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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).
Figure 3 from: Han L-S, Wijayawardene NN, Liu C, Han L-H, Promputtha I, Li Q, Elgorban AM, Al-Rejaie S, Tanaka K, Dai D-Q (2024) Paramphibambusa bambusicola gen. et. sp. nov., Arecophila xishuangbannaensis and A. zhaotongensis spp. nov. in Cainiaceae from Yunnan, China. In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 113-132. https://doi.org/10.3897/mycokeys.104.117872
Figure 3 Arecophila xishuangbannaensis (GMB-W1283, holotype) a bamboo specimen b, c appearance of ostioles on host surface d–f vertical sections of ascomata g peridium h paraphyses i–m asci n asci with J+, wedge-shaped rings (Stained in Melzer's reagent) o–t ascospores (s showing ascospore with longitudinal striations t ascospore stained in Indian ink showing mucilaginous sheath). Scale bars: 300 μm (d–f); 20 μm (g); 30 μm (h); 50 μm (i–m); 15 μm (n–t).
Figure 5 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 5 A macroscopic characteristics of Pluteus chrysophlebiusB basidiospores C basidia D pleurocystidia E cheilocystidia F pileipellis. Scale bars: 1 cm (A); 10 µm (B–G).
Figure 1 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 1 Phylogenetic tree of the sect. Celluloderma of the genus Pluteus. The best tree from the ML and BI analysis of the nrITS + TEF1-α dataset. The two values of internal nodes respectively represent the maximum likelihood bootstrap (MLBP)/Bayesian posterior probability (BIPP). This study species is in bold and red font.
Figure 2 from: Isocrono D, Ravera S (2024) Typification of the name Arthopyrenia parolinii Beltr. (Ascomycota, Dothideomycetes, Pleosporales, Arthopyreniaceae). In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 1-8. https://doi.org/10.3897/mycokeys.104.109420
Figure 2 Exsiccata of Arthopyrenia parolinii Beltramini from M Lichen herbarium (M-0207340) registered as "Type Material" A the original label from Arnold personal herbarium B a fragment of linden bark, colonized by the lichen, glued to the herbarium sheet with the name of the species accredited to Beltramini and a few notes written by Massalongo.
Figure 1 from: Isocrono D, Ravera S (2024) Typification of the name Arthopyrenia parolinii Beltr. (Ascomycota, Dothideomycetes, Pleosporales, Arthopyreniaceae). In: Wijayawardene N, Karunarathna S, Fan X-L, Li Q-R (Eds) Taxonomy and secondary metabolites of wood-associated fungi. MycoKeys 104: 1-8. https://doi.org/10.3897/mycokeys.104.109420
Figure 1 Exsiccata of Arthopyrenia parolinii Beltramini from the lichen herbarium of A.B. Massalongo in VERA fragment of linden bark, colonized by the lichen and glued to the herbarium sheet with the name of the species and note "Herb. Beltramini" written by Massalongo in black ink, and the locality of collection, in red ink, written by Beltramini B detail of thallus and perithecia in surface view. Scale bar: 1 mm.
Figure 6 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 6 Light microscopy of anatomical features of Hymenagaricus parvulus (based on holotype collection JRZ-22-004) A basidiospores B basidia C cheilocystidia D annulus E pellicle structure F veil elements. Scale bars: 5 µm (A); 10 µm (B, C); 15 µm (D–F).
Figure 5 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 5 Basidiomata of Hymenagaricus parvulus (based on holotype collection JRZ-22-004) A mature and young basidiomata B mature basidimata.
Figure 2 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 2 Basidiomata of Hymenagaricus wadijarzeezicusA–C holotype collection (JRZ2-22-013) D, E NHZ-22-019 F young fruiting bodies where the cap is entirely covered by pellicle represented by arrows (JRZ2-22-015) G context changed into pinkish on cutting, the arrow represents the root-like rhizoid (JRZ2-22-015). Scale bars: 20 mm.
Figure 1 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 1 Maximum Likelihood phylogeny of Hymenagaricus and Heinemannomyces, based on combined ITS-28S sequence data, with Agaricus campestris as the outgroup taxon. Values above the node represent ML bootstrap percentages and BI posterior probabilities; the new species are represented in bold fonts.
Figure 4 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 4 Line drawings of anatomical features of Hymenagaricus wadijarzeezicus (based on holotype collection JRZ2-22-013) A basidiospores B basidia C cheilocystidia D pellicle structure E annulus F veil elements. Scale bars: 10 µm (A); 15 µm (B–D); 15 µm (E, F).
Figure 3 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 3 Light microscopy of anatomical features of Hymenagaricus wadijarzeezicus (based on holotype collection JRZ2-22-013) A basidiospores B, C basidia D cheilocystidia E annulus F veil elements G pellicle structure. Scale bars: 10 µm (A); 15 µm (B–D); 15 µm (E–G).
Figure 7 from: Hussain S, Al-Kharousi M, Al-Maqbali D, Al-Owaisi AA, Velazhahan R, Al-Yahya'ei MN, Al-Sadi AM (2024) Two new species of Hymenagaricus (Agaricales, Agaricaceae) from Oman, based on morphology and molecular phylogeny. MycoKeys 105: 1-19. https://doi.org/10.3897/mycokeys.105.113591
Figure 7 Line drawings of anatomical features of Hymenagaricus parvulus (based on holotype collection JRZ-22-004) A basidiospores B basidia C annulus elements D cheilocystidia E pellicle structure F veil elements. Scale bars: 5 µm (A); 10 µm (B, D); 15 µm (C, E, F).
Supplementary material 1 from: Foster R, Peeler E, Bojko J, Clark PF, Morritt D, Roy HE, Stebbing P, Tidbury HJ, Wood LE, Bass D (2021) Pathogens co-transported with invasive non-native aquatic species: implications for risk analysis and legislation. NeoBiota 69: 79-102. https://doi.org/10.3897/neobiota.69.71358
Table S1
Supplementary material 2 from: Foster R, Peeler E, Bojko J, Clark PF, Morritt D, Roy HE, Stebbing P, Tidbury HJ, Wood LE, Bass D (2021) Pathogens co-transported with invasive non-native aquatic species: implications for risk analysis and legislation. NeoBiota 69: 79-102. https://doi.org/10.3897/neobiota.69.71358
Table S2
Supplementary material 3 from: Foster R, Peeler E, Bojko J, Clark PF, Morritt D, Roy HE, Stebbing P, Tidbury HJ, Wood LE, Bass D (2021) Pathogens co-transported with invasive non-native aquatic species: implications for risk analysis and legislation. NeoBiota 69: 79-102. https://doi.org/10.3897/neobiota.69.71358
Table S3
FI GU R E 1 Schematic drawing of Apodera angatakere and codes of the measurements taken. (A) Length of the test; (B) width of test; (C) width of the pseudostome; (D) length of the neck; (E) maximal width of the neck; (F) width of the test at the constriction; (G) length of the test without the neck in Superficially described and ignored for 92 years, rediscovered and emended: Apodera angatakere (Amoebozoa: Arcellinida: Hyalospheniformes) is a new flagship testate amoeba taxon from Aotearoa (New Zealand)
FI GU R E 1 Schematic drawing of Apodera angatakere and codes of the measurements taken. (A) Length of the test; (B) width of test; (C) width of the pseudostome; (D) length of the neck; (E) maximal width of the neck; (F) width of the test at the constriction; (G) length of the test without the neck
native non-endemic flora for each abundance class. [n = total in each category; D? = probably extinct; RR = very rare; R = rare; PF = infrequent or disseminated; LOC = localised; C = common; CC = very common] in Floristic analyses of the Corsican flora: biogeographical origin and endemism
native non-endemic flora for each abundance class. [n = total in each category; D? = probably extinct; RR = very rare; R = rare; PF = infrequent or disseminated; LOC = localised; C = common; CC = very common]
Supplementary material 1 from: Bochud E, Haberthür D, Hlushchuk R, Neubert E (2021) A new Diancta species of the family Diplommatinidae (Cyclophoroidea) from Vanua Levu Island, Fiji. ZooKeys 1073: 1-12. https://doi.org/10.3897/zookeys.1073.73241
Movie 1
Figure 3A-D from: Bochud E, Haberthür D, Hlushchuk R, Neubert E (2021) A new Diancta species of the family Diplommatinidae (Cyclophoroidea) from Vanua Levu Island, Fiji. ZooKeys 1073: 1-12. https://doi.org/10.3897/zookeys.1073.73241
Figure 3A-D Diancta phoenix sp. nov., Micro-CT scans A Zone of constriction with palatalis = pt B Apertural teeth; palatal tooth (ptt) and basal tooth (bt) and palatalis C Additional view of the basal teeth and parietalis D Sectional planes through the shell to the corresponding letters A*–C*.
ScienceDex guides
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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.