Establishment of a protoplast transformation method for the oleaginous yeast Rhodotorula toruloides
Journal article, 2026

Rhodotorula toruloides is an oleaginous yeast with great potential for chemical and biofuel production, due to its ability to utilize lignocellulosic biomass and to produce high levels of carotenoids and storage lipids. However, its broader application in biotechnology has been limited by the lack of efficient genetic transformation methods. Although protoplast transformation is wildly used in fungal systems, it has remained largely unexplored in R. toruloides. In this study, we established a protoplast transformation protocol using linear DNA fragments and R. toruloides strain BOT-A2, a recently isolated strain with high lipid-producing potential. We first confirmed that BOT-A2 is a MAT A2 haploid strain. We then produced a beta-1,3-glucomannanase (Man5C) that effectively digests the R. toruloides cell wall. Key parameters affecting transformation efficiency were systematically optimized, including the Man5C digestion conditions, antibiotic selection pressure, cell growth phase, protoplast yield and viability, PEG formulation, calcium ion concentration, and regeneration conditions. Using the optimized protocol, we successfully transformed BOT-A2 with three heterologous resistance cassettes (hygromycin R, bleomycin, and G418) yielding 190, 226, and 244 transformants per & micro;g of DNA, respectively. This method provides a platform for genetic manipulation and is expected to facilitate both fundamental research and metabolic engineering in R. toruloides BOT-A2. A protoplast-based transformation method was established for the oleaginous yeast Rhodotorula toruloides, providing a new tool for genetic engineering and biofuel-related research.

linear DNA fragment

BOT-A2

protoplast transformation

oleaginous yeast

Rhodotorula toruloides

Author

Xin Chen

Novo Nordisk Foundation

Chalmers, Life Sciences, Systems and Synthetic Biology

Verena Siewers

Chalmers, Life Sciences, Systems and Synthetic Biology

Novo Nordisk Foundation

FEMS Yeast Research

1567-1356 (ISSN) 1567-1364 (eISSN)

Vol. 26 foag028

Livsmedelsingredienser från CO2 med mikrobiella konsortia

Swedish Foundation for Strategic Research (SSF) (FFF20-0027), 2022-01-01 -- 2026-12-31.

Microbial production of vitamin-enriched food oils

Novo Nordisk Foundation (NNF23OC0086516), 2024-01-01 -- 2026-12-31.

Subject Categories (SSIF 2025)

Molecular Biology

Microbiology

Genetics and Genomics

DOI

10.1093/femsyr/foag028

PubMed

42364246

More information

Latest update

7/16/2026