taxonID	type	format	identifier	references	title	description	created	creator	contributor	publisher	audience	source	license	rightsHolder	datasetID
9E30D2DD02BB5D04AFC8071F541BA483.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1562972	https://doi.org/10.3897/imafungus.17.180524.figure5	Figure 5. Morphology of Exobasidium phylloplanum. Colonies on MEA after three weeks at 25 ° C, A CCF 6536. B CCF 6537. C CCF 7021. D – G Micromorphology of CCF 7021 showing fusiform blastoconidia formed acropetally in branched or unbranched chains on sterigmata-like structures, bars = 10 µm (D, E, F, G).	Figure 5. Morphology of Exobasidium phylloplanum. Colonies on MEA after three weeks at 25 ° C, A CCF 6536. B CCF 6537. C CCF 7021. D – G Micromorphology of CCF 7021 showing fusiform blastoconidia formed acropetally in branched or unbranched chains on sterigmata-like structures, bars = 10 µm (D, E, F, G).	2026-03-16	Veselská, Tereza;Ježková, Tereza;Ngubane, Nombuso P.;Wennrich, Adéla;Kostovčík, Martin;Hařovská, Denisa;Šigut, Martin;Pyszko, Petr;Bracewell, Ryan;Drozd, Pavel;Begerow, Dominik;Kolařík, Miroslav		Zenodo	biologists	Veselská, Tereza;Ježková, Tereza;Ngubane, Nombuso P.;Wennrich, Adéla;Kostovčík, Martin;Hařovská, Denisa;Šigut, Martin;Pyszko, Petr;Bracewell, Ryan;Drozd, Pavel;Begerow, Dominik;Kolařík, Miroslav			
9E30D2DD02BB5D04AFC8071F541BA483.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1562971	https://doi.org/10.3897/imafungus.17.180524.figure4	Figure 4. A phylogeny of the genus Exobasidium based on ITS and LSU rDNA sequences. A Maximum likelihood phylogenetic tree is presented. The numbers next to the internal nodes are maximum-likelihood bootstrap and Bayesian MCMC posterior probabilities; values ≥ 50 / 0.5 are shown. The GenBank accession numbers for ITS and LSU rDNA sequences are shown after the taxon name. The branch leading to the outgroups, Tilletiopsis and Laurobasidium, was shortened to 1 / 3 of their original length for presentation purposes.	Figure 4. A phylogeny of the genus Exobasidium based on ITS and LSU rDNA sequences. A Maximum likelihood phylogenetic tree is presented. The numbers next to the internal nodes are maximum-likelihood bootstrap and Bayesian MCMC posterior probabilities; values ≥ 50 / 0.5 are shown. The GenBank accession numbers for ITS and LSU rDNA sequences are shown after the taxon name. The branch leading to the outgroups, Tilletiopsis and Laurobasidium, was shortened to 1 / 3 of their original length for presentation purposes.	2026-03-16	Veselská, Tereza;Ježková, Tereza;Ngubane, Nombuso P.;Wennrich, Adéla;Kostovčík, Martin;Hařovská, Denisa;Šigut, Martin;Pyszko, Petr;Bracewell, Ryan;Drozd, Pavel;Begerow, Dominik;Kolařík, Miroslav		Zenodo	biologists	Veselská, Tereza;Ježková, Tereza;Ngubane, Nombuso P.;Wennrich, Adéla;Kostovčík, Martin;Hařovská, Denisa;Šigut, Martin;Pyszko, Petr;Bracewell, Ryan;Drozd, Pavel;Begerow, Dominik;Kolařík, Miroslav			
9E30D2DD02BB5D04AFC8071F541BA483.taxon	http://purl.org/dc/dcmitype/StillImage	image/png	https://binary.pensoft.net/fig/1562970	https://doi.org/10.3897/imafungus.17.180524.figure3	Figure 3. Distribution of Exobasidium lineages (i. e., species or phylotypes) in envDNA samples included in the GlobalFungi database. A Absolute abundance. Grey bars indicate the number of samples containing each lineage (left axis); the red line shows the corresponding number of sequencing reads (right axis). Numbers above the bars denote the number of independent studies reporting each lineage. Exobasidium phylloplanum (i. e., Phyl 9) is the most common taxon, followed by E. arescens, E. camelliae, and E. vaccinii. B Distribution of Exobasidium lineages across biomes based on relative sample counts. C Distribution of Exobasidium lineages across substrates based on relative sample counts. Exobasidium is primarily associated with soils, shoots, and roots sampled in the forest biome. D Geographical distribution and substrate affinity of E. phylloplanum versus all taxa present in the GlobalFungi database. The geographical distribution of individual Exobasidium phylloplanum samples is shown on the map, along with relative abundance (i. e., the proportion of reads) in each sample.	Figure 3. Distribution of Exobasidium lineages (i. e., species or phylotypes) in envDNA samples included in the GlobalFungi database. A Absolute abundance. Grey bars indicate the number of samples containing each lineage (left axis); the red line shows the corresponding number of sequencing reads (right axis). Numbers above the bars denote the number of independent studies reporting each lineage. Exobasidium phylloplanum (i. e., Phyl 9) is the most common taxon, followed by E. arescens, E. camelliae, and E. vaccinii. B Distribution of Exobasidium lineages across biomes based on relative sample counts. C Distribution of Exobasidium lineages across substrates based on relative sample counts. Exobasidium is primarily associated with soils, shoots, and roots sampled in the forest biome. D Geographical distribution and substrate affinity of E. phylloplanum versus all taxa present in the GlobalFungi database. The geographical distribution of individual Exobasidium phylloplanum samples is shown on the map, along with relative abundance (i. e., the proportion of reads) in each sample.	2026-03-16	Veselská, Tereza;Ježková, Tereza;Ngubane, Nombuso P.;Wennrich, Adéla;Kostovčík, Martin;Hařovská, Denisa;Šigut, Martin;Pyszko, Petr;Bracewell, Ryan;Drozd, Pavel;Begerow, Dominik;Kolařík, Miroslav		Zenodo	biologists	Veselská, Tereza;Ježková, Tereza;Ngubane, Nombuso P.;Wennrich, Adéla;Kostovčík, Martin;Hařovská, Denisa;Šigut, Martin;Pyszko, Petr;Bracewell, Ryan;Drozd, Pavel;Begerow, Dominik;Kolařík, Miroslav			
