Published March 30, 2022 | Version v1

Table 1 in Hemiaustroboletus, a new genus in the subfamily Austroboletoideae (Boletaceae, Boletales)

  • 1. Tecnologico Nacional de Mexico, Instituto Tecnologico de Ciudad Victoria, Blvd. Emilio Portes Gil # 1301 Pte., Ciudad Victoria, Tamaulipas, CP 87010, Mexico
  • 2. Instituto de Biologia, Universidad Nacional Autonoma de Mexico, Circuito exterior s / n Ciudad Universitaria, Ciudad de Mexico, CP 04510, Mexico
  • 3. CIBA, Instituto Politecnico Nacional, Tlaxcala, CP 90700, Mexico
  • 4. Departamento de Botanica y Zoologia, Universidad de Guadalajara, Zapopan, Jalisco, CP 45101, Mexico

Description

Table 1. List of species, geographic origin and GenBank accession numbers of ITS, LSU and RPB2 sequences used in the phylogenetic analyses.

TaxaVoucherCountryITSLSURPB2Reference
Aureoboletus betulaUSAMK601736MK766298Kuo and Ortiz-Santana (2020)
A. garciaeMEXU:29006MexicoMH337251MT228983Haelewaters et al. (2020)
Austroboletus amazonicus1839_ AMVColombiaKF937307KF714508Vasco-Palacios et al. (2014)
A. amazonicus1914_ AMVColombiaKF937308KF714509Vasco-Palacios et al. (2014)
A. austrovirensBRI:AQ0795791AustraliaKP242211KP242225KP242133Fechner et al. (2017)
A. austrovirensBRI:AQ0794622AustraliaKP242210Fechner et al. (2017)
A. austrovirensMEL:2382920aAustraliaKP242284KP242113Fechner et al. (2017)
A. austrovirensBRI:AQ0794609AustraliaKP242226KP242131Fechner et al. (2017)
A. austrovirensBRI:AQ0794171AustraliaKP242227KP242133Fechner et al. (2017)
A. eburneusREH9487AustraliaJX889668Vasco-Palacios et al. (2014)
A. dictyotusHKAS59804ChinaJX901138Hosen et al. (2013)
A. fusisporusHKAS75207ChinaJX889719JX889720Hosen et al. (2013)
A. fusisporusJXSB0351ChinaMK765810GenBank
A. gracilis112-96USADQ534624Binder and Hibbett (2006)
A. gracilisTM03_434CanadaEU522815Porter et al. (2008)
A. gracilis var. gracilisCFMR BOS-547USAMK601715MK766277Kuo and Ortiz-Santana (2020)
A. gracilis var. flavipesCFMR BOS-562USAMK601714Kuo and Ortiz-Santana (2020)
A. gracilisACAD11344FCanadaMH465078Young et al. (2019)
A. gracilisSFC20140823-02South KoreaMN794901GenBank
A. gracilisNAMA 2017-106USAMH979242GenBank
A. gracilis310751MéxicoMH167935GenBank
A. gracilisCNV35USAMT345212Victoroff (2020)
A. cf. gracilisJLF6600USAMN174796GenBank
A. lacunosusREH9146AustraliaJX889669Vasco-Palacios et al. (2014)
A. lacunosusMEL2233764AustraliaKC552056GenBank
A. mucosusTH6300GuyanaAY612798Drehmel et al. (2008)
A. mutabilisBRI:AQ0795793AustraliaKP242169KP242263KP242098Fechner et al. (2017)
A. mutabilisBRI:AQ0669270AustraliaKP242266KP242097Fechner et al. (2017)
A. mutabilisBRI:AQ0796266AustraliaKP242262KP242099Fechner et al. (2017)
A. niveus312New ZealandDQ534622Binder and Hibbett (2006)
A. niveusMEL2053830AustraliaKC552016KC552058Orihara et al. (2016)
A. novae-zelandiaePDD:72542New ZealandHM060327GenBank
A. rarusBRI:AQ0794045AustraliaKP242197KP242236KP242086Fechner et al. (2017)
A. rostrupiiTH8189GuyanaJN168683Smith et al. (2011)
Austroboletus sp.BRI:AQ0794156AustraliaKP242235KP242115GenBank
Austroboletus sp.BRI:AQ0794222AustraliaKP242234KP242106GenBank
Austroboletus sp.BRI:AQ0794271AustraliaKP242259KP242102GenBank
Austroboletus sp.HKAS 57756ChinaKF112383KF112764Wu et al. (2014)
Austroboletus sp.HKAS 59624ChinaKF112485KF112765Wu et al. (2014)
Austroboletus sp.HKAS 74743ChinaKT990527KT990367Wu et al. (2014)
Austroboletus sp.PERTH6658407AustraliaKP242277KP242126GenBank
Austroboletus sp.BRI:AQ0794242AustraliaKP242087GenBank
Austroboletus sp.OR0891ThailandMH614753Vadthanarat et al. (2019)
Austroboletus sp.OTAFUNNZ2013434New ZealandKP191670GenBank
A. subflavidusJBSD130771Dominican RepublicMT580902MT590754Gelardi et al. (2020)
A. subflavidusJBSD130772Dominican RepublicMT580903MT590755Gelardi et al. (2020)
A. subflavidusCFMR BZ-3178BelizeMK601716MK766278Kuo and Ortiz-Santana (2020)
A. subvirensKPM-NC-0017836JapanJN378518Orihara et al. (2012)
A. viscidoviridisPerth 7588682AustraliaKP242282KP242128Fechner et al. (2017)
Boletellus indistinctusHKAS77623ChinaKT990531KT990371Wu et al. (2016)
Boletellus sp.HKAS80554KT990535KT990374Wu et al. (2016)
Boletus harrisoniiMICH: KUO-09071204USAMK601718MK766280Kuo and Ortiz-Santana (2020)
Boletus sp.dd08055ChinaFJ810161GenBank
Boletus sp.MHM165MexicoEU569243Morris et al. (2008)
Boletales sp.B0229CanadaKY825985GenBank
Fistulinella campinaranae var. scrobiculataAMV1980ColombiaKF714520Vasco-Palacios et al. (2014)
F. gloeocarpaJBSD130769Dominican RepublicMT580906MT590756Gelardi et al. (2020)
F. gloeocarpaCFMR:B4BahamasMT580904Gelardi et al. (2020)
F. gloeocarpaCFMR:B10BahamasMT580905Gelardi et al. (2020)
F. prunicolorREH9502AustraliaJX889648MG212630Halling et al. (2012)
F. olivaceoalbaHKAS 53432VietnamMH745969GenBank
F. olivaceoalbaLE312004VietnamMH718396GenBank
F. ruschiiCORT:TJB-8329USAMT580907Gelardi et al. (2020)
F. viscida238 25SNew ZealandAF456826Vasco-Palacios et al. (2014)
F. cinereoalbaTH8471GuyanaGQ477439KT339237GenBank
Hemiaustroboletus vinaceobrunneusMEXU_30051 HolotypeMexicoMN178797MN200222MT887617This study
H. vinaceobrunneusMEXU_30052 IsotypeMexicoMN178798MN200223MT887618This study
H. vinaceobrunneusMEXU_30053 IsotypeMexicoMN178799MT887619This study
H. vinaceusAV524 ParatypeMexicoMN178802MN200225MT887622This study
H. vinaceusAES334 HolotypeMexicoMN178800MN200224MT887620This study
H. vinaceusAES364 IsotypeMexicoMN178801MT887621This study
Hemiaustroboletus sp.AK_3508MexicoMN178803This study
Hemileccinum subglabripesMICH: KUO-08301402USAMK601739MK766301Kuo and Ortiz-Santana (2020)
Hortiboletus rubellusMICH: KUO-06081002USAMK601741MK766303Kuo and Ortiz-Santana (2020)
H. amygdalinusHKAS54166ChinaKT990581KT990416Wu et al. (2016)
Hourangia cheoiTang572ChinaKP136953KP136985Zhu et al. (2015)
Imleria badiaMICH: KUO-09110404USAMK601743MK766305Kuo and Ortiz-Santana (2020)
Mucilopilus castaneicepsHKAS 75045ChinaKF112382KF112735Wu et al. (2016)
M. castaneicepsHKAS50338ChinaKT990555KT990391Wu et al. (2016)
M. castaneicepsHKAS71039ChinaKT990547KT990385Wu et al. (2016)
Parvixerocomus pseudoaokiiHKAS 80480ChinaKP658468KP658470Wu et al. (2016)
Porphyrellus castaneusHKAS52554ChinaKT990697KT990502Wu et al. (2016)
P. porphyrosporusMB97-023GermanyDQ534643GU187800Binder and Hibbett (2006)
P. orientifumosipesHKAS53372ChinaKT990629KT990461Wu et al. (2016)
Tengioboletus sp.HKAS 77869ChinaKT990658KT990483Wu et al. (2016)
Strobilomyces confususCFMR:DR-3024Dominican RepublicMK601809MK766365Kuo and Ortiz-Santana (2020)
Tylopilus felleusCFMR: BOS-780USAMK601814MK766370Kuo and Ortiz-Santana (2020)
T. sordidusMICH: KUO-06240801MK601815MK766371Kuo and Ortiz-Santana (2020)
Tylopilus sp.HKAS 50229ChinaKF112423KF112734Wu et al. (2014)
Uncultured mycorrhizalBOLETE1USAAY656925Walker et al. (2005)
Uncultured mycorrhizalclon N_1South KoreaAB571507Obase et al. (2012)
Uncultured Boletusisolate: YM490JapanLC175482Miyamoto et al. (2018)
Uncultured BoletusClon ZE2ChinaGU391428Ma et al. (2010)
Veloporphyrellus alpinusKUN:HKAS68301ChinaJX984537Li et al. (2014)
V. pseudovelatusKUN: HKAS59444ChinaJX984542Li et al. (2014)
V. pseudovelatusKUN:HKAS52244ChinaJX984531Li et al. (2014)
V. conicusCFMR:BZ1670BelizeJX984543Li et al. (2014)
V. conicusCFMR:BZ1705BelizeJX984544Li et al. (2014)
V. pantoleucusF:Gomez21232Costa RicaJX984548Li et al. (2014)
V. velatusKUN: HKAS63668ChinaJX984546Li et al. (2014)
V. aff. velatusHKAS 57490ChinaKF112380KF112733Wu et al. (2014)
V. vulpinusLE315544VietnamMN511177MN511170GenBank
V. vulpinusLE315549VietnamMN511180GenBank
V. vulpinusLE315546VietnamMN511179GenBank
V. vulpinusVietnamMN511178GenBank
Xerocomellus chrysenteronHKAS:56494ChinaKF112357KF112685Wu et al. (2014)

Notes

Published as part of Ayala-Vasquez, Olivia, Garcia-Jimenez, Jesus, Aguirre-Acosta, Elvira, Castro-Rivera, Rigoberto, Angeles-Argaiz, Rodolfo Enrique, Saldivar, Angel Emmanuel & Garibay-Orijel, Roberto, 2022, Hemiaustroboletus, a new genus in the subfamily Austroboletoideae (Boletaceae, Boletales), pp. 55 in MycoKeys 88 on page 55, DOI: 10.3897/mycokeys.88.73951

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References

  • Kuo, M, Ortiz-Santana, B, 2020. Revision of leccinoid fungi, with emphasis on North American taxa, based on molecular and morphological data. Mycologia 112 (1): 197 - 211, DOI: https://doi.org/10.1080/00275514.2019.1685351
  • Haelewaters, D, Dima, B, Abdel-Hafiz, BII, Abdel-Wahab, MA, Abul-Ezz, SR, Acar, I, Aguirre-Acosta, E, Aime, MC, Al Demir, S, Ali, M, Ayala-Vasquez, O, Bakhit, MS, Bashir, H, Battistin, E, Bendiksen, E, CastroRivera, R, Colak, OEF, De Kesel, A, de la Fuente, JI, Dizkirici, A, Hussain, S, Jansen, GM, Kaygusuz, O, Khalid, AN, Khan, J, Kiyashko, AA, Larsson, E, Martinez Gonzalez, CR, Morozova, OV, Niazi, AR, Noordeloos, ME, Pham, THG, Popov, ES, Psurtseva, NV, Schoutteten, N, Sher, H, Tuerkekul, I, Verbeken, A, Ahmad, H, Afshan, NS, Christe, P, Fiaz, M, Glaizot, O, Liu, J, Majeed, J, Markotter, W, Nagy, A, Nawaz, H, Papp, V, Peter, A, Pfliegler, WP, Qasim, T, Riaz, M, Sandor, AD, Szentivanyi, T, Voglmayr, H, Yousaf, N, Krisai-Greilhuber, I, 2020. Fungal Systematics and Evolution 6. Sydowia 72: 271 - 296
  • Vasco-Palacios, AM, Lopez-Quintero, C, Franco-Molano, AE, Boekhout, T, 2014. Austroboletus amazonicus sp. nov. and Fistulinella campinaranae var. scrobiculata, two commonly occurring boletes from a forest dominated by Pseudomonotes tropenbosii (Dipterocarpaceae) in Colombian Amazonia. Mycologia 106 (5): 1004 - 1014, DOI: https://doi.org/10.3852/13-324
  • Fechner, N, Bonito, G, Bougher, NL, Lebel, T, Halling, RE, 2017. New species of Austroboletus (Boletaceae) in Australia. Mycological Progress 16 (8): 769 - 775, DOI: https://doi.org/10.1007/s11557-017-1314-0
  • Hosen, MI, Feng, B, Wu, G, Zhu, XT, Li, YC, Yang, ZL, 2013. Borofutus, a new genus of Boletaceae from tropical Asia: Phylogeny, morphology, and taxonomy. Fungal Diversity 58 (1): 215 - 226, DOI: https://doi.org/10.1007/s13225-012-0211-8
  • Binder, M, Hibbett, DS, 2006. Molecular systematics and biological diversification of Boletales. Mycologia 98 (6): 971 - 983, DOI: https://doi.org/10.1080/15572536.2006.11832626
  • Porter, TM, Skillman, JE, Moncalvo, JM, 2008. Fruiting body and soil rDNA sampling detects complementary assemblage of Agaricomycotina (Basidiomycota, fungi) in a hemlock-dominated forest plot in southern Ontario. Molecular Ecology 17 (13): 3037 - 3050, DOI: https://doi.org/10.1111/j.1365-294X.2008.03813.x
  • Young, AP, Evans, RC, Newell, R, Walker, AK, 2019. Development of a DNA barcoding protocol for fungal specimens from the E.C. Smith Herbarium (ACAD). Northeastern Naturalist 26 (3): 465 - 483, DOI: https://doi.org/10.1656/045.026.0302
  • Victoroff, C, 2020. Response of ectomycorrhizal fungal fruiting to nitrogen and phosphorus additions in Bartlett Experimental Forest, New Hampshire. Dissertations and Theses. PhD Thesis, New Hampshire, USA 167: 1 - 104, https://digitalcommons.esf.edu/etds/167
  • Drehmel, D, James, T, Vilgalys, R, 2008. Molecular phylogeny and biodiversity of the boletes. fungi 1: 17 - 23
  • Orihara, T, Lebel, T, Ge, ZW, Smith, ME, Maekawa, N, 2016. Evolutionary history of the sequestrate genus Rossbeevera (Boletaceae) reveals a new genus Turmalinea and highlights the utility of ITS minisatellite-like insertions for molecular identification. Persoonia 37 (1): 173 - 198, DOI: https://doi.org/10.3767/003158516X691212
  • Smith, ME, Henkel, TW, Catherine, AM, Fremier, AK, Vilgalys, R, 2011. Ectomycorrhizal fungal diversity and community structure on three co-occurring leguminous canopy tree species in a Neotropical rainforest. The New Phytologist 192 (3): 699 - 712, DOI: https://doi.org/10.1111/j.1469-8137.2011.03844.x
  • Wu, G, Feng, B, Xu, J, Zhu, XT, Li, YC, Zeng, NK, Hosen, MI, Yang, ZL, 2014. Molecular phylogenetic analyses re-define seven major clades and reveal 22 new generic clades in the fungal family Boletaceae. Fungal Diversity 69 (1): 93 - 115, DOI: https://doi.org/10.1007/s13225-014-0283-8
  • Vadthanarat, S, Lumyong, S, Raspe, O, 2019. Cacaoporus, a new Boletaceae genus, with two new species from Thailand. MycoKeys 54: 1 - 29, DOI: https://doi.org/10.3897/mycokeys.54.35018
  • Gelardi, M, Angelini, C, Costanzo, F, Ercole, E, Ortiz-Santana, B, Vizzini, A, 2020. Outstanding pinkish brown-spored Neotropical Boletes: Austroboletus subflavidus and Fistulinella gloeocarpa (Boletaceae, Boletales) from the Dominican Republic. Mycobiology.
  • Orihara, T, Smith, ME, Shimomura, N, Iwase, K, Maekawa, N, 2012. Diversity and systematics of the sequestrate genus Octaviania in Japan: Two new subgenera and eleven new species. Persoonia 28 (1): 85 - 112, DOI: https://doi.org/10.3767/003158512X650121
  • Wu, G, Li, YC, Zhu, XT, Zhao, K, Han, LH, Cui, YY, Li, F, Xu, JP, Yang, ZL, 2016. One hundred noteworthy boletes from China. Fungal Diversity 81 (1): 25 - 188, DOI: https://doi.org/10.1007/s13225-016-0375-8
  • Morris, MH, Perez-Perez, MA, Smith, ME, Bledsoe, CS, 2008. Multiple species of ectomycorrhizal fungi are frequently detected on individual oak root tips in a tropical cloud forest. Mycorrhiza 18 (8): 375 - 383, DOI: https://doi.org/10.1007/s00572-008-0186-1
  • Halling, RE, Nuhn, M, Osmundson, T, Fechner, N, Trappe, JM, Soytong, K, Arora, D, Hibbett, DS, Binder, M, 2012. Affinities of the Boletus chromapes group to Royoungia and the description of two new genera, Harrya and Australopilus. Australian Systematic Botany 25(6): 418-431. https://doi.org/10.1071/SB12028
  • Zhu, XT, Wu, G, Zhao, K, Halling, RE, Yang, ZL, 2015. Hourangia, a new genus of Boletaceae to accommodate Xerocomus cheoi and its allied species. Mycological Progress 14(6): e37. https://doi.org/10.1007/s11557-015-1060-0
  • Walker, JF, Miller, OK, Horton, JL, 2005. Hyperdiversity of ectomycorrhizal fungus assemblages on oak seedlings in mixed forests in the Southern Appalachian Mountains. Molecular Ecology 14: 829 - 838, DOI: https://doi.org/10.1111/j.1365-294X.2005.02455.x
  • Obase, K, Cha, JY, Lee, JK, Lee, SY, Chun, KW, 2012. Ectomycorrhizal fungal community associated with naturally regenerating Pinus densiflora Sieb. et Zucc. seedlings on exposed granite slopes along woodland paths. Journal of Forest Research 17 (4): 388 - 392, DOI: https://doi.org/10.1007/s10310-011-0301-6
  • Miyamoto, Y, Narimatsu, M, Nara, K, 2018. Effects of climate, distance, and a geographic barrier on ectomycorrhizal fungal communities in Japan: A comparison across Blakiston's Line. Fungal Ecology 33: 125 - 133, DOI: https://doi.org/10.1016/j.funeco.2018.01.007
  • Ma, D, Yang, G, Mu, L, 2010. Morphological and molecular analyses of ectomycorrhizal diversity in Pinus densiflora seedlings. Symbiosis 51 (3): 233 - 238, DOI: https://doi.org/10.1007/s13199-010-0079-x
  • Li, YC, Ortiz-Santana, B, Zeng, NK, Yang, BFZL, 2014. Molecular phylogeny and taxonomy of the genus Veloporphyrellus. Mycologia 106(2): 291-306. https://doi.org/10.3852/106.2.291