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Figure 3 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 3 Kirschsteiniothelia saprophytica (MFLU 23–0419, holotype) a host b, c appearance of ascomata on host surface d paraphyses e–g asci h–k ascospores l, m culture on PDA (front and reverse). Scale bars: 20 µm (d–g); 10 µm (h–k).
Figure 7 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 7 Kirschsteiniothelia xishuangbannaensis (MFLUCC 23–0273, new record) a, b colonies on wood c, d conidiophores and conidiogenous cells e conidiophore with conidium f–o conidia p germinated conidium q, r culture on PDA (front and reverse). Scale bars: 200 μm (a); 100 μm (b); 50 μm (c, d, p); 30 μm (e); 20 μm (f–o).
Figure 2 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 2 Kirschsteiniothelia inthanonensis (MFLU 23–0420, holotype) a, b colonies on the host c, d conidiophores and conidia e regeneration of conidiophores f–j conidiogenous cells and conidia l–o conidia p germinating conidium q, r colony on PDA (front and reverse). Scale bars: 500 μm (b–d); 50 μm (e–j); 20 μm (k–p).
Figure 6 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 6 Kirschsteiniothelia tectonae (MFLUCC 23–0271, new record) a, b colonies on wood c–e conidiophores with conidia and conidiogenous cells f–k conidia l germinated conidium m, n culture on PDA (front and reverse). Scale bars: 100 μm (a, b); 50 μm (c–e, l); 20 μm (f–k).
Figure 5 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 5 Kirschsteiniothelia zizyphifolii (MFLU 23–0415, holotype) a colonies on wood b–d, g conidiophores and conidiogenous cells e, f conidiophores with conidia h–o conidia p germinated conidium q, r cultures on PDA from the surface and reverse. Scale bars: 200 μm (a); 100 μm (b–d); 50 μm (e, f); 20 μm (g–p).
Figure 4 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 4 Kirschsteiniothelia saprophytica (MFLUCC 23–0276) a host b colonies on the host, associated with asexual morph c conidiophore with conidiogenous cell and conidiospore d, e conidiophore (e – from the culture) f–j conidiospore from culture k germinating spore m, n culture on PDA (front and reverse). Scale bars: 50 µm (c–e); 20 µm (f–k).
Figure 1 from: de Farias ARG, Afshari N, Silva VSH, Louangphan J, Karimi O, Boonmee S (2024) Three novel species and new records of Kirschsteiniothelia (Kirschsteiniotheliales) from northern Thailand. MycoKeys 101: 347-370. https://doi.org/10.3897/mycokeys.101.115286
Figure 1 Maximum Likelihood phylogenetic tree generated from ITS, LSU and SSU sequence data for selected Kirschsteiniotheliales and related Dothideomycetes orders. The tree is rooted with Stemphylium vesicarium (CBS 191.86 and MFLUCC 14–0920). Newly-generated sequences are in blue and new species are in bold. Holotype and ex-type strains are symbolic by "T". Maximum Likelihood bootstrap (MLBS) values ≥ 70% and Bayesian posterior probabilities (BYPP) ≥ 0.95 are shown at the nodes.
Fig. 5. Diplectanum diacanthi n in Description of two new species of Diplectanum Diesing, 1858 (Monogenea: Diplectanidae) collected from Protonibea diacanthus (Lacep`ede, 1802) (Teleostei: Sciaenidae) from waters off northern Australia
Fig. 5. Diplectanum diacanthi n. sp. characters of morphological significance. A, MCO; B, Squamodisc; C, Ventral Bar; D, Dorsal Bar; E, Ventral and Dorsal Anchors.
Figure 2 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 2 Fenouilia undata sp. nov. shells and operculum A–D holotype, NNU230701 E–H paratype, NNU230702 I–L paratype, NNU230703 M paratype, NNU230704 N paratype, NNU230705 O, P operculum, holotype, NNU230701. Scale bars: 2 mm (A–N); 1 mm (O–P).
Figure 5 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 5 Fenouilia undata sp. nov. A color in life B natural habitat. Photographs by Xu Cheng Wei and Yue Ming He.
Figure 7 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 7 Maximum-likelihood (ML) tree inferred from concatenated 16S and COI gene sequences. Bootstrap supports are shown on the left of nodes on the tree.
Figure 4 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 4 Fenouilia undata sp. nov. A dissection with labelled structures of female B head of male. Abbreviations: e, eye; t, tentacle; sn, snout; f, foot; op, operculum; dg, digestive gland; int, intestine; pe, penis. Scale bars: 1 mm (A); 0,5 mm (B).
Figure 3 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 3 Radula of Fenouilia undata sp. nov. A frontal view of radula B, C magnified view of radula.
Figure 6 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 6 Bayesian-inference (BI) tree inferred from concatenated 16S and COI gene sequences. Posterior probabilities are shown on the left of nodes on the tree.
Figure 1 from: Chen H, He YM, Wang CR, Pan D (2024) A new species of freshwater snail of Fenouilia (Gastropoda, Pomatiopsidae) from northern Guangxi, China, based on morphological and DNA evidence. ZooKeys 1196: 271-283. https://doi.org/10.3897/zookeys.1196.113856
Figure 1 Known distribution of Fenouilia undata sp. nov. (Hechi City), and collection site (Longjiang River).
Fig. 8 in The "Triceratops" leafhoppers. A new species of the genus Cornutipo Evans, 1934 from Northern Queensland, Australia. (Hemiptera: Cicadellidae: Eurymelinae: Ipoini)
Fig. 8. Cornutipo chillagoensis sp. nov., distribution map.
Figure 3 from: Qi Z-X, Qian K-Q, Yue L, Wang L-B, Guo D-Z, Wu D-M, Gao N, Zhang B, Li Y (2024) New species, new records and common species of Pluteus sect. Celluloderma from northern China. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 91-112. https://doi.org/10.3897/mycokeys.104.117841
Figure 3 A Macroscopic characteristics of Pluteus brunneodiscusB basidiospores C pleurocystidia D basidia E pileipellis terminal cells F cheilocystidia. Scale bars: 1 cm (A); 10 µm (B–F).
Figure 6 from: Qi Z-X, Qian K-Q, Yue L, Wang L-B, Guo D-Z, Wu D-M, Gao N, Zhang B, Li Y (2024) New species, new records and common species of Pluteus sect. Celluloderma from northern China. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 91-112. https://doi.org/10.3897/mycokeys.104.117841
Figure 6 A macroscopic characteristics of Pluteus romelliiB basidiospores C pleurocystidia D basidia E cheilocystidia F pileipellis. Scale bars: 1 cm (A); 10 µm (B–E); 20 µm (F).
Figure 2 from: Qi Z-X, Qian K-Q, Yue L, Wang L-B, Guo D-Z, Wu D-M, Gao N, Zhang B, Li Y (2024) New species, new records and common species of Pluteus sect. Celluloderma from northern China. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 91-112. https://doi.org/10.3897/mycokeys.104.117841
Figure 2 Basidiomata features A–BPluteus brunneodiscusC–DP. cystidiosusE–FP. chrysophlebiusG–IP. romellii. Photos by Zheng-xiang Qi (A–B, G–I). Photos by Di-zhe Guo (C–F). Scale bars: 1 cm.
Figure 4 from: Qi Z-X, Qian K-Q, Yue L, Wang L-B, Guo D-Z, Wu D-M, Gao N, Zhang B, Li Y (2024) New species, new records and common species of Pluteus sect. Celluloderma from northern China. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 91-112. https://doi.org/10.3897/mycokeys.104.117841
Figure 4 A Macroscopic characteristics of Pluteus cystidiosusB caulocystidia C basidiospores D pleurocystidia E cheilocystidia F basidia G pileipellis. Scale bars: 1 cm (A); 10 µm (B–G).
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.