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Supplementary material 4 from: Ács É, Bíró T, Boros E, Dobosy P, Duleba M, Földi A, Kiss KT, Levkov Z, Orgoványi P, Szén OP, Trábert Z, Vadkerti E, Grigorszky I (2023) Halamphora taxa in Hungarian soda pans and shallow soda lakes detected via metabarcoding and microscopic analyses. Metabarcoding and Metagenomics 7: e111679. https://doi.org/10.3897/mbmg.7.111679
Supplementary Alignment 2
Supplementary material 2 from: Ács É, Bíró T, Boros E, Dobosy P, Duleba M, Földi A, Kiss KT, Levkov Z, Orgoványi P, Szén OP, Trábert Z, Vadkerti E, Grigorszky I (2023) Halamphora taxa in Hungarian soda pans and shallow soda lakes detected via metabarcoding and microscopic analyses. Metabarcoding and Metagenomics 7: e111679. https://doi.org/10.3897/mbmg.7.111679
Pairwise p-distance values and number of differences
Figure 7 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 7 Pupa of Gnaptorina (Gnaptorina) lhorongica Li, sp. nov. A–C habitus A dorsal view B ventral view C lateral view D lateral process of abdominal terga, in dorsal view E urogomphy, in dorsal view. Scale bars: 2 mm (A–C); 1 mm (D, E).
Figure 3 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 3 Gnaptorina (Gnaptorina) lhorongica Li, sp. nov. A–C male, holotype D–F female, paratype A, D dorsal view B, E lateral view C, F ventral view. Scale bars: 2.0 mm.
Figure 6 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 6 Larva of Gnaptorina (Gnaptorina) lhorongica Li, sp. nov. A head B labrum and clypeus, in dorsal view C labium D legs. Scale bars: 1 mm (A, B, D); 0.5 mm (C).
Figure 8 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 8 Maximum-likelihood phylogenetic tree based on 2321 bp of mitochondrial and nuclear DNA sequences (COI, Cytb, 16S, and 28S-D2) within the genus Gnaptorina. Support for each node is represented by ultrafast bootstrap values (uBV).
Supplementary material 1 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
List of specimens used in this study with the corresponding accession number
Figure 5 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 5 Larva of Gnaptorina (Gnaptorina) lhorongica Li, sp. nov. A–C habitus A dorsal view B ventral view C lateral view D head, dorsal view E head, fore foot, and mesoleg, in ventral view F pygopods, in dorsal view G pygopods, in ventral view. Scale bars: 2 mm (A–C); 1 mm (D–G).
Figure 4 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 4 Gnaptorina (Gnaptorina) dongdashanensis Shi, 2013 A–C male D–F female A, D dorsal view B, E lateral view C, F ventral view. Scale bars: 2.0 mm.
Figure 2 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 2 Gnaptorina (Gnaptorina) dongdashanensis Shi, 2013 A head, dorsal view B head, ventral view C pronotum D antenna E protibia F mesotibia G metatibia H protarsus I mesotarsus J metatarsus K aedeagus, dorsal view L aedeagus, lateral view M aedeagus, ventral view. Scale bars: 1.0 mm (A–C); 0.5 mm (D–M).
Figure 1 from: Ji B-Y, Ma X-T, Rong J-D, Ren G-D, Pan Z, Li X-M (2024) The adult, pupa, and larva of a new species of Gnaptorina Reitter, 1887 (Coleoptera, Tenebrionidae, Blaptini) from the Tibetan Plateau, with molecular phylogenetic inferences. ZooKeys 1190: 91-106. https://doi.org/10.3897/zookeys.1190.113126
Figure 1 Gnaptorina (Gnaptorina) lhorongica Li, sp. nov. Holotype A head, dorsal view B head, ventral view C pronotum D antenna E protibia F mesotibia G metatibia H protarsus I mesotarsus J metatarsus K aedeagus, dorsal view L aedeagus, lateral view M aedeagus, ventral view. Scale bars: 1.0 mm (A–C, K–M); 0.5 mm (D–J).
Figure 1 from: Gao Q, Young DK, Pan Z (2024) Oblatopyrochroa bellula, an enigmatic new genus and species of Pyrochroinae (Coleoptera, Pyrochroidae) from Xizang, China. ZooKeys 1191: 369-377. https://doi.org/10.3897/zookeys.1191.118653
Figure 1 Oblatopyrochroa bellula, gen. et sp. nov., male, holotype A habitus, dorsal view B head, dorsal view C pronotum, dorsal view D antenna, left E abdominal sternites VII–VIII, ventral view F, G tegmen: F dorsal view G lateral view H, I penis: H dorsal view I lateral view. Scale bars: 5 mm (A); 1 mm (others).
Figure 4 from: Gao Q, Young DK, Pan Z (2024) Oblatopyrochroa bellula, an enigmatic new genus and species of Pyrochroinae (Coleoptera, Pyrochroidae) from Xizang, China. ZooKeys 1191: 369-377. https://doi.org/10.3897/zookeys.1191.118653
Figure 4 Tegmen of pyrochroine species, dorsal view AEupyrochroa insignita (Fairmaire, 1894) BFrontodendroidopsis pennyi Young, 2017 CPseudopyrochroa carinifrons Kôno, 1929 DPhyllocladus grandipennis (Pic, 1906). Scale bars: 1 mm.
Figure 3 from: Gao Q, Young DK, Pan Z (2024) Oblatopyrochroa bellula, an enigmatic new genus and species of Pyrochroinae (Coleoptera, Pyrochroidae) from Xizang, China. ZooKeys 1191: 369-377. https://doi.org/10.3897/zookeys.1191.118653
Figure 3 Head of two pyrochroine species, males, dorsal view AEupyrochroa insignita (Fairmaire, 1894) BPseudopyrochroa carinifrons Kôno, 1929. Scale bars: 1 mm.
Figure 2 from: Gao Q, Young DK, Pan Z (2024) Oblatopyrochroa bellula, an enigmatic new genus and species of Pyrochroinae (Coleoptera, Pyrochroidae) from Xizang, China. ZooKeys 1191: 369-377. https://doi.org/10.3897/zookeys.1191.118653
Figure 2 Habitat of Oblatopyrochroa bellulaA general habitat B specific site (indicated by arrow) C microhabitat (the beetle inside is the holotype of O. bellula). Photographed from China, Xizang, Pai Town-Mêdog County Highway 42 km, elev. 1991 m (type locality), by Quan-Yu Ji.
Supplementary material 1 from: Pan Y, Hou M, Yu G, Liu S (2024) A new species of Zhangixalus (Anura, Rhacophoridae) from Yunnan, China. Zoosystematics and Evolution 100(1): 183-197. https://doi.org/10.3897/zse.100.113850
Genetic distances between Zhangixalus species estimated from 16S sequences
Figure 7 from: Pan Y, Hou M, Yu G, Liu S (2024) A new species of Zhangixalus (Anura, Rhacophoridae) from Yunnan, China. Zoosystematics and Evolution 100(1): 183-197. https://doi.org/10.3897/zse.100.113850
Figure 7 Habitat of the new species at the type locality (a) and foam nests of the new species (b). Photos by Guohua Yu.
Figure 9 from: Pan Y, Hou M, Yu G, Liu S (2024) A new species of Zhangixalus (Anura, Rhacophoridae) from Yunnan, China. Zoosystematics and Evolution 100(1): 183-197. https://doi.org/10.3897/zse.100.113850
Figure 9 Geographic distribution of Zhangixalus species in Yunnan, China. The map was generated using ArcMap v.10.2 (ESRI Inc.).
Figure 6 from: Pan Y, Hou M, Yu G, Liu S (2024) A new species of Zhangixalus (Anura, Rhacophoridae) from Yunnan, China. Zoosystematics and Evolution 100(1): 183-197. https://doi.org/10.3897/zse.100.113850
Figure 6 Views of the paratype GXNU YU20160267 in preservative (a, b) and the paratype GXNU YU20160335 in life. Photos by Guohua Yu.
Figure 8 from: Pan Y, Hou M, Yu G, Liu S (2024) A new species of Zhangixalus (Anura, Rhacophoridae) from Yunnan, China. Zoosystematics and Evolution 100(1): 183-197. https://doi.org/10.3897/zse.100.113850
Figure 8 Irises of the new species (a. Photo by Guohua Yu), Z. nigropunctatus (b. Photo by Guohua Yu) and Z. melanoleucus (c. reproduced from Brakels et al. (2023)).
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)
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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.