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Type: Article
Published: 2023-07-04
Page range: 272-280
Abstract views: 134
PDF downloaded: 16

Hohenbuehelia filicina sp. nov. (Agaricales, Basidiomycota), from Southwestern Siberia, Russia

Komarov Botanical Institute of the Russian Academy of Sciences, St. Petersburg, Russia
LLC “Signatec”, Novosibirsk, Russia
A.P. Ershov Institute of Informatics Systems, Novosibirsk, Russia
1 new species morphology nrITS ostrich thickets phylogeny pleurotoid fungi taxonomy Fungi

Abstract

Hohenbuehelia filicina, a new species from Southwestern Siberia, Russia is described. It is morphologically, ecologically and phylogenetically well differentiated from the other species of the genus. The unique combination of morphology (relatively long stipe, white fruitbodies) and substrate preference (growing exclusively on live ostrich ferns) make the species easily recognizable even in the field. Phylogenetic analysis was performed to confirm the identity of new species.

References

  1. Ainsworth, A.M., Suz, L.M. & Dentinger, B.T.M. (2016) Hohenbuehelia bonii sp. nov. and H. culmicola: two pearls within the Marram Oyster. Field Mycology 17 (3): 78–86. https://doi.org/10.1016/j.fldmyc.2016.07.004
    Bijeesh, C., Kumar, A.M., Pradeep, C.K. & Vrinda, K.B. (2019) A new species of Hohenbuehelia (Pleurotaceae) from India. Phytotaxa 420 (1): 56–64. https://doi.org/10.11646/phytotaxa.420.1.3
    Bolshakov, S., Kalinina, L., Palomozhnykh, E., Potapov, K., Ageyev, D., Arslanov, S., Filippova, N., Palamarchuk, M., Tomchin, D. & Voronina, E. (2021) Agaricoid and boletoid fungi of Russia: the modern country-scale checklist of scientific names based on literature data. Biological Communications 66 (4): 316–325. https://doi.org/10.21638/spbu03.2021.404
    Clémençon, H. (2009) Methods for working with macrofungi: laboratory cultivation and preparation of larger fungi for light microscopy. IHW Verlag, Eching, Germany, 88 pp.
    Consiglio, G. (2016) Nomenclatural novelties. Index Fungorum no. 292 (ISSN 2049-2375).
    Consiglio, G., Setti, L. & Thorn, R.G. (2018) New species of Hohenbuehelia, with comments on the Hohenbuehelia atrocoerulea – Nematoctonus robustus species complex. Persoonia 41: 202–212. https://doi.org/10.3767/persoonia.2018.41.10
    Consiglio, G. & Setti, L. (2018) I Generi Hohenbuehelia e Resupinatus in Europa. A.M.B., Italy. 448 pp.
    Gardes, M. & Bruns, T.D. (1993) ITS primers with enhanced specificity for basidiomycetes – application to the identification of mycorrhizae and rusts. Molecular Ecology 2 (2): 113–118. https://doi.org/10.1111/j.1365-294X.1993.tb00005.x
    GBIF.org (2022) GBIF Occurrence Download https://doi.org/10.15468/dl.hzqvn8
    Holec, J. & Zehnálek, P. (2020) Taxonomy of Hohenbuehelia auriscalpium, H. abietina, H. josserandii, and one record of H. tremula. Czech Mycology 72 (2): 199–220. https://doi.org/10.33585/cmy.72204
    Hu, Y., Karunarathna, S.C., Li, H., Galappaththi, M.C., Zhao, C.L., Kakumyan, P. & Mortimer, P.E. (2022) The impact of drying temperature on basidiospore size. Diversity 14 (4): 239. https://doi.org/10.3390/d14040239
    Katoh, K., Rozewicki, J. & Yamada, K.D. (2019) MAFFT online service: multiple sequence alignment, interactive sequence choice and visualization. Briefings in Bioinformatics 20 (4): 1160–1166. https://doi.org/10.1093/bib/bbx108
    Koziak, A.T.E., Cheng, K.C. & Thorn, R.G. (2007) Phylogenetic analyses of Nematoctonus and Hohenbuehelia (Pleurotaceae). Canadian Journal of Botany 85: 762–773. https://doi.org/10.1139/B07-083.
    Lodge, D.J., Ammirati, J.F., O’Dell, T.E., Mueller, G.M., Huhndorf, S.M., Wang, C.-J., Stokland, J.N., Schmit, J.P., Ryvarden, L., Leacock, P.R., Mata, M., Umaña, L., Wu, Q. & Czederpiltz, D.L. (2004) Terrestrial and lignicolous macrofungi. In: Mueller, G.M., Bills, G.F. & Foster, M.S. (Eds.) Biodiversity of fungi. Inventory and monitoring methods. Burlington, Academic Press. pp. 127–172. https://doi.org/10.1016/B978-012509551-8/50011-8
    Mentrida, C.S. (2016) Species delimitation and phylogenetic analyses of the genus Hohenbuehelia in central Europe. Masterarbeit, Universität Wien. 52 pp. https://doi.org/10.25365/thesis.41111
    Nguyen L-N., Schmidt, H.A., Haeseler von, A. & Minh, B.Q. (2015) IQ-TREE: A fast and effective stochastic algorithm for estimating maximum likelihood phylogenies. Molecular Biology and Evolution 32: 268–274. https://doi.org/10.1093/molbev/msu300
    Papp, V., Király, G., Koscsó, J., Malatinszky, Á., Nagy, T., Takács, A. & Dima, B. (2016) Taxonomical and chorological notes 2 (20–27). Studia botanica hungarica 47 (1): 179–191. https://doi.org/10.17110/StudBot.2016.47.1.179
    Petersen, R.H. & Krisai-Greilhuber, I. (1996) An epitype specimen for Pleurotus ostreatus. Mycological Research 100 (2): 229–235. https://doi.org/10.1016/S0953-7562(96)80128-6
    Schulzer von Müggenburg, S.J., Kanitz, A. & Knapp, J.A. (1866) Die bisher bekannten Pflanzen Slavoniens. C. Czermak, Wien, 172 pp. https://doi.org/10.5962/bhl.title.9926
    Singer, R. & Kuthan, J. (1980) Comparison of some lignicolous white-spored American agarics with European species. Česká Mykologie 34: 57–73.
    Soares, F.E. de F., Sufiate, B.L. & de Queiroz, J.H. (2018) Nematophagous fungi: Far beyond the endoparasite, predator and ovicidal groups. Agriculture and Natural Resources 52 (1): 1–8. https://doi.org/10.1016/j.anres.2018.05.010
    Tamura, K., Stecher, G. & Kumar, S. (2021) MEGA 11: Molecular Evolutionary Genetics Analysis Version 11. Molecular Biology and Evolution 38 (7): 3022–3027. https://doi.org/10.1093/molbev/msab120
    Thorn, R., Moncalvo, J., Reddy, C. & Vilgalys, R. (2000) Phylogenetic analyses and the distribution of nematophagy support a monophyletic Pleurotaceae within the polyphyletic pleurotoid-lentinoid fungi. Mycologia 92: 241–252. https://doi.org/10.2307/3761557
    Thorn, R.G. & Barron, G.L. (1984) Carnivorous mushrooms. Science 224: 76–78. https://doi.org/10.1126/science.224.4644.76
    Thorn, R.G. & Barron, G.L. (1986) Nematoctonus and the tribe resupinateae in Ontario, Canada. Mycotaxon 25: 321–453.
    Vasilkov, B.P. (1961) Tři význačné druhy kloboukatých hub na bylinách. Czech mycology 15 (1): 31–34.
    Vlasenko, V.A., Turmunkh, D. & Vlasenko, A.V. (2022) New combination in the genus Hohenbuehelia (Pleurotaceae). Phytotaxa 555 (2): 200–204. https://doi.org/10.11646/phytotaxa.555.2.9
    Waterhouse, A.M., Procter, J.B., Martin, D.M.A, Clamp, M. & Barton, G.J. (2009) Jalview Version 2 - a multiple sequence alignment editor and analysis workbench. Bioinformatics 25 (9): 1189–1191. https://doi.org/10.1093/bioinformatics/btp033
    Wijayawardene, N.N., Hyde, K., Dai, D., Sánchez-García, M., Goto, B., Saxena, R., Erdoðdu, M., Selçuk, F., Rajeshkumar, K., Aptroot, A., Błaszkowski, J., Boonyuen, N., da Silva, G., de Souza, F., Dong, W., Ertz, D., Haelewaters, D., Jones, E., Karunarathna, S., Kirk, P., Kukwa, M., Kumla, J., Leontyev, D., Lumbsch, H., Maharachchikumbura, S., Marguno, F., Martínez-Rodríguez, P., Mešić, A., Monteiro, J., Oehl, F., Pawłowska, J., Pem, D., Pfliegler, W., Phillips, A., Pošta, A., He, M., Li, J., Raza, M., Sruthi, O., Suetrong, S., Suwannarach, N., Tedersoo, L., Thiyagaraja, V., Tibpromma, S., Tkalčec, Z., Tokarev, Y., Wanasinghe, D., Wijesundara, D., Wimalaseana, S., Madrid, H., Zhang, G., Gao, Y., Sánchez-Castro, I., Tang, L., Stadler, M., Yurkov, A. & Thines, M. (2022) Outline of Fungi and fungus-like taxa. Mycosphere 13 (1): 53–453. https://doi.org/10.5943/mycosphere/13/1/2
    Wijayawardene, N.N., Hyde, K.D., Al-Ani, L.K.T., Tedersoo, L., Haelewaters, D., Rajeshkumar, K.C., Zhao, R.L., Aptroot, A., Leontyev, D.V., Saxena, R.K., Tokarev, Y.S., Dai, D.Q., Letcher, P.M., Stephenson, S.L., Ertz, D., Lumbsch, H.T., Kukwa, M., Issi, I.V., Madrid, H., Phillips, A.J.L., Selbmann, L., Pfliegler, W.P., Horváth, E., Bensch, K., Kirk, P.M., Kolaříková, K., Raja, H.A., Radek, R., Papp, V., Dima, B., Ma, J., Malosso, E., Takamatsu, S., Rambold, G., Gannibal, P.B., Triebel, D., Gautam, A.K., Avasthi, S., Suetrong, S., Timdal, E., Fryar, S.C., Delgado, G., Réblová, M., Doilom, M., Dolatabadi, S., Pawłowska, J., Humber, R.A., Kodsueb, R., Sánchez-Castro, I., Goto, B.T., Silva, D.K.A., de Souza, F.A., Oehl, F., da Silva, G.A., Silva, I.R., Błaszkowski, J., Jobim, K., Maia, L.C., Barbosa, F.R., Fiuza, P.O., Divakar, P.K., Shenoy, B.D., Castañeda-Ruiz, R.F., Somrithipol, S., Lateef, A.A., Karunarathna, S.C., Tibpromma, S., Mortimer, P.E., Wanasinghe, D.N., Phookamsak, R., Xu, J., Wang, Y., Tian, F., Alvarado, P., Li, D.W., Kušan, I., Matočec, N., Maharachchikumbura, S.S.N., Papizadeh, M., Heredia, G., Wartchow, F., Bakhshi, M., Boehm, E., Youssef, N., Hustad, V.P., Lawrey, J.D., Santiago, A.L.C.M.A., Bezerra, J.D.P., Souza-Motta, C.M., Firmino, A.L., Tian, Q., Houbraken, J., Hongsanan, S., Tanaka, K., Dissanayake, A.J., Monteiro, J.S., Grossart, H.P., Suija, A., Weerakoon, G., Etayo, J., Tsurykau, A., Vázquez, V., Mungai, P., Damm, U., Li, Q.R., Zhang, H., Boonmee, S., Lu, Y.Z., Becerra, A.G., Kendrick, B., Brearley, F.Q., Motiejűnaitë, J., Sharma, B., Khare, R., Gaikwad, S., Wijesundara, D.S.A., Tang, L.Z., He, M.Q., Flakus, A., Rodriguez-Flakus, P., Zhurbenko, M.P., McKenzie, E.H.C., Stadler, M., Bhat, D.J., Liu, J.K., Raza, M., Jeewon, R., Nassonova, E.S., Prieto, M., Jayalal, R.G.U., Erdoðdu, M., Yurkov, A., Schnittler, M., Shchepin, O.N., Novozhilov, Y.K., Silva-Filho, A.G.S., Liu, P., Cavender, J.C., Kang, Y., Mohammad, S., Zhang, L.F., Xu, R.F., Li, Y.M., Dayarathne, M.C., Ekanayaka, A.H., Wen, T.C., Deng, C.Y., Pereira, O.L., Navathe, S., Hawksworth, D.L., Fan, X.L., Dissanayake, L.S., Kuhnert, E., Grossart, H.P. & Thines, M. (2020) Outline of Fungi and fungus-like taxa. Mycosphere 11 (1): 1060–1456. https://doi.org/10.5943/mycosphere/11/1/8
    Xu, J., Jiang, Y., Wang, T., Zhang, D., Li, X. & Hosen, M.I. (2023) Morphological characteristics and phylogenetic analyses revealed four new species of Agaricales from China. Frontiers in Microbiology 14: 1118525. https://doi.org/10.3389/fmicb.2023.1118525