taxonID	type	format	identifier	references	title	description	created	creator	contributor	publisher	audience	source	license	rightsHolder	datasetID
669D9355CC795394BBFC366804C49C57.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542061	https://doi.org/10.3897/imafungus.17.177075.figure8	Figure 8. Morphology of two new yeast species. Blastobotrys sasensis. A. Budding cells, 24 h., 28 ° C. B. Spindle-shaped cells YM, 5 d 28 ° C. C. Mycelia with blastoconidia, MEA 7 d, 28 ° C. D. Multiple budding of mother cell, MEA 8 d, 28 ° C. E. Colony morphology on YMA cultivated for 21 d, 22 ° C (diameter is 22 mm). F. colony morphology on MEA cultivated for 21 days (diameter is 24 mm). Sugiyamaella casensis. G. budding cells, 7 d., ME medium, 28 ° C. H. short chains of mycelia with blastoconidia, YM medium, 7 d 28 ° C. I. mycelium with blastoconidia, MEA 8 d, 28 ° C. J. yeast cells with different shapes and sizes of lipid particles, MEA 21 d, 28 ° C. K. colony morphology on MEA cultivated for 21 d, 22 ° C (diameter is 30 mm). The surface of the MEA is dotted with blastoconidia that are ejected upon maturity. L. colony morphology on YMA cultivated for 21 days (diameter is 27 mm). Scale bars: 10 µm.	Figure 8. Morphology of two new yeast species. Blastobotrys sasensis. A. Budding cells, 24 h., 28 ° C. B. Spindle-shaped cells YM, 5 d 28 ° C. C. Mycelia with blastoconidia, MEA 7 d, 28 ° C. D. Multiple budding of mother cell, MEA 8 d, 28 ° C. E. Colony morphology on YMA cultivated for 21 d, 22 ° C (diameter is 22 mm). F. colony morphology on MEA cultivated for 21 days (diameter is 24 mm). Sugiyamaella casensis. G. budding cells, 7 d., ME medium, 28 ° C. H. short chains of mycelia with blastoconidia, YM medium, 7 d 28 ° C. I. mycelium with blastoconidia, MEA 8 d, 28 ° C. J. yeast cells with different shapes and sizes of lipid particles, MEA 21 d, 28 ° C. K. colony morphology on MEA cultivated for 21 d, 22 ° C (diameter is 30 mm). The surface of the MEA is dotted with blastoconidia that are ejected upon maturity. L. colony morphology on YMA cultivated for 21 days (diameter is 27 mm). Scale bars: 10 µm.	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
669D9355CC795394BBFC366804C49C57.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542057	https://doi.org/10.3897/imafungus.17.177075.figure4	Figure 4. Phylogenetic position of Blastobotrys sasensis and Sugiyamaella casensis was resolved using 1399 BUSCO genes and 195 genomes representing Dipodascomycetes and related lineages. The tree was obtained using the Maximum-likelihood method in IQ-TREE 2. Node support is reported as GFC / SCF. Lipomyces kockii was included as the outgroup.	Figure 4. Phylogenetic position of Blastobotrys sasensis and Sugiyamaella casensis was resolved using 1399 BUSCO genes and 195 genomes representing Dipodascomycetes and related lineages. The tree was obtained using the Maximum-likelihood method in IQ-TREE 2. Node support is reported as GFC / SCF. Lipomyces kockii was included as the outgroup.	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
669D9355CC795394BBFC366804C49C57.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542058	https://doi.org/10.3897/imafungus.17.177075.figure5	Figure 5. Phylogenetic position of Blastobotrys sasensis was resolved using the ITS- LSU rDNA dataset. The tree was obtained using the Maximum likelihood method in IQ-TREE 2. The statistical support for nodes is given as Maximum likelihood bootstrap / Bayesian posterior probability; values ≥ 50 / 0.5 are shown. The branch marked with “ + ” was shortened twice. An asterisk denotes disagreement in the topology between two phylogenetic methods. The branches with full statistical support (100 / 1.00) are shown in bold. Wickerhamiella domercqiae was used as the outgroup.	Figure 5. Phylogenetic position of Blastobotrys sasensis was resolved using the ITS- LSU rDNA dataset. The tree was obtained using the Maximum likelihood method in IQ-TREE 2. The statistical support for nodes is given as Maximum likelihood bootstrap / Bayesian posterior probability; values ≥ 50 / 0.5 are shown. The branch marked with “ + ” was shortened twice. An asterisk denotes disagreement in the topology between two phylogenetic methods. The branches with full statistical support (100 / 1.00) are shown in bold. Wickerhamiella domercqiae was used as the outgroup.	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
7C291BBFAB6A5C34B3212612CB9A89BE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542061	https://doi.org/10.3897/imafungus.17.177075.figure8	Figure 8. Morphology of two new yeast species. Blastobotrys sasensis. A. Budding cells, 24 h., 28 ° C. B. Spindle-shaped cells YM, 5 d 28 ° C. C. Mycelia with blastoconidia, MEA 7 d, 28 ° C. D. Multiple budding of mother cell, MEA 8 d, 28 ° C. E. Colony morphology on YMA cultivated for 21 d, 22 ° C (diameter is 22 mm). F. colony morphology on MEA cultivated for 21 days (diameter is 24 mm). Sugiyamaella casensis. G. budding cells, 7 d., ME medium, 28 ° C. H. short chains of mycelia with blastoconidia, YM medium, 7 d 28 ° C. I. mycelium with blastoconidia, MEA 8 d, 28 ° C. J. yeast cells with different shapes and sizes of lipid particles, MEA 21 d, 28 ° C. K. colony morphology on MEA cultivated for 21 d, 22 ° C (diameter is 30 mm). The surface of the MEA is dotted with blastoconidia that are ejected upon maturity. L. colony morphology on YMA cultivated for 21 days (diameter is 27 mm). Scale bars: 10 µm.	Figure 8. Morphology of two new yeast species. Blastobotrys sasensis. A. Budding cells, 24 h., 28 ° C. B. Spindle-shaped cells YM, 5 d 28 ° C. C. Mycelia with blastoconidia, MEA 7 d, 28 ° C. D. Multiple budding of mother cell, MEA 8 d, 28 ° C. E. Colony morphology on YMA cultivated for 21 d, 22 ° C (diameter is 22 mm). F. colony morphology on MEA cultivated for 21 days (diameter is 24 mm). Sugiyamaella casensis. G. budding cells, 7 d., ME medium, 28 ° C. H. short chains of mycelia with blastoconidia, YM medium, 7 d 28 ° C. I. mycelium with blastoconidia, MEA 8 d, 28 ° C. J. yeast cells with different shapes and sizes of lipid particles, MEA 21 d, 28 ° C. K. colony morphology on MEA cultivated for 21 d, 22 ° C (diameter is 30 mm). The surface of the MEA is dotted with blastoconidia that are ejected upon maturity. L. colony morphology on YMA cultivated for 21 days (diameter is 27 mm). Scale bars: 10 µm.	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
7C291BBFAB6A5C34B3212612CB9A89BE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542059	https://doi.org/10.3897/imafungus.17.177075.figure6	Figure 6. Phylogenetic position of Sugiyamaella casensis was resolved using the ITS- LSU rDNA dataset. The tree was obtained using the Maximum-likelihood method in IQ-TREE 2, and node support is provided as maximum-likelihood bootstrap / Bayesian posterior probability. The values ≥ 50 / 0.5 are shown. The branch marked with “ + ” was shortened twice. An asterisk denotes disagreement in the topology between two phylogenetic methods. The branches with full statistical support (100 / 1.00) are shown in bold. Tortispora spp. were used as the outgroup.	Figure 6. Phylogenetic position of Sugiyamaella casensis was resolved using the ITS- LSU rDNA dataset. The tree was obtained using the Maximum-likelihood method in IQ-TREE 2, and node support is provided as maximum-likelihood bootstrap / Bayesian posterior probability. The values ≥ 50 / 0.5 are shown. The branch marked with “ + ” was shortened twice. An asterisk denotes disagreement in the topology between two phylogenetic methods. The branches with full statistical support (100 / 1.00) are shown in bold. Tortispora spp. were used as the outgroup.	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
7C291BBFAB6A5C34B3212612CB9A89BE.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542057	https://doi.org/10.3897/imafungus.17.177075.figure4	Figure 4. Phylogenetic position of Blastobotrys sasensis and Sugiyamaella casensis was resolved using 1399 BUSCO genes and 195 genomes representing Dipodascomycetes and related lineages. The tree was obtained using the Maximum-likelihood method in IQ-TREE 2. Node support is reported as GFC / SCF. Lipomyces kockii was included as the outgroup.	Figure 4. Phylogenetic position of Blastobotrys sasensis and Sugiyamaella casensis was resolved using 1399 BUSCO genes and 195 genomes representing Dipodascomycetes and related lineages. The tree was obtained using the Maximum-likelihood method in IQ-TREE 2. Node support is reported as GFC / SCF. Lipomyces kockii was included as the outgroup.	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
B85B9A0AAACF51B68AC807748CED13D0.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1542060	https://doi.org/10.3897/imafungus.17.177075.figure7	Figure 7. Morphology of Wilhelmdebeerea oxyuri. A. MEA, 14 d, 25 ° C. B. MEA, 14 d. 5 ° C. C. MEA with 500 mg / L cycloheximide, 25 ° C. 14 d. D. Leptographium - like anamorph. E. Hyalorhinocladiella - like anamorph, taken from the MEA agar plate. F – H. Hyalorhinocladiella - like anamorph taken from slide culture. K. Conidia of hyalorhinocladiella-like anamorph, taken from the MEA agar plate. L. Hyalorhinocladiella - like anamorph taken from slide culture. M. Conidia of leptographium-like anamorph. Scale bars: 20 µm (D); 10 µm (E – M).	Figure 7. Morphology of Wilhelmdebeerea oxyuri. A. MEA, 14 d, 25 ° C. B. MEA, 14 d. 5 ° C. C. MEA with 500 mg / L cycloheximide, 25 ° C. 14 d. D. Leptographium - like anamorph. E. Hyalorhinocladiella - like anamorph, taken from the MEA agar plate. F – H. Hyalorhinocladiella - like anamorph taken from slide culture. K. Conidia of hyalorhinocladiella-like anamorph, taken from the MEA agar plate. L. Hyalorhinocladiella - like anamorph taken from slide culture. M. Conidia of leptographium-like anamorph. Scale bars: 20 µm (D); 10 µm (E – M).	2026-02-16	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří		Zenodo	biologists	Kolařík, Miroslav;Vadkertiová, Renata;Knížek, Miloš;Sklenář, František;Vakula, Jozef;Zúbrik, Milan;Kolář, Michal;Hulcr, Jiří			
