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68 results for “pseudo-cryptic species”
Figure 8 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 8 - Legpair where the median ventral trochanter spine starts in males and females of Lithobius crassipesoides sp. n. (Spain) and L. crassipes (Germany).
Figure 5 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 5 - Number of ocelli in males and females of Lithobius crassipesoides sp. n. (Spain) and L. crassipes (Germany and France).
Figure 3 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 3 - Head length (mm) of males and females of Lithobius crassipesoides sp. n. (Spain) and L. crassipes (Germany).
Figure 2 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 2 - Body length (mm) of males and females of Lithobius crassipesoides sp. n. (Spain) and L. crassipes (Germany and France).
Figure 17 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 17 - Distribution map of Lithobius (Monotarsobius) on the Iberian Peninsula: Lithobius blascoi = diamond; L. crassipes = square; L. crassipesoides sp. n. = circle; L. morenoi stat. n. = triangle; L. osellai = star.
Figure 16 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 16 - Left female gonopod, ventral view A Lithobius crassipesoides sp. n. (SMNG VNR14828) B L. crassipes (SMNG VNR15171). Scale bars: 0.1 mm (A, B).
Figure 15 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 15 - Tibia of male legpair 15, dorsal view A Lithobius crassipesoides sp. n. (SMNG VNR14773), right leg B L. crassipes (SMNG VNR10335), left leg. Abbreviations: F = femur; Ts = tarsus. Scale bars: 0.2 mm (A, B).
Figure 11 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 11 - Canonical variate analysis of morphometric data of Lithobius crassipesoides sp. n. from Spain and L. crassipes from Germany, showing factors one and two. Only characters with high separating power have been included. The specimen SMNG VNR15170-2 b with an extraordinary position within the CVA is marked with an arrow.
Figure 10 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 10 - Canonical variate analysis of morphometric data showing factors two and three, using all morphometric characters of Lithobius crassipesoides sp. n. from Spain and L. crassipes from Germany.
Figure 1 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 1 - Results of the mitochondrial cytochrome c oxidase I (COI) analysis. Maximum likelihood tree, 1000 bootstrap replicates. Scale bar = substitutions per site.
Figure 14 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 14 - Coxosternum, ventral view A Lithobius crassipesoides sp. n. (MZNA 138944) B L. crassipes (SMNG VNR015171). Scale bars: 0.1 mm (A, B).
Figure 12 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 12 - Adult males, dorsal view A Lithobius crassipesoides sp. n. (SMNG VNR14828) B L. crassipes (SMNG VNR15171). Scale bars: 2 mm (A, B).
Figure 13 from: Voigtländer K, Iorio E, Decker P, Spelda J (2017) The subgenus Monotarsobius in the Iberian Peninsula with a description of a new pseudo-cryptic species from Northern Spain revealed by an integrative revision of Lithobius crassipes L. Koch, 1862 (Chilopoda, Lithobiomorpha, Lithobiidae). ZooKeys 681: 1-38. https://doi.org/10.3897/zookeys.681.12942
Figure 13 - Adult males, anterior body, dorsal view A Lithobius crassipesoides sp. n. (SMNG VNR14828) B L. crassipes (SMNG VNR15171). Scale bars: 0.5 mm (A, B).
Figure 8 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 8 - Radula australiana line drawings 1: A Five lobules from primary shoots showing size and shape variation, with broadly ampliate free interior margin and drawn-out apex B Five lobules from secondary shoots showing size and shape variation C Cellular detail of interior free lobule margin D Ventral shoot E Dorsal shoot F Cellular detail of lobule apex G Transverse stem section from primary shoot. Scale bars: A–B: 240 µm, D–E: 600 µm, C, F: 60 µm, G: 40 µm. All from NSW273911.
Figure 7 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 7 - Radula anisotoma pictures A Ventral view of shoot B Mature perianth. C–E Ventral view of shoots and lobules F Gynoecium G Androecium H–I Transverse sections of stems from primary shoot J Leaf-lobe marginal cells. All from CANB650459.
Figure 5 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 5 - Majority Rule tree from posterior probability distribution sample taken by MrBayes, shown as a modified proportional tree, with some branch lengths shortened, for presentation purposes, with morphological groups identified. Tree topology, rather than branch length is emphasized in this tree, the branches are not to any scale. For branch lengths proportional to substitution rate refer to Figure 4 which is a phylogram with identical topology. Support values associated with each branch are parsimony bootstrap / likelihood bootstrap / posterior probability. Asterisks indicate full support. Only values for supported branches associated with the Radula buccinifera species complex are shown.
Figure 33 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 33 - Scatterplot of perianth vs capsule valve length in three individuals of Radula strangulata from New Zealand. The red line shows the regression slope from the general linear model explaining the relationship between the two variables.
Figure 32 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 32 - Radula strangulata Pictures 2. A–D Perianths showing variation in size and shape associated with development A youngest D oldest and mature E–F ventral view of lobules on primary shoots illustrating more inter-individual variation in size and shape of lobules and leaf-lobes E NSW896405 F NSW895357. Others NSW970841.
Figure 31 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 31 - Radula strangulata Pictures 1. A–B Ventral view of shoots showing variation in size, leaf-lobe spacing and colour between individuals C–D Ventral view of lobules on primary shoots showing variation in size and shape between individuals E Gynoecium F Androecium G Transverse sections of stems from primary shoot H Leaf-lobe marginal cells. B, D: NSW909416, F NSW896405, others: NSW970841.
Figure 6 from: Renner M, Devos N, Patino J, Brown E, Orme A, Elgy M, Wilson T, Gray L, von Konrat M (2013) Integrative taxonomy resolves the cryptic and pseudo-cryptic Radula buccinifera complex (Porellales, Jungermanniopsida), including two reinstated and five new species. PhytoKeys 27: 1-113. https://doi.org/10.3897/phytokeys.27.5523
Figure 6 - Radula anisotoma line drawings A Dorsal shoot B Ventral shoot C Archegonia D Ten haphazardly selected lobules, showing size and shape variation E Lobule showing cellular detail F Cells of leaf lobe margin showing initiation of shoot primordia G Medial leaf-lobe cells H Marginal leaf-lobe cells I Female bract showing narrow elliptical lobe J Stem transverse section K Dorsal stem surface showing leaf-free dorsal cortical cell rows L Ventral stem surface. Scale bars: A–B: 600 µm, C, F: 40 µm, D, I: 240 µm, E, G, H, J–L: 60 µm. All from CANB650459.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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