The wood decay fungus Cerrena unicolor adjusts its metabolism to grow on various types of wood and light conditions

PLoS One. 2019 Feb 5;14(2):e0211744. doi: 10.1371/journal.pone.0211744. eCollection 2019.

Abstract

Cerrena unicolor is a wood-degrading basidiomycete with ecological and biotechnological importance. Comprehensive Biolog-based analysis was performed to assess the metabolic capabilities and sensitivity to chemicals of C. unicolor FCL139 growing in various sawdust substrates and light conditions. The metabolic preferences of the fungus towards utilization of specific substrates were shown to be correlated with the sawdust medium applied for fungus growth and the light conditions. The highest catabolic activity of C. unicolor was observed after fungus precultivation on birch and ash sawdust media. The fungus growing in the dark showed the highest metabolic activity which was indicated by capacity to utilize a broad spectrum of compounds and the decomposition of 74/95 of the carbon sources. In all the culture light conditions, p-hydroxyphenylacetic acid was the most readily metabolized compound. The greatest tolerance to chemicals was also observed during C. unicolor growth in darkness. The fungus was the most sensitive to nitrogen compounds and antibiotics, but more resistant to chelators. Comparative analysis of C. unicolor and selected wood-decay fungi from different taxonomic and ecological groups revealed average catabolic activity of the fungus. However, C. unicolor showed outstanding capabilities to catabolize salicin and arbutin. The obtained picture of C. unicolor metabolism showed that the fungus abilities to decompose woody plant material are influenced by various environmental factors.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptation, Physiological / physiology*
  • Light*
  • Polyporales / growth & development*
  • Wood / microbiology*

Grants and funding

This work was financially supported by the National Science Centre (Poland) based on the decision number DEC-2014/15/B/NZ9/01990 and DEC-2013/09/B/NZ9/01829 (GJ). https://ncn.gov.pl/. The Biolog analyses were performed using equipment purchased within the EU Operational Programme Eastern Poland 2007-2013 – Regional Laboratory of Renewable Energy, IA PAS. http://www.polskawschodnia.gov.pl/. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.