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Metabolic Engineering|December 19, 2024
Adaptive laboratory evolution and genetic engineering improved terephthalate utilization in Pseudomonas putida KT2440Allison Z Werner, Young-Saeng C Avina, Josefin Johnsen, et al.
Metabolic Engineering Communications|September 12, 2022
Dynamic and single cell characterization of a CRISPR-interference toolset in Pseudomonas putida KT2440 for β-ketoadipate production from p-coumarateJacob A Fenster, Allison Z Werner, Jian Wei Tay, et al.
Applied and Environmental Microbiology|October 1, 2025
A distinct subpopulation of membrane vesicles in Pseudomonas putida is enriched in enzymes for lignin catabolismAllison Z Werner, Richard J Giannone, Matthew J Keller, et al.
Metabolic Engineering Communications|September 23, 2020
Adaptive laboratory evolution of Pseudomonas putida KT2440 improves p-coumaric and ferulic acid catabolism and toleranceElsayed T Mohamed, Allison Z Werner, Davinia Salvachúa, et al.
Science Advances|September 6, 2023
Lignin conversion to β-ketoadipic acid by Pseudomonas putida via metabolic engineering and bioprocess developmentAllison Z Werner, William T Cordell, Ciaran W Lahive, et al.
Metabolic Engineering|January 4, 2022
Debottlenecking 4-hydroxybenzoate hydroxylation in Pseudomonas putida KT2440 improves muconate productivity from p-coumarateEugene Kuatsjah, Christopher W Johnson, Davinia Salvachúa, et al.
Metabolic Engineering|March 20, 2021
Metabolism of syringyl lignin-derived compounds in Pseudomonas putida enables convergent production of 2-pyrone-4,6-dicarboxylic acidSandra Notonier, Allison Z Werner, Eugene Kuatsjah, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 5, 2020
Outer membrane vesicles catabolize lignin-derived aromatic compounds in Pseudomonas putida KT2440Davinia Salvachúa, Allison Z Werner, Isabel Pardo, et al.
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