13.4
Wild-type strains may not meet large-scale productivity requirements, so industrial production often benefits from strains optimized beyond the wild type.
Several methods are employed to improve strains, including the isolation of desirable natural variants, the induction of mutations, and targeted metabolic engineering.
In large-scale ethanol production, improved strains of Saccharomyces cerevisiae are routinely used.
Wild-type Saccharomyces cerevisiae cultures are deliberately exposed to high ethanol concentrations that are gradually increased over many generations to impose selective pressure.
This process allows the selection of variants with increased ethanol tolerance and often improved fermentation performance.
In addition, targeted metabolic engineering in these strains can increase ethanol yield by overexpressing key glycolysis and fermentation genes, such as pyruvate kinase and alcohol dehydrogenase, and by reducing the competing by-product genes.
Collectively, these approaches have enhanced S. cerevisiae strains for industrial-scale ethanol production.
Strain improvement is a foundational strategy in industrial microbiology aimed at maximizing microbial productivity, particularly because natural isol…
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