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1,723 results for “Alpine”
Figures 6-13 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figures 6-13 Hoplitisrobusta. 6) X-ray of nest branch with nest 1 (left) and nest 2 (right). 7, 8) Nest seal of nest 1 (left) and nest 2 (right) consisting of leaf pulp. 9, 10) Dissected nest 1 with six brood cells (left) and nest 2 with five brood cells (right) in L-shaped pupation tunnels of cerambycid beetles. 11) Close-up view of brood cells in nest 1. 12, 13) Nest plug of nest 1 (left) and nest 2 (right), each consisting of several successive partitions of leaf pulp.
Figure 17 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figure 17 L-shaped pupation tunnel of Tetropiumcastaneum (Cerambycidae) after emergence of the adult beetle with densely packed wood chips and fibers in the straight horizontal part of the tunnel (photo B. Wermelinger).
Figures 1-5 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figures 1-5 Hoplitisrobusta. 1) Female collecting pollen and nectar on Potentillaerecta. 2) Head of female. 3) Nesting habitat in the Calfeisen valley near St. Martin (St Gallen). 4) Dead fallen spruce (Piceaabies) with nesting branch marked with red arrow. 5) Nesting branch with nest entrances marked with red arrows.
Figures 14-16 from: Müller A, Richter H (2018) Dual function of Potentilla (Rosaceae) in the life history of the rare boreoalpine osmiine bee Hoplitis (Formicapis) robusta (Hymenoptera, Megachilidae). Alpine Entomology 2: 139-147. https://doi.org/10.3897/alpento.2.30158
Figures 14-16 14) Leaf of Potentillaerecta. 15) Close-up view of leaf of Potentillaerecta with indumental hairs along the leaf margins and on the leaf surface. 16) Leaf pulp matrix of uppermost partition of the plug of nest 1 with numerous indumental hairs possibly originating from Potentilla and/or Fragaria.
Supplementary material 1 from: Schneider N, Hollier J (2018) Charles Lienhard at 70. Alpine Entomology 2: 151-154. https://doi.org/10.3897/alpento.2.30088
Liste des publications de Charles Lienhard :
Supplementary material 1 from: Balestrini R, Delconte C, Buffagni A, Fumagalli A, Freppaz M, Calvo E, Buzzetti I (2019) Dynamic of nitrogen and dissolved organic carbon in an alpine forested catchment: atmospheric deposition and soil solution trends. In: Mazzocchi MG, Capotondi L, Freppaz M, Lugliè A, Campanaro A (Eds) Italian Long-Term Ecological Research for understanding ecosystem diversity and functioning. Case studies from aquatic, terrestrial and transitional domains. Nature Conservation 34: 41-66. https://doi.org/10.3897/natureconservation.34.30738
: Data type: statistical data
Supplementary material 2 from: Munakata M, Tanaka H, Kakui K (2022) Taxonomy and natural history of Cavernocypris hokkaiensis sp. nov., the first ostracod reported from alpine streams in Japan. Zoosystematics and Evolution 98(1): 117-127. https://doi.org/10.3897/zse.98.80442
Alignment S1
Supplementary material 1 from: Benlasri M, Kaczmarek N, El Alami M, Ghamizi M, Berger E (2023) Inventory and pattern of distribution of mayflies (Insecta, Ephemeroptera) in the Draa river basin, southern Morocco. Alpine Entomology 7: 13-20. https://doi.org/10.3897/alpento.7.96436
Inventory of species of Draa basin collected in all trips
Supplementary material 2 from: Benlasri M, Kaczmarek N, El Alami M, Ghamizi M, Berger E (2023) Inventory and pattern of distribution of mayflies (Insecta, Ephemeroptera) in the Draa river basin, southern Morocco. Alpine Entomology 7: 13-20. https://doi.org/10.3897/alpento.7.96436
Parameters mesured during the samples
Supplementary material 1 from: Lüdeke M, Germann C, Jentzsch M (2023) Laufkäfer und ihre Habitatpräferenzen entlang eines Höhentransekts von 2100 bis 2500 m ü. M. oberhalb der Alp Flix in den Schweizer Alpen (Coleoptera, Carabidae). Alpine Entomology 7: 57-62. https://doi.org/10.3897/alpento.7.102534
Urtabelle Feldaufnahmen
Supplementary material 1 from: Germann C, Geiser M, Borer M (2023) A review of the Chrysolina species – subgenus Stichoptera Motschulsky, 1860 – in Switzerland, with notes on distribution, conservation and preimaginal stages (Coleoptera, Chrysomelidae). Alpine Entomology 7: 69-82. https://doi.org/10.3897/alpento.7.105937
Label data, interpreted coordinates and collection references
Fig. 2 in Alpine bullhead (Cottus poecilopus Heckel): a potential refuge for Gyrodactylus salaris Malmberg, 1957 (Monogenea)
Fig. 2. Course of infection of Gyrodactylus salaris Malmberg, 1957 on individually isolated alpine bullhead, Cottus poecilopus Heckel, from the River Nitelva, southeastern Norway at low temperature (6.5 ± 0.5 °C; n = 18). The individual trajectories demonstrate that all fish were initially resistant but after a week individ- ual variations was apparent. Black lines indicate individual fish where parasite reproduction may have occurred. The parasite was eliminated on the alpine bullheads after 47–48 days.
Supplementary material 1 from: Giangregorio P, Mucci N, Norman AJ, Pedrotti L, Filacorda S, Molinari P, Spong G, Davoli F (2023) Performance of SNP markers for parentage analysis in the Italian Alpine brown bear using non-invasive samples. Nature Conservation 53: 105-123. https://doi.org/10.3897/natureconservation.53.86739
Genetic and field data
Supplementary material 1 from: Blanckenhorn WU, Burkhard D (2023) Are yellow dung flies domesticated cow dung specialists? Alpine Entomology 7: 135-141. https://doi.org/10.3897/alpento.7.107649
Data file corresponding to the submitted paper
Supplementary material 1 from: Benlasri M, Vuataz L, Gattolliat J-L, Beermann AJ, Leßner H, El Alami El Moutaouakil M, Ghamizi M, Berger E (2023) First report of Cloeon vanharteni Gattolliat & Sartori, 2008 (Baetidae, Ephemeroptera) in the Maghreb. Alpine Entomology 7: 143-152. https://doi.org/10.3897/alpento.7.109562
Methods DNA barcoding Duisburg-Essen
Supplementary material 1 from: Gebremeskel A, Salnitska M, Krivosheeva V, Solodovnikov A (2023) Micro-endemism pattern and Wolbachia infection of Quedius obliqueseriatus (Coleoptera, Staphylinidae), a montane rove beetle endemic of the North-Western Caucasus. Alpine Entomology 7: 153-166. https://doi.org/10.3897/alpento.7.111214
Suuplementary files in zip archive
Alpine plant species converge towards adopting elevation-specific resource-acquisition strategy in response to experimental early snow-melting
<p>An experimental to assess the effect of early snow-melting on alpine species at contrasting elevation was established in 2019 at Rohtang (32°22' N; 77°16' E) in western Himalaya. After completion of 02 year of experiment, sampling was performed on 08 alpine plant species. We have collected leaf functional trait and physiological traits during peak growing season (August 2020) from two elevation (3850 and 4150 m) and from control and treatment plots. The trait values of 15 replicates for each species were given here for leaf functional traits (viz. leaf area, specific leaf area, leaf dry matter content, leaf water content, plant height) and trait values of 05 replicated for each species were given for elemental (Nitrogen % and carbon/nitrogen ratio ) and physiological traits (leaf chlorophyll content, Carotenoid content, Malondialdehyde equivalents, Phenol content, Proline content, Total soluble Sugar content, Total protein content). We have provided trait values from both control and treatment plots. </p>
Raw sequence data for epiphytic fungi in an alpine grassland
<p>A field investigation for plant surface microbes of two dominant grassland species were conducted through 18S rRNA sequencing</p>
Abbildung 9 from: Bryner R, Huemer P (2019) Revision der Nematopogon adansoniella-Artengruppe mit Beschreibung einer neuen Art aus den Bergregionen Süditaliens (Lepidoptera, Adelidae). Alpine Entomology 3: 93-104. https://doi.org/10.3897/alpento.3.33651
Abbildung 9 Weibliche Genitalien: Gesamtansicht, Ovipositorspitze lateral (stark vergrössert) und VIII. Segment mit Caudalband (c).
Abbildung 8 from: Bryner R, Huemer P (2019) Revision der Nematopogon adansoniella-Artengruppe mit Beschreibung einer neuen Art aus den Bergregionen Süditaliens (Lepidoptera, Adelidae). Alpine Entomology 3: 93-104. https://doi.org/10.3897/alpento.3.33651
Abbildung 8 Männliche Genitalien: Uncus-Tegumen-Vinculum-Komplex, Valven, Phallus und Phallusspitze (stark vergrössert).
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International Brain Laboratory public data
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OpenNeuro
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