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Type: Article
Published: 2022-06-08
Page range: 219-229
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Coppinsiella extremiorientalis (Teloschistaceae, lichenized Ascomycota), a new species from the Russian Far East and a new genus to the region

Russian Academy of Sciences, Ural Branch: Institute Botanic Garden, Vosmogo Marta Str. 202a, Yekaterinburg 620144, Russia; Sakhalin Branch of Botanical Garden-Institute FEB RAS, 693023 Yuzhno-Sakhalinsk, Russia
Laboratory of Ecological, Medical Biochemistry and Biotechnology, Institute for Biological Problems of Cryolithozone SB RAS, Lenin Street 41, 677980 Yakutsk, Russia; Laboratory of Analytical Photochemistry, Komarov Botanical Institute RAS, Professor Popov Street 2, 197376 St Petersburg, Russia
Federal Scientific Center of the East Asia Terrestrial Biodiversity FEB RAS, Vladivostok 690022, Russia
Federal Scientific Center of the East Asia Terrestrial Biodiversity FEB RAS, Vladivostok 690022, Russia
Institute of Marine Geology and Geophysics of the Far Eastern Branch of the Russian Academy of Sciences, Yuzhno-Sakhalinsk, Russia
Boreal zone Caloplaca s. lat. Coppinsiella fiumana floodplain forests Khabarovsk Territory new taxa phylogeny Sakhalin Region Fungi

Abstract

A new epiphytic species of crustose Teloschistaceae, Coppinsiella extremiorientalis, is described from the floodplain forests of the boreal zone of the Russian Far East. It is characterized by its white to whitish grey, thin to disappearing thallus mostly without anthraquinones, dull orange zeorine pruinose apothecia with an anthraquinones composition corresponding to chemosyndrome A. Phylogeny of the genus Coppinsiella, which was previously unknown in the Far East, is discussed, as well as the morphology, ecology and geographical distribution of Coppinsiella species. A new combination for Caloplaca fiumana, an older name for Coppinsiella orbicularis, is also formally proposed.

References

<p>Acharius, E. (1803) <em>Methodus qua omnes detectos lichenes secundum organa carpomorpha ad genera, species et varietates redigere atque observationibus illustrare tentavit Erik Acharius (Methodus Lichenum).</em> <em>Cum tab. aen.</em>. Impensis F.D.D. Ulrich, typis C.F. Marquard, Stockholm, 394 pp.</p>
<p>Aptroot, A., Van de Vijver, B., Lebouvier, M. &amp; Ertz, D. (2011) Lichens of Ile Amsterdam and Ile Saint Paul (TAAF, southern Indian Ocean). <em>Nova Hedwigia</em> 92: 343–367. https://doi.org/10.1127/0029-5035/2011/0092-0343</p>
<p>Aras, S. &amp; Cansaran, D. (2006) Isolation of DNA for sequence analysis from herbarium material of some lichen specimens. <em>Turkish Journal of Botany </em>30: 449–453.</p>
<p>Arup, U. (2009) The <em>Caloplaca holocarpa</em> group in the Nordic countries, except Iceland. <em>Lichenologist</em> 41: 111–130.</p>
<p>Arup, U., Søchting, U. &amp; Frödén, P. (2013) A new taxonomy of the family Teloschistaceae. <em>Nordic Journal of Botany</em> 31: 16–83. https://doi.org/10.1111/j.1756-1051.2013.00062.x</p>
<p>Bungartz, F., Søchting, U. &amp; Arup, U. (2020) Teloschistaceae (lichenized Ascomycota) from the Galapagos Islands: a phylogenetic revision based on morphological, anatomical, chemical, and molecular data. <em>Plant and Fungal Systematics</em> 65: 515–576. https://doi.org/10.35535/pfsyst-2020-0030</p>
<p>Capella-Gutierrez, S., Silla-Martinez, J.M. &amp; Gabaldon, T. (2009) TrimAl: a tool for automated alignment trimming in large-scale phylogenetic analyses. <em>Bioinformatics</em> 25: 1972–1973. https://doi.org/10.1093/bioinformatics/btp348</p>
<p>Coppins, B.J. &amp; James, P.W. (1979) New or interesting British lichens IV. <em>Lichenologist</em> 11: 139–179. https://doi.org/10.1017/S0024282979000190</p>
<p>Ekman, S. (2001) Molecular phylogeny of the Bacidiaceae (Lecanorales, lichenized Ascomycota). <em>Mycological Research</em> 105: 783–797. https://doi.org/10.1017/S0953756201004269</p>
<p>Erichsen, C.F.E. (1930) Die Flechten des Moränengebietes von Ostschleswig mit Berücksichtigung der angrenzenden Gebiete. <em>Verhandlungen des Botanischen Vereins der Provinz Brandenburg\Verh. Bot. Ver. Prov. Brandenburg</em> 72: 1–68.</p>
<p>Frolov, I.V., Himelbrant, D.E., Stepanchikova, I.S. &amp; Prokopiev, I.A. (2021a) <em>Polycauliona comandorica</em>, a new fruticulose species in the family Teloschistaceae from the Commander Islands, Russia. <em>Lichenologist</em> 53: 299–306. https://doi.org/10.1017/S0024282921000268</p>
<p>Frolov, I.V., Vondrák, J., Konoreva, L.A., Chesnokov, S.V., Himelbrant, D.E., Arup, U., Stepanchikova, I.S., Prokopiev, I.A., Yakovchenko, L.S. &amp; Davydov, E.A. (2021b) Three new species of crustose Teloschistaceae in Siberia and the Far East. <em>Lichenologist</em> 53: 233–243. https://doi.org/10.1017/S0024282921000177</p>
<p>Fries, Th.M. (1860) <em>Lichenes Arctoi</em>. Typis exscripsit C. A. Leffler, Uppsala, 298 pp.</p>
<p>Gardes, M. &amp; Bruns, T.D. (1993) ITS primers with enhanced specificity for basidiomycetes – application to the identification of mycorrhizae and rusts. <em>Molecular Ecology</em> 2: 113–118. https://doi.org/10.1111/j.1365-294X.1993.tb00005.x</p>
<p>Gaya, E., Högnabba, F., Holguin, Á., Molnar, K., Fernández-Brime, S., Stenroos, S., Arup, U., Søchting, U., van den Boom, P., Lücking, R., Sipman, H.J.M. &amp; Lutzoni, F. (2012) Implementing a cumulative supermatrix approach for a comprehensive phylogenetic study of the Teloschistales (Pezizomycotina, Ascomycota). <em>Molecular Phylogenetics and Evolution</em> 63: 374–387. https://doi:10.1016/j.ympev.2012.01.012</p>
<p>Gaya, E., Navarro-Rosinés, P., Llimona, X., Hladun, N. &amp; Lutzoni, F. (2008) Phylogenetic reassessment of the Teloschistaceae (lichenforming Ascomycota, Lecanoromycetes). <em>Mycological Research</em> 112: 528–546. https://doi:10.1016/j.mycres.2007.11.005</p>
<p>Guindon, S. &amp; Gascuel, O. (2003) A simple, fast and accurate method to estimate large phylogenies by maximum-likelihood. <em>Systematic Biology</em> 52: 696–704. https://doi.org/10.1080/10635150390235520</p>
<p>Hall, T.A. (1999) BioEdit: a user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT. <em>Nucleic Acids Symposium Series</em> 41: 95–98.</p>
<p>Katoh, K. &amp; Standley, D.M. (2013) MAFFT multiple sequence alignment software version 7: improvements in performance and usability. <em>Molecular Biology and Evolution</em> 30: 772–780. https://doi.org/10.1093/molbev/mst010</p>
<p>Katoh, K., Kuma, K., Toh, H. &amp; Miyata, T. (2005) MAFFT version 5: improvement in accuracy of multiple sequence alignment. <em>Nucleic Acids Research</em> 33: 511–518. https://doi.org/10.1093/nar/gki198</p>
<p>Kondratyuk, S.Y., Jeong, M.-H., Yu, N.-N., Kärnefelt, I., Thell, A., Elix, J.A., Kim, J., Kondratiuk, A. &amp; Hur, J.-S. (2014) A revised taxonomy for the subfamily Caloplacoideae (Teloschistaceae, Ascomycota) based on molecular phylogeny. <em>Acta Botanica Hungarica</em> 56: 93–123. https://doi.org/10.1556/ABot.56.2014.1-2.10</p>
<p>Kondratyuk, S.Y., Kärnefelt, I., Lőkös, L., Hur, J.-S. &amp; Thell, A. (2018) <em>Coppinsiella</em> and <em>Seawardiella</em> – two new genera of the Xanthorioideae (Teloschistaceae, lichen-forming Ascomycota). <em>Acta Botanica Hungarica</em> 60: 369–386. https://doi.org/10.1556/034.60.2018.3-4.8</p>
<p>Kondratyuk, S.Y., Lőkös, L., Kim, J.A., Kondratiuk, A.S., Jeong, M.-H., Jang, S.H., Oh, S.-O., Wang, X.Y. &amp; Hur, J.-S. (2016) <em>Fauriea</em>, a new genus of the lecanoroid caloplacoid lichens (Teloschistaceae, lichen-forming ascomycetes). <em>Acta Botanica Hungarica</em> 58: 303–318. https://doi.org/10.1556/ABot.58.2016.3-4.6</p>
<p>Lendemer, J.C. (2008) Lichens of Eastern North America Exsiccati, Fascicle VI, Nos. 251–300. <em>Opuscula Philolichenum</em> 5: 97–106.</p>
<p>Lindblom, L. &amp; Søchting, U. (2008) Taxonomic revision of <em>Xanthomendoza borealis</em> and <em>Xanthoria mawsonii</em> (Lecanoromycetes, Ascomycota). <em>Lichenologist</em> 40: 399–409.</p>
<p>Magnusson, A.H. (1944) Lichens from central Asia. Part II. <em>In:</em> Hedin, S. (Ed.) <em>Reports Scientific Exped. Northwest. provinces of China (the Sino-Swedish Expedition). 22, XI, Botany, 2.</em> Aktiebolaget Thule, Stockholm, pp. 1–68.</p>
<p>Malíček, J., Palice, Z. &amp; Vondrák, J. (2018) Additions and corrections to the lichen biota of the Czech Republic. <em>Herzogia</em> 31: 453–475. https://doi.org/10.13158/heia.31.1.2018.453</p>
<p>Posada, D. (2008) jModelTest: phylogenetic model averaging. <em>Molecular Biology and Evolution</em> 25: 1253–1256. https://doi.org/10.1093/molbev/msn083</p>
<p>Ronquist, F. &amp; Huelsenbeck, J.P. (2003) MrBayes 3: Bayesian phylogenetic inference under mixed models. <em>Bioinformatics</em> 19: 1572–1574. https://doi.org/10.1093/bioinformatics/btg180</p>
<p>Smith, C.W., Aptroot, A., Coppins, B.J., Fletcher, A., Gilbert, O.L., James, P.W. &amp; Wolseley, P.A. (Eds.) (2009) <em>The Lichens of Great Britain and Ireland</em>. British Lichen Society, London, 1046 pp.</p>
<p>Søchting, U. (1997) Two major anthraquinone chemosyndromes in Teloschistaceae. <em>Bibliotheca Lichenologica</em> 68: 135–144.</p>
<p>Søchting, U., Garrido-Benavent, I., Seppelt, R., Castello, M., Pérez-Ortega, S., de los Ríos Murillo, A., Frödén, P. &amp; Arup, U. (2014a) <em>Charcotiana</em> and <em>Amundsenia</em>, two new genera in Teloschistaceae (lichenized Ascomycota, subfamily Xanthorioideae) hosting two new species from continental Antarctica, and <em>Austroplaca frigida</em>, a new name for a continental Antarctic species. <em>Lichenologist</em> 46: 763–782. https://doi.org/10.1017/S0024282914000395</p>
<p>Søchting, U., Søgaard, M.Z., Elix, J.A., Arup, U., Elvebakk, J.A. &amp; Sancho, L.G. (2014b) <em>Catenarina</em> (Teloschistaceae, Ascomycota), a new Southern Hemisphere genus with 7-chlorocatenarin. <em>Lichenologist</em> 46: 175–187. https://doi.org/10.1017/S002428291300087X</p>
<p>Steiner, M. &amp; Peveling, E. (1984) Lagerungsbedingte Änderungen der Sporenstruktur bei einigen Arten der Gattung <em>Caloplaca</em> (Lichenes, Teloschistaceae). <em>Beihefte zur Nova Hedwigia</em> 79: 775–787.</p>
<p>Vondrák, J. &amp; Malíček, J. (2015) Teloschistaceae of the localities Velká kotlina and Petrovy kameny in the Hrubý Jeseník Mts. <em>Bryonora</em> 56: 45–55.</p>
<p>Vondrák, J., Frolov, I., Arup, U. &amp; Khodosovtsev, A. (2013b) Methods for phenotypic evaluation of crustose lichens with emphasis on Teloschistaceae. <em>Chornomorskiy Botanichniy Zhurnal</em> 9: 382–405. https://doi.org/10.14255/2308-9628/13.93/6</p>
<p>Vondrák, J., Frolov, I., Davydov, E.A., Yakovchenko, L., Malíček, J., Svoboda, S. &amp; Kubásek, J. (2019) The lichen family Teloschistaceae in the Altai-Sayan region (Central Asia). <em>Phytotaxa</em> 396: 1–66. https://doi:10.11646/phytotaxa.396.1.1</p>
<p>Vondrák, J., Frolov, I., Říha, P., Hrouzek, P., Palice, Z., Nadyeina, O., Halıcı, G., Khodosovtsev, A. &amp; Roux, C. (2013a) New crustose Teloschistaceae in Central Europe. <em>Lichenologist</em> 45: 701–722. https://doi.org/10.1017/S0024282913000455</p>
<p>Vondrák, J., Haji Moniri, M., Malíček, J. &amp; Košnar, J. (2017) Extensive yellow crusts below limestone overhangs: a new taxon close to a minute epiphytic lichen. <em>Nordic Journal of Botany</em> 35: 368–376. https://doi.org/10.1111/njb.01371</p>
<p>Vondrák, J., Shahidin, H., Moniri, M.H., Halıcı, G. &amp; Košnar, J. (2018) Taxonomic and functional diversity in <em>Calogaya</em> (lichenised Ascomycota) in dry continental Asia. <em>Mycological Progress</em> 17: 897–916. https://doi:10.1007/s11557-018-1402-9</p>
<p>Vondrák, J., Šoun, J., Aptroot, A. &amp; Redchenko, O. (2009a) <em>Caloplaca ulcerosa</em>, a maritime species in Europe with a remarkable occurrence in the Czech Republic. <em>Bryonora</em> 44: 1–7.</p>
<p>Vondrák, J., Říha, P., Arup, U. &amp; Søchting, U. (2009b) The taxonomy of the <em>Caloplaca citrina</em> group (Teloschistaceae) in the Black Sea region; with contributions to the cryptic species concept in lichenology. <em>Lichenologist</em> 41: 571–604.</p>
<p>Wetmore, C.M. (2004) The sorediate, corticolous species of <em>Caloplaca</em> in North and Central America. <em>Bryologist</em> 107: 505–520. https://doi.org/10.1639/0007-2745(2004)107[505:TSCSOC]2.0.CO;2</p>
<p>Wetmore, C.M. (2009) New species of <em>Caloplaca</em> (Teloschistaceae) from North America. <em>Bryologist</em> 112: 379–386. https://doi.org/10.1639/0007-2745-112.2.379</p>
<p>White, T.J., Bruns, T., Lee, S. &amp; Taylor, J.W. (1990) Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. <em>In:</em> Innis, M.A., Gelfand, D.H., Sninsky, J.J. &amp; White, T.J. (Eds.) <em>PCR Protocols: a Guide to Methods and Applications</em>. Academic Press, New York, pp. 315–322. https://doi.org/10.1016/B978-0-12-372180-8.50042-1</p>
<p>Wijayawardene, N.N., Hyde, K.D., Dai, D.Q., Sánchez-García, M., Goto, B.T., Saxena, R.K., Erdoðdu, M., Selçuk, F., Rajeshkumar, K.C., Aptroot, A., Błaszkowski, J., Boonyuen, N., da Silva, G.A., de Souza, F.A., Dong, W., Ertz, D., Haelewaters, D., Jones, E.B., Karunarathna, S.C., Kirk, P.M., Kukwa, M., Kumla, J., Leontyev, D.V., Lumbsch, H.T., Maharachchikumbura, S.S.N., Marguno, F., Martínez-Rodríguez, P., Mešić, A., Monteiro, J.S., Oehl, F., Pawłowska, J., Pem, D., Pfliegler, W.P., Phillips, A.J.L., Pošta, A., He, M.Q., Li, J.X., Raza, M., Sruthi, O.P., Suetrong, S., Suwannarach, N., Tedersoo, L., Thiyagaraja, V., Tibpromma, S., Tkalčec, Z., Tokarev, Y.S., Wanasinghe, D.N., Wijesundara, D.S.A., Wimalaseana, S.D.M.K., Madrid, H., Zhang, G.Q., Gao, Y., Sánchez-Castro, I., Tang, L.Z., Stadler, M., Yurkov, A. &amp; Thines, M. (2022) Outline of Fungi and fungus-like taxa—2021. <em>Mycosphere</em> 13: 53–453.&nbsp; https://doi.org/10.5943/mycosphere/13/1/2</p>
<p>Wilk, K., Pabijan, M., Saługa, M., Gaya, E. &amp; Lücking, R. (2021) Phylogenetic revision of South American Teloschistaceae (lichenized Ascomycota, Teloschistales) reveals three new genera and species. <em>Mycologia</em> 113: 278–299. https://doi.org/10.1080/00275514.2020.1830672</p>
<p>Zahlbruckner, A. (1911) Schedae ad “Kryptogamas exsiccatas” editae a Museo Palatino Vindobonensi. Centuria XIX. <em>Annalen des K. K. Naturhistorischen Hofmuseums, Wien</em> 25: 223–252.</p>
<p>Zhou, S. &amp; Stanosz, G.R. (2001) Primers for amplification of mtSSU rDNA, and a phylogenetic study of <em>Botryosphaeria</em> and associated anamorphic fungi. <em>Mycological Research</em> 105: 1033–1044. https://doi.org/10.1016/S0953-7562(08)61965-6</p>
<p>Zoller, S., Scheidegger, S. &amp; Sperisen, C. (1999) PCR primers for the amplification of mitochondrial small subunit ribosomal DNA of lichen-forming ascomycetes. <em>Lichenologist</em> 31: 511–516. https://doi.org/10.1006/lich.1999.0220</p>