Resequencing of E. coli BW25113 mutant strain modified to increase its ability to degrade lignin compounds and to tolerate the harsh conditions of lignocellulosic fermentations
The aim of this study was to develop phenylethanol-resistant Saccharomyces cerevisiae mutants by using evolutionary engineering and to characterize the selected mutants at phenotypic, genomic and tran
Metabolic engineering optimizes the synthetic pathways of microbial cell factories, including modifying relevant metabolic pathways, eliminating enzymes related to metabolic shunts, and balancing ATP
Resequencing of E. coli BW25113 mutant strain modified to increase its ability to degrade lignin compounds and to tolerate the harsh conditions of lignocellulosic fermentations