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1,734 results for “taxonomic key”
Fig. 6 in Taxonomic revision and first phylogeny of Climacia McLachlan, 1869 (Neuroptera: Sisyridae), with new species and identification key
Fig. 6. Climacia McLachlan distribution map with focus on Nearctic and Neotropical regions.
Figure 6 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 6 Pyrenodesmia rugosa (BDNA-L-0001102, holotype) in morphology A–C habitus and apothecia. Rugose thallus brown with orange spots and without pruina, but black apothecia often white pruinose D–E zeorine apothecia with well-developed parathecium. Algal layers continue to the base and underlying the hypothecium F epihymenium K+ purple and tiny granules not dissolving in K G–K asci oblong to narrowly clavate with eight spores K in the lactophenol cotton blue L ascospores simple in the beginning and developed polarilocular at maturity M paraphyses anastomosing in lactophenol cotton blue. Paraphysis tips slightly swollen. Scale bars: 1 mm (A–C); 100 μm (D); 50 μm (E, F); 10 μm (G–M).
Figure 4 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 4 Phylogenetic relationships amongst available species in the genus Pyrenodesmia , based on a Maximum Likelihood analysis of the dataset of the nuclear large subunit ribosomal RNA (LSU) sequences. The tree was rooted with three sequences of the genera Lendemeriella and Usnochroma. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Pyrenodesmia rugosa is presented in bold and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.
Figure 5 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 5 Phylogenetic relationships amongst available species in the genera Huriella and Squamulea, based on a Maximum Likelihood analysis of the dataset of ITS sequences. The tree was rooted with the sequences of the genera Amundsenia, Erichansenia and Shackletonia. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Huriella aeruginosa is presented in bold and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.
Figure 7 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 7 Huriella aeruginosa (BDNA-L-0001072, holotype) in morphology A–C habitus and apothecia. Thallus dark greenish-grey to grey with no pruina. Thalline margin of apothecia concolorous to disc D apothecia adnate or rarely sessile. Amphithecium well-developed, but parathecium inconspicuous. E thallus with dark green pigment layer under cortex F–G clavate asci containing 8-spores H ascospores generally ellipsoid, but occasionally globose, developing polarilocular in both types. Two blue coloured spores in lactophenol cotton blue. Scale bars: 1 mm (A–C); 100 μm (D);10 μm (E–H).
Figure 2 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 2 Phylogenetic relationships amongst available species in the genus Pyrenodesmia, based on a Maximum Likelihood analysis of the dataset of ITS sequences. The tree was rooted with the sequences of the genera Caloplaca, Lendemeriella, Olegblumia and Usnochroma. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Pyrenodesmia rugosa is presented in bold and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.
Figure 1 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 1 Specific collection site for two new species, representing the habitat/landscape and the location (black star mark).
Figure 3 from: Lee BG, Hur J-S (2021) Two new calcicolous caloplacoid lichens from South Korea, with a taxonomic key to the species of Huriella and Squamulea. MycoKeys 84: 35-55. https://doi.org/10.3897/mycokeys.84.71227
Figure 3 Phylogenetic relationships amongst available species in the genus Pyrenodesmia, based on a Maximum Likelihood analysis of the dataset of the mitochondrial small subunit (mtSSU) sequences. The tree was rooted with five sequences of the genera Caloplaca, Lendemeriella, Olegblumia and Usnochroma. Maximum Likelihood bootstrap values ≥ 70% and posterior probabilities ≥ 95% are shown above internal branches. Branches with bootstrap values ≥ 90% are shown in bold. The new species Pyrenodesmia rugosa is presented in bold and all species names are followed by the GenBank accession numbers. Reference Table 1 provides the species related to the specific GenBank accession numbers and voucher information.
Figure 2 from: Mushtaq HMS, Alatawi FJ, Kamran M, Flechtmann CHW (2021) The genus Oligonychus Berlese (Acari, Prostigmata, Tetranychidae): taxonomic assessment and a key to subgenera, species groups, and subgroups. ZooKeys 1079: 89-127. https://doi.org/10.3897/zookeys.1079.75175
Figure 2 Shape of setae Ah2 and Bh3 are similar to other ventral body setae in all the genera of the tribe Tetranychini in e.g. Oligonychus. Scale bar: 30 μm.
Figure 3 from: Mushtaq HMS, Alatawi FJ, Kamran M, Flechtmann CHW (2021) The genus Oligonychus Berlese (Acari, Prostigmata, Tetranychidae): taxonomic assessment and a key to subgenera, species groups, and subgroups. ZooKeys 1079: 89-127. https://doi.org/10.3897/zookeys.1079.75175
Figure 3 Shape of setae h2 and h3 are similar to other ventral body setae in all the genera of the tribe Tetranychini in e.g Tetranychus. Scale bar: 30 μm.
Figure 1 from: Mushtaq HMS, Alatawi FJ, Kamran M, Flechtmann CHW (2021) The genus Oligonychus Berlese (Acari, Prostigmata, Tetranychidae): taxonomic assessment and a key to subgenera, species groups, and subgroups. ZooKeys 1079: 89-127. https://doi.org/10.3897/zookeys.1079.75175
Figure 1 Shape of seta h1 is similar to other dorsal body setae in various genera of the tribe Tetranychini in e.g. AMixonychus and BSchizotetranychus. Scale bar: 30 μm.
Figure 4 from: Mushtaq HMS, Alatawi FJ, Kamran M, Flechtmann CHW (2021) The genus Oligonychus Berlese (Acari, Prostigmata, Tetranychidae): taxonomic assessment and a key to subgenera, species groups, and subgroups. ZooKeys 1079: 89-127. https://doi.org/10.3897/zookeys.1079.75175
Figure 4 Shape of different striae patterns A longitudinal between setae e1-e1 and between f1-f1, in O. randriamasii Gutierrez (redrawn from original description, Gutierrez 1967) B longitudinal between/posterior to setae f1-f1, in O. orthius Rimando (redrawn from re-description, Beard et al. 2003) C irregular longitudinal between/posterior to setae f1-f1D oblique with slightly forming V-shaped pattern between setae f1-f1, in O. turbbelli Beard and Walter (redrawn from original description, Beard et al. 2003). Scale bars: 50 μm (B, C, D); 100 μm (A).
Figs 16–18 in On the identity of Otiorhynchus (Nihus) subcostatus STIERLIN, 1866, description of Otiorhynchus muffi sp. nov., and an illustrated key to the species of Nihus REITTER, 1912 with taxonomic comments on both the subgenera Nihus and Eunihus REITTER, 1912 (Coleoptera, Curculionidae)
Figs 16–18. Genital structures of O. muffi sp. nov. 16. Spiculum ventrale, 17. Spermatheca, 18. Ovipositor. Illustrations by Olena Domschke.
Fig. 6 in The Lanternfly genus Pyrops in Vietnam: A new species from Central Vietnam, taxonomic changes, checklist, identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 6. Pyrops lathburii (Kirby, 1818), lectotype ♀ (BMNH). A. Habitus, dorsal view. B. Habitus, lateral view. C. Labels.
Fig. 17 in The Lanternfly genus Pyrops in Vietnam: A new species from Central Vietnam, taxonomic changes, checklist, identification key (Hemiptera: Fulgoromorpha: Fulgoridae)
Fig. 17. Pyrops ducalis (Stål, 1863), ♂, Vietnam, Dong Nai Biosphere Reserve, 25 Jun.–6 Jul. 2012 (RBINS). A. Habitus, dorsal view. B. Habitus, ventral view. C. Habitus, lateral view. D. Head and thorax, lateral view. E. Head, perpendicular view of frons. F. Apex of cephalic process, anteroventral view. D–F = not to scale.
Figs 74–77 in Four new species of the spider genus Physocyclus Simon, 1893 (Araneae: Pholcidae) from Mexico, with updated taxonomic identification keys
Figs 74–77. Habitat and microhabitat of Physocyclys lyncis sp. nov. (74–75) and Physocyclus pocamadre sp. nov. (76–77). 74. Pine-oak forest, predominant vegetation in the Ejido La Primavera, Ecotourist Park, Zapopan, Jalisco, Mexico. 75. "Cueva del Lince" (type locality), inside of the Ejido la Primavera, Ecotourist Park, Zapopan, Jalisco, Mexico. 76. Habitat close to the beach "El Tecolote", La Paz, Baja California Sur. 77. Xerophytic scrub, close to the beach "Punta San Francisquito" (type locality), Baja California.
Figs 44–47 in Four new species of the spider genus Physocyclus Simon, 1893 (Araneae: Pholcidae) from Mexico, with updated taxonomic identification keys
Figs 44–47. Physocyclus sikuapu sp. nov. Male (holotype). 44–46. Right palp, prolateral, retrolateral and dorsal views, respectively. 47. Bulb of male palp, dorsal view. Scale bars= 0.5 mm.
Fig. 7 in The Paepalanthoideae (Eriocaulaceae) of the Chapada dos Veadeiros National Park, Brazil: taxonomic novelties, identification key, and illustrated list of species
Fig. 7. Species of Paepalanthoideae (Eriocaulaceae) from the Chapada dos Veadeiros National Park. A. Paepalanthus cassiae Trovó. B. P. chiquitensis Herzog. C. P. cordatus Ruhland. D. P. echinoides Trovó. E. P. flaccidus (Bong.) Kunth. F. P. irwinii Trovó & Echtern. sp. nov. G. P. koernickei (Ruhland) Trovó. H. P. longibracteatus (Moldenke) Trovó.
Figure 6 from: Boyd OF, Erwin TL (2016) Taxonomic review of New World Tachyina (Coleoptera, Carabidae): descriptions of new genera, subgenera, and species, with an updated key to the subtribe in the Americas. ZooKeys 626: 87-123. https://doi.org/10.3897/zookeys.626.10033
Figure 6 - Illustrations of aedeagus, left lateral aspect, with parameres (left and right) shown below median lobe. A Meotachys (Hylotachys) ballorum, DRM voucher DNA2854 B Nothoderis sp., DRM voucher DNA2870 C Nothoderis sp., DRM voucher DNA2935 D Polyderis laeva, DRM voucher DNA2913 E Tachyxysta howdenorum, DRM voucher 4881 F Nothoderis rufotestacea, DRM voucher DNA0718. Scale bars = 0.1 mm.
Figure 7 from: Boyd OF, Erwin TL (2016) Taxonomic review of New World Tachyina (Coleoptera, Carabidae): descriptions of new genera, subgenera, and species, with an updated key to the subtribe in the Americas. ZooKeys 626: 87-123. https://doi.org/10.3897/zookeys.626.10033
Figure 7 - Mesepisternal pits of new Tachyina. A Elaphropus (Nototachys) occidentalis (paratype, ♂) Perú, Loreto B Meotachys (Hylotachys) ballorum (paratype, ♀), Brazil, Amazonas, Rio Demiti. Scale bars = 0.25 mm.
ScienceDex guides
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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.