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2,007 results for “ecological species”
FIGURE 2 in New Neotropical and Nearctic species of water beetles in the genera Hydraena Kugelann and Ochthebius Leach, a key to North American genera and subgenera of the family, new distribution records, and a synopsis of ecology, behavior and morphology related to aquatic life (Coleoptera: Hydraenidae)
FIGURE 2. Dorsal habitus of Hydraena species.
FIGURE 5 in New Neotropical and Nearctic species of water beetles in the genera Hydraena Kugelann and Ochthebius Leach, a key to North American genera and subgenera of the family, new distribution records, and a synopsis of ecology, behavior and morphology related to aquatic life (Coleoptera: Hydraenidae)
FIGURE 5. Hydraena (Hydraenopsis) belilymba new species, holotype habitus and aedeagus.
FIGURE 24 in New Neotropical and Nearctic species of water beetles in the genera Hydraena Kugelann and Ochthebius Leach, a key to North American genera and subgenera of the family, new distribution records, and a synopsis of ecology, behavior and morphology related to aquatic life (Coleoptera: Hydraenidae)
FIGURE 24. Ochthebius (s. str.) bajaensis, new species, holotype habitus and aedeagus.
FIGURE 25 in New Neotropical and Nearctic species of water beetles in the genera Hydraena Kugelann and Ochthebius Leach, a key to North American genera and subgenera of the family, new distribution records, and a synopsis of ecology, behavior and morphology related to aquatic life (Coleoptera: Hydraenidae)
FIGURE 25. Ochthebius (s. str.) explicitus, new species, holotype habitus and aedeagus.
Figure 1. Neighbour-joining consensus tree inferred from the 16S in A new species of Arenallianassa (Decapoda: Axiidea: Callianassidae) from hydrothermal vents with notes on its ecology and a redescription of Arenallianassa arenosa (Poore, 1975)
Figure 1. Neighbour-joining consensus tree inferred from the 16S rRNA gene sequences for eight species of Callianassidae. Genbank Accession numbers are appended. Consensus support (%) based on 1000 bootstrap replicates is shown for each node. Scale indicates patristic distances.
Supplementary material 1 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Specimens of Greek representatives of genus Thliphthisa examined
Figure 1 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Figure 1 Illustration of Thliphthisa sapphus, based on the type material A whole plant B whole plant with vegetative and flowering shoots C vegetative shoot D detail of stem of vegetative shoot E flowering shoot F detail of stem of flowering shoot G flower H dissected flower (drawings by A. Kästner).
Figure 2 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Figure 2 Habit and flowers of Thliphthisa sapphusA old individual of Th. sapphus with a thick lignified rootstock B flowers of Th. sapphus exhibiting the characteristic indumentum on the corolla (photographs by M. Sonnleitner).
Figure 4 from: Gutermann W, Jang T-S, Kästner A, Prehsler D, Reich D, Berger A, Flatscher R, Gilli C, Hofbauer M, Lachmayer M, Sander R, Sonnleitner M, Mucina L (2024) Thliphthisa sapphus (Rubiaceae, Rubieae), a new species from Lefkada (Ionian Islands, Greece) and its ecological position. PhytoKeys 241: 65-79. https://doi.org/10.3897/phytokeys.241.119144
Figure 4 Habitat and habit of Thliphthisa sapphusA coastal cliffs of the Lefkátas Peninsula, the locality of Th. sapphus (photograph by M. Hofbauer) B cushion of Th. sapphus in limestone rock fissure (photograph by M. Sonnleitner) C loose cushion of Th. sapphus within regolith cover on limestone rocks, together with Lomelosia crenata subsp. dallaportae (photograph by M. Sonnleitner).
Supplementary material 1 from: González-Sargas E, Shafroth PB, Baró F (2024) Integrating social-ecological outcomes into invasive species management: the Tamarix case. NeoBiota 92: 173-192. https://doi.org/10.3897/neobiota.92.118502
Supplementary data
Data and code for: "Mixed evidence for species diversity affecting ecological forecasts in constant versus declining light "
<p>Data and code for the article "<strong><span>Mixed evidence for species diversity affecting ecological forecasts in constant versus declining light </span></strong>"</p>
FIGURE 55 in Taxonomy and ecology of genus Phlogophora Treitschke, 1825 (Lepidoptera Noctuidae) in Indian Himalaya with description of a new species
FIGURE 55. Neighbour-joining (NJ) tree of the Phlogophora spp. with bootstrap supports.
FIGURE 2 in Taxonomy and ecology of genus Phlogophora Treitschke, 1825 (Lepidoptera Noctuidae) in Indian Himalaya with description of a new species
FIGURE 2. Collection localities of Phlogophora spp. from Indian Himalaya.
FIGURE 14 in Phylogeny, taxonomy and flower-breeding ecology of the Colocasiomyia cristata species group (Diptera: Drosophilidae), with descriptions of ten new species
FIGURE 14. Geographical distributions of all species of the Colocasiomyia cristata group.
Fig. 3 in Desoria calderonis sp. nov., a new species of alpine cryophilic springtail (Collembola: Isotomidae) from the Apennines (Italy), with phylogenetic and ecological considerations
Fig. 3. Desoria calderonis sp. nov. A. Leg I, left; upper and lower subcoxa, coxa and trochanter. B. Leg II, left; upper and lower subcoxa, coxa and trochanter. C. Leg III, left; upper and lower subcoxa, coxa and trochanter. D. Ventral side of furca. E. Dorsal side of furca. F. Retinaculum. G. Mucro and apical part of dens, lateral and dorsal views. H. Lateral part of Abd. IV–V sternites. I. Tita III and Claw III.
Figure 8 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 8 Basidiomata of Cyanosporus subungulatus (Holotype, Cui 18046). Scale bar: 10 mm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 6 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 6 Basidiomata of Cyanosporus rigidus (Holotype, Cui 17032). Scale bar: 1.5 cm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 4 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 4 Basidiomata of Cyanosporus flavus (Holotype, Cui 18547). Scale bar: 1 cm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
Figure 11 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 11 Microscopic structures of Cyanosporus tenuicontextus (Holotype, Cui 16280) a basidiospores b basidia and basidioles. c cystidioles d hyphae from trama e hyphae from context. Drawings by: Shun Liu.
Figure 10 from: Liu S, Xu T-M, Song C-G, Zhao C-L, Wu D-M, Cui B-K (2022) Species diversity, molecular phylogeny and ecological habits of Cyanosporus (Polyporales, Basidiomycota) with an emphasis on Chinese collections. MycoKeys 86: 19-46. https://doi.org/10.3897/mycokeys.86.78305
Figure 10 Basidiomata of Cyanosporus tenuicontextus (Holotype, Cui 16280). Scale bar: 1 cm. The upper figure is the upper surface and the lower figure is the lower surface of the basidiomata.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.