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The oleaginous yeast Cutaneotrichosporon oleaginosum modifies corn stover alkali lignin

  • Austin Gluth
  • , Yunqiao Pu
  • , Dehong Hu
  • , Xiaowen Chen
  • , Zachary Johnson
  • , Xiaolu Li
  • , Arthur J. Ragauskas
  • , Wei Jun Qian
  • , Tong Zhang
  • , Bin Yang

Research output: Contribution to journalArticlepeer-review

Abstract

The current paradigm in synthetic biology for lignin bioconversion platforms includes primarily bacteria and filamentous fungi. Yeast are notoriously understudied for their role in lignin degradation and utilization, despite their ubiquity in saprophytic microbial communities. A few publications report lignin-modifying yeasts, but investigations to date have relied on model aromatic compounds or lignin-containing substrates replete with other carbon sources. In this work, we use a suite of analytical tools to evaluate interactions between corn stover-extracted lignin and the oleaginous yeast Cutaneotrichosporon oleaginosum. Notably, 2D-NMR analysis showed a significant decrease in the H-lignin component as well as resinol (β-β) and phenylcoumaran (β-5) linkages. Using super-resolution fluorescence microscopy, we demonstrated that this yeast may uptake polymeric lignin and/or undertakes interactions at the cellular envelope. To explore mechanisms of lignin modification, transport, and aromatics catabolism, extensive secretomics and proteomics analyses were conducted. Compared to carbon-limited glucose and “No Carbon” controls, several putative laccases, quinone reductases, superoxide dismutases, and glyoxal/oxalate oxidases were upregulated in the lignin condition. Excitingly, two ferric reductases and an oxalate exchanger were only observed in the lignin condition. These results indicate that C. oleaginosum may perform extracellular quinone redox cycling to generate lignin-modifying reactive oxygen species. These findings enhance our understanding of yeast-lignin interactions and provide valuable insights for validation studies and metabolic engineering.

Original languageEnglish (US)
Article number5656
JournalScientific reports
Volume16
Issue number1
DOIs
StatePublished - Dec 2026
Externally publishedYes

Bibliographical note

Publisher Copyright:
© The Author(s) 2026.

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