[1]

Dai YC. 2011. A revised checklist of corticioid and hydnoid fungi in China for 2010. Mycoscience 52:69−79

doi: 10.1007/S10267-010-0068-1
[2]

Hjortstam K, Larsson KH, Ryvarden L, Eriksson J. 1988. The Corticiaceae of North Europe. Vol. 8. Oslo: Fungiflora. pp. 1450–1631

[3]

Ginns J, Lefebvre MNL. 1993. Lignicolous corticoid fungi (Basidiomycota) of North America: systematics, distribution, and ecology. Mycologia Memoirs 19:1−247

doi: 10.2307/2807250
[4]

Ginns J. 1998. Genera of the North American Corticiaceae sensu lato. Mycologia 90:1−35

doi: 10.1080/00275514.1998.12026875
[5]

Larsson KH. 2007. Re-thinking the classification of corticioid fungi. Mycological research 111:1040−1063

doi: 10.1016/j.mycres.2007.08.001
[6]

Hjortstam K, Ryvarden L. 2007. Checklist of corticioid fungi (Basidiomycotina) from the tropics, subtropics and the southern hemisphere. Synopsis fungorum 22:27−146

[7]

Kirk P, Cannon P, Minter D, Stalpers J. 2008. Ainsworth & Bisby's Dictionary of the Fungi. 10th Edition. Wallingford, UK: CABI. 771 pp.

[8]

Stalpers JA. 1993. The Aphyllophoraceous fungi. I: Keys to the species of the Thelephorales. Studies in Mycology No. 35. Baarn and Delft, The Netherlands: Centraalbureau voor Schimmelcultures. 168 pp.

[9]

Hibbett D, Bauer R, Binder M, Giachini AJ, Hosaka K, et al. 2014. Agaricomycetes. In Systematics and Evolution. The mycota VII part A, eds. McLaughlin DJ, Spatafora JW. Berlin: Springer-Verlag. pp. 373–412 doi: 10.1007/978-3-642-55318-9_14

[10]

Donk MA. 1961. Four new families of Hymenomycetes. Persoonia 1:405−407

[11]

Oberwinkler F. 1976. Eine agaricoide Gattung der Thelephorales. Sydowia 28:359−361

[12]

Jülich W. 1981. Higher taxa of basidiomycetes. Bibliotheca Mycologica 85:1−485

[13]

Song CG, Xu TM, Xu YH, Wang D, Zeng L, et al. 2025. Systematic revision, molecular phylogeny and divergence times of Thelephorales (Basidiomycota). Mycosphere 16:296−422

doi: 10.5943/mycosphere/16/1/5
[14]

Chevallier FF. 1826. Flore Générale des Environs de Paris. 1. Paris: Ferra Jeune. pp. XXIV, 1–648

[15]

Watling R, Milne J. 2008. The identity of European and North American Boletopsis spp. (Basidiomycota; Thelephorales, Boletopsidaceae). North American Fungi 3:5−15

doi: 10.2509/naf2008.003.0072
[16]

Baird R, Wallace LE, Baker G, Scruggs M. 2013. Stipitate hydnoid fungi of the temperate southeastern United States. Fungal Diversity 62:41−114

doi: 10.1007/s13225-013-0261-6
[17]

Hattori T. 2001. Type studies of the polypores described by E. J. H. Corner from Asia and West Pacific Areas III. Species described in Trichaptum, Albatrellus, Boletopsis, Diacanthodes, Elmerina, Fomitopsis and Gloeoporus. Mycosience 42:423−431

doi: 10.1007/bf02464338
[18]

Singer R, Araujo I, Ivory MH. 1983. The ectotrophically mycorrhizal fungi of the neotropical lowlands, especially Central Amazonia: Litter decomposition and ectomycorrhiza in Amazonian forests II. Beihefte zur Nova Hedwigia 77. Vaduz: J. Cramer Verlag. 352 pp.

[19]

Frey W, Hurka K, Oberwinkler F. (Eds.) 1977. Beiträge zur Biologie der niederen Pflanzen: Systematik, Stammesgeschichte, Ökologie. Stuttgart, New York: Gustav Fischer Verlag. 233 pp.

[20]

Hibbett DS, Donoghue MJ. 1995. Progress toward a phylogenetic classification of the Polyporaceae through parsimony analysis of mitochondrial ribosomal DNA sequences. Canadian Journal of Botany 73:853−861

doi: 10.1139/b95-331
[21]

Hibbett DS, Thorn RG. 2001. Basidiomycota: Homobasidiomycetes. In The Mycota VII Part B, Systematics and Evolution, eds. McLaughlin DJ, McLaughlin EG, Lemke PA. Berlin: Springer-Verlag. pp. 121–168 doi: 10.1007/978-3-662-10189-6_5

[22]

Moncalvo JM, Vilgalys R, Redhead SA, Johnson JE, James TY, et al. 2002. – One hundred and seventeen clades of euagarics. Molecular Phylogenetics and Evolution 23:357−400.

doi: 10.1016/S1055-7903(02)00027-1
[23]

Redhead SA, Moncalvo JM, Vilgalys R, Lutzoni F. 2002. Phylogeny of agarics: partial systematics solutions for Bryophilous omphalinoid agarics outside of the Agaricales (Euagarics). Mycotaxon 82:151−168

doi: 10.5962/p.440326
[24]

Larsson KH, Larsson E, Kõljalg U. 2004. High phylogenetic diversity among corticioid homobasidiomycetes. Mycological Research 108:983−1002

doi: 10.1017/S0953756204000851
[25]

Binder M, Hibbett DS, Larsson KH, Larsson E, Langer E, et al. 2005. The phylogenetic distribution of resupinate forms across the major clades of mushroom-forming fungi (Homobasidiomycetes). Systematics and Biodiversity 3:113−157

doi: 10.1017/S1477200005001623
[26]

Ariyawansa HA, Hyde KD, Jayasiri SC, Buyck B, Thilini Chethana KW, et al. 2015. Fungal diversity notes 111–252 — taxonomic and phylogenetic contributions to fungal taxa. Fungal Diversity 75:27−274

doi: 10.1007/s13225-015-0346-5
[27]

Zhou LW, Wang XW, Vlasák J, Ren GJ. 2018. Resolution of phylogenetic position of Nigrofomitaceae within Hymenochaetales (Basidiomycota) and Nigrofomes sinomelanoporus sp. nov. (Nigrofomitaceae) from China. MycoKeys 29:1−13

doi: 10.3897/mycokeys.29.21250
[28]

He MQ, Zhao RL, Hyde KD, Begerow D, Kemler M, et al. 2019. Notes, outline and divergence times of Basidiomycota. Fungal Diversity 99:105−367

doi: 10.1007/s13225-019-00435-4
[29]

Wang XW, May TW, Liu SL, Zhou LW. 2021. Towards a natural classification of Hyphodontia sensu lato and the trait evolution of basidiocarps within Hymenochaetales (Basidiomycota). Journal of Fungi 7:478

doi: 10.3390/jof7060478
[30]

Wijayawardene NN, Hyde KD, Dai DQ, Sánchez-García M, Goto BT, et al. 2022. Outline of fungi and fungus-like taxa – 2021. Mycosphere 13:53−453

doi: 10.5943/mycosphere/13/1/2
[31]

Wu F, Zhou LW, Vlasák J, Dai YC. 2022. Global diversity and systematics of Hymenochaetaceae with poroid hymenophore. Fungal Diversity 113:1−192

doi: 10.1007/s13225-021-00496-4
[32]

Wang XW, Liu SL, Zhou LW. 2023. An updated taxonomic framework of Hymenochaetales (Agaricomycetes, Basidiomycota). Mycosphere 14:452−496

doi: 10.5943/mycosphere/14/1/6
[33]

Wang XW, Zhou LW. 2023. Umbellaceae fam. nov. (Hymenochaetales, Basidiomycota) for Umbellus sinensis gen. et sp. nov. and three new combinations. Journal of Fungi 10:22

doi: 10.3390/jof10010022
[34]

Cho Y, Kim D, Lim YW. 2024. Phylogenetic assessment of understudied families in Hymenochaetales (Basidiomycota, Fungi)—Reporting uncovered species and reflecting the recent taxonomic updates in the Republic of Korea. Journal of Microbiology 62:429−447

doi: 10.1007/s12275-024-00120-5
[35]

Mu YH, Hu YP, Wei YL, Yuan HS. 2020. Hydnaceous fungi of China 8. Morphological and molecular identification of three new species of Sarcodon and a new record from southwest China. MycoKeys 66:83−103

[36]

Mu YH, Yu JR, Cao T, Wang XH, Yuan HS. 2021. Multi-gene phylogeny and taxonomy of Hydnellum (Bankeraceae, Basidiomycota) from China. Journal of Fungi 7:818

doi: 10.3390/jof7100818
[37]

Lu X, Cao T, Nguyễn TTT, Yuan HS. 2022. Six new species of Tomentella (Thelephorales, Basidiomycota) from tropical pine forests in central Vietnam. Frontiers in Microbiology 13:864198

doi: 10.3389/fmicb.2022.864198
[38]

Yang SR, Wei YL, Yuan HS. 2023. Molecular phylogeny and morphology reveal four new species of Thelephora (Thelephorales, Basidiomycota) from subtropical China, closely related to T. ganbajun. Frontiers in Microbiology 14:1109924

doi: 10.3389/fmicb.2023.1109924
[39]

Agerer R. 1991. Ectomycorrhizae of Sarcodon imbricatus on Norway spruce and their chlamydospores. Mycorrhiza 1:21−30

doi: 10.1007/BF00205898
[40]

Agerer R. 1992. Studies on ectomycorrhizae. 44. The ectomycorrhizae of Boletopisis leucomelaena (Thelephoraceae, Basidiomycetes) and their relationship to those of an unidentified ectomycorrhiza. Nova Hedwigia 55:501−518

[41]

Raidl S, Agerer R. 1992. Studien an Ektomykorrhizen XLII. Ontogenie der Rhizomorphen von Laccaria amethystina, Hydnum rufescens und Sarcodon imbricatus [Studies on ectomycorrhizae. 42. The ontogeny of the rhizomorphs of Laccaria amethystina, Hydnum rufescens and Sarcodon imbricatus]. Nova Hedwigia 55:279−307

[42]

Visser S. 1995. Ectomycorrhizal fungal succession in jack pine stands following wildfire. New Phytologist 129:389−401

doi: 10.1111/j.1469-8137.1995.tb04309.x
[43]

Kõljalg U. 1996. Tomentella (Basidiomycota) and related genera in temperate Eurasia. Synopsis Fungorum 9:1−213

[44]

Smith SE, Read DJ. 1997. Mycorrhizal Symbiosis. 2nd ed. London and San Diego: Academic Press. 605 pp.

[45]

Horton TR, Bruns TD. 2001. The molecular revolution in ectomycorrhizal ecology: peeking into the black-box. Molecular Ecology 10:1855−1871

doi: 10.1046/j.0962-1083.2001.01333.x
[46]

Harrington TJ, Mitchell DT. 2002. Characterization of Dryas octopetala ectomycorrhizas from limestone karst vegetation, western Ireland. Canadian Journal of Botany 80:970−982

doi: 10.1139/b02-082
[47]

Read DJ, Perez-Moreno J. 2003. Mycorrhizas and nutrient cycling in ecosystems – a journey towards relevance? New Phytologist 157:475−492

[48]

Mleczko P, Zubek S, Kozak M. 2011. Description of ectomycorrhiza and a new central European locality of the rare hydnoid species Sarcodon leucopus (Pers.) Maas Geest. et Nannf. (Thelephorales, Basidiomycota). Nova Hedwigia 92:257−272

doi: 10.1127/0029-5035/2011/0092-0257
[49]

Gorjón SP, Greslebin AG. 2012. Type studies of the species of Odontia described by GH Cunningham. New Zealand Journal of Botany 50:289−301

doi: 10.1080/0028825X.2012.681385
[50]

Boroujeni DS, Hemmatinezhad B. 2015. Review of application and importance of ectomycorrhiza fungi and their role in the stability of ecosystems. Biosciences Biotechnology Research Asia 12:153−158

doi: 10.13005/bbra/1646
[51]

Kuhar F, Barroetaveña C, Rajchenberg M. 2016. New species of Tomentella (Thelephorales) from the Patagonian Andes forests. Mycologia 108:780−790

doi: 10.3852/15-244
[52]

Bucher VVC, Hyde KD, Pointing SB, Reddy CA. 2004. Production of wood decay enzymes, mass loss and lignin solubilization in wood by marine ascomycetes and their anamorphs. Fungal Diversity 15:1−14

doi: 10.1017/s0953756203007329
[53]

James TY, Stajich JE, Hittinger CT, Rokas A. 2020. Toward a fully resolved fungal tree of life. Annual Review of Microbiology 74:291−313

doi: 10.1146/annurev-micro-022020-051835
[54]

Liu S, Chen YY, Sun YF, He XL, Song CG, et al. 2023. Systematic classification and phylogenetic relationships of the brown-rot fungi within the Polyporales. Fungal Diversity 118:1−94

doi: 10.1007/s13225-022-00511-2
[55]

Otto P. 1990. Die terrestrischen Stachelpilze der DDR — Taxonomie, Ökologie, Verbreitung und Rückgang. Thesis. Martin-Luther-Universität Halle-Wittenberg, Germany.

[56]

Arnolds E. 1991. Decline of ectomycorrhizal fungi in Europe. Agriculture, Ecosystems & Environment 35:209−244

doi: 10.1016/0167-8809(91)90052-Y
[57]

Arnolds E. 2003. De Stekelzwammen en Pruikzwammen van Nederland en België. Coolia 46:1−96

[58]

Arnolds E. 2010. The fate of hydnoid fungi in the Netherlands and Northwestern Europe. Fungal Ecology 3:81−88

doi: 10.1016/j.funeco.2009.05.005
[59]

Hrouda P. 1999. Hydnaceous fungi of the Czech Republic and Slovakia. Czech Mycology 51:99−155

doi: 10.33585/cmy.51202
[60]

European Council for the Conservation of Fungi (ECCF). 2011. Red Lists. www.eccf.eu/redlists-en.ehtml

[61]

Benkert D, Dörfelt H, Hardtke HJ, Hirsch G, Kreisel H, et al. 1992. Rote Liste der gefährdeten Großpilze in Deutschland. Eching: Deutsche Gesellschaft für Mykologie e. V. & Naturschutzbund Deutschland e. V. (NABU). 144 pp.

[62]

Wojewoda W, Lawrynowicz M. 2006. Red list of the macrofungi in Poland [Czerwona lista grzybów wielkoowocnikowych w Polsce]. In Czerwona lista roślin i grzybów Polski. Kraków: W. Szafer Institute of Botany, Polish Academy of Sciences. pp. 53–70

[63]

Smith JH, Suz LM, Ainsworth MA. 2016. Red List of Fungi for Great Britain: Bankeraceae, Cantharellaceae, Geastraceae, Hericiaceae and selected genera of Agaricaceae (Battarrea, Bovista, Lycoperdon & Tulostoma) and Fomitopsidaceae. Independent Report. Kew, UK: Royal Botanic Gardens, Kew.

[64]

Wang D, Feng H, Zhou J, Liu TH, Zhang ZY, et al. 2024. New insights into the stipitate hydnoid fungi Sarcodon, Hydnellum, and the formerly informally defined Neosarcodon, with emphasis on the edible species marketed in Southwest China. IMA Fungus 15:8

doi: 10.1186/s43008-023-00138-1
[65]

Ling ZL, Ma XB, Zhao RL, Cao B, Huang CY, et al. 2025. Overview of the Chinese edible fungi industry of and developing trends analysis. Mycosphere 16:2712−2775

doi: 10.5943/mycosphere/16/1/17
[66]

Han XQ, Wu XM, Chai XY, Chen D, Dai H, et al. 2011. Isolation, characterization and immunological activity of a polysaccharide from the fruit bodies of an edible mushroom, Sarcodon aspratus (Berk.) S. Ito. Food Research International 44:489−493

doi: 10.1016/j.foodres.2010.06.009
[67]

Marcotullio MC. 2011. Sarcodon mushrooms: biologically active metabolites. In Phytochemicals–bioactivities and impact on health. Rijeka, Croatia: InTech Europe. pp. 77–94 doi: 10.5772/27477

[68]

Chen Y, Hu M, Wang C, Yang Y, Chen J, et al. 2013. Characterization and in vitro antitumor activity of polysaccharides from the mycelium of Sarcodon aspratus. International Journal of Biological Macromolecules 52:52−58

doi: 10.1016/j.ijbiomac.2012.09.005
[69]

Ma K, Han J, Bao L, Wei T, Liu HW. 2014. Two sarcoviolins with antioxidative and α-glucosidase inhibitory activity from the edible mushroom Sarcodon leucopus collected in Tibet. Journal of Natural Products 77:942−947

doi: 10.1021/np401026b
[70]

Wang SL, Wang KY, Chen DF, Zhao L. 2014. Influence of Sarcodon imbricatus polysaccharide on immune function in immunosuppressive mouse. Journal of Chemical and Pharmaceutical Research 6:1723−1726

[71]

Wang SM, Han JJ, Ma K, Jin T, Bao L, et al. 2014. New α-glucosidase inhibitors with p-terphenyl skeleton from the mushroom Hydnellum concrescens. Fitoterapia 98:149−155

doi: 10.1016/j.fitote.2014.07.019
[72]

Chung MY, Hwang JT, Kim JH, Shon DH, Kim HK. 2016. Sarcodon aspratus extract ameliorates dextran sulfate sodium-induced colitis in mouse colon and mesenteric lymph nodes. Journal of Food Science 81:H1301−H1308

doi: 10.1111/1750-3841.13297
[73]

Xu PJ, Meng FX, Tang M, Ma HY, Li YH, et al. 2017. Preparation of polysaccharides from Sarcodon imbricatus and their in vitro antioxidant activity. China Brewing 36:150−155 (in Chinese)

[74]

Wang X, Chu Q, Jiang X, Yu Y, Wang L, et al. 2018. Sarcodon imbricatus polysaccharides improve mouse hematopoietic function after cyclophosphamide-induced damage via G-CSF mediated JAK2/STAT3 pathway. Cell Death and Disease 9:578

doi: 10.1038/s41419-018-0634-6
[75]

Wang DD, Pan WJ, Mehmood S, Cheng XD, Chen Y. 2018. Polysaccharide isolated from Sarcodon aspratus induces RAW264.7 activity via TLR4-mediated NF-κB and MAPK signaling pathways. International Journal of Biological Macromolecules 120:1039−1047

doi: 10.1016/j.ijbiomac.2018.08.147
[76]

Xu DP, Zheng J, Zhou Y, Li Y, Li S, et al. 2016. Extraction of natural antioxidants from the Thelephora ganbajun mushroom by an ultrasound-assisted extraction technique and evaluation of antiproliferative activity of the extract against human cancer cells. International Journal of Molecular Sciences 17:2−15

doi: 10.3390/ijms17101664
[77]

Zheng L, Ma Y, Zhang Y, Meng Q, Yang J, et al. 2020. Distribution of Zinc in mycelial cells and antioxidant and anti-inflammatory activities of mycelia Zinc polysaccharides from Thelephora ganbajun TG-01. Oxidative Medicine and Cellular Longevity 2020:2308017

doi: 10.1155/2020/2308017
[78]

Liu F, Wang Y, Zhang K, Wang Y, Zhou R, et al. 2017. A novel polysaccharide with antioxidant, HIV protease inhibiting and HIV integrase inhibiting activities from Fomitiporia punctata (P.karst. ) murrill (Basidiomycota, Hymenochaetales). International Journal of Biological Macromolecules 97:339−347

doi: 10.1016/j.ijbiomac.2017.01.030
[79]

Chen W, Tan H, Liu Q, Zheng X, Zhang H, et al. 2019. A review: The bioactivities and pharmacological applications of Phellinus linteus. Molecules 24:1888

doi: 10.3390/molecules24101888
[80]

He P, Zhang Y, Li N. 2021. The phytochemistry and pharmacology of medicinal fungi of the genus Phellinus: a review. Food & Function 12:1856−1881

doi: 10.1039/D0FO02342F
[81]

Zhao Y, Zheng W. 2021. Deciphering the antitumoral potential of the bioactive metabolites from medicinal mushroom Inonotus obliquus. Journal of Ethnopharmacology 265:113321

doi: 10.1016/j.jep.2020.113321
[82]

Zhou LW, Ghobad-Nejhad M, Tian XM, Wang YF, Wu F. 2020. Current status of 'Sanghuang' as a group of medicinal mushrooms and their perspective in industry development. Food Reviews International 38:589−607

doi: 10.1080/87559129.2020.1740245
[83]

Tang SJ, Shao CX, Yang Y, Ren R, Jin L, et al. 2023. The antitumor effect of mycelia extract of the medicinal macrofungus Inonotus hispidus on HeLa cells via the mitochondrial-mediated pathway. Journal of Ethnopharmacology 311:116407

doi: 10.1016/j.jep.2023.116407
[84]

Abdala-Díaz RT, Casas-Arrojo V, Castro-Varela P, Riquelme C, Carrillo P, et al. 2024. Immunomodulatory, antioxidant, and potential anticancer activity of the polysaccharides of the fungus Fomitiporia chilensis. Molecules 29:3628

doi: 10.3390/molecules29153628
[85]

Sun HL, Liu DS, Cheng GD, Li JJ, Shi YF. 1997. Comment on the research of Qinghai-Tibet Plateau in China. Bulletin of Chinese Academy of Sciences 4:283−285 (in Chinese)

[86]

Piao SL, Liu Q, Chen AP, Janssens IA, Fu YS, et al. 2019. Plant phenology and global climate change: current progresses and challenges. Global Change Biology 25:1922−1940

doi: 10.1111/gcb.14619
[87]

Myers N, Mittermeier RA, Mittermeier CG, da Fonseca GAB, Kent J. 2000. Biodiversity hotspots for conservation priorities. Nature 403:853−858.

doi: 10.1038/35002501
[88]

Wang K, Zhang C, Chen H, Yue Y, Zhang W, et al. 2019. Karst landscapes of China: patterns, ecosystem processes and services. Landscape Ecology 34:2743−2763

doi: 10.1007/s10980-019-00912-w
[89]

He SH, Li HJ. 2011. Two new species of Hymenochaete (Hymenochaetales) from China. Mycotaxon 115:375−382

doi: 10.5248/115.375
[90]

Zhou LW, Kõljalg U. 2013. A new species of Lenzitopsis (Thelephorales, Basidiomycota) and its phylogenetic placement. Mycoscience 54:87−92

doi: 10.1016/j.myc.2012.06.002
[91]

Song CG, Ji X, Liu S, He XL, Cui BK. 2021. Taxonomy and molecular phylogeny of Phellodon (Thelephorales) with descriptions of four new species from Southwest China. Forests 12:932

doi: 10.3390/f12070932
[92]

Song CG, Chen YY, Liu S, Xu TM, He XL, et al. 2022. A phylogenetic and taxonomic study on Phellodon (Bankeraceae, Thelephorales) from China. Journal of Fungi 8:429

doi: 10.3390/jof8050429
[93]

Song CG, Sun YF, Liu S, Chen YY, Cui BK. 2022. Phylogenetic analyses and morphological studies reveal four new species of Phellodon (Bankeraceae, Thelephorales) from China. Journal of Fungi 9:30

doi: 10.3390/jof9010030
[94]

Song CG, Sun YF, Wu DM, Gao N, Liu S, et al. 2022. Morphology and molecular phylogeny reveal five new species of Hydnellum (Bankeraceae, Thelephorales) from China. Frontiers in Microbiology 13:1−22

doi: 10.3389/fmicb.2022.1049007
[95]

Zhou HM, Zhao Q, Wang Q, Wu F, Dai YC. 2022. Two new species of Boletopsis (Bankeraceae, Thelephorales) from Southwest China. MycoKeys 89:155−169

doi: 10.3897/mycokeys.89.83197
[96]

Lei L, Luangharn T, Yu FM, Li WJ, Zhao Q. 2023. A novel hydnoid species of Hydnellum (Bankeraceae, Thelephorales) from southwest China. Phytotaxa 600:291−300

doi: 10.11646/phytotaxa.600.5.4
[97]

Tian MZ, Xia HB, Gao ZL, Zhao CY, Ma D, et al. 2024. Four new species and one new record of Thelephora from China. Journal of Fungi 10:300

doi: 10.3390/jof10040300
[98]

Zhang X, Li Y, Wang Y, Xu Z, Zhao C, et al. 2024. Xylodon asiaticus (Hymenochaetales, Basidiomycota), a new species of corticioid fungus from southern China. Phytotaxa 634:1−15

doi: 10.11646/phytotaxa.634.1.1
[99]

Zhang X, Shi F, Zhang S, Hosen MI, Zhao C. 2024. The diversity and taxonomy of Thelephoraceae (Basidiomycota) with descriptions of four species from southwestern China. Journal of Fungi 10:775

doi: 10.3390/jof10110775
[100]

Zhou LJ, Li XL, Yuan HS. 2024. Three new wood-inhabiting fungi of Botryobasidium (Cantharellales, Basidiomycota) from subtropical forests of Southwestern China. MycoKeys 109:337−354

doi: 10.3897/mycokeys.109.133325
[101]

Zhu YQ, Li XL, Zhao DX, Wei YL, Yuan HS. 2024. Four new species of Tomentella (Thelephorales, Basidiomycota) from subtropical forests in Southwestern China. Journal of Fungi 10:440

doi: 10.3390/jof10070440
[102]

Yuan HS, Lu X, Dai YC, Hyde KD, Kan YH, et al. 2020. Fungal diversity notes 1277–1386: taxonomic and phylogenetic contributions to fungal taxa. Fungal Diversity 104:1−266

doi: 10.1007/s13225-020-00461-7
[103]

Kornerup A, Wanscher J. 1981. Methuen handbook of colour. Norwich: Fletcher & Son Ltd. pp. 1–252

[104]

White TJ, Bruns TD, Lee S, Taylor J. 1990. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In PCR protocols: a guide to methods and applications, eds. Innis MA, Gelfand DH, Sninsky J, White TJ. USA: Academic Press. pp. 315−322 doi: 10.1016/b978-0-12-372180-8.50042-1

[105]

Vilgalys R, Hester M. 1990. Rapid genetic identification and mapping of enzymatically amplified ribosomal DNA from several Cryptococcus species. Journal of bacteriology 172:4238−4246

doi: 10.1128/jb.172.8.4238-4246.1990
[106]

Kumar S, Stecher G, Tamura K. 2016. MEGA7: molecular evolutionary genetics analysis version 7.0 for bigger datasets. Molecular Biology and Evolution 33:1870−1874

doi: 10.1093/molbev/msw054
[107]

Katoh K, Rozewicki J, Yamada KD. 2019. MAFFT online service: multiple sequence alignment, interactive sequence choice and visualization. Briefings in Bioinformatics 20:1160−1166

doi: 10.1093/bib/bbx108
[108]

Hall TA. 1999. Bioedit: a user-friendly biological sequence alignment and analysis program for Windows 95/98/NT. Nucleic Acids Symposium Series 41:95−98

[109]

Ronquist F, Teslenko M, van der Mark P, Ayres DL, Darling A, et al. 2012. MrBayes 3.2: efficient bayesian phylogenetic inference and model choice across a large model space. Systematic Biology 61:539−542

doi: 10.1093/sysbio/sys029
[110]

Stamatakis A. 2014. RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies. Bioinformatics 30:1312−1313

doi: 10.1093/bioinformatics/btu033
[111]

Stamatakis A, Hoover P, Rougemont J. 2008. A rapid bootstrap algorithm for the RAxML web servers. Systematic Biology 57:758−771

doi: 10.1080/10635150802429642
[112]

Fries EM. 1815. Observationes mycologicae. Havniae: sumptibus G. Bonnieri. pp. 1–230 doi: 10.5962/bhl.title.112534

[113]

Banker HJ. 1902. A historical review of the proposed genera of the Hydnaceae. Bulletin of the Torrey Botanical Club 29:436−448

doi: 10.2307/2478543
[114]

Maas Geesteranus RA. 1975. Die terrestrischen Stachelpilze Europas (The terrestrial hydnums of Europe). Verhandelingen der Koninklijke Nederlandse Akademie van Wetenschappen, Afdeling Natuurkunde, Tweede Reeks 65:1−127

[115]

Niemelä T, Kinnunen J, Renvall P, Schigel DS. 2003. Phellodon secretus (Basidiomycota), a new hydnaceous fungus from northern pine woodlands. Karstenia 43:37−44

doi: 10.29203/ka.2003.391
[116]

Baird RE, Wallace LE, Baker G. 2013. Stipitate hydnums of the southern United States 1: Phellodon mississippiensis sp. nov. Mycotaxon 123:183−191

doi: 10.5248/123.183
[117]

Svantesson S, Larsson E, Larsson KH, Parfitt D, Suz LM, et al. 2025. The genus Phellodon (Thelephorales, Basidiomycota) in Europe: four new species, one new combination, four new typifications and a first European record. Fungal Systematics and Evolution 15:1−45

doi: 10.3114/fuse.2025.15.01
[118]

Mu YH, Wu F, Yuan HS. 2019. Hydnaceous fungi of China 7. Morphological and molecular characterization of Phellodon subconfluens sp. nov. from temperate, deciduous forests. Phytotaxa 414:280−288

doi: 10.11646/phytotaxa.414.6.2
[119]

Fries EM. 1821. Systema mycologicum: sistens fungorum ordines, genera et species, huc usque cognitas, quas ad normam methodi naturalis determinavit . Lundae: Ex Officina Berlingiana. doi: 10.5962/bhl.title.5378

[120]

Karsten PA. 1879. Symbolae ad mycologiam Fennicam. Meddelanden af Societas pro Fauna et Flora Fennica 5:15−46

[121]

Harrison KA. 1961. The stipitate Hydnums of Nova Scotia. Ottawa, Canada: Research Branch, Canada Department of Agriculture. pp. 1−60 doi: 10.5962/bhl.title.58911

[122]

Harrison KA. 1964. New or little known North American stipitate hydnums. Canadian Journal of Botany 42:1205−1233

doi: 10.1139/b64-116
[123]

Maas Geesteranus RA. 1962. Hyphal structures in Hydnums. Persoonia 2:377−405

[124]

Maas Geesteranus RA. 1971. Hydnaceous fungi of the Eastern Old World. Monograph in Verhandelingen der Koninklijke Nederlandse Akademie van Wetenschappen, Afdeling Natuurkunde, Tweede Reeks 60. Royal Netherlands Academy of Arts and Sciences, Netherlands. pp. 1−176

[125]

Matheny PB, Curtis JM, Hofstetter V, Aime MC, Moncalvo JM, et al. 2006. Major clades of Agaricales: a multilocus phylogenetic overview. Mycologia 98:982−995

doi: 10.1080/15572536.2006.11832627
[126]

Tedersoo L, May TW, Smith ME. 2010. Ectomycorrhizal lifestyle in fungi: global diversity, distribution, and evolution of phylogenetic lineages. Mycorrhiza 20:217−263

doi: 10.1007/s00572-009-0274-x
[127]

Larsson KH, Svantesson S, Miscevic D, Kõljalg U, Larsson E. 2019. Reassessment of the generic limits for Hydnellum and Sarcodon (Thelephorales, Basidiomycota). MycoKeys 54:31−47

doi: 10.3897/mycokeys.54.35386
[128]

Nitare J, Ainsworth AM, Larsson E, Parfitt D, Suz LM, et al. 2021. Four new species of Hydnellum (Thelephorales, Basidiomycota) with a note on Sarcodon illudens. Fungal Systematics and Evolution 7:233−254

doi: 10.3114/fuse.2021.07.12
[129]

Grupe AC, Vasco-Palacios AM, Smith ME, Boekhout T, Henkel TW. 2016. Sarcodon in the Neotropics II: four new species from Colombia and a key to the regional species. Mycologia 108:791−805

doi: 10.3852/15-254
[130]

Grupe AC, Baker AD, Uehling JK, Smith ME, Baroni TJ, et al. 2015. Sarcodon in the Neotropics I: new species from Guyana, Puerto Rico, and Belize. Mycologia 107:591−606

doi: 10.3852/14-185
[131]

Morgan AP. 1895. New North American fungi. Journal of the Cincinnati Society of Natural History 18:36−45

[132]

Karsten PA. 1881. Enumeratio Boletinearum et Polyporearum Fennicarum, systemate novo dispositarum. Revue Mycologique Toulouse 3:16−19

[133]

Karsten PA. 1881. Enumeratio Thelephorearum Fr.et Clavariearum Fr. Fennicarum, systemate novo dispositarum. Revue Mycologique Toulouse 3:21−23

[134]

Banker HJ. 1906. A contribution to a revision of the North American Hydnaceae. Memoirs of the Torrey Botanical Club 12:99−194

doi: 10.5962/bhl.title.97394
[135]

Douch JK, Vaughan LJ, Cooper JA, Holmes GD, Robinson R, et al. 2024. Taxonomic revision of fleshy species of Hydnellum, Neosarcodon, and Sarcodon (Thelephorales) from Australasia. Mycologia 116:965−992

doi: 10.1080/00275514.2024.2363211
[136]

Pérez-De-Gregorio MÀ, Macau N, Carbó J. 2011. Sarcodon quercinofibulatum, una nueva especie del género con hifas fibulíferas. Revista Catalana de Micologia 33:25−30

[137]

Maas Geesteranus RA, Nannfeldt JA. 1969. The genus Sarcodon in Sweden in the light of recent investigations. Svensk Botanisk Tidskrift 63:401−440

[138]

Tedersoo L, Bahram M, Ryberg M, Otsing E, Kõljalg U, et al. 2014. Global biogeography of the ectomycorrhizal/sebacina lineage (Fungi, Sebacinales) as revealed from comparative phylogenetic analyses. Molecular Ecology 23:4168−4183

[139]

Yuan Y, Wu F, Dai YC, Qin WM, Yuan HS. 2018. Odontia aculeata and O. sparsa, two new species of tomentelloid fungi (Thelephorales, Basidiomycota) from the secondary forests of Northeast China. Phytotaxa 372:183−192

doi: 10.11646/phytotaxa.372.3.1
[140]

Boonmee S, Wanasinghe DN, Calabon MS, Huanraluek N, Chandrasiri SKU, et al. 2021. Fungal diversity notes 1387–1511: taxonomic and phylogenetic contributions on genera and species of fungal taxa. Fungal Diversity 111:1−335

doi: 10.1007/s13225-021-00489-3
[141]

Rodway L. 1897. Tasmanian fungi. Papers & Proceedings of the Royal Society of Tasmania 1897:129−144

doi: 10.26749/ixqf8781
[142]

Larsen MJ. 1974. A contribution to the taxonomy of the genus Tomentella. Mycologia Memoirs 4:1−145

doi: 10.2307/4109015
[143]

Kõljalg U, Larsson E. 1998. Pseudotomentella ochracea sp. nov. , based on morphological and molecular data. Folia Cryptogamica Estonica 33:53−56

[144]

Willdenow CL. 1787. Florae Berolinensis Prodromus. Braunschweig: Vieweg. pp. 1–439

[145]

Corner EJH. 1968. A monograph of Thelephora (Basidiomycetes). Nova Hedwigia 27:1−110

[146]

Corner EJH. 1976. Further notes on cantharelloid fungi and Thelephora. Nova Hedwigia 27:325−342

doi: 10.1127/nova.hedwigia/27/1976/325
[147]

Vizzini A, Angelini C, Losi C, Ercole E. 2016. Thelephora dominicana (Basidiomycota, Thelephorales), a new species from the Dominican Republic, and preliminary notes on thelephoroid genera. Phytotaxa 265:27−38

doi: 10.11646/phytotaxa.265.1.2
[148]

Ramírez-López I, Villegas-Ríos M, Salas-Lizana R, Garibay-Orijel R, Alvarez-Manjarrez J. 2015. Thelephora versatilis and Thelephora pseudoversatilis: two new cryptic species with polymorphic basidiomes inhabiting tropical deciduous and sub-perennial forests of the Mexican Pacific coast. Mycologia 107:346−358

doi: 10.3852/14-151
[149]

Li T, Li T, Song B, Hosen MI. 2020. Thelephora austrosinensis (Thelephoraceae), a new species close to T. ganbajun from southern China. Phytotaxa 471:208−220

doi: 10.11646/phytotaxa.471.3.3
[150]

Zecchin G. 2008. Genere Thelephora in Friuli-Ottavo contributo. Rivista di Micologia 51:117−125

[151]

Kõljalg U, Saar I, Svantesson S. 2024. Merging the genus Tomentella with Thelephora (Fungi, Thelephorales). Folia Cryptogamica Estonica 61:67−86

doi: 10.12697/fce.2024.61.09
[152]

Corner EJH. 1986. The genus Clavulina (Basidiomycetes) in Southeastern Australia. Australian Journal of Botany 34:103−106

doi: 10.1071/bt9860103
[153]

Stalpers JA. 1984. A revision of the genus Sporotrichum. Studies in Mycology 24:1−105

doi: 10.1016/s0007-1536(85)80103-0
[154]

Lu X, Yuan HS. 2021. New species of Tomentella (Thelephorales, Basidiomycota) from temperate continental mountain climate of China (Xinjiang region). Forests 12:1531

doi: 10.3390/f12111531
[155]

Donk MA. 1933. Revision der niederländischen Homobasidiomycetae-Aphyllophoraceae. Mededelingen van het Botanisch Museum en Herbarium van de Rijksuniversiteit te Utrecht 9:1−278

[156]

Sha T, Xu JP, Palanichamy MG, Zhang HB, Li T, et al. 2008. Genetic diversity of the endemic gourmet mushroom Thelephora ganbajun from south-western China. Microbiology 15:3460−3468

doi: 10.1099/mic.0.2008/020495-0
[157]

Wang R, Herrera M, Xu WJ, Zhang P, Moreno JP, et al. 2022. Ethnomycological study on wild mushrooms in Pu'er prefecture, Southwest Yunnan, China. Journal of Ethnobiology and Ethnomedicine 18:55

doi: 10.1186/s13002-022-00551-7
[158]

Patouillard N. 1900. Essai taxonomique sur les familles et les genres des Hyménomycètes. France: Lons-le-Saunier. doi: 10.5962/bhl.title.40287

[159]

Burt EA. 1918. The Thelephoraceae of North America. X. Hymenochaete. Annals of the Missouri Botanical Garden 5:301−372

doi: 10.2307/2989968
[160]

Cunningham GH. 1957. Thelephoraceae of New Zealand (parts XII, XIII). Part XII: the genera Thelephora and Tomentella. Transactions of the Royal Society of New Zealand 84:479−496

[161]

Escobar GA. 1978. Contribution towards a monograph of the neotropical species of Hymenochaete. Dissertation. University of Washington, U.S.

[162]

Léger JC. 1998. Le genre Hymenochaete Léveille. Bibliotheca Mycologica. Berlin: J. Cramer.

[163]

Parmasto E. 1995. Corticioid fungi: a cladistic study of a paraphyletic group. Canadian Journal of Botany 73:843−852

doi: 10.1139/b95-330
[164]

Larsson KH, Parmasto E, Fischer M, Langer E, Nakasone KK, et al. 2006. Hymenochaetales: a molecular phylogeny for the hymenochaetoid clade. Mycologia 98:926−936

doi: 10.1080/15572536.2006.11832622
[165]

Liu ZB, Yuan Y, Dai YC, Liu HG, Vlasák J, et al. 2025. Global diversity and systematics of Hymenochaetaceae with non-poroid hymenophore. Fungal Diversity 131:1−97

doi: 10.1007/s13225-025-00552-3
[166]

Nie T, Tian Y, Liu SL, Yang J, He SH. 2017. Species of Hymenochaete (Hymenochaetales, Basidiomycota) on bamboos from East Asia, with descriptions of two new species. MycoKeys 20:51−65

doi: 10.3897/mycokeys.20.11754
[167]

Karsten PA. 1889. Kritisk öfversigt af Finlands Basidsvampar (Basidiomycetes; Gastero- & Hymenomycetes). Bidrag till Kä nnedom av Finlands Natur och Folk 48:1−470

[168]

Larsson KH. 2007. Molecular phylogeny of Hyphoderma and the reinstatement of Peniophorella. Mycological Research 111:186−195

doi: 10.1016/j.mycres.2006.10.002
[169]

Justo A, Miettinen O, Floudas D, Ortiz-Santana B, Sjökvist E, et al. 2017. A revised family-level classification of the Polyporales (Basidiomycota). Fungal Biology 121:798−824

doi: 10.1016/j.funbio.2017.05.010
[170]

Yurchenko E, Wu SH, Maekawa N. 2020. Three new species of Peniophorella (Basidiomycota) from East Asia. Nova Hedwigia 111:473−495

doi: 10.1127/nova_hedwigia/2020/0598
[171]

Olariaga I, Huhtinen S, Læssøe T, Petersen JH, Hansen K. 2020. Phylogenetic origins and family classification of typhuloid fungi, with emphasis on Ceratellopsis, Macrotyphula and Typhula (Basidiomycota). Studies in Mycology 96:155−184

doi: 10.1016/j.simyco.2020.05.003
[172]

Wu SH. 1997. New species and new records of Hyphoderma (Basidiomycotina) from Taiwan. Botanical Bulletin of the Academia Sinica 38:63−72

[173]

Yurchenko E, Wu SH. 2016. A key to the species of Hyphodontia sensu lato. MycoKeys 12:1−27

doi: 10.3897/mycokeys.12.7568
[174]

Wang M, Chen YY. 2017. Phylogeny and taxonomy of the genus Hyphodontia (Hymenochaetales, Basidiomycota) in China. Phytotaxa 309:45−54

doi: 10.11646/phytotaxa.309.1.4
[175]

Yurchenko E, Wu SH. 2014. Three new species of Hyphodontia with peg-like hyphal aggregations. Mycological Progress 13:533−545

doi: 10.1007/s11557-013-0935-1
[176]

Riebesehl J, Langer E. 2017. Hyphodontia s. l. (Hymenochaetales, Basidiomycota): 35 new combinations and new keys to all 120-current species. Mycological Progress 16:637−666

doi: 10.1007/s11557-017-1299-8
[177]

Guan QX, Huang J, Huang J, Zhao CL. 2023. Five new species of Schizoporaceae (Basidiomycota, Hymenochaetales) from East Asia. MycoKeys 96:25−56

doi: 10.3897/mycokeys.96.99327
[178]

Dong JH, Li Q, Yuan Q, Luo YX, Zhang XC, et al. 2024. Species diversity, taxonomy, molecular systematics and divergence time of wood-inhabiting fungi in Yunnan-Guizhou Plateau, Asia. Mycosphere 15:1110−1293

doi: 10.5943/mycosphere/15/1/10
[179]

Yurchenko E, Langer E, Riebesehl J. 2024. A high species diversity of Lyomyces (Basidiomycota, Hymenochaetales) in Central and South America, revealed after morphological and molecular analysis. MycoKeys 109:131−169

doi: 10.3897/mycokeys.109.127606
[180]

Hjortstam K, Ryvarden L. 2002. Studies in tropical corticioid fungi (Basidiomycotina, Aphyllophorales) Alutaceodontia, Botryodontia, Hyphodontia s. s. and Kneiffiella. Synopsis Fungorum 15:7−17

[181]

Hjortstam K, Ryvarden L. 2009. A preliminary checklist of Aphyllophorales from the Seychelles. Synopsis Fungorum 26:10−23

[182]

Riebesehl J, Yurchenko E, Nakasone KK, Langer E. 2019. Phylogenetic and morphological studies in Xylodon (Hymenochaetales, Basidiomycota) with the addition of four new species. MycoKeys 47:97−137

doi: 10.3897/mycokeys.47.31130
[183]

Yurchenko E, Xiong HX, Wu SH. 2013. Four new species of Hyphodontia (Xylodon ss. Hjortstam & Ryvarden, Basidiomycota) from Taiwan. Nova Hedwigia 96:545−558

doi: 10.1127/0029-5035/2013/0092
[184]

Bernicchia A, Gorjón SP. 2010. Fungi Europaei 12: Corticiaceae s. l. Alassio, Italy: Edizioni Candusso. pp. 1–1008

[185]

Viner I, Spirin V, Zíbarová L, Larsson KH. 2018. Additions to the taxonomy of Lagarobasidium and Xylodon (Hymenochaetales, Basidiomycota). MycoKeys 23:65−90

doi: 10.3897/mycokeys.41.28987
[186]

Yuan Q, Zhao C. 2024. Morphology and multigene phylogeny revealed four new species of Xylodon (Schizoporaceae, Basidiomycota) from Southern China. MycoKeys 107:161−187

doi: 10.3897/mycokeys.107.128223
[187]

Lizon P. 1993. Decline of macrofungi in Europe: an overview. Transactions of the Mycological Society of Republic of China 8:21−48

[188]

Newton AC, Holden E, Davy LM, Ward SD, Fleming LV, et al. 2002. Status and distribution of stipitate hydnoid fungi in Scottish coniferous forests. Biological Conservation 107:181−192

doi: 10.1016/S0006-3207(02)00060-5
[189]

van der Linde S, Alexander I, Anderson IC. 2008. A PCR-based method for detecting the mycelia of stipitate hydnoid fungi in soil. Journal of Microbiological Methods 75:40−46

doi: 10.1016/j.mimet.2008.04.010
[190]

Hrouda P. 2005. Bankeraceae in Central Europe. 1. Czech Mycology 57:57−78

doi: 10.33585/cmy.57103
[191]

Hrouda P. 2005. Bankeraceae in Central Europe. 2. Czech Mycology 57:279−297

doi: 10.33585/cmy.57308
[192]

Walleyn R, Verbeken A. 2000. Een gedocumenteerde Rode Lijst van enkele groepen paddestoelen (macrofungi) van Vlaanderen [A documented Red List of some groups of fungi (macrofungi) in Flanders]. Mededelingen van het Instituut voor Natuurbehoud. vol. 7. Brussels: Instituut voor Natuurbehoud. pp. 1–84. http://hdl.handle.net/1854/LU-125568

[193]

Nitare J. 2006. Åtgärdsprogram för bevarande av rödlistade fjälltaggsvampar (Sarcodon) [Action program for conservation of red-listed mountain hydnum fungi (Sarcodon)]. Rapport 5609. Stockholm: Naturvårdsverket. https://urn.kb.se/resolve?urn=urn:nbn:se:naturvardsverket:diva-9826

[194]

Senn-Irlet B, Bieri G, Egli S. 2007. Rote Liste Grosspilze. Rote Liste der gefährdeten Arten der Schweiz [Red List of Macrofungi. Red List of Threatened Species of Switzerland]. Umwelt-Vollzug Nr. 0718. Bern & Birmensdorf, Switzerland: Bundesamt für Umwelt (BAFU) & WSL. 92 pp. https://www.dora.lib4ri.ch/wsl/islandora/object/wsl%3A10349

[195]

Kõljalg U, Renvall P. 2000. Hydnellum gracilipes: a link between stipitate and resupinate Hymenomycetes. Karstenia 40:71−77

doi: 10.29203/ka.2000.355
[196]

Cooper J, Leonard P. 2012. Boletopsis nothofagi sp. nov. associated with Nothofagus in the Southern Hemisphere. MycoKeys 3:13−22

doi: 10.3897/mycokeys.3.2762
[197]

Hahn CJ, Friebes G, Krisai-Greilhuber I. 2018. Sarcodon fennicus, a boreo-montane stipitate hydnoid fungus with a remarkable smell. Austrian Mycological Society 27:43−52

[198]

Wijayawardene NN, Hyde KD, Al-Ani LKT, Tedersoo L, Haelewaters D, et al. 2020. Outline of fungi and fungus-like taxa. Mycosphere 11:1060−1456

doi: 10.5943/mycosphere/11/1/8
[199]

He MQ, Zhao RL, Liu DM, Denchev TT, Begerow D, et al. 2022. Species diversity of Basidiomycota. Fungal Diversity 114:281−325

doi: 10.1007/s13225-021-00497-3
[200]

Jayawardena RS, Hyde KD, Wang S, Sun Y, Suwannarach N, et al. 2023. Fungal diversity notes 1512–1610: taxonomic and phylogenetic contributions on genera and species of fungal taxa. Fungal Diversity 117:1−272

doi: 10.1007/s13225-022-00513-0
[201]

Zhao C, Qu M, Huang R, Karunarathna SC. 2023. Multi-gene phylogeny and taxonomy of the wood-rotting fungal genus Phlebia sensu lato (Polyporales, Basidiomycota). Journal of Fungi 9:320

doi: 10.3390/jof9030320