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767 results for “switzerland”
Figures 45-57 from: Moubayed-Breil J, Lods-Crozet B (2018) On the genus Chaetocladius s. str. Kieffer, 1911 from Switzerland with descriptions of five new relic species occurring in glacial alpine springs and streams (Diptera, Chironomidae). Alpine Entomology 2: 15-34. https://doi.org/10.3897/alpento.2.22759
Figures 45-57 Male adult of Chaetocladius macunensis sp. n.: 45, palpomeres 2–3; 46, last flagellomere and the two preceding segments; 47, clypeus; 48, head, thorax and first abdominal segment; 49, antepronotum, left side; 50, tarsomeres 2–4 of PIII; 51, anal point and tergite IX in lateral view; 52–53, hypopygium, dorsal (52) and ventral with anal point and tergite IX removed (53); 54, virga; 55, left gonostylus, dorsal; 56, right gonostylus, lateral; 57, anal point, gonocoxite and gonostylus in lateral view.
Figure 68 from: Moubayed-Breil J, Lods-Crozet B (2018) On the genus Chaetocladius s. str. Kieffer, 1911 from Switzerland with descriptions of five new relic species occurring in glacial alpine springs and streams (Diptera, Chironomidae). Alpine Entomology 2: 15-34. https://doi.org/10.3897/alpento.2.22759
Figure 68 Malaise trap set up at Immez Lake (Macun cirque, Eastern Alps, Swiss National Park, altitude 2616 m (photo J.L. Lods).
Figures 32-44 from: Moubayed-Breil J, Lods-Crozet B (2018) On the genus Chaetocladius s. str. Kieffer, 1911 from Switzerland with descriptions of five new relic species occurring in glacial alpine springs and streams (Diptera, Chironomidae). Alpine Entomology 2: 15-34. https://doi.org/10.3897/alpento.2.22759
Figures 32-44 Male adult of Chaetocladius lodscrozetae sp. n.: 32–33, palpomeres 3–4 with sensilla clavata on palpomere 3; 34, last flagellomere; 35, clypeus; 36–37, hypopygium, dorsal (36) and ventral (37) with anal point and tergite IX removed; 38, virga, two aspects; 39, ventral view of inferior volsella; 40, anal point and tergite IX in lateral view; 41, left gonocoxite in lateral view; 42–44, gonostylus, lateral (42), dorsal (43) and dorso-lateral (44).
Figures 1-13 from: Moubayed-Breil J, Lods-Crozet B (2018) On the genus Chaetocladius s. str. Kieffer, 1911 from Switzerland with descriptions of five new relic species occurring in glacial alpine springs and streams (Diptera, Chironomidae). Alpine Entomology 2: 15-34. https://doi.org/10.3897/alpento.2.22759
Figures 1-13 Male adult of Chaetocladius spp. C. castellae sp. n.: 1, last flagellomere; 2, sensilla clavata on palpomere 3; 3, clypeus; 4, antepronotum, left side. C. muttensis sp. n.: 5, last flagellomere; 6, palpomere 3; 8, clypeus. C. insolitus: 7, apex of last flagellomere. Hypopygium of C. castellae sp. n.: 9, dorsal; 10, ventral with anal point and tergite IX removed; 11, dorsal lamellae of tergite IX; 12, anal point and tergite IX in lateral view; 13, left gonostylus in dorsal view.
Figure 2-7 from: Schmid J (2018) Remarkable discovery of the Atlanto-Mediterranean moth Scythris ventosella Chrétien, 1907 at high altitude in the Alps of Valais, Switzerland – a possible relict of the late-glacial steppe-belt fauna? (Lepidoptera, Scythrididae). Alpine Entomology 2: 45-49. https://doi.org/10.3897/alpento.2.23531
Figure 2-7 2) Biotope, 3040m a.s.l.; 3) Herniaria alpina; 4) Adult caterpillar; 5) Freshly emerged moth; 6) Reared moth. Scale bar unit: mm; 7) Wild moth. Scale bar unit: mm.
Figure 1 from: Schmid J (2018) Remarkable discovery of the Atlanto-Mediterranean moth Scythris ventosella Chrétien, 1907 at high altitude in the Alps of Valais, Switzerland – a possible relict of the late-glacial steppe-belt fauna? (Lepidoptera, Scythrididae). Alpine Entomology 2: 45-49. https://doi.org/10.3897/alpento.2.23531
Figure 1 Male genitals (above) and sternum 8 (below) of S. ventosella. Site: Switzerland, Canton of Valais, Zermatt, Unterrothorn 3040 m, 6. VIII. 2016, leg., gen. prep. and coll. Jürg Schmid.
Figure 8 from: Schmid J (2018) Remarkable discovery of the Atlanto-Mediterranean moth Scythris ventosella Chrétien, 1907 at high altitude in the Alps of Valais, Switzerland – a possible relict of the late-glacial steppe-belt fauna? (Lepidoptera, Scythrididae). Alpine Entomology 2: 45-49. https://doi.org/10.3897/alpento.2.23531
Figure 8 Currently known distribution of S. ventosella in the Alps (red asterisk) and in the Western Mediterraneum (blue dots).
Supplementary material 2 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Table S2. List of samples used in a detailed network analyses along with GenBank Accessions :
Figure 8 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 8 Uropod I (left) and III (middle), and Telson (right) of N. tonywhitteni sp. n. (top, holotype, male 9.1 mm) and N. luchoffmanni sp. n. (bottom, holotype, male 6.7 mm). Drawings are not scaled to the same size.
Figure 7 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 7 Pereopods III-VII (from left to right) of N. tonywhitteni sp. n. (top, holotype, male 9.1 mm) and N. luchoffmanni sp. n. (bottom, holotype, male 6.7 mm). Pereopods VII on this side were broken; see Fig. 3 for illustration of the entire pereopod. Gills were only drawn when intact; however, they are present on pereopods III-VI. Drawings are not scaled to the same size.
Figure 5 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 5 Mouth parts (mandible & mandibular palp, maxilla I, maxilla II, maxilliped; from left to right) of N. tonywhitteni sp. n. (top, holotype, male 9.1 mm) and N. luchoffmanni sp. n. (bottom, holotype, male 6.7 mm). Drawings are not scaled to the same size.
Figure 4 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 4 Antenna I (left) and II (right) of N. tonywhitteni sp. n. (top, holotype, male 9.1 mm) and N. luchoffmanni sp. n. (bottom, holotype, male 6.7 mm). Drawings are not scaled to the same size.
Figure 3 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 3 Two new Niphargus species from Switzerland. The drawings are scaled to the same size. Top: N. luchoffmanni sp. n. (holotype, male 6.7 mm), bottom: N. tonywhitteni sp. n. (holotype, male 9.1 mm). Both specimens were rearranged digitally after drawing. Missing parts were taken from the right hand side of the specimen and are depicted in grey.
Figure 2 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 2 Phylogenetic relationships of Niphargus species focusing on new taxa from Switzerland. Highlighted are two new species and a sister species (green: N. luchoffmanni sp. n., blue: N. thienemanni, purple: N. tonywhitteni sp. n.) The tree was constructed using Bayesian inference on COI, 28S rRNA and histone gene sequences. The tree was rooted using Microniphargus leruthi (not presented). On the right side, two haplotype networks (based on COI and ITS) calculated within N. thienemanni and N. tonywhitteni sp. n. species pairs are shown. These networks are based on a higher number of samples (N=10, see Suppl. material 2) compared to the phylogenetic tree. Colours in the networks correspond to colours in the tree.
Figure 1 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 1 Finding sites of the new species N. tonywhitteni sp. n. (purple) and N. luchoffmanni sp. n. (green), and the distribution of N. aquilex (yellow) in Southern Germany and Northern Switzerland. Data source: Esri, 2013: Data & Maps for ArcGIS for use with Esri software; Elevation map of Europe EEA, Copenhagen, 2004.
Supplementary material 1 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Table S1. List of samples used in phylogenetic analyses along with GenBank Accessions :
Supplementary material 4 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Morphological database in DELTA :
Figure 6 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Figure 6 Gnathopod I (left) and II (right) of N. tonywhitteni sp. n. (top, holotype, male 9.1 mm) and N. luchoffmanni sp. n. (bottom, holotype, male 6.7 mm). Gills are dashed, and drawn only when intact (missing in N. luchoffmanni sp. n.). Drawings are not scaled to the same size.
Supplementary material 3 from: Fišer C, Alther R, Zakšek V, Borko Š, Fuchs A, Altermatt F (2018) Translating Niphargus barcodes from Switzerland into taxonomy with a description of two new species (Amphipoda, Niphargidae). ZooKeys 760: 113-141. https://doi.org/10.3897/zookeys.760.24978
Table S3. List of new records of Niphargus from Switzerland :
Figure 2 from: Klopfstein S, Riedel M, Schwarz M (2019) Checklist of ichneumonid parasitoid wasps in Switzerland (Hymenoptera, Ichneumonidae): 470 species new for the country and an appraisal of the alpine diversity. Alpine Entomology 3: 51-81. https://doi.org/10.3897/alpento.3.31613
Figure 2 Altitudinal distribution of the number of specimens (left) and corresponding number of species (right) of ichneumonids in the GBIF database. The inlay on the left shows the relationship between the number of species per collected specimen and altitude, with the smoothing line fitted by the Loess algorithm.
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International Brain Laboratory public data
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OpenNeuro
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