Morphological characteristics and phylogenetic analyses revealed four new wood inhabiting fungi (Agaricomycetes, Basidiomycota) in Xizang Autonomous Region, China
Authors/Creators
- 1. Southwest Forestry University, Kunming, China
- 2. Tibet Agricultural & Animal Husbandry University, Nyingchi, China
- 3. Beijing Forestry University, Beijing, China
Description
Four new fungi from Xizang in southwest China, Calocera ramaria, Ceraceomyces rhizomorphus, Leptosporomyces linzhiensis, and Ramaria xizangensis are described and illustrated based on the morphological and molecular evidence. Calocera ramaria is characterized by the ramal and bright orange basidiomata, a monomitic hyphal system with simple septa generative hyphae, usually 4-septate basidiospores; Ceraceomyces rhizomorphus is characterized by the cream to yellowish basidiomata with rhizomorphs, cylindrical basidiospores; Leptosporomyces linzhiensis is characterized by white with pink basidiomata, cylindrical to oblong ellipsoid basidiospores; Ramaria xizangensis is characterized by flesh pink basidiomata, branched dichotomously in 4–5 ranks, a monomitic hyphal system with clamped generative hyphae, ellipsoid to cylindrical and densely warted basidiospores.
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References
- Anonymous (1969) Flora of British Fungi. Colour Identification Chart. Her Majesty's Stationery Office, London.
- Bao Y (2020) Mycoflora Biodiversity and Genetic Variation of Macrofungi in Alpine Meadow of Tibet. Northeast Normal University.
- Bernicchia A, Gorjón SP (2010) Fungi Europaei 12. Corticiaceae s.l. Edizioni Candusso, Alassio, Italy, 1008 pp.
- Binder M, Larsson KH, Matheny PB, Hibbett DS (2010) Amylocorticiales ord. nov. and Jaapiales ord. nov.: Early diverging clades of Agaricomycetidae dominated by corticioid forms. Mycologia 102(4): 865–880. https://doi.org/10.3852/09-288
- Chikowski R, Larsson KH, Gibertoni TB (2016) Ceraceomyces atlanticus (Amylocorticiales, Basidiomycota), a new species from the Atlantic Rain Forest, Brazil. Phytotaxa 296(1): 73–80. https://doi.org/10.11646/phytotaxa.296.1.5
- Coker WC (1923) The Clavarias of the United States and Canada. Chapel Hill, 209 pp.
- Corner EJH (1950) A monograph of Clavaria and allied genera. Annals of Botany Memoirs 1: 1–740.
- Cui BK, Li HJ, Ji X, Zhou JL, Song J, Si J, Yang ZL, Dai YC (2019) Species diversity, taxonomy and phylogeny of Polyporaceae (Basidiomycota) in China. Fungal Diversity 97(1): 137–392. https://doi.org/10.1007/s13225-019-00427-4
- Doty MS (1944) Clavaria, the species known from Oregon and the Pacific Northwest.
- El-Gharabawy HM, Leal-Dutra CA, Griffith GW (2021) Crystallicutis gen. nov. (Irpicaceae, Basidiomycota), including C. damiettensis sp. nov., found on Phoenix dactylifera (date palm) trunks in the Nile Delta of Egypt. Fungal Biology 125(6): 447–458. https://doi.org/10.1016/j.funbio.2021.01.004
- Exeter RL, Norvell L, Cazares E (2006) Ramaria of the Pacific Northwestern United States. United States Department of Interior, Bureau of Land Management. Salem, Oregon USA, 156 pp.
- Fan LF, Wu YD, Wu F, Dai YC (2021) Calocera tibetica sp. nov. (Dacrymycetaceae, Dacrymycetales) from southwestern China. Phytotaxa 500: 133–141. https://doi.org/10.11646/phytotaxa.500.2.6
- Fisher MC (1931) A comparative morphological study of certain species of the Dacryomycetaceae. The Proceedings 38(1): 115–125.
- Gäumann EA (1953) The Fungi: a description of their morphological features and evolutionary development, (Translated by Wynd FL). Hafner Publishing, New York and London, 420 pp.
- Giachini AJ, Hosaka K, Nouhra E, Spatafora J, Trappe JM (2010) Phylogenetic relationships of the Gomphales based on nuc-25S-rDNA, mit-12S-rDNA, and mit-atp6-DNA combined sequences. Fungal Biology 114(2–3): 224–234. https://doi.org/10.1016/j.funbio.2010.01.002
- Hall TA (1999) Bioedit: A user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. Nucleic Acids Symposium Series 41: 95–98.
- Hanif M, Khalid AN, Exeter RL (2019) Ramaria flavescentoides sp. nov. with clamped basidia from Pakistan. Mycotaxon 134: 399–406. https://doi.org/10.5248/134.399
- Herter WGF (1910) Autobasidiomycetes. Kryptogamen-Flora der Mark Brandenburg 6: 1–192.
- Hodkinson BP, Moncada B, Lücking R (2014) Lepidostromatales, a new order of lichenized fungi (Basidiomycota, Agaricomycetes), with two new genera, Ertzia and Sulzbacheromyces, and one new species, Lepidostroma winklerianum. Fungal Diversity 64(1): 165–179. https://doi.org/10.1007/s13225-013-0267-0
- Hosaka K, Bates ST, Beever RE, Castellano MA, Colgan W III, Dominguez LS, Trappe JM (2006) Molecular phylogenetics of the gomphoidphalloid fungi with an establishment of the new subclass Phallomycetidae and two new orders. Mycologia 98(6): 949–959. https://doi.org/10.1080/15572536.2006.11832624
- Humpert AJ, Muench EL, Giachini AJ, Castellano MA, Spatafora JW (2001) Molecular phylogenetics of Ramaria and related genera: evidence from nuclear large subunit and mitochondrial small subunit rDNA sequences. Mycologia 93: 465–477. https://doi.org/10.2307/3761733
- Jülich W (1972) Monographie der Athelieae (Corticiaceae, Basidiomycetes). Willdenowia Beiheft 7: 1–283.
- Kalyaanamoorthy S, Minh BQ, Wong TKF, von Haeseler A, Jermiin LS (2017) ModelFinder: Fast model selection for accurate phylogenetic estimates. Nature Methods 14(6): 587–589. https://doi.org/10.1038/nmeth.4285
- Katoh K, Rozewicki J, Yamada KD (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
- Ke ZD (2016) Studies on macrofungi diversity in Shergyla Mountain National Nature Reserve in Tibet. Jilin Agricultural University.
- Kirk PM, Ainsworth GC, Cannon PF, Minter DW (2008) Ainsworth and Bisby's dictionary of fungi, 10th edn. CAB International, UK. https://doi.org/10.1079/9780851998268.0000
- Knudson AG (2012) The genus Ramaria in Minnesota. Master of Science thesis, University of Minnesota.
- Larsson KH (2007) Re-thinking the classification of corticioid fungi. Mycological Research 111(9): 1040–1063. https://doi.org/10.1016/j.mycres.2007.08.001
- Larsson KH, Larsson E, Kõljalg U (2004) High phylogenetic diversity among corticoid homobasidiomycetes. Mycological Research 108(9): 983–1002. https://doi.org/10.1017/S0953756204000851
- Liu S, Chen YY, Sun YF, He XL, Song CG, Si J, Liu DM, Gates G, Cui BK (2023) Systematic classification and phylogenetic relationships of the brown-rot fungi within the Polyporales. Fungal Diversity 118(1): 1–94. https://doi.org/10.1007/s13225-022-00511-2
- Lowy B (1971) Tremellales. Flora Neotropica 6(8): 1–153.
- Marr CD, Stuntz DE (1973) Ramaria of Western Washington. Bibliotheca Mycologica, Germany, 38 pp.
- Martin GW (1948) New of noteworthy tropical fungi. IV. Lloydia 11(2): 111–122.
- McNabb RFR (1965) Taxonomic studies in the Dacrymycetaceae 2. Calocera (Fries) Fries. New Zealand Journal of Botany 3: 31–58. https://doi.org/10.1080/0028825X.1965.10428712
- Miller MA, Pfeiffer W, Schwartz T (2010) Creating the CIPRES Science Gateway for inference of large phylogenetic trees. In Proceedings of the Gateway Computing Environments Workshop, New Orleans, 8 pp. https://doi.org/10.1109/GCE.2010.5676129
- Nees Esenbeck (1817) System der Pilze und Schwämme, 334 pp.
- Peng YB, Liu B, Li F (1992) Flora Fungorum Sinicorum Vol. 2. Tremellales et Dacrymycetales. Science Press, Beijing, 151 pp.
- Petersen JH (1996) Farvekort. The Danish Mycological Society's colour-chart. Foreningen til Svampekundskabens Fremme, Greve, 6 pp.
- Petersen RH (1981) Ramaria subgenus Echinoramaria. Bibliotheca Mycologia 261 pp.
- Petersen RH, Zang M (1986) New or interesting clavarioid fungi from Yunnan, China. Plant Diversity 8(3): 281–294.
- Prasher IB (2015) Wood-rotting non-gilled Agaricomycetes of Himalayas. Fungal Diversity Research Series, Chiang Rai, 653 pp. https://doi.org/10.1007/978-94-017-9858-7
- Pubu CR, Wang M, Liu XY (2016) A review of investigation of fungi in Tibet. Mycosystema 35(9): 1025–1047. https://doi.org/10.13346/j.mycosystema.150158
- Ronquist F, Huelsenbeck JP (2003) MrBayes 3: Bayesian phylogenetic inference under mixed models. Bioinformatics 19(12): 1572–1574. https://doi.org/10.1093/bioinformatics/btg180
- Ryvarden L, Gilbertson RL (1993) European polypores. Part 1. Synopsis Fungorum 6: 1–387.
- Shirouzu T, Hirose D, Tokumasu S (2007) Sequence analyses of the 28S rRNA gene D1/D2 region suggest Dacrymyces (Heterobasidiomycetes, Dacrymycetales) is polyphyletic. Mycoscience 48(6): 388–394. https://doi.org/10.1007/S10267-007-0378-0
- Shirouzu T, Hirose D, Tokumasu S (2009) Taxonomic study of the Japanese Dacrymycetes. Persoonia 23(1): 16–34. https://doi.org/10.3767/003158509X468443
- Shirouzu T, Hosaka K, Nam KO, Weir BS, Johnston PR, Hosoya T (2017) Phylogenetic relationships of eight new Dacrymycetes collected from New Zealand. Persoonia 38(1): 156–169. https://doi.org/10.3767/003158517X695280
- Sulistyo BP, Larsson KH, Haelewaters D, Ryberg M (2021) Multigene phylogeny and taxonomic revision of Atheliales s.l.: Reinstatement of three families and one new family, Lobuliciaceae fam. nov. Fungal Biology 125(3): 239–255. https://doi.org/10.1016/j.funbio.2020.11.007
- Wang SH, Li GJ, Phurbu D, He MQ, Zhang MZ, Zhu XY, Li JX, Zhao RL, Cao B (2023) Four new species of Russula from the Xizang Autonomous Region and other provinces of China. Mycology 15(2): 1–28. https://doi.org/10.1080/21501203.2023.2265667
- Wei CL, Chen CC, He SH, Wu SH (2022) Dendrocorticiopsis orientalis gen. et sp. nov. of the Punctulariaceae (Corticiales, Basidiomycota) revealed by molecular data. MycoKeys 90: 19–30. https://doi.org/10.3897/mycokeys.90.84562
- White TJ, Bruns T, Lee S, Taylor J (1990) Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In: MA, Gefand DH, Sninsky JJ, White MJT (Eds) PCR Protocols: a guide to methods and applications; Academic Press, San Diego, 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1
- Wijayawardene NN, Hyde KD, Al-Ani LKT, Tedersoo L, Haelewaters D, Rajeshkumar KC, Zhao RL, Aptroot A, Leontyev DV, Saxena RK, Tokarev YS, Dai DQ, Letcher PM, Stephenson SL, Ertz D et al. (2020) Outline of fungi and fungus-like taxa. Mycosphere 11(1): 1160–1456. https://doi.org/10.5943/mycosphere/11/1/8
- Wu SH, Shih K, Yu SY (2011) Calocera bambusicola sp. nov. and C. sinensis newly recorded from Taiwan. Mycotaxon 115(1): 163–169. https://doi.org/10.5248/115.163
- Yang Y, Jiang Q, Li Q, Yang J, Cha L, Cheng L, Yang S, Zhao C, Zhou H (2023) Molecular systematics and taxonomic analyses of three new wood-inhabiting fungi of Hyphoderma (Hyphodermataceae, Basidiomycota). Journal of Fungi 9(11): 1044. https://doi.org/10.3390/jof9111044
- Yuan Q, Luo KY, Zhang Y, Zhao CL (2023) Morphological characteristics and phylogenetic analyses revealed three new wood-inhabiting fungi (Agaricomycetes, Basidiomycota) in Southern China. Phytotaxa 592(3): 179–195. https://doi.org/10.11646/phytotaxa.592.3.1
- Yurchenko K, Wołkowycki M (2022) New species of corticioid fungi (Basidiomycota) for Poland found in Białowieża Primeval Forest in 2018–2020. Acta Mycologica 58: 1–18. https://doi.org/10.5586/am.577
- Zamora JC, Ekman S (2020) Phylogeny and character evolution in the Dacrymycetes, and systematics of Unilacrymaceae and Dacryonaemataceae fam. nov. Persoonia 44(1): 161–205. https://doi.org/10.3767/persoonia.2020.44.07
- Zhao LF, Li XG (1987) Partial fungal list of Nyingchi region, Milin, Tibet. Journal of Southwest Forestry College 7(1): 55–58. [Natural Science]
- Zhao CL, Qu MH, Huang RX, Karunarathna SC (2023) Multi‐gene phylogeny and taxonomy of the wood‐rotting fungal genus Phlebia sensu lato (Polyporales, Basidiomycota). Journal of Fungi 320(9): 1–41. https://doi.org/10.3390/jof9030320