Accumulation and Enrichment of Trace Elements by Yeast Cells and Their Applications: A Critical Review

Microorganisms. 2022 Aug 30;10(9):1746. doi: 10.3390/microorganisms10091746.

Abstract

Maintaining the homeostasis balance of trace elements is crucial for the health of organisms. Human health is threatened by diseases caused by a lack of trace elements. Saccharomyces cerevisiae has a wide and close relationship with human daily life and industrial applications. It can not only be used as fermentation products and single-cell proteins, but also as a trace elements supplement that is widely used in food, feed, and medicine. Trace-element-enriched yeast, viz., chromium-, iron-, zinc-, and selenium-enriched yeast, as an impactful microelements supplement, is more efficient, more environmentally friendly, and safer than its inorganic and organic counterparts. Over the last few decades, genetic engineering has been developing large-scaled genetic re-design and reconstruction in yeast. It is hoped that engineered yeast will include a higher concentration of trace elements. In this review, we compare the common supplement forms of several key trace elements. The mechanisms of detoxification and transport of trace elements in yeast are also reviewed thoroughly. Moreover, genes involved in the transport and detoxification of trace elements are summarized. A feasible way of metabolic engineering transformation of S. cerevisiae to produce trace-element-enriched yeast is examined. In addition, the economy, safety, and environmental protection of the engineered yeast are explored, and the future research direction of yeast enriched in trace elements is discussed.

Keywords: Saccharomyces cerevisiae (S. cerevisiae); chromium-, iron-, zinc- and selenium-enriched yeast; metabolic engineering; trace elements.

Publication types

  • Review

Grants and funding

This study was supported by grants from the Zhejiang Provincial Natural Science Foundation of China (Grant Nos. LY19C010005) and National Natural Science Foundation of China (Grant Nos. 31900497).