249
Views
1
CrossRef citations to date
0
Altmetric
Articles

Mycelial growth of Inonotus obliquus on malt extract media and on wood of different host species

, , , , &
Pages 131-143 | Received 23 Jan 2023, Accepted 27 Apr 2023, Published online: 17 May 2023

References

  • Blanchette RA. 1982. Progressive stages of discoloration and decay associated with the canker-rot fungus, Inonotus obliquus, in birch. Phytopathol. 72(10):1272–1277.
  • Drenkhan R, Adamson K, Hanso M. 2020. Majanduslikku tulu tõotav must pässik võib kahandada oluliselt puidu väärtust. Eesti Mets. 3:34–41. (In Estonian).
  • Drenkhan R, Kaldmäe H, Silm M, Adamson K, Bleive U, Aluvee A, Erik M, Raal A. 2022. Comparative analyses of bioactive compounds in Inonotus obliquus Conks Growing on Alnus and Betula. Biomolecules. 12(9):1178.
  • Drenkhan R, Riit T, Adamson K, Hanso M. 2016. The earliest samples of Hymenoscyphus albidus vs. H. fraxineus in Estonian mycological herbaria. Mycol Prog. 15:835–844.
  • Elkhateeb WA, Daba GM, Thomas PW, Wen TC. 2019. Medicinal mushrooms as a new source of natural therapeutic bioactive compounds. Egyptian Pharmaceutical J. 18(2):88–101.
  • Gardes M, Bruns TD. 1993. ITS primers with enhanced specificity for basidiomycetes-application to the identification of mycorrhizae and rusts. Mol Ecol. 2(2):113–118.
  • Hall TA. 2013. Biological sequence alignment editor and analysis program for Windows 95/98/NT/2000/XP/7 [WWW Document]. BioEdit. [accessed 2022 July 20]. http://www.mbio.ncsu.edu/bioedit/bioedit.html.
  • Ka KH, Jeon SM, Park H, Lee BH, Ryu SR. 2017. Growth of chaga mushroom (Inonotus obliquus) on Betula platyphylla var. japonica. The Korean J Mycol. 45(3):241–245.
  • Kang JH, Jang JE, Mishra SK, Lee HJ, Nho CW, Shin D, Jin M, Kim MK, Choi C, Oh SH. 2015. Ergosterol peroxide from chaga mushroom (Inonotus obliquus) exhibits anti-cancer activity by down-regulation of the β-catenin pathway in colorectal cancer. J Ethnopharmacol. 173:303–312.
  • Kukulyanskaya TA, Kurchenko NV, Kurchenko VP, Babitskaya VG. 2002. Physicochemical properties of melanins produced by the sterile form of Inonotus obliquus (“Chagi”) in natural and cultivated fungus. Appl Biochem Microbiol. 38(1):58–61.
  • Lee MW, Hyeon-Hur Chang KC, Lee TS, Ka KH, Jankovsky L. 2008. Introduction to distribution and ecology of sterile conks of Inonotus obliquus. Mycobiol. 36(4):199–202.
  • Lu Y, Yanan J, Zihan X, Nannan L, Junyu L, Haixia C. 2021. Recent developments in Inonotus obliquus (chaga mushroom) polysaccharides: isolation, structural characteristics, biological activities and application. Polymers (Basel). 13(9):1441. doi:10.3390/polym13091441.
  • Miina J, Peltola R, Veteli P, Linnakoski R, Escribano MC, Haveri-Heikkilä J, Mattila P, Marnila P, Pihlava JM, Hellström J, Sarjala T. 2021. Inoculation success of Inonotus obliquus in living birch (Betula spp.). Forest Ecol Management. 492:119244.
  • Miyashira CH, Tanigushi DG, Gugliotta AM, Santos DYAC. 2010. Comparison of radial growth rate of the mutualistic fungus of Atta sexdens rubropilosa forel in two culture media. Braz J Microbiol. 41:506–511.
  • Niemelä T. 2008. Polypores in Finland and Estonia. Tartu, Estonia: Eesti Loodusfoto; p. 320 (In Estonian).
  • Park H, Ka KH, Lee BH, Ryu SR. 2010. Fruit-body production of Inonotus obliquus on living Betula platyphylla var. japonica. Korean J Mycol. 38(1):83–84.
  • Perevedentseva L. 2013. Use of wild-growing mushrooms for therapeutic purposes in the perm territory, Russia. J Envir Sci Engin. 2(4A):236.
  • Piętka J, Grzywacz A. 2006. Attempts at active protection of Inonotus obliquus by inoculating birches with its mycelium. Acta Mycol. 41(2):305–312.
  • Pilz D. 2004. Chaga and other fungal resources: assessment of sustainable commercial harvesting in Khabarovsk and Primorsky Krais, Russia. Report prepared for Winrock International, Morrilton, Arkansas and the FOREST Project, Khabarovsk, Russia.
  • Ryvarden L, Gilbertson RL. 1993. European polypores. Part 1. Fungiflora, Oslo: Fungiflora; p. 1–387.
  • Saar M. 1991. Fungi in Khanty folk medicine. J Ethnopharmacol. 31(2):175–179.
  • Silvan N, Sarjala T. 2017. Cultivation and antioxidative properties of pakuri (Inonotus obliquus) on low productive peatland forests. In Conference On Non-Timber Forest Products and Bioeconomy, Rovaniemi, Finland. p. 63.
  • Sysoeva MA, Urazlina LN, Khabibrakhmanova VR, Grigoryeva TV, Sysoeva EV. 2020. Isolation of the Inonotus obliquus chaga mushroom strain and intensification of a culture growth during solid-phase cultivation. Proc Univ Appl Chem Biotechnol. 10(1):95–106 (In Russ.). doi:10.21285/2227-2925-2020-10-1-95-106.
  • Szczepkowski A, Sołowiński P, Piętka J, Zaniewski P. 2021. Zdolność rozkładu drewna przez wybrane izolaty błyskoporka podkorowego Inonotus obliquus. Wood decay ability of some isolates of Inonotus obliquus. Sylwan. 165(6):470–478. doi:10.26202/sylwan.2021053.
  • Szychowski KA, Skóra B, Pomianek T, Gmi ́nski J. 2021. Inonotus obliquus–from folk medicine to clinical use. J Traditional Complementary Med. 11(4):293–302.
  • Thomas PW, Elkhateeb WA, Daba GM. 2020. Chaga (Inonotus obliquus): A medical marvel but a conservation dilemma. Sydowia. 72:123–130.
  • Vanhanen H, Peltola R, Ahtikoski A, Pappinen A. 2014. Cultivation of Pakuri (Inonotus obliquus) – potential for new income source for forest owners. 10th International Mycological Congress (IMC10), Bangkok, Thailand, 3–8 August 2014. In: IMC 10 Organizing Committee (ed.), Abstracts, p. 418.
  • White TJ, Bruns TD, Lee S, Taylor J. 1990. Amplification and direct sequencing of fungal ribosomal RNA genes for phylogenetics. In: Innis M.A., Gelfand D.H., Sninsky J.J., White T.J, editors. PCR protocols: a guide to methods and applications. San Diego: Academic Press; p. 315–322.
  • Youn MJ, Kim JK, Park SY, Park C, Kim ES, Park KI, So HS. 2009. Potential anticancer properties of the water extract of Inonotus obliquus by induction of apoptosis in melanoma B16-F10 cells. J Ethnopharmacol. 121:221–228.
  • Zheng W, Miao K, Liu Y, Zhao Y, Zhang M, Pan S, Dai Y. 2010. Chemical diversity of biologically active metabolites in the sclerotia of Inonotus obliquus and submerged culture strategies for up-regulating their production. Appl Microbiol Biotechnol. 87(4):1237–1254.
  • Zhong XH, Ren K, Lu SJ, Yang SY, Sun DZ. 2009. Progress of research on Inonotus obliquus. Chinese J Integr Med. 15(2):156–160.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.