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Figure S1 in New Insights into the Taxonomy of Myotis Bats in China Based on Morphology and Multilocus Phylogeny
Figure S1. Phylogenetic trees reconstructed based on 123 mitochondrial Cytb haplotypes. Values on the branches represent posterior probability obtained with MrBayes (A) and bootstrap percentage obtained with IQ-TREE (B). Geometries of different colors and shapes represent Myotis species. The information on mitochondrial haplotypes was described in Table S3.
Figure 2 in New Insights into the Taxonomy of Myotis Bats in China Based on Morphology and Multilocus Phylogeny
Figure 2. Principal component analysis based on five morphological characteristics. The first two principal components explained 88.77% and 6.77% of the total variance, respectively. Geometries with different colors and shapes represent Myotis species.
Figure 4 in New Insights into the Taxonomy of Myotis Bats in China Based on Morphology and Multilocus Phylogeny
Figure 4. (A) Species tree constructed in *BEAST based on Cytb, Rag2, and Chd1 genes. Values on the branch represent posterior probability. (B) Heatmap of K2P genetic distance calculated based on mitochondrial Cytb gene (lower triangular) and concatenated nuclear genes (upper triangular). Geometries with different colors and shapes represent Myotis species and corresponds to the species on the left side.
Figure 1 in New Insights into the Taxonomy of Myotis Bats in China Based on Morphology and Multilocus Phylogeny
Figure 1. Mitochondrial phylogenetic tree reconstructed based on 123 Cytb haplotypes. Values on the branches represent posterior probability (PP) and bootstrap percentage (BP). Geometries with different colors and shapes represent Myotis species. "Initial" represents the initially filed identification or the species information labelled in GenBank. "Revised" means the revised species names. The information on mitochondrial haplotypes was described in Table S3.
Figure S2 in New Insights into the Taxonomy of Myotis Bats in China Based on Morphology and Multilocus Phylogeny
Figure S2. Phylogenetic trees reconstructed based on 20 nuclear Rag2 haplotypes (A‒B), 13 nuclear Chd1 haplotypes (C‒D), and concatenated nuclear sequences (E‒F). Values on the branches represent posterior probability obtained with MrBayes (BI) and bootstrap percentage obtained with IQ-TREE (ML). Geometries of different colors and shapes represent Myotis species. The information on nuclear haplotypes was described in Table S4.
Figure 3 in New Insights into the Taxonomy of Myotis Bats in China Based on Morphology and Multilocus Phylogeny
Figure 3. (A) Phylogenetic tree based on concatenated nuclear genes. Values on the branches represent posterior probability (PP) and bootstrap percentage (BP). (B) Species tree constructed in *BEAST based on nuclear Rag2 and Chd1 genes. Values on the branch represent posterior probability. Geometries with different colors and shapes represent Myotis species.
Fig. 6 in Marine insects of the Maldives (Heteroptera: Gerridae, Hermatobatidae and Veliidae; Diptera: Chironomidae) with notes on taxonomy, Indo-Pacific distribution, and ecology
Fig. 6. Hermatobates djiboutensis. Specimens from Meerufenfushi Island, Kaafu (North Malé) Atoll, 14 November 2006. Scale bar = 0.5 mm. A, male, dorsal view; B, male ventral view (length ca. 3.8 mm); C, male front leg showing teeth and tubercles on tibia (length of femur ca. 0.8 mm); D, female, dorsal view (length ca. 3.6 mm); E, female, ventral view.
Fig. 5 in Marine insects of the Maldives (Heteroptera: Gerridae, Hermatobatidae and Veliidae; Diptera: Chironomidae) with notes on taxonomy, Indo-Pacific distribution, and ecology
Fig. 5. Halobates germanus. Specimens collected inside Haa Alifu Atoll at night, January 2007. Scale bar = 0.5 mm. A, adult female, dorsal view (body length = 3.7 mm); B, male genitalia, dorsal view (genital segment length = 1.9 mm); C, male genitalia, ventral view (genital length = 1.5 mm).
Fig. 4 in Marine insects of the Maldives (Heteroptera: Gerridae, Hermatobatidae and Veliidae; Diptera: Chironomidae) with notes on taxonomy, Indo-Pacific distribution, and ecology
Fig. 4. Halobates formidabilis. Specimens from Maalhendhoo Island, Noonu Atoll, 5 May 2013. Scale bars = 0.5 mm. A, 5th instar nymph, dorsal view, showing colour pattern (length = 4.2 mm); B, adult male, dorsal view (length = 5.6 mm); C, male genitalia, dorsal view (genital segment length = 2.0 mm); D, male genitalia, ventral view (genital length = 1.4 mm).
Fig. 3. Halobates formidabilis. 5 in Marine insects of the Maldives (Heteroptera: Gerridae, Hermatobatidae and Veliidae; Diptera: Chironomidae) with notes on taxonomy, Indo-Pacific distribution, and ecology
Fig. 3. Halobates formidabilis. 5th instar nymph, live individual, Dhidhdhoofinolhu Island, Alifu Dhaalu Atoll, 13 May 2006; not measured, approximate length 5 mm. A, dorsal view; B, ventral view, note uniform pale colouration.
Figs 77–79 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 77–79. Female genitalia of Dichagyris spp. 77 = D. furiosa griseoerythra ssp. n., paratype, Kirghisia, Susamyr Mts, slide No.: VZ9939f. 78 = D. contermina contermina (Corti, 1929), Turkey, Prov. Urfa, Halfeti, slide No.: VZ11520f. 79 = D. erubescens (Staudinger, 1892), Iran, Zagros Mts, Kasri-Shirin, slide No.: VZ9776f
Figs 62–64 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 62–64. Male genitalia of Dichagyris furiosa sspp. 62–63 = D. furiosa griseoerythra ssp. n., paratypes: 62 = Tadjikistan, Turkestanskiy Mts, slide No.: VZ11505m; 63 = Kirghisia, Susamyr Mts, slide No.: VZ9932m. 64 = D. furiosa kugitanga ssp. n., paratype, male, Turk-
Figs 68–70 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 68–70. Genitalia of Dichagyris spp. 68 = Male genitalia of D. erubescens (Staudinger, 1892), Turkey, Prov. Malatya, slide No.: VZ11515m. 69 = Female genitalia of D. forficula akdagestana ssp. n., paratype, Russia, North Caucasus, Ingoushetia, slide No.: VZ6753f. 70 = female genitalia of D. forficula devota (Christoph, 1884), Turkmenistan, Kopet-Dagh, slide No.: VZ11483f
Figs 59–61 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 59–61. Male genitalia of Dichagyris furiosa sspp. 59 = D. furiosa furiosa (Bang-Haas, 1912), Tadjikistan, Alai range, slide No.: VZ11989m. 60–61 = D. furiosa griseoerythra ssp. n.,
Figs 56–58 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 56–58. Male genitalia of Dichagyris spp. 56–57 = D. turana cisiliensis ssp. n., Kazakhstan, Chu Ili Mts: 56 = paratype, slide No.: VZ9957m; 57 = paratype, slide No.: VZ10006m. 58 = D. furiosa furiosa (Bang-Haas, 1912), lectotype, Tadjikistan, Peter the Great Mts, Garm, slide No.: Boursin MB360m
Figs 50–52 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 50–52. Male genitalia of Dichagyris spp. 50–51 = D. forficula chitralensis ssp. n., Pakistan, Garam Chasma: 50 = holotype, male, slide No.: VZ9097m; 51 = paratype, male, slide No.: VZ9960m. 52 = D. turana turana (Staudinger, 1892), holotype, Uzbekistan, Margelan, slide No.: Boursin MB359m
Figs 53–55 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 53–55. Male genitalia of Dichagyris turana sspp. 53–54 = D. turana turana (Staudinger, 1892): 53 = Issyk-Kul, coll. Püngeler, slide No.: VZ9551m; 54 = Kirghisia, Osh, slide No.: VZ11987m. 55 = D. turana cisiliensis ssp. n., paratype, Kazakhstan, Chu Ili Mts, slide No.: VZ9751m
Figs 65–67 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 65–67. Male genitalia of Dichagyris spp. 65 = D. furiosa kugitanga ssp. n., paratype, male, Turkmenistan, Kugitang-Tau Mts, slide No.: VZ11504m. 66–67 = D. contermina contermina (Corti, 1929), Turkey, Prov. Urfa, Halfeti: 66 = slide No.: VZ11488m, 67 = slide No.: VZ11503m
Figs 47–49 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 47–49. Male genitalia of Dichagyris forficula sspp. 47–48 = D. forficula devota (Christoph, 1884): 47 = Turkmenistan, Kopet-Dagh, slide No.: VZ9961m; 48 = Iran, Prov. Khorassan, slide No.: VZ11518m. 49 = D. forficula pseudoturana ssp. n., paratype, Afghanistan, Paghman Mts, slide No.: VZ10134m
Figs 74–76 in Contributions To The Taxonomy And Biogeography Of The Genus Dichagyris (Subg. Dichagyris) Lederer, 1867 (Lepidoptera, Noctuidae, Noctuinae) Ii. The Review Of The D. Forficula Species Group
Figs 74–76. Female genitalia of Dichagyris spp. 74 = D. turana cisiliensis ssp. n., paratype, Kazakhstan, Chu Ili Mts, slide No.: VZ9962f. 75–76 = D. furiosa furiosa (Bang-Haas, 1912):
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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.