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FIGURE 5 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 5. Distributional records of Helicops species occurring in the Pantanal and neighboring ecoregions. Symbols denote the type-locality of Helicops boitata (black triangle), as well as localities with vouchers of H. angulatus (white crosses), H. leopardinus (white diamonds), and H. polylepis (white circles). The white circle marked with an asterisk refer to a specimen determined as Helicops polylepis from São Domingos, state of Mato Grosso (IBSP 31712), destroyed by fire on May 15th of 2010.
FIGURE 4 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 4. General views of dorsum, venter and detail of head of the holotype of Helicops boitata (UFMT-R 11940) in life (SVL 437 mm, tail length 205 mm), from the margins of Transpantaneira Road, region of Poconé, state of Mato Grosso, Bra- zil.
FIGURE 1 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 1. Phylogenetic relationships of the tribe Hydropsini (comprising one species of Hydrops Wagler, 1830, one species of Pseudoeryx Fitzinger, 1826, and 10 species of Helicops Wagler, 1828) based on a concatenated dataset of the 12S, 16S, BDNF, C-mos, and NT3 sequence data. Numbers at nodes indicate the values of Bayesian Credibility/Maximum Likelihood bootstrap. The bar represents the number of expected changes per site in the Bayesian Analysis. The name Helicops pictiventris is currently a junior synonym of H. infrataeniatus, but it appears in the tree exactly as the pertinent sequences appear in the GenBank dataset (see Grazziotin et al. 2012).
FIGURE 3 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 3. Dorsal, ventral, and lateral (left/right) views of the head of the holotype of Helicops boitata (UFMT-R 11940), from the margins of Transpantaneira Road, region of Poconé, state of Mato Grosso, Brazil. Scale bar = 10 mm.
FIGURE 2 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 2. Dorsal and ventral views of the holotype of Helicops boitata (UFMT-R 11940), from the margins of Transpantaneira Road, region of Poconé, state of Mato Grosso, Brazil. Scale bar = 100 mm.
FIGURE 6 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 6. Sulcate (left) and asulcate (right) faces of the fully everted and maximally expanded hemipenis (right organ) of the holotype of Helicops boitata (UFMT-R 11940), from the margins of Transpantaneira Road, region of Poconé, state of Mato Grosso, Brazil. Scale bar = 10 mm.
FIGURE 7 in Chance, luck and a fortunate finding: a new species of watersnake of the genus Helicops Wagler, 1828 (Serpentes: Xenodontinae), from the Brazilian Pantanal wetlands
FIGURE 7. The holotype of Helicops boitata (UFMT-R 11940) in the wild, as found in the moment of collection (above), and a general perspective of the habitat in the collection site on May 2016 (below), at Pantanal wetlands in the margins of Transpan- taneira Road, region of Poconé, state of Mato Grosso, Brazil.
Figs 5–6 in New findings of Cryptophagidae (Coleoptera: Clavicornia) from Baltic amber in the unbiased collection of the Paleontological Institute of RAS
Figs 5–6. Photo of a new specimen of A. groehni from Baltic amber: 5 — dorsal view; 6 — dorsolateral view. Рис. 5–6. ВнеШний вид A. groehni иЗ балтийского ЯнтарЯ: 5 — сверху; 6 — сверху и сбоку.
Figs 1–4 in New findings of Cryptophagidae (Coleoptera: Clavicornia) from Baltic amber in the unbiased collection of the Paleontological Institute of RAS
Figs 1–4. Photo of a new specimen of M. sarnensis from Baltic amber: 1 — dorsal view; 2 — lateral view; 3 — ventral view; 4 — head and pronotum, ventrolateral view. Рис. 1–4. ВнеШний вид M. sarnensis иЗ балтийского ЯнтарЯ: 1 — габитус, сверху; 2 — габитус, сбоку; 3 — габитус,сниЗу; 4 — голова и переднеспинка, сниЗу и сбоку.
FIGURE 2 in New findings of Cryptomarasmius (Physalacriaceae, Agaricales) from Jilin Province, China
FIGURE 2. Cryptomarasmius changchunensis (holotype and paratype). a–b. Basidiomata; c. Basidiospores; d. Basidia; e. Basidioles; f. Pleurocystidia; g. Cheilocystidia of type a; h. Cheilocystidia of type b; i. Pileipellis and pileocystidia; j. Caulocystidia. Scale bars: a=1cm; b=0.3 cm; c–j=10 μm. Drawn by Siying Li.
FIGURE 1 in New findings of Cryptomarasmius (Physalacriaceae, Agaricales) from Jilin Province, China
FIGURE 1. Maximum-likelihood tree (ML tree) constructed by combining ITS and nrLSU sequences. Physalacria Peck is used as outgroup. Bootstrap support (BS) values ≥75 and Bayesian posterior probability (PP) values ≥0.95 are showed at the internodes (BS/ PP). In this study, newly generated sequences are marked in bold. Futhermore, the sequences of new species are marked in blue, the sequences of newly recorded species are marked in orange.
FIGURE 4 in New findings of Cryptomarasmius (Physalacriaceae, Agaricales) from Jilin Province, China
FIGURE 4. Comparison of the microstructure of basidiospores, cheilocystidia of type b and caulocystidia. Cryptomarasmius changchunensis a–c.; Cryptomarasmius aucubae d–f. Scale bars: a–b, d, f =5 μm; c, e =10 μm.
FIGURE 3 in New findings of Cryptomarasmius (Physalacriaceae, Agaricales) from Jilin Province, China
FIGURE 3. Cryptomarasmius aucubae (HMJAU 68273) a. Basidiomata; b. Basidiospores; c. Basidia; d. Basidioles; e. Cheilocystidia of type a; f. Cheilocystidia of type b; g. Pleurocystidia; h. Pileipellis and pileocystidia; i. Caulocystidia. Scale bars: a=0.4 cm; b–d, h =10 μm; e–g, i =20 μm. Drawn by Siying Li.
FIGURE 1a in New findings of Coprinellus species (Psathyrellaceae, Agaricales) in China
FIGURE 1a. Basidiomata of Coprinellus pseudodisseminatus. a, b, c. HMJAU 46301; d. HMJAU 46298; e. HMJAU 46303; f. HMJAU 46300. Bars a, b, d–f = 1 cm. Photos a–c, f, by Mei Huang; Photos d, e, by Qin Na.
FIGURE 1b. Coprinellus pseudodisseminatus HMJAU46301 in New findings of Coprinellus species (Psathyrellaceae, Agaricales) in China
FIGURE 1b. Coprinellus pseudodisseminatus HMJAU46301 (Holotype). a. Basidiomata; b. Basidia; c. Basidiospores; d. Veil; e. Cheilocystidia; f. Pileipellis; g. Pileocystidia; h. Caulocystidia. Bars a = 1 cm; b–h = 10 μm.
FIGURE 2b in New findings of Coprinellus species (Psathyrellaceae, Agaricales) in China
FIGURE 2b. Coprinellus aureogranulatus (HMJAU 46305). a. Basidiomata; b. Basidia; c. Basidiospores; d. Cheilocystidia; e. Pleutocystidia; f. Veil; g. Pileipellis; h. Mycelium; i. Caulocystidia; j. Pileocystidia. Bars a =1 cm; b– j = 10 μm.
FIGURE 4 in New findings of Coprinellus species (Psathyrellaceae, Agaricales) in China
FIGURE 4. Phylogenetically informative different characters of ITS alignment for Coprinellus aureogranulatus and C. pseudodisseminatus.
FIGURE 3. Phylogenetic tree constructed using 54 in New findings of Coprinellus species (Psathyrellaceae, Agaricales) in China
FIGURE 3. Phylogenetic tree constructed using 54 ITS sequences, with three species of Psathyrella as outgroup for RAxML phylogram and MrBayes analyses. Maximum Likelihood support values (>90) and posterior probabilities (>0.90) are shown on each branch (ML/ PP).
FIGURE 2a in New findings of Coprinellus species (Psathyrellaceae, Agaricales) in China
FIGURE 2a. Basidiomata and mycelia on stem base of Coprinellus aureogranulatus. a, b, e HMJAU 46305; c HMJAU 46304; d HMJAU 46306. Bars a–d = 1 cm; e = 0.5 cm. Photos a–e by Mei Huang.
FIGURE 2. A in Extension of the Cryptanthus range in Northeastern Brazil with new findings in the phenotypic variation including changes in the trichome's distribution, thus enhancing the understanding of the Cryptanthus zonatus complex (Bromeliaceae)
FIGURE 2. A. Two color morphs (maroon and green – indicated by the arrow) growing intermingled in the understory of Mata Estrela. B. Maroon color morph plant growing next to a banded individual that present a basal glabrous leaf (arrow) at Parque das Dunas. C. Signs of trichome loss on the older leaves (arrow), by a maroon banded individual from Parque das Dunas. D. Green individual showing dark red/maroon marks on the base of the leaves, Parque das Dunas. E. Two rosettes showing similar pigmentation (green along the center and dark red/maroon at the margins) but contrasting in the banded-lepidote versus glabrous adaxial surface. F. Individual displaying the colors green and wine-red spots (scale = 14 cm). G. Blooming individual of the banded form presenting a staminate flower. H. Bisexual flower of the maroon morph. I. Basal stolon (arrow), in the maroon morph. J. Basal stolon (arrow), in the banded morph.
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.