Dahal, S.; Hurst, G.B.; Chourey, K.; Engle, N.L.; Burdick, L.H.; Morrell-Falvey, J.L.; Tschaplinski, T.J.; Doktycz, M.J.; Pelletier, D.A.
Mechanism for Utilization of the Populus-Derived Metabolite Salicin by a Pseudomonas—Rahnella Co-Culture. Metabolites 2023, 13, 140.
https://doi.org/10.3390/metabo13020140
AMA Style
Dahal S, Hurst GB, Chourey K, Engle NL, Burdick LH, Morrell-Falvey JL, Tschaplinski TJ, Doktycz MJ, Pelletier DA.
Mechanism for Utilization of the Populus-Derived Metabolite Salicin by a Pseudomonas—Rahnella Co-Culture. Metabolites. 2023; 13(2):140.
https://doi.org/10.3390/metabo13020140
Chicago/Turabian Style
Dahal, Sanjeev, Gregory B. Hurst, Karuna Chourey, Nancy L. Engle, Leah H. Burdick, Jennifer L. Morrell-Falvey, Timothy J. Tschaplinski, Mitchel J. Doktycz, and Dale A. Pelletier.
2023. "Mechanism for Utilization of the Populus-Derived Metabolite Salicin by a Pseudomonas—Rahnella Co-Culture" Metabolites 13, no. 2: 140.
https://doi.org/10.3390/metabo13020140
APA Style
Dahal, S., Hurst, G. B., Chourey, K., Engle, N. L., Burdick, L. H., Morrell-Falvey, J. L., Tschaplinski, T. J., Doktycz, M. J., & Pelletier, D. A.
(2023). Mechanism for Utilization of the Populus-Derived Metabolite Salicin by a Pseudomonas—Rahnella Co-Culture. Metabolites, 13(2), 140.
https://doi.org/10.3390/metabo13020140