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Figure 23 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 23 - T. rufum, lectotype (herb. Lloyd 25542, BPI): a basidiocarps b spore ornamentation under SEM. Scale bars: a = 10 mm; b = 1 µm.
Figure 20 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 20 - T. fimbriatum var. heterosporum, holotype (L 64172): a basidiocarps b spore ornamentation under SEM; spore size variation. Scale bars: a = 10 mm; b = 1 µm.
Figure 16 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 16 - Spore ornamentation under SEM of European species (cont.): a T. punctatum (M. Jeppson 7472, GB) b T. simulans (M. Jeppson 9302, GB) c T. squamosum (AH 15483) d T. striatum (AH 15543) e T. subsquamosum (M. Jeppson 3475, GB) f T. winterhoffii (M. Jeppson 2379, GB). Scale bars: 1 µm.
Figure 15 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 15 - T. hollosii, paratype (Moravec 132/51, UPS): a–b basidiocarp (single, both sides) c spore ornamentation under SEM. Scale bars: a–b = 10 mm; c = 1 µm.
Figure 24 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 24 - T. xerophilum, holotype (herb. Long 9688, BPI): a–b basidiocarps c spore ornamentation under SEM. Scale bars: a–b = 10 mm; c = 1 µm
Figure 19 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 19 - T. moravecii, isotype (PRM 667204): a basidiocarps b spore ornamentation under SEM. Scale bars: a = 10 mm; b = 1 µm.
Figure 13 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 13 - T. pannonicum, holotype (M. Jeppson 7764, GB): a, d–e basidiocarps b capillitium c, g–i spores f detail of spore sac showing the fibrillose-fimbriate mouth (M. Jeppson 7803, GB). Scale bars: a, d–e = 10 mm; b–c = 10 µm; f = 5 mm; g–i = 1 µm.
Figure 6 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 6 - Longidorus piceicola Juveniles and female from Bran locality: A–E Anterior ends of first- to fourth-stage juveniles and female F–J Tails of first to fourth juvenile stages and female K–M Genital primordium of first to fourth juvenile stages. O Vagina. Scale bar: 20 μm.
Figure 8 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 8 - Phylogenetic tree using D2-D3 28S rDNA and inferred from a Bayesian analysis with GTR+G model and midpoint rooting. Posterior probabilities ≥ than 0.8 are presented.
Figure 5 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 5 - Longidorus piceicola Juveniles and female from Bran locality: Variations in tail shape of first (A1–A3), second (B1–B3), third (C1–C4), fourth (D1–D3) juvenile stages and female (E).
Figure 7 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 7 - Scatter plot of odontostyle (■) and replacement odontostyle (□) against body length of Longidorus piceicola juveniles (J1 to J4) and females from A Cernica forest, Ilfov county and B Bran locality, Braşov county.
Figure 1 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 1 - Longidorus piceicola Female and juveniles: A Neck region – female B1–B4, C Head end with amphidial fovea B1–B3 females, B4 juvenile 4th stage (B2 right and B3 left) C, D, E1, E2, F Anterior ends of first- to fourth-stage juveniles G–K Pharyngeal bulb of female (G) and first- to fourth-stage juveniles (H–K).
Figure 4 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 4 - Longidorus piceicola Female from Bran locality: A Anterior genital branch B Uterus part with sperm C Ovary D Nerve ring E Posterior genital branch F Lateral field and epidermal glans G–I Variations in vagina (different magnifications). Scale bars: A, E 80 μm; B–D, F–H 40 μm; I 20 μm.
Figure 3 from: Groza M, Lazarova S, De Luca F, Fanelli E, Elshishka M, Radoslavov G, Hristov P, Coman M, Peneva V (2017) The morphological and molecular identity of Longidorus piceicola Lišková, Robbins & Brown, 1997 from Romania (Nematoda, Dorylaimida). ZooKeys 667: 1-19. https://doi.org/10.3897/zookeys.667.12011
Figure 3 - Longidorus piceicola Female from Bran locality: A Neck region, black arrows indicate nerve rings B, C Head end (different magnifications) D, E Amphideal fovea (right and left) F Odontophore G Prerectum H Pharyngeal bulb I, J Variations in tail shape. Scale bars: A, G 80 μm; B, F, H, I, J 40 μm; C–E 20 μm.
Figure 8 from: Cano E, Musarella CM, Cano-Ortiz A, Piñar Fuentes JC, Spampinato G, Pinto Gomes CJ (2017) Morphometric analysis and bioclimatic distribution of Glebionis coronaria s.l. (Asteraceae) in the Mediterranean area. PhytoKeys 81: 103-126. https://doi.org/10.3897/phytokeys.81.11995
Figure 8 - Thermoclimatic distribution of Glebionis coronaria (thermo-Mediterranean) and G. discolor (thermo and meso-Mediterranean) selected samples studied.
Figure 6 from: Cano E, Musarella CM, Cano-Ortiz A, Piñar Fuentes JC, Spampinato G, Pinto Gomes CJ (2017) Morphometric analysis and bioclimatic distribution of Glebionis coronaria s.l. (Asteraceae) in the Mediterranean area. PhytoKeys 81: 103-126. https://doi.org/10.3897/phytokeys.81.11995
Figure 6 - Statistical analysis by box plot of disc cypselas width of Glebionis coronaria and G. discolor.
Figure 4 from: Cano E, Musarella CM, Cano-Ortiz A, Piñar Fuentes JC, Spampinato G, Pinto Gomes CJ (2017) Morphometric analysis and bioclimatic distribution of Glebionis coronaria s.l. (Asteraceae) in the Mediterranean area. PhytoKeys 81: 103-126. https://doi.org/10.3897/phytokeys.81.11995
Figure 4 - Statistical analysis by box plot of cypselas wing width of Glebionis coronaria and G. discolor.
Figure 3 from: Cano E, Musarella CM, Cano-Ortiz A, Piñar Fuentes JC, Spampinato G, Pinto Gomes CJ (2017) Morphometric analysis and bioclimatic distribution of Glebionis coronaria s.l. (Asteraceae) in the Mediterranean area. PhytoKeys 81: 103-126. https://doi.org/10.3897/phytokeys.81.11995
Figure 3 - Box plot of alignment of glands distributed along the cypselas of Glebionis coronaria and G. discolor (Lc = Linearity coefficient).
Figure 7 from: Cano E, Musarella CM, Cano-Ortiz A, Piñar Fuentes JC, Spampinato G, Pinto Gomes CJ (2017) Morphometric analysis and bioclimatic distribution of Glebionis coronaria s.l. (Asteraceae) in the Mediterranean area. PhytoKeys 81: 103-126. https://doi.org/10.3897/phytokeys.81.11995
Figure 7 - Statistical analysis by box plot of disc cypselas length of Glebionis coronaria and G. discolor.
Figure 5 from: Cano E, Musarella CM, Cano-Ortiz A, Piñar Fuentes JC, Spampinato G, Pinto Gomes CJ (2017) Morphometric analysis and bioclimatic distribution of Glebionis coronaria s.l. (Asteraceae) in the Mediterranean area. PhytoKeys 81: 103-126. https://doi.org/10.3897/phytokeys.81.11995
Figure 5 - Statistical analysis by box plot of ratio cypsela-wing width of Glebionis coronaria and G. discolor.
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Allen Brain Atlas
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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.