dorsal.
Figure 1 from: Freitag H, Balke M (2011) Larvae and a new species of Ancyronyx Erichson, 1847 (Insecta, Coleoptera, Elmidae) from Palawan, Philippines, using DNA sequences for the assignment of the developmental stages. ZooKeys 136: 47-82. https://doi.org/10.3897/zookeys.136.1914
Figure 1 - Small to medium sized, permanent forest streams with heterogeneous morphology and rich in submerged woods and root packs are usually inhabited by the highest numbers of Ancyronyx species. This picture shows the type locality of Ancyronyx montanus where also Ancyronyx minerva, Ancyronyx patrolus, Ancyronyx pseudopatrolus and Ancyronyx punkti occurred sympatrically.
Figure 7 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 7 - Summary of relationships in Trechitae and related taxa. Branches (including those subtended by triangles) indicate monophyletic groups supported by the combined analyses and at least two of the genes; quadrangles indicate groups whose status is unresolved.
Figure 6 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 6 - Summary of subtribal and tribal relationships supported by individual genes. Triangles indicate monophyletic groups; quadrangles represent paraphyletic groups A 28S rDNA B 18S rDNA C wingless.
Figure 3 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 3 - Majority-rule consensus tree of trees sampled in Bayesian analysis, with branch lengths proportional to average branch lengths across trees that contain that branch, for 18S rDNA data. See caption of Fig. 2 for additional details.
Figure 5 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 5 - Majority-rule consensus tree of trees sampled in Bayesian analysis for all three genes analyzed together. Ovals on branches indicate support for the clade based upon Bayesian (left), maximum likelihood (center), and parsimony (right) analyses. Darkest tones indicate strongest support for (grays and black) or against (pinks) the clade, with values indicating posterior probability expressed as a percentage (Bayesian), or bootstrap percentage (likelihood and parsimony).
Figure 4 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 4 - Majority-rule consensus tree of trees sampled in Bayesian analysis, with branch lengths proportional to average branch lengths across trees that contain that branch, for the complete wingless data. See caption of Fig. 2 for additional details.
Figure 1 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 1 - Phylogenies of Trechitae from morphological studies A Strict consensus tree of most parsimonious trees from larval data, with all characters treated as unordered, from Grebennikov (2008); this is the tree presented in Grebennikov (2008: Fig. 3) B Strict consensus tree of most parsimonious trees from larval data, with some characters treated as ordered, as specified by Grebennikov (2008); this tree is not presented in that paper, but was inferred from the described conditions C "Best fit" tree presented by Roig-Juñent and Cicchino (2001) based upon adult morphological data.
Figure 2 from: Maddison D, Ober K (2011) Phylogeny of minute carabid beetles and their relatives based upon DNA sequence data (Coleoptera, Carabidae, Trechitae). ZooKeys 147: 229-260. https://doi.org/10.3897/zookeys.147.1871
Figure 2 - Majority-rule consensus tree of trees sampled in Bayesian analysis, with branch lengths proportional to average branch lengths across trees that contain that branch, for 28S rDNA data. Branch lengths were reconstructed by MrBayes; scale bar units are substitutions per site. Thickness and shade of branches indicate support for that clade, based upon estimated Bayesian Posterior Probability percentages (BPP), Maximum Likelihood bootstrap values (MLBoot), and parsimony bootstrap values (parsBoot).
Figure 1 from: Balke M, Skale A, Tänzler R, Hendrich L (2012) High mitochondrial DNA sequence divergence in New Guinea Carabdytes stream beetles and the taxonomist's dilemma when other evidence is kind of subtle… (and collecting localities are far far away). ZooKeys 247: 31-43. https://doi.org/10.3897/zookeys.247.3812
Figure 1 - Distribution of Carabdytes upin, blue dots = sequenced specimens, white dots = other records. Lowland gap indicated by bars in the Bird's neck. Below, detailed map of central Papua New Guinea with localities for sequenced specimens.
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