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Two New Species of Laccaria (Agaricales, Basidiomycota) from Korea

  • Cho, Hae Jin (School of Biological Sciences and Institute of Microbiology, Seoul National University) ;
  • Lee, Hyun (School of Biological Sciences and Institute of Microbiology, Seoul National University) ;
  • Park, Myung Soo (School of Biological Sciences and Institute of Microbiology, Seoul National University) ;
  • Park, Ki Hyeong (School of Biological Sciences and Institute of Microbiology, Seoul National University) ;
  • Park, Ji Hyun (School of Biological Sciences and Institute of Microbiology, Seoul National University) ;
  • Cho, Yoonhee (School of Biological Sciences and Institute of Microbiology, Seoul National University) ;
  • Kim, Changmu (Microorganism Resources Division, National Institute of Biological Resources) ;
  • Lim, Young Woon (School of Biological Sciences and Institute of Microbiology, Seoul National University)
  • 투고 : 2020.04.28
  • 심사 : 2020.06.15
  • 발행 : 2020.08.31

초록

Species of Laccaria (Hydnangiaceae, Agaricales, and Basidiomycota) are well-known ectomycorrhizal symbionts of a broad range of hosts. Laccaria species are characterized by brown, orange, or purple colored basidiocarps, and globose or oblong, echinulate and multinucleate basidiospores. While some Laccaria species are easily identified at the species level using only the morphological characteristics, others are hard to distinguish at the species level due to small differences in morphology. Heretofore, ten Laccaria species have been reported in Korea. While studying the fungal diversity in the National Parks of Korea, two new Laccaria species were discovered. Species identification was done based on molecular analyses (ITS, 28S rDNA, rpb2, and tef1), then were confirmed by their corresponding morphologies. The two newly discovered Laccaria species are proposed here as Laccaria macrobasidia and Laccaria griseolilacina. The unique morphological characters of L. macrobasidia that distinguish it from its closely related species are orange-brown colored basidiocarp, long basidia and the absence of cheilocystidia. L. griseolilacina is characterized by a light grayish lavender-colored pileus and the absence of cheilocystidia. Two new species are described and illustrated in the present paper.

키워드

참고문헌

  1. Smith SE, Read DJ. Mycorrhizal symbiosis. 3rd ed. New York (NY): Academic Press; 2008. p. 815.
  2. Mueller GM. Systematics of Laccaria (Agaricales) in the continental United States and Canada, with discussions on extralimital taxa and descriptions of extant types. Fieldiana: Botany, New Series no. 30. Chicago (IL): Field Museum of Natural History; 1992. p. 158.
  3. Vincenot L, Nara K, Sthultz C, et al. Extensive gene flow over Europe and possible speciation over Eurasia in the ectomycorrhizal basidiomycete Laccaria amethystina complex. Mol Ecol. 2012;21(2):281-299. https://doi.org/10.1111/j.1365-294X.2011.05392.x
  4. Popa F, Rexer KH, Donges K, et al. Three new Laccaria species from Southwest China (Yunnan). Mycol Progress. 2014;13(4):1105-1117.
  5. Berkeley MJ, Broome CE. Notices of British fungi (1989-2027). Ann Mag Nat Hist. 1883;12(72):370-374. https://doi.org/10.1080/00222938309459647
  6. Singer R. The Agaricales in modern taxonomy. 4th ed. Koenigstein, Germany: Koeltz Scientific Books; 1986. p. 981.
  7. Mueller GM. The Swedish taxa of Laccaria (Tricholomataceae) with notes on their distribution. Nord J Bot. 1991;10(6):665-680. https://doi.org/10.1111/j.1756-1051.1991.tb02108.x
  8. Kropp BR, Mueller GM. Laccaria. In: Cairney JWG, Chambers SM, editors. Ectomycorrhizal fungi key genera in profile. Heidelberg, Germany: Springer; 1999. p. 65-88.
  9. Osmundson TW, Cripps CL, Mueller GM. Morphological and molecular systematics of Rocky Mountain alpine Laccaria. Mycologia. 2005;97(5):949-972. https://doi.org/10.1080/15572536.2006.11832746
  10. Wilson AW, Hosaka K, Perry BA, et al. Laccaria (Agaricomycetes, Basidiomycota) from Tibet (Xizang Autonomous Region, China). Mycoscience. 2013;54(6):406-419. https://doi.org/10.1016/j.myc.2013.01.006
  11. Sheedy EM, Van de Wouw AP, Howlett BJ, et al. Multigene sequence data reveal morphologically cryptic phylogenetic species within the genus Laccaria in southern Australia. Mycologia. 2013;105(3):547-563. https://doi.org/10.3852/12-266
  12. Bruns TD, White TJ, Taylor JW. Fungal molecular systematics. Annu Rev Ecol Syst. 1991;22(1):525-564. https://doi.org/10.1146/annurev.es.22.110191.002521
  13. Gardes M, Bruns TD. ITS primers with enhanced specificity for basidiomycetes-application to the identification of mycorrhizae and rusts. Mol Ecol. 1993;2(2):113-118. https://doi.org/10.1111/j.1365-294X.1993.tb00005.x
  14. Taylor JW, Jacobson DJ, Kroken S, et al. Phylogenetic species recognition and species concepts in fungi. Fungal Genet Biol. 2000;31(1):21-32. https://doi.org/10.1006/fgbi.2000.1228
  15. Popa F, Jimenez SYC, Weisenborn J, et al. A new Laccaria species from cloud forest of Fortuna. Mycol Progress. 2016;15(2):12-19. https://doi.org/10.1007/s11557-015-1156-6
  16. Wilson AW, Hosaka K, Mueller GM. Evolution of ectomycorrhizas as a driver of diversification and biogeographic patterns in the model mycorrhizal mushroom genus Laccaria. New Phytol. 2017;213(4):1862-1873. https://doi.org/10.1111/nph.14270
  17. Cho HJ, Park MS, Lee H, et al. A systematic revision of the ectomycorrhizal genus Laccaria from Korea. Mycologia. 2018;110(5):948-961. https://doi.org/10.1080/00275514.2018.1507542
  18. Breitenbach J, Kranzlin F. Fungi of Switzerland. Vol. 3. Luzern, Switzerland: Verlag Mykologia; 1991. p. 361.
  19. Kornerup A, Wanscher JH. Methuen handbook of colour. London: Eyre Methuen & Co. Ltd.; 1963. p. 252.
  20. Largent D, Johnson D, Watling R. How to identify fungi to genus III: microscopic features. Arcata (CA): Mad River Press; 1977. p. 148.
  21. Rogers SO, Bendich AJ. Extraction of total cellular DNA from plants, algae and fungi. In: Gelvin SB, Schilperoort RA, editors. Plant molecular biology manual. Boston (MA): Kluwer Academic Publishers; 1994. p. 183-190.
  22. Moncalvo JM, Lutzoni FM, Rehner SA, et al. Phylogenetic relationships of agaric fungi based on nuclear large subunit ribosomal DNA sequences. Syst Biol. 2000;49(2):278-305. https://doi.org/10.1080/10635159950173852
  23. Vilgalys R, Hester M. Rapid genetic identification and mapping of enzymatically amplified ribosomal DNA from several Cryptococcus species. J Bacteriol. 1990;172(8):4238-4246. https://doi.org/10.1128/jb.172.8.4238-4246.1990
  24. Liu YJ, Whelen S, Hall BD. Phylogenetic relationships among ascomycetes: evidence from an RNA polymerse II subunit. Mol Biol Evol. 1999;16(12):1799-1808. https://doi.org/10.1093/oxfordjournals.molbev.a026092
  25. Matheny PB, Wang Z, Binder M, et al. Contributions of rpb2 and tef1 to the phylogeny of mushrooms and allies (Basidiomycota, Fungi). Mol Phylogenet Evol. 2007;43(2):430-451. https://doi.org/10.1016/j.ympev.2006.08.024
  26. Rehner SA, Buckley E. A Beauveria phylogeny inferred from nuclear ITS and EF1-alpha sequences: evidence for cryptic diversification and links to Cordyceps teleomorphs. Mycologia. 2005;97(1):84-98. https://doi.org/10.1080/15572536.2006.11832842
  27. Stielow JB, Levesque CA, Seifert KA, et al. One fungus, which genes? Development and assessment of universal primers for potential secondary fungal DNA barcodes. Persoonia. 2015;35:242-263. https://doi.org/10.3767/003158515X689135
  28. Park MS, Fong JJ, Lee H, et al. Delimitation of Russula subgenus Amoenula in Korea using three molecular markers. Mycobiology. 2013;41(4):191-201. https://doi.org/10.5941/MYCO.2013.41.4.191
  29. Tamura K, Peterson D, Peterson N, et al. MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods. Mol Biol Evol. 2011;28(10):2731-2739. https://doi.org/10.1093/molbev/msr121
  30. Katoh K, Standley DM. MAFFT multiple sequence alignment software version 7: improvements in performance and usability. Mol Biol Evol. 2013;30(4):772-780. https://doi.org/10.1093/molbev/mst010
  31. Stamatakis A. RAxML version 8: a tool for phylogenetic analysis and post-analysis of large phylogenies. Bioinformatics. 2014;30(9):1312-1313. https://doi.org/10.1093/bioinformatics/btu033
  32. Miller MA, Pfeiffer W, Schwartz T. Creating the CIPRES science gateway for inference of large phylogenetic trees. SC10 workshop on gateway computing environments (GCE10); Nov 13-19. ; New Orleans (LA): IEEE Computer Society; 2010. p. 1-8.
  33. Stamatakis A. Phylogenetic models of rate heterogeneity: a high performance computing perspective. Proceedings 20th IEEE international parallel & distributed processing symposium. Rhodes Island, Greece: IEEE; 2006. p. 278.
  34. Montoya L, Bandala VM, Baroni TJ, et al. A new species of Laccaria in montane cloud forest from eastern Mexico. Mycoscience. 2015;56(6):597-605. https://doi.org/10.1016/j.myc.2015.06.002
  35. Latha KD, Raj KA, Manimohan P. Laccaria violaceotincta: a new species from tropical India based on morphology and molecular phylogeny. Phytotaxa. 2019;392(2):140-146. https://doi.org/10.11646/phytotaxa.392.2.3
  36. Mueller GM, Vellinga EC. Taxonomic and nomenclatural notes on Laccaria B. & Br. Laccaria amethystea, L. fraterna, L. laccata, L. pumila, and their synonyms. Persoonia. 1986;13:27-43.
  37. Vincenot L, Popa F, Laso F, et al. Out of Asia: biogeography of fungal populations reveals Asian origin of diversification of the Laccaria amethystina complex, and two new species of violet Laccaria. Fungal Biol. 2017;121(11):939-955. https://doi.org/10.1016/j.funbio.2017.08.001
  38. Hongo T. Notulae mycologicae (10). Memoirs Shiga Univ. 1971;21:62-68.
  39. Wang B, Qiu YL. Phylogenetic distribution and evolution of mycorrhizas in land plants. Mycorrhiza. 2006;16(5):299-363. https://doi.org/10.1007/s00572-005-0033-6
  40. Ishida TA, Nara K, Hogetsu T. Host effects on ectomycorrhizal fungal communities: insight from eight host species in mixed conifer-broadleaf forests. New Phytol. 2007;174(2):430-440. https://doi.org/10.1111/j.1469-8137.2007.02016.x
  41. Wilson AW, May TW, Mueller GM, et al. 2017b. Biogeography of the ectomycorrhizal mushroom genus Laccaria. In: Tedersoo L, editor. Biogeography of mycorrhizal symbiosis. Cham, Switzerland: Springer; p.273-297.
  42. Molina R, Massicotte H, Trappe JM. Specificity phenomena in mycorrhizal symbiosis: communityecological consequences and practical implications. In: Allen MF, editor. Mycorrhizal functioning: an integrative plant-fungal process. New York (NY): Chapman and Hall; 1992. p. 357-423.
  43. Sheedy EM, Van de Wouw AP, Howlett BJ, et al. Population genetic structure of the ectomycorrhizal fungus Laccaria sp. A resembles that of its host tree Nothofagus cunninghamii. Fungal Ecol. 2015;13:23-32. https://doi.org/10.1016/j.funeco.2014.08.005
  44. Hoiland K. Sand dune fungi on Lista (Vest-Agder, SW Norway) revisited after 33 years. Agarica. 2006;26:39-54.

피인용 문헌

  1. Determination of Diversity, Distribution and Host Specificity of Korean Laccaria Using Four Approaches vol.49, pp.5, 2020, https://doi.org/10.1080/12298093.2021.1940747