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Independent evolution of betulin biosynthesis in Inonotus obliquus

dc.contributor.authorSafronov, Omid
dc.contributor.authorLutfullahoglu Bal, Güleycan
dc.contributor.authorSipari, Nina
dc.contributor.authorWilkens, Maya
dc.contributor.authorSafdari, Pezhman
dc.contributor.authorSmolander, Olli-Pekka
dc.contributor.authorLaine, Pia K.
dc.contributor.authorLihavainen, Jenna
dc.contributor.authorSilvan, Niko
dc.contributor.authorRajaraman, Sitaram
dc.contributor.authorPaulin, Lars G.
dc.contributor.authorTeeri, Teemu H.
dc.contributor.authorAuvinen, Petri
dc.contributor.authorSarjala, Tytti
dc.contributor.authorOvermyer, Kirk
dc.contributor.authorRichter, Uwe
dc.contributor.authorSalojärvi, Jarkkko
dc.contributor.departmentid4100210510
dc.contributor.organizationLuonnonvarakeskus
dc.date.accessioned2025-07-08T05:46:55Z
dc.date.issued2025
dc.description.abstractChaga mushroom (Inonotus obliquus) is a fungal species in the family Hymenochaetaceae (Basidiomycota) and the causative agent of white rot decay in Betula species. We assembled a high-quality 50.7 Mbp genome from PacBio sequencing and identified a lineage-specific whole genome duplication event approximately 1.3 million years ago, which has contributed to a major increase in biochemical diversity in the species through preferential retention of cytochrome P450 superfamily members. Secondary metabolism has further evolved through small-scale segmental duplications, such as tandem duplications within fungal biosynthetic gene clusters. Metabolomic fingerprinting confirmed increased complexity in terpene biosynthesis chemistry compared to related species that lacked the duplication event. This metabolic diversity may have arisen from co-evolution with the primary host species, which evolved high betulin content in its bark 4–8 million years ago.
dc.format.pagerange19 p.
dc.identifier.citationHow to cite: Safronov, O., Bal, G.L., Sipari, N. et al. Independent evolution of betulin biosynthesis in Inonotus obliquus. Sci Rep 15, 21319 (2025). https://doi.org/10.1038/s41598-025-05414-1
dc.identifier.urihttps://jukuri.luke.fi/handle/11111/99750
dc.identifier.urlhttps://doi.org/10.1038/s41598-025-05414-1
dc.identifier.urnURN:NBN:fi-fe2025070778033
dc.language.isoen
dc.okm.avoinsaatavuuskytkin1 = Avoimesti saatavilla
dc.okm.corporatecopublicationei
dc.okm.discipline4112
dc.okm.internationalcopublicationon
dc.okm.julkaisukanavaoa1 = Kokonaan avoimessa julkaisukanavassa ilmestynyt julkaisu
dc.okm.selfarchivedon
dc.publisherSpringer Nature
dc.relation.articlenumber21319
dc.relation.doi10.1038/s41598-025-05414-1
dc.relation.ispartofseriesScientific reports
dc.relation.issn2045-2322
dc.relation.volume15
dc.rightsCC BY-NC-ND 4.0
dc.source.justusid123404
dc.subjectchaga mushroom
dc.subjectInonotus obliquus
dc.subjectbetulin biosynthesis
dc.tehOHFO-Kierto-3
dc.titleIndependent evolution of betulin biosynthesis in Inonotus obliquus
dc.typepublication
dc.type.okmfi=A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä|sv=A1 Originalartikel i en vetenskaplig tidskrift|en=A1 Journal article (refereed), original research|
dc.type.versionfi=Publisher's version|sv=Publisher's version|en=Publisher's version|

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