| [1] |
Feng S, Bai M, Rivas-González I, Li C, Liu S, et al. 2022. Incomplete lineage sorting and phenotypic evolution in marsupials. |
| [2] |
Zhang R, Stull GW, Jin JJ, Wang YH, Guo Y, et al. 2025. Phylogenetic resolution and conflict in the species-rich flowering plant family Leguminosae. |
| [3] |
Qu H, Cai Q, Redhead SA, Chen X, Ge ZW, et al. 2025. Exploring criteria for constructing suprageneric classifications of fungi in the genomic era: a case study of suborders Agaricineae, Pluteineae, and Tricholomatineae (Agaricales). |
| [4] |
Karbstein K, Kösters L, Hodač L, Hofmann M, Hörandl E, et al. 2024. Species delimitation 4.0: integrative taxonomy meets artificial intelligence. |
| [5] |
Mayr E. 1970. Populations, species, and evolution. Cambridge, Massachusetts: Harvard University Press |
| [6] |
De Queiroz K. 2007. Species concepts and species delimitation. |
| [7] |
De Queiroz K. 2011. Branches in the lines of descent: Charles Darwin and the evolution of the species concept. Biological Journal of the Linnean Society 103(1):19−35 |
| [8] |
Ruane S, Bryson RW, Pyron RA, Burbrink FT. 2014. Coalescent species delimitation in Milksnakes (Genus Lampropeltis) and impacts on phylogenetic comparative analyses. |
| [9] |
Cui YY, Cai Q, Tang LP, Liu JW, Yang ZL. 2018. The family Amanitaceae: molecular phylogeny, higher-rank taxonomy and the species in China. |
| [10] |
Cui YY, Hao YJ, Guo T, Yang ZL, Cai Q. 2023. Species diversity of Amanita section Vaginatae in eastern China, with a description of four new species. |
| [11] |
Ding XX, Cui YY, Yang ZL. 2022. Two new species of Tricholoma sect. Genuina (Agaricales) from China based on molecular phylogenetic and morphological evidence. |
| [12] |
Wu G, Li YC, Zhu XT, Zhao K, Han LH, et al. 2016. One hundred noteworthy boletes from China. |
| [13] |
Wu G, Lee SML, Horak E, Yang ZL. 2018. Spongispora temasekensis, a new boletoid genus and species from Singapore. |
| [14] |
Zhou SY, Long P, Yang ZL. 2023. Three new species and a new record of Cortinarius section Camphorati from southwestern China. |
| [15] |
Kaygusuz O, Türkekul İ, Knudsen H, Menolli N Jr. 2021. Volvopluteus and Pluteus section Pluteus (Agaricales: Pluteaceae) in Turkey based on morphological and molecular data. |
| [16] |
Ševčíková H, Malysheva E, Ferisin G, Dovana F, Horak E, et al. 2022. Holarctic species in the Pluteus romellii clade. Five new species described and old names reassessed. |
| [17] |
Malysheva E, Malysheva V. 2024. Description of two new Pluteus species of sect. Pluteus (Agaricales, Pluteaceae) from the Russian Far East based on morphological and molecular data. |
| [18] |
Justo A, Malysheva E, Bulyonkova T, Muñoz G, Ferisin G, et al. 2025. The Pluteus leoninus clade in the Holarctic region: existing names evaluated and seven new species described. |
| [19] |
Justo A, Vizzini A, Minnis AM, Menolli N Jr., Capelari M, et al. 2011. Phylogeny of the Pluteaceae (Agaricales, Basidiomycota): taxonomy and character evolution. |
| [20] |
Singer R. 1986. The Agaricales in Modern Taxonomy. Koenigstein: Koeltz Scientific Books |
| [21] |
Vizzini A, Alvarado P, Consiglio G, Marchetti M, and Xu J. 2024. Family matters inside the order Agaricales: systematic reorganization and classification of incertae sedis clitocyboid, pleurotoid and tricholomatoid taxa based on an updated 6-gene phylogeny. |
| [22] |
Dai YC, Yang ZL, Cui BK, Wu G, Yuan HS, et al. 2021. Diversity and systematics of the important macrofungi in Chinese forests. |
| [23] |
Hyde KD, Noorabadi MT, Thiyagaraja V, He MQ, Johnston PR, et al. 2024. The 2024 Outline of Fungi and fungus-like taxa. |
| [24] |
Corriol G, Moreau PA. 2007. Agaricus (Annularia) fenzlii rediscovered in the Pyrenees. Notes on the Chamaeota genus in Europe. Persoonia: Molecular Phylogeny and Evolution of Fungi 19(2):233−250 |
| [25] |
Minnis AM, Sundberg WJ, Methven AS, Sipes SD, Nickrent DL. 2006. Annulate Pluteus species, a study of the genus Chamaeota in the United States. |
| [26] |
Yang KL, Lin JY, Li GM, Li T, Yang ZL. 2024. Rediscovering Leucoagaricus sinicus, with the recognition of Leucoagaricus and Leucocoprinus as separate genera, and two new genera in Agaricaceae (Basidiomycota). |
| [27] |
Yang ZL. 2007. Type studies on Chamaeota species described from China. |
| [28] |
Ying JZ. 1995. New and noteworthy agarics from China. I. New species of Chamaeota. |
| [29] |
Wang GS, Cai Q, Hao YJ, Bau T, Chen ZH, et al. 2024. Phylogenetic and taxonomic updates of Agaricales, with an emphasis on Tricholomopsis. |
| [30] |
Kornerup A, Wanscher JH. 1978. Methuen handbook of colour. 3rd Edition. London: Eyre Methuen |
| [31] |
Gardes M, Bruns TD. 1993. ITS primers with enhanced specificity for basidiomycetes-application to the identification of mycorrhizae and rusts. |
| [32] |
Rehner S, and Buckley E. 2005. A Beauveria phylogeny inferred from nuclear ITS and EF1-α sequences: Evidence for cryptic diversification and links to Cordyceps teleomorphs. |
| [33] |
Ševčíková H, Hanss JM, Moreau PA. 2021. Amanita vladimirii (Amanitaceae, Agaricales), a new European species in section Vaginatae. |
| [34] |
Chen S, Zhou Y, Chen Y, Gu J. 2018. fastp: an ultra-fast all-in-one FASTQ preprocessor. |
| [35] |
Bankevich A, Nurk S, Antipov D, Gurevich AA, Dvorkin M, et al. 2012. SPAdes: a new genome assembly algorithm and its applications to single-cell sequencing. |
| [36] |
Manni M, Berkeley MR, Seppey M, Simão FA, Zdobnov EM. 2021. BUSCO update: novel and streamlined workflows along with broader and deeper phylogenetic coverage for scoring of eukaryotic, prokaryotic, and viral genomes. |
| [37] |
Katoh K, Standley DM. 2013. MAFFT multiple sequence alignment software version 7: improvements in performance and usability. |
| [38] |
Capella-Gutiérrez S, Silla-Martínez JM, Gabaldón T. 2009. trimAl: a tool for automated alignment trimming in large-scale phylogenetic analyses. |
| [39] |
Minh BQ, Schmidt HA, Chernomor O, Schrempf D, Woodhams MD, et al. 2020. IQ-TREE 2: new models and efficient methods for phylogenetic inference in the genomic era. |
| [40] |
Nylander J. 2004. MrModeltest V2. Program distributed by the author. Bioinformatics 24:581−583 |
| [41] |
Huson DH, Bryant D. 2024. The SplitsTree App: interactive analysis and visualization using phylogenetic trees and networks. |
| [42] |
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. |
| [43] |
Junier T, Zdobnov EM. 2010. The Newick utilities: high-throughput phylogenetic tree processing in the Unix shell. |
| [44] |
Mirarab S, Reaz R, Bayzid MdS, Zimmermann T, Swenson MS, et al. 2014. ASTRAL: genome-scale coalescent-based species tree estimation. |
| [45] |
Zhang C, Mirarab S. 2022. Weighting by gene tree uncertainty improves accuracy of quartet-based species trees. |
| [46] |
Yang ZH. 2007. PAML 4: Phylogenetic analysis by maximum likelihood. |
| [47] |
Sanderson MJ. 2003. r8s: inferring absolute rates of molecular evolution and divergence times in the absence of a molecular clock. |
| [48] |
Hedges SB, Dudley J, Kumar S. 2006. TimeTree: a public knowledge-base of divergence times among organisms. |
| [49] |
Flouri T, Jiao X, Rannala B, Yang Z. 2018. Species tree inference with BPP using genomic sequences and the multispecies coalescent. |
| [50] |
Rannala B, Yang Z. 2003. Bayes estimation of species divergence times and ancestral population sizes using DNA sequences from multiple loci. |
| [51] |
Yang ZH. 2015. The BPP program for species tree estimation and species delimitation. |
| [52] |
Yang LH, Kong HH, Huang JP, Kang M. 2019. Different species or genetically divergent populations? Integrative species delimitation of the Primulina hochiensis complex from isolated karst habitats. |
| [53] |
Zhang CY, Ling Low S, Song YG, Nurainas, Kozlowski G, et al. 2020. Shining a light on species delimitation in the tree genus Engelhardia Leschenault ex Blume (Juglandaceae). |
| [54] |
Zhou WW, Wen Y, Fu JZ, Xu YB, Jin JQ, et al. 2012. Speciation in the Rana chensinensis species complex and its relationship to the uplift of the Qinghai–Tibetan Plateau. |
| [55] |
Smith SA, Moore MJ, Brown JW, and Yang Y. 2015. Analysis of phylogenomic datasets reveals conflict, concordance, and gene duplications with examples from animals and plants. |
| [56] |
Zhou XF, Lutteropp S, Czech L, Stamatakis A, Looz MV, et al. 2020. Quartet-based computations of internode certainty provide robust measures of phylogenetic incongruence. |
| [57] |
Shang HY, Jia KH, Li NW, Zhou MJ, Yang H, et al. 2025. Phytop: a tool for visualizing and recognizing signals of incomplete lineage sorting and hybridization using species trees output from ASTRAL. |
| [58] |
Than C, Ruths D, Nakhleh L. 2008. PhyloNet: a software package for analyzing and reconstructing reticulate evolutionary relationships. |
| [59] |
Edelman NB, Frandsen PB, Miyagi M, Clavijo B, Davey J, et al. 2019. Genomic architecture and introgression shape a butterfly radiation. |
| [60] |
Bessette AE, Bessette AR, Fischer DW. 1997. Mushrooms of Northeastern North America. 1st Trade PBK Edition. Hong Kong: Syracuse University Press |
| [61] |
Kaygusuz O, Türkekul İ, Knudsen H, Çolak ÖF. 2019. New records of Pluteus section Hispidoderma in Turkey based on morphological characteristics and molecular data. |
| [62] |
Kuo M 2015. Pluteus granularis. MushroomExpert.Com. www.mushroomexpert.com/pluteus_granularis.html (Accessed: 13-May-2025) |
| [63] |
Singer R. 1956. Contributions towards a monograph of the genus Pluteus. |
| [64] |
Malysheva E, Popov E, Morozova O, Dudka V, Pham T, et al. 2023. Observations on Pluteaceae in Vietnam: Four new species and new records of Pluteus. |
| [65] |
Vellinga EC 1990. In: Bas C, Kuyper TW, Noordeloos ME, Vellinga EC (eds). Flora Agaricina Neerlandica. Vol 2. Netherlands: Balkema |
| [66] |
Hosen MI, Xu J, Liang XS, Li TH. 2019. Pluteus umbrosoides and P. chrysaegis, new records from China. |
| [67] |
Malysheva EF, Malysheva VF, Justo A. 2016. Observations on Pluteus (Pluteaceae) diversity in South Siberia, Russia: morphological and molecular data. |
| [68] |
Horak E. 2008. Agaricales of New Zealand. 1: Fungi of New Zealand Volume 5. Hong Kong: Fungal Diversity Press |
| [69] |
Del Rosario JA, Perry BA. 2025. The genus Pluteus (Basidiomycota, Agaricales, Pluteaceae) from Tafea Province, Republic of Vanuatu. |
| [70] |
Qi ZX, Wang LB, Qian KQ, Shi LL, Hu JJ, et al. 2025. Integrating morphology, phylogeny, substrate, and distribution: clarifying the major phylogenetic framework of Pluteus sect. Hispidoderma (Agaricales, Pluteaceae) and describing 18 species. |
| [71] |
Pradeep CK, Justo A, Vrinda KB, and Shibu VP. 2012. Two new species of Pluteus (Pluteaceae, Agaricales) from India and additional observations on Pluteus chrysaegis. |
| [72] |
Ferisin G, Dovana F. 2017. Pluteus velutinus, first signaling in Italy. Anno XXXIII 102(3):3−12 |
| [73] |
Ferisin G, Dovana F. 2019. Genus Pluteus, sect. Hispidoderma. Anno XXXV 106(1):23−51 |
| [74] |
Menolli N Jr, Justo A, Capelari M. 2015. Pluteus Section Hispidoderma in Brazil with new records based on morphological and molecular Data. |
| [75] |
Campi M, Maubet Y, Cristaldo E, Grassi E, Menolli Jr N. 2019. Pluteus Fr. (Pluteaceae, Agaricales) in Paraguay: morphological studies and new records. |
| [76] |
Menolli Jr N, Capelari M. 2010. Notes on Pluteus (Pluteaceae, Agaricales) from Brazil including two new species and a new record. |
| [77] |
Pradeep CK, Vrinda KB. 2006. New and noteworthy species of Pluteus (Pluteaceae, Agaricales) from Kerala State, India. Persoonia - Molecular Phylogeny and Evolution of Fungi 19(1):95−99 |
| [78] |
Desjardin D, Perry B. 2018. The genus Pluteus (Basidiomycota, Agaricales, Pluteaceae) from Republic of São Tomé and Príncipe, West Africa. |
| [79] |
Pegler DN. 1986. Agaric flora of Sri lanka. Kew Bulletin Additional Series 12:1−519 |
| [80] |
Wannathes N, Suwannarach N, Khuna S, Kumla J. 2022. Two Two novel species and two new records within the genus Pluteus (Agaricomycetes, Agaricales) from Thailand. |
| [81] |
Peck CH. 1885. Report of Botanist (1884). New York State Museum Annual Report 38:77−138 |
| [82] |
Höhnel FXR. 1902. Fragmente zur Mykologie (I. Mitteilung). Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften Mathematisch-naturwissenschaftliche 111:987−1056 |
| [83] |
Takehashi S, Kasuya T. 2007. First record of Pluteus chrysophaeus and reexamination of Pluteus leoninus from Japan. |
| [84] |
Ševčíková H, Malysheva EF, Justo A, Heilmann-Clausen J, Tomšovský M. 2020. Pluteus dianae and P. punctatus resurrected, with first records from eastern and northern Europe. |
| [85] |
Heilmann-Clausen J 2008. Pluteus Fr. In Funga Nordica: Agaricoid, Boletoid and Cyphelloid Genera, eds. Knudsen H. Vesterholt J. Copenhagen, Denmark: Nordsvamp. pp. 335−344 |
| [86] |
Kaygusuz O, Gezer K, Şeker M. 2016. Four new records of Pluteus Fr. from interesting habitats in the Aegean region of Turkey. |
| [87] |
Ševčíková H, Borovička J, Gates G. 2021. Pluteus hubregtseorum (Pluteaceae), a new species from Australia and New Zealand. |
| [88] |
Kaygusuz O, Justo A, Knudsen H, Ševčíková H, Türkekul I. 2021. Pluteus lauracearum (Agaricales, Basidiomycota), a new species of Pluteus sect. Hispidoderma from thermophilic Laurus forests. |
| [89] |
Lezzi T, Vizzini A, Ercole E, Migliozzi V, Justo A. 2014. Phylogenetic and morphological comparison of Pluteus variabilicolor and P. castri (Basidiomycota, Agaricales). |
| [90] |
Muñoz G, Sánchez L. 2018. Pluteus variabilicolor Babos, primera cita para la Península Ibérica. Revista Catalana de Micologia 39:111−116 |
| [91] |
Ševčíková H, and Polčák J. 2024. First record of Pluteus variabilicolor in the Czech Republic. Mykologické Listy 157:36−46 |
| [92] |
Justo A, Minnis AM, Ghignone S, Menolli N Jr, Capelari M, et al. 2011. Species recognition in Pluteus and Volvopluteus (Pluteaceae, Agaricales): morphology, geography and phylogeny. |
| [93] |
Ševčíková H, Dima B. 2021. Variability and distribution of Pluteus luteus, a later synonym of P. variabilicolor. |
| [94] |
Khan J, Sher H, Izhar A, Haqnawaz M, Khalid AN. 2022. Pluteus variabilicolor and Volvopluteus earlei, new records for Pakistan. |
| [95] |
Babos M. 1978. Pluteus studies, I. (Basidiomycetes, Pluteaceae). Annales Historico-Naturales Musei Nationalis Hungarici 70:93−97 |
| [96] |
Liu M, Bau T. 2025. Two new species of Pluteus (Pluteaceae, Agaricales) from Inner Mongolia, China. |
| [97] |
Polhorský A, Justo A, Szabóová D, Konyariková Z, Dima B, et al. 2023. Pluteus flammans, a new brightly coloured species in Pluteus sect. Celluloderma (Pluteaceae) from Central Europe. |
| [98] |
Vellinga EC, Schreurs J. 1985. Notulae ad Floram agaricinam neerlandicam — VIII. Pluteus Fr. in West-Europe. Persoonia - Molecular Phylogeny and Evolution of Fungi 12(4):337−373 |
| [99] |
Justo A, Battistin E, Angelini C. 2012. Two new species of Pluteus section Celluloderma from the Dominican Republic. |
| [100] |
Kaygusuz O, Knudsen H, Menolli N Jr, Türkekul I. 2021. Pluteus anatolicus (Pluteaceae, Agaricales): a new species of Pluteus sect. Celluloderma from Turkey based on both morphological and molecular evidence. |
| [101] |
Menolli N Jr, Justo A, Capelari M. 2015. Phylogeny of Pluteus section Celluloderma including eight new species from Brazil. |
| [102] |
Keerthi V, and Pradeep CK. 2023. A new species of Pluteus sect. Celluloderma from Kerala State, India. |
| [103] |
Ševčíková H, Ferisin G, Malysheva E, Justo A, Heilmann-Clausen J, et al. 2022. Pluteus insidiosus complex, four new species described and Pluteus reisneri resurrected. |
| [104] |
Qi ZX, Qian KQ, Yue L, Wang LB, Guo DZ, et al. 2024. New species, new records and common species of Pluteus sect. Celluloderma from northern China. |
| [105] |
Ševčíková H, Malysheva EF, Antonín V, Dovana F, Ferisin G, et al. 2026. Holarctic species in the Pluteus ephebeus clade: description of four new species and revision of historical names. |
| [106] |
Crous PW, Wingfield MJ, Schumacher RK, Summerell BA, Giraldo A, et al. 2014. Fungal Planet description sheets: 281–319. |
| [107] |
Justo A, Caballero A, Muñoz G, Minnis AM, Malysheva E. 2011. Taxonomy of Pluteus eugraptus and morphologically similar taxa. Mycologia 103(3):646−655 |
| [108] |
Justo A, Muñoz G, Sánchez F, Arrillaga P, Plá F, et al. 2026. Pluteus ochroviridans sp. nov., belonging to Pluteus sect. Celluloderma (Pluteaceae) from Mediterranean habitats in Spain and California (USA). |
| [109] |
Orton PD. 1986. British Fungus Flora: Agarics and Boleti 4: Pluteaceae: Pluteus & Volvariella. Edinburgh: Royal Botanic Garden Edinburgh |
| [110] |
Xu J, Hosen MI, Zhang M, Li TH. 2023. Pluteus aurantioruber, a new species of Pluteus section Celluloderma (Pluteaceae) from China. |
| [111] |
Radu MI, Şesan TE, Şesan TE. 2013. Pluteus aurantiorugosus (Trog) Sacc. and Coprinus patouillardii Quél. - new records of macrofungi for Romania. |
| [112] |
Szczepkowski A, Kujawa A. 2005. Pluteus aurantiorugosus (Fungi, Agaricales) in Poland. Polish Botanical Journal 50(2):221−224 |
| [113] |
Hosen MI, Liang X, Xu J, Li TH. 2019. Pluteus squarrosus sp. nov. (Pluteus sect. Celluloderma Pluteaceae) from northeast China. |
| [114] |
Menolli N Jr, Asai T, and Capelari M. 2010. Records and new species of Pluteus from Brazil based on morphological and molecular data. |
| [115] |
Malysheva E, Malysheva V, Alexandrova A, Morozova O. 2020. Observations on Pluteaceae in Vietnam. 2. One new record and ten new species of Pluteus. |
| [116] |
Cho SE, Lee DH, Kim EK, Shin KC, Kim NK. 2023. Four unrecorded species of macrofungi from South Korea. The Korean Journal of Mycology 51(3):167−177 |
| [117] |
Minnis AM, Sundberg WJ. 2010. Pluteus section Celluloderma in the U.S.A. |
| [118] |
Dovana F, Justo A, Ferisin G. 2022. Pluteus aesontiensis (Agaricales, Pluteaceae) a new species in sect. Celluloderma. Phytotaxa 533(2):149−157 |
| [119] |
Seidmohammadi E, Abbasi S, Asef MR. 2018. First report of Pluteus cinereofuscus for mycobiota of Iran. Rostaniha 19(2):192−195 |
| [120] |
Crous PW, Carnegie AJ, Wingfield MJ, Sharma R, Mughini G, et al. 2019. Fungal Planet description sheets: 868–950. |
| [121] |
Keerthi V, Justo A, Pradeep CK. 2024. Two new species of Pluteus (Pluteaceae) from India based on morphology and ITS-based phylogeny. |
| [122] |
Pegler DN. 1977. A preliminary agaric flora of East Africa. Kew Bulletin 6:267 |
| [123] |
Hosen MI, Xu J, Li TH, Tang A, Zhao CL, et al. 2026. Pluteus sinensis, a new species of Pluteus sect. Celluloderma from China. |
| [124] |
Wartchow F, Cortez VG, Coelho G. 2004. Pluteus thomsonii (Pluteaceae): a northern agaric found in South America. |
| [125] |
Imazeki R, Otani Y, Hongo T. 1988. Fungi of Japan. Tokyo, Japan: Yamakei Publishers |
| [126] |
Banerjee P, Sundberg WJ. 1995. The genus Pluteus section Pluteus (Pluteaceae, Agaricales) in the Midwestern United States. |
| [127] |
Justo A, Malysheva E, Bulyonkova T, Vellinga EC, Cobian G, et al. 2014. Molecular phylogeny and phylogeography of Holarctic species of Pluteus section Pluteus (Agaricales: Pluteaceae), with description of twelve new species. |
| [128] |
Lu JR, Lei L, Yu FM, Zhu XT, Liang JF, et al. 2026. Diversity of macrofungi in southeast Xizang, China 2. |
| [129] |
Qi ZX, Qian KQ, Hu JJ, Wang Y, Wu DM, et al. 2022. A new species and new records species of Pluteus from Xinjiang Uygur Autonomous Region, China. |
| [130] |
Xu J, Li TH, Justo A, Ge ZW. 2015. Two new species of Pluteus (Agaricales, Pluteaceae) from China. |
| [131] |
Justo A, Castro ML. 2007. Pluteus nothopellitus sp. nov. and a review of white species in Pluteus section Pluteus. |
| [132] |
Ševčíková H. 2016. Pluteus hongoi ‒ the first identified collections from the Czech Republic and Slovakia. Mykologické Listy 133:8−18 |
| [133] |
Singer R. 1989. New taxa and new combinations of Agaricales (Diagnoses fungorum novorum Agaricalium IV). Fieldiana. Botany 21:1−133 |
| [134] |
Liu LN, Razaq A, Atri NS, Bau T, Belbahri L, et al. 2018. Fungal systematics and evolution: FUSE 4. |
| [135] |
Hosen MI, Liang XS, Li JP, Xu J, and Li TH. 2019. Pluteus losulus, a new record from south China. |
| [136] |
Menolli N Jr, Justo A, Arrillaga P, Pradeep CK, Minnis AM, et al. 2014. Taxonomy and phylogeny of Pluteus glaucotinctus sensu lato (Agaricales, Basidiomycota), a multicontinental species complex. |
| [137] |
Saupe SG. 1981. Occurrence of psilocybin/psilocin in Pluteus salicinus (Pluteaceae). Mycologia 73:781−784 |
| [138] |
Gotvaldová K, Borovička J, Hájková K, Cihlářová P, Rockefeller A, et al. 2022. Extensive collection of psychotropic mushrooms with determination of their tryptamine alkaloids. |
| [139] |
Menolli N Jr, de Meijer AAR, Capelari M. 2015. The genus Pluteus (Pluteaceae, Agaricales) from the state of Paraná, Brazil. |
| [140] |
Kalinina L, Malysheva E. 2023. Volvopluteus asiaticus (Agaricales, Basidiomycota) - the second finding in the world. |
| [141] |
Murrill WA. 1911. The Agaricaceae of Tropical North America—IV. |
| [142] |
Coker WC. 1947. North Carolina Species of Volvaria. Journal of the Elisha Mitchell Scientific Society 63(2):220−230 |
| [143] |
Vázquez LS, Guzmán-Dávalos L, Guzmán G. 1989. Contribución al conocimiento de las especies del género Volvariella en Jalisco. Scientia Fungorum 5:169−179 |
| [144] |
Giannoni F, Pera U. 2018. Volvopluteus earlei, specie poco comune in tutta Europa, nuova per la Toscana. Micologia Toscana 2018:11−25 |
| [145] |
Justo A, Castro ML. 2010. The genus Volvariella in Spain: V. dunensis comb. & stat. nov. and observations on V. earlei. |
| [146] |
Bougher NL, Barrett MD. 2023. Volvopluteus earlei and Volvariella taylorii: new fungi for Western Australia (Basidiomycota: Agaricales: Pluteaceae). |
| [147] |
Kasuya T, Maruyama T, Ikeda Y, Fuse K, Hosaka K. 2018. Volvopluteus earlei (Agaricales, Pluteaceae), new to Japan. |
| [148] |
Seok SJ, Kim YS, Weon HY, Lee KH, Park KM, et al. 2002. Taxonomic Study on Volvariella in Korea. |
| [149] |
Zhu XT, Liu LJ, Wang XQ, Dang YX. 2025. Two new species of Volvopluteus (Pluteaceae, Agaricales) from Northwest China. |
| [150] |
Zheng DG, Lu WH, Han MY, Dai DQ, Zhang LJ, et al. 2025. Volvopluteus yunnanensis (Pluteaceae, Agaricales), a novel species from Yunnan Province, China. |
| [151] |
Li JH, Fu HY, Fan L. 2025. Volvopluteus striatellus (Pluteaceae, Agaricales), a novel species from North China. |
| [152] |
Moncalvo JM, Vilgalys R, Redhead SA, Johnson JE, James TY, et al. 2002. One hundred and seventeen clades of euagarics. |
| [153] |
He MQ, Zhao RL, Hyde KD, Begerow D, Kemler M, et al. 2019. Notes, outline and divergence times of Basidiomycota. |
| [154] |
He MQ, Cao B, Liu F, Boekhout T, Denchev TT, et al. 2024. Phylogenomics, divergence times and notes of orders in Basidiomycota. |
| [155] |
Zhao H, Wu F, Maurice S, Pavlov IN, Krutovsky KV, et al. 2025. Large-scale phylogenomic insights into the evolution of the Hymenochaetales. |
| [156] |
Zhao H, Nie Y, Zong TK, Wang K, Lv ML, et al. 2023. Species diversity, updated classification and divergence times of the phylum Mucoromycota. |
| [157] |
Imai S. 1938. Studies on the Agaricaceae of Japan I. Volvate Agarics in Hokkaido. I. Journal of the Faculty of Agriculture, Hokkaido Imperial University 43(1):1−178 |
| [158] |
Wasser SP. 1992. Flora of Fungi of Ukraine Amanitales. Kiev: Naukova Dumka (In Russian) |
| [159] |
Zhang D, Rheindt FE, She H, Cheng Y, Song G, et al. 2021. Most genomic loci misrepresent the phylogeny of an avian radiation because of ancient gene flow. |
| [160] |
Wu SS, Jiang MT, Miao JL, Li MH, Wang JY, et al. 2023. Origin and diversification of a Himalayan orchid genus Pleione. |
| [161] |
Wang XX, Huang CH, Morales-Briones DF, Wang XY, Hu Y, et al. 2024. Phylotranscriptomics reveals the phylogeny of Asparagales and the evolution of Allium flavor biosynthesis. |
| [162] |
Hey J, Waples RS, Arnold ML, Butlin RK, Harrison RG. 2003. Understanding and confronting species uncertainty in biology and conservation. |
| [163] |
Taylor JW, Jacobson DJ, Kroken S, Kasuga T, Geiser DM, et al. 2000. Phylogenetic Species Recognition and Species Concepts in Fungi. |
| [164] |
Hibbett D, Abarenkov K, Kõljalg U, Öpik M, Chai B, et al. 2016. Sequence-based classification and identification of Fungi. |
| [165] |
Nilsson RH, Hyde KD, Pawłowska J, Ryberg M, Tedersoo L, et al. 2014. Improving ITS sequence data for identification of plant pathogenic fungi. |
| [166] |
Schoch CL, Seifert KA, Huhndorf S, Robert V, Spouge JL, et al. 2012. Nuclear ribosomal internal transcribed spacer (ITS) region as a universal DNA barcode marker for Fungi. |
| [167] |
Truong C, Mujic AB, Healy R, Kuhar F, Furci G, et al. 2017. How to know the fungi: combining field inventories and DNA-barcoding to document fungal diversity. |
| [168] |
Stiller J, Feng S, Chowdhury AA, Rivas-González I, Duchêne DA, et al. 2024. Complexity of avian evolution revealed by family-level genomes. |
| [169] |
Zhang Q, Folk RA, Mo ZQ, Ye H, Zhang ZY, et al. 2023. Phylotranscriptomic analyses reveal deep gene tree discordance in Camellia (Theaceae). |
| [170] |
Hosen MI, Li TH, Xu J, Gates G. 2021. Pluteus brunneoalbus, a new species, and P. sepiicolor, a new record for China. |
| [171] |
Li CH, Zhang M, Li JP, Li TH. 2025. Volvopluteus deliciosus sp. nov. (Pluteaceae, Agaricales), a new edible species from Xinjiang, China. |