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glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

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[DOI] [PubMed] [Google Scholar] 63.Rttger C., Madlener K., Heil M., Gerriets T., Walberer M., Wessels T., Bachmann G., Kaps M., Stolz E

glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

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glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

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glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

in a matter of hours, 10-20% of spines can spontaneously appear or disappear on the pyramidal cells of the cerebral cortex, although the larger "mushroom"-shaped spines are the most stable

glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

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glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

Pharm Dev Technol , 2016, 21(2): 152-160

glutathione biosynthesis pathway in yeast Engineering of Saccharomyces cerevisiae increases robustness to inhibitors pretreated lignocellulosic materials | Microbial Cell Factories Schematic representation of the sulfur

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