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81 results for “564”
Figure 14 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 14 - Habitus of Wanhuaphaenops zhangi Tian & Wang, gen. n., sp. n., holotype, male. Scale bar: 2.0 mm.
Figure 6 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 6 - Cave Feng Dong, type locality of Shiqianaphaenops majusculus (Uéno, 1999), comb. n. A entrance B cave chamber, to show where the beetles were collected C a wandering individual in cave.
Figure 15 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 15 - Cave Songjia Dong, type locality of Wanhuaphaenops zhangi Tian & Wang, gen. n., sp. n. A entrance B a wandering individual of Wanhuaphaenops zhangi C a platynine Colpodes beetle in the cave.
Figure 13 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 13 - Cave Tujiamei Dong, type locality of Huoyanodytes tujiaphilus Tian & Huang, sp. n. A environ outside cave, arrowhead showing the site of entrance B entrance C a wandering individual of Cathaiaphaenops delprati Deuve, 1996, a sympatric trechine beetle of Huoyanodytes tujiaphilus Tian & Huang, sp. n.
Figure 12 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 12 - Habitus of Huoyanodytes tujiaphilus Tian & Huang, gen. n., sp. n., holotype, female. Scale bar: 2.0 mm.
Figure 11 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 11 - Cave Bahao Dong, type locality of Tianeotrechus trisetosus Tian & Tang, gen. n., sp. n. A outside cave, arrowhead shows the entrance B a wandering individual of Tianeotrechus trisetosus in cave C a wandering individual of Dongodytes giraffa Uéno, 2005, in cave.
Figure 10 from: Tian M, Huang S, Wang X, Tang M (2016) Contributions to the knowledge of subterranean trechine beetles in southern China's karsts: five new genera (Insecta, Coleoptera, Carabidae, Trechinae). ZooKeys 564: 121-156. https://doi.org/10.3897/zookeys.564.6819
Figure 10 - Male genitalia A and C median lobe, lateral view B and D apical lobe, dorsal view A and B Tianeotrechus trisetosus Tian & Tang, gen. n., sp. n. C and D Wanhuaphaenops zhangi Tian & Wang, gen. n., sp. n.
Figure 7 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 7 - Male genitalia of Gudeodiscus (Gudeodiscus) longiplica sp. n. (A, B) and Gudeodiscus (Gudeodiscus) soosi Páll-Gergely, 2013 (C). Scale bar: 2 mm.
Figure 9 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 9 - Radula of Gudeodiscus species. A–C Gudeodiscus (Gudeodiscus) longiplica sp. n. D–F Gudeodiscus (Gudeodiscus) soosi Páll-Gergely, 2013. A, D middle section of the radula plate B, E central tooth and first 3–4 lateral teeth C, F marginals.
Figure 4 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 4 - Parietal (A, B, D) and palatal plication of Gudeodiscus Páll-Gergely, 2013 species. A holotype of Gudeodiscus (Gudeodiscus) longiplica sp. n. B–C paratype of Gudeodiscus (Gudeodiscus) longiplica sp. n. (NHMUK 20150376) D–E Gudeodiscus (Gudeodiscus) soosi Páll-Gergely, 2013 (coll. JUO).
Figure 8 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 8 - Opened penis and larger caecum of Gudeodiscus (Gudeodiscus) longiplica sp. n. (A) and Gudeodiscus (Gudeodiscus) soosi Páll-Gergely, 2013 (B). Abbreviations: C: penial caecum; C1: larger penial caecum; C2: smaller penial caecum; Cp: papilla on the inner wall of the larger penial caecum; E: epiphallus; P: penis; Pp: pockets on the penis wall; Rm: retractor muscle. Note that the most proximal portion of the penis is not shown on the left figure.
Figure 3 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 3 - Protoconch (A, D) and teleoconch sculpture (B–C, E–F) of sympatric Chinese Gudeodiscus Páll-Gergely, 2013 species. A–C holotype of Gudeodiscus (Gudeodiscus) longiplica sp. n. D–FGudeodiscus (Gudeodiscus) soosi Páll-Gergely, 2013, shell from the type locality (coll. JUO) B and E shows the last and penultimate whorls opposite of the aperture C and F shows the last and penultimate whorls near the aperture.
Figure 2 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 2 - Shells of sympatric Chinese Gudeodiscus Páll-Gergely, 2013 species. A–E holotype of Gudeodiscus (Gudeodiscus) longiplica sp. n. F–J Gudeodiscus (Gudeodiscus) soosi Páll-Gergely, 2013, shell from the type locality (coll. JUO). Figures C and H were taken after they have been opened in order to observe the inner plicae. Scale bar: 5 mm.
Figure 1 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 1 - Nomenclature of the parietal plicae and lamellae of Gudeodiscus Páll-Gergely, 2013 (A–C) and Endothyrella Zilch, 1960 (D). A Gudeodiscus longiplica sp. n. B Gudeodiscus emigrans quadrilamellatus Páll-Gergely, 2013 C Gudeodiscus phlyarius (Mabille, 1887) D Endothyrella sp. Abbreviations: af: apertural fold; al: anterior lamella; ip: intermediate plica; lp: lower plica; map: main plica; mp: middle plicae; pd: posterior denticle; pl: posterior lamella; up: upper plica. In order to make the comparison easier, all figures show a dextral specimen (D is reversed). After Páll-Gergely and Hunyadi (2013) and Páll-Gergely et al. (2015b).
Figure 10 from: Páll-Gergely B, Asami T (2016) A new species of Gudeodiscus Páll-Gergely, 2013 from China, with extraordinary conchological and anatomical features (Gastropoda, Pulmonata, Plectopylidae). ZooKeys 564: 1-19. https://doi.org/10.3897/zookeys.564.6560
Figure 10 - Parietal plication of Plectopylidae species (diagrammatic figures). A Plectopylis leucochila Gude, 1898 (after Gude 1898) B Gudeodiscus (Gudeodiscus) longiplica sp. n. C Endothyrella brahma (Godwin-Austen, 1879) D Endothyrella williamsoni (Gude, 1915) E–J character states of Gudeodiscus, Halongella, Sicradiscus and Sinicola; K Endothyrella sp. (some Sicradiscus has also similar parietal lamellation) (mainly after Páll-Gergely & Hunyadi 2013 and Páll-Gergely et al. 2015b). To allow better comparison all figures show dextral specimens (A, C, D, J are reversed), thus, the aperture is situated left from the armature. Red colour indicates the posterior, blue colour indicates the anterior lamella (and their respective homologous structures).
Figure 9 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 9 - Male genitalia of Hydrobius morphotypes in dorsal view. A Hydrobius fuscipes fuscipes B Hydrobius fuscipes subrotundus C Hydrobius fuscipes rottenbergii D Hydrobius arcticus.
Figure 8 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 8 - Species tree with the largest posterior probability from BPP v3.0 analyses conducted on Hydrobius specimens. Multi-locus data (COI, H3 and ITS2) used with Hydrobius convexus included as outgroup. Values above branches indicate range of split posterior probabilities, i.e. the probability for the node representing a speciation event, from four different prior-combinations. Values in red have split probabilities < 1.0. *Clade VII only delimited when specimens from Clade VII were a priori assigned as a potential species separate from Hydrobius arcticus and Hydrobius fuscipes rottenbergii.
Figure 17 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 17 - Habitus of Hydrobius morphotypes in dorsal view. A Hydrobius arcticus B Hydrobius fuscipes rottenbergii C Hydrobius fuscipes fuscipes D Hydrobius fuscipes subrotundus.
Figure 16 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 16 - Morphometric differences between morphotypes and effect of body size on Elytral Index (EI) of Hydrobius. EI = length of the elytra / maximum width of elytra. 113 specimens measured. Independently fitted lines for each morphotype are shown, slopes not significantly different. Type specimens and specimens of Hydrobius fuscipes subrotundus and Hydrobius fuscipes fuscipes collected in sympatry (Rinn = locality Rinnleiret (Norway), Mot = Motzen (Germany) and Ola = Öland (Sweden)) are labeled.
Figure 10 from: Fossen EI, Ekrem T, Nilsson AN, Bergsten J (2016) Species delimitation in northern European water scavenger beetles of the genus Hydrobius (Coleoptera, Hydrophilidae). ZooKeys 564: 71-120. https://doi.org/10.3897/zookeys.564.6558
Figure 10 - Male genitalia of Hydrobius morphotypes in lateral view. A Hydrobius arcticus B Hydrobius fuscipes rottenbergii C Hydrobius fuscipes fuscipes D Hydrobius fuscipes subrotundus.
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