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  • Metabolic Engineering Communications: 2022, vol: 14, issue:
  • 1)- Brandi Brown, Cheryl Immethun, Adil Alsiyabi, Dianna Long, Mark Wilkins, Rajib Saha. Heterologous phasin expression in CGA009 for bioplastic production from lignocellulosic biomass. Metabolic engineering communications. 2022, 14: e00191
    Cited : 11
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  • 2)- Govindprasad Bhutada, Guillaume Menard, Rupam Kumar Bhunia, Piotr P Hapeta, Rodrigo Ledesma-Amaro, Peter J Eastmond. Production of human milk fat substitute by engineered strains of . Metabolic engineering communications. 2022, 14: e00192
    Cited : 11
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  • 3)- Shrameeta Shinde, Sonali Singapuri, Zhenxiong Jiang, Bin Long, Danielle Wilcox, Camille Klatt, J Andrew Jones, Joshua S Yuan, Xin Wang. Thermodynamics contributes to high limonene productivity in cyanobacteria. Metabolic engineering communications. 2022, 14: e00193
    Cited : 14
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  • 4)- Soledad Mora-Vásquez, Guillermo Gael Wells-Abascal, Claudia Espinosa-Leal, Guy A Cardineau, Silverio García-Lara. Application of metabolic engineering to enhance the content of alkaloids in medicinal plants. Metabolic engineering communications. 2022, 14: e00194
    Cited : 34
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  • 5)- Yinan Wu, Maple N Chen, Sijin Li. biosynthesis of diverse plant-derived styrylpyrones in . Metabolic engineering communications. 2022, 14: e00195
    Cited : 7
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  • 6)- Alexandra M Adams, Nicholas A Anas, Abhishek K Sen, Jordan D Hinegardner-Hendricks, Philip J O'Dell, William J Gibbons, Jessica E Flower, Matthew S McMurray, J Andrew Jones. Development of an -based norbaeocystin production platform and evaluation of behavioral effects in rats. Metabolic engineering communications. 2022, 14: e00196
    Cited : 11
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  • 7)- Jonathan Asmund Arnesen, Arian Belmonte Del Ama, Sidharth Jayachandran, Jonathan Dahlin, Daniela Rago, Aaron John Christian Andersen, Irina Borodina. Engineering of for the production of plant triterpenoids: Asiatic, madecassic, and arjunolic acids. Metabolic engineering communications. 2022, 14: e00197
    Cited : 16
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  • 8)- Dina Kačar, Carmen Schleissner, Librada M Cañedo, Pilar Rodríguez, Fernando de la Calle, Carmen Cuevas, Beatriz Galán, José Luis García. production of pederin by labrenzin pathway expansion. Metabolic engineering communications. 2022, 14: e00198
    Cited : 3
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  • 9)- Anna Ylinen, Laura Salusjärvi, Mervi Toivari, Merja Penttilä. Control of D-lactic acid content in P(LA-3HB) copolymer in the yeast using a synthetic gene expression system. Metabolic engineering communications. 2022, 14: e00199
    Cited : 5
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