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A molecular study of the lichen genus Byssoloma Trevisan (Pilocarpaceae) with descriptions of three new species from China

Published online by Cambridge University Press:  11 November 2020

Wei-Cheng Wang
Affiliation:
State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing100101, China University of Chinese Academy of Sciences, Beijing100049, China
Pieter van den Boom
Affiliation:
Evolution and Conservation Biology Unit, University of Liège, Sart Tilman B22, B-4000Liège, Belgium
Ek Sangvichien
Affiliation:
Department of Biology, Faculty of Science, Ramkhamhaeng University, Bangkok10240, Thailand
Jiang-Chun Wei*
Affiliation:
State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing100101, China University of Chinese Academy of Sciences, Beijing100049, China
*
Author for correspondence: Jiang-Chun Wei. E-mail: weijc2004@126.com

Abstract

A molecular phylogeny of the genus Byssoloma is inferred from mtSSU sequences using Bayesian and maximum likelihood phylogenetic analyses. Byssoloma subdiscordans is resolved as sister to B. citricola rather than to the B. leucoblepharum clade, the B. subundulatum group (species with a compact apothecial margin) is shown to be a monophyletic group, and three species belonging to this group are described as new to science from Hainan Province in China: B. brunneodiscum W. C. Wang & J. C. Wei, with dark brown apothecia, crystals in the excipulum and the presence of 2,5,7-trichloro-3-O-methylnorlichexanthone; B. rubrofuscum W. C. Wang & J. C. Wei, with red-brown apothecia, 3–6-septate ascospores and the presence of 5,7-dichloro-3-O-methylnorlichexanthone; B. melanodiscocarpum W. C. Wang & J. C. Wei, with pure black apothecia, a K+ olive-black hypothecium and the presence of thiophanic acid.

Type
Standard Papers
Copyright
Copyright © The Author(s), 2020. Published by Cambridge University Press on behalf of the British Lichen Society

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References

Andersen, H and Ekman, S (2005) Disintegration of the Micareaceae (lichenized Ascomycota): a molecular phylogeny based on mitochondrial rDNA sequences. Mycological Research 109, 2130.CrossRefGoogle ScholarPubMed
Aptroot, A (2014) Two new genera of Arthoniales from New Caledonia and the Solomon Islands, with the description of eight further species. Bryologist 117, 282289.CrossRefGoogle Scholar
Aptroot, A and Sipman, H (1991) New lichens and lichen records from New Guinea. Willdenowia 20, 221256.Google Scholar
Aptroot, A, Diederich, P, Sérusiaux, E and Sipman, HJM (1997) Lichens and lichenicolous fungi from New Guinea. Bibliotheca Lichenologica 64, 1220.Google Scholar
Aptroot, A, Ferraro, LI, Lai, MJ, Sipman, H and Sparrius, LB (2003) Foliicolous lichens and their lichenicolous ascomycetes from Yunnan and Taiwan. Mycotaxon 88, 4147.Google Scholar
Breuss, O (2013) Byssoloma laurisilvae und Thelotrema lueckingii, zwei neue Flechtenarten aus Madeira. Österreichische Zeitschrift für Pilzkunde 22, 99105.Google Scholar
Breuss, O (2016 a) Byssoloma maderense is not endemic to Macaronesia. Evansia 33, 5462.CrossRefGoogle Scholar
Breuss, O (2016 b) Key to the Byssoloma species (lichenised Ascomycota, Pilocarpaceae) known from Macaronesia. Österreichische Zeitschrift für Pilzkunde 25, 9599.Google Scholar
Cáceres, MES (1999) A new foliicolous Byssoloma (lichenized Ascomycetes: Pilocarpaceae) from the Atlantic rainforest in Pernambuco, Brazil. Mycotaxon 71, 383386.Google Scholar
Cáceres, MES, Santos, MWO, Mendonça, CO, Mota, DA and Aptroot, A (2013) New lichen species of the genera Porina and Byssoloma from an urban Atlantic rainforest patch in Sergipe, NE Brazil. Lichenologist 45, 379382.CrossRefGoogle Scholar
Castresana, J (2000) Selection of conserved blocks from multiple alignments for their use in phylogenetic analysis. Molecular Biology and Evolution 17, 540552.CrossRefGoogle ScholarPubMed
Darriba, D, Taboada, GL, Doallo, R and Posada, D (2012) jModelTest 2: more models, new heuristics and parallel computing. Nature Methods 9, 772.CrossRefGoogle ScholarPubMed
Elix, JA and McCarthy, PM (2018) Ten new lichen species (Ascomycota) from Australia. Australasian Lichenology 82, 2059.Google Scholar
Elix, JA, Lumbsch, HT and Lücking, R (1995) The chemistry of foliicolous lichens. 2. Constituents of some Byssoloma and Sporopodium species. Bibliotheca Lichenologica 58, 8196.Google Scholar
Fárkas, E and Vězda, A (1993) Five new foliicolous lichen species. Folia Geobotanica et Phytotaxonomica 22, 321330.CrossRefGoogle Scholar
Gupta, P and Sinha, GP (2015) Foliicolous lichen new to Uttar Pradesh, India. Geophytology 45, 7780.Google Scholar
Hafellner, J (1984) Studien in Richtung einer natürlicheren Gliederung der Sammelfamilien Lecanoraceae und Lecideaceae. Beiheft zur Nova Hedwigia 79, 241371.Google Scholar
Hermansson, J and Thor, G (2004) Byssoloma subdiscordans and Usnea substerilis new to Sweden. Graphis Scripta 15, 4244.Google Scholar
Huelsenbeck, JP and Ronquist, F (2001) MRBAYES: Bayesian inference of phylogenetic trees. Bioinformatics 17, 754755.CrossRefGoogle ScholarPubMed
Kalb, K and Vězda, A (1990) Die Flechtengattung Byssoloma in der Neotropis (eine taxonomisch-phytogeographische Studie). Nova Hedwigia 51, 435451.Google Scholar
Katoh, K, Asimenos, G and Toh, H (2009) Multiple alignment of DNA sequences with MAFFT. Methods in Molecular Biology 537, 3964.CrossRefGoogle ScholarPubMed
Kondratyuk, SY (1996) Four new species of lichenicolous fungi. In Wasser, SP (ed.), Botany and Mycology for the Next Millennium: Collection of Scientific Articles Devoted to the 70th Anniversary of Academician K. M. Sytnik. Kiev: M. G. Kholodny Institute of Botany, National Academy of Sciences of Ukraine, pp. 309315.Google Scholar
Lücking, R (2006) Foliicolous lichens from French Guiana (northeastern South America). Cryptogamie, Mycologie 27, 121147.Google Scholar
Lücking, R (2008) Foliicolous lichenized fungi. Flora Neotropica Monograph 103, 1866.Google Scholar
Lücking, R (2013) Platygrapha permutans Nyl. is an earlier name for Byssoloma rubrireagens Kalb & Vězda. Lichenologist 45, 579580.CrossRefGoogle Scholar
Lücking, R, Streimann, H and Elix, JA (2001) Further records of foliicolous lichens and lichenicolous fungi from Australasia, with an updated checklist for continental Australia. Lichenologist 33, 195210.CrossRefGoogle Scholar
Lumbsch, HT, Ahti, T, Altermann, S, Amo de Paz, G, Aptroot, A, Arup, U, Bárcenas Peña, A, Bawingan, PA, Benatti, MN, Betancourt, L, et al. (2011) One hundred new species of lichenized fungi: a signature of undiscovered global diversity. Phytotaxa 18, 1127.CrossRefGoogle Scholar
Malcolm, WM and Vězda, A (1995) Two new saxicolous species of the lichen genus Byssoloma from New Zealand. Mycotaxon 55, 357362.Google Scholar
Messuti, MI and de la Rosa, IN (2007) Byssoloma rubromarginatum (Pilocarpaceae: Ascomycota), a new corticolous species from Nothofagus forests in Argentina. Mycological Progress 6, 235238.CrossRefGoogle Scholar
Nguyen, TT, Joshi, S, Lücking, R, Wang, XY, Dzung, NA, Koh, YJ and Hur, JS (2010) Notes on some new records of foliicolous lichens from Vietnam. Taiwania 55, 402406.Google Scholar
Orange, A, James, PW and White, FJ (2010) Microchemical Methods for the Identification of Lichens, 2nd Edn. London: British Lichen Society.Google Scholar
Ronquist, F and Huelsenbeck, JP (2003) MrBayes 3: Bayesian phylogenetic inference under mixed models. Bioinformatics 19, 15721574.CrossRefGoogle ScholarPubMed
Schubert, R, Lücking, R and Lumbsch, HT (2003) New species of foliicolous lichens from ‘La Amistad’ Biosphere Reserve, Costa Rica. Willdenowia 33, 459465.CrossRefGoogle Scholar
Sérusiaux, E (1979) Two new foliicolous lichens from tropical Africa. Lichenologist 11, 181185.CrossRefGoogle Scholar
Sérusiaux, E (1998) Deux nouvelles espèces de Byssoloma Trev. (Lichens, Pilocarpaceae) d'Europe occidentale et de Macaronésie. Cryptogamie, Bryologie, Lichénologie 19, 197209.Google Scholar
Sérusiaux, E, Gómez-Bolea, A, Longán, A and Lücking, R (2002) Byssoloma llimonae sp. nov., from continental Spain, Madeira and the Canary Islands. Lichenologist 34, 183188.CrossRefGoogle Scholar
Sipman, HJM and Aptroot, A (1992) Results of a botanical expedition to Mount Roraima, Guyana. II. Lichens. Tropical Bryology 5, 79108.Google Scholar
Stamatakis, A (2014) RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies. Bioinformatics 30, 13121313.CrossRefGoogle ScholarPubMed
Thor, G, Lücking, R and Matsumoto, T (2000) The foliicolous lichens of Japan. Symbolae Botanicae Upsalienses 32, 172.Google Scholar
van den Boom, PPG (2016) Lichens and lichenicolous fungi of the Azores (Portugal), collected on São Miguel and Terceira with the descriptions of seven new species. Acta Botanica Hungarica 58, 199222.CrossRefGoogle Scholar
Vězda, A (1974) Foliicole Flechten aus der Republik Guinea (W-Africa). II. Acta Musei Silesiae, Opava, series A, 23, 173190.Google Scholar
Vězda, A (1975) Foliicole Flechten aus Tanzania (Ost-Afrika). Folia Geobotanica et Phytotaxonomica 10, 383432.CrossRefGoogle Scholar
Vězda, A (1987) Foliicole Flechten aus Zaire (III). Die Gattung Byssoloma Trevisan. Folia Geobotanica et Phytotaxonomica 22, 7183.CrossRefGoogle Scholar
Wang, WC and Wei, JC (2018) Arthonia, Byssoloma, Calenia, Chroodiscus, Coenogonium, Eremothecella, and Semigyalecta spp. new to China. Mycotaxon 133, 487497.CrossRefGoogle Scholar
Wei, JC (2017) An Enumeration of Lichens in China, 2nd Edn. Beijing: International Academic Publishers.Google Scholar
Zoller, S, Scheidegger, C and Sperisen, C (1999) PCR primers for the amplification of mitochondrial small subunit ribosomal DNA of lichen-forming ascomycetes. Lichenologist 31, 511516.CrossRefGoogle Scholar