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  • Metabolic Engineering Communications: 2022, vol: 15, issue:
  • 1)- Nemailla Bonturi, Marina Julio Pinheiro, Paola Monteiro de Oliveira, Eka Rusadze, Tobias Eichinger, Gintare Liudžiūtė, Juliano Sabedotti De Biaggi, Age Brauer, Maido Remm, Everson Alves Miranda, Rodrigo Ledesma-Amaro, Petri-Jaan Lahtvee. Development of a dedicated Golden Gate Assembly Platform (RtGGA) for . Metabolic engineering communications. 2022, 15: e00200
    Cited : 10
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  • 2)- Vaishnavi Sivapuratharasan, Christoph Lenzen, Carina Michel, Anantha Barathi Muthukrishnan, Guhan Jayaraman, Lars M Blank. Metabolic engineering of VLB120 for rhamnolipid biosynthesis from biomass-derived aromatics. Metabolic engineering communications. 2022, 15: e00202
    Cited : 3
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  • 3)- Kyle R Pomraning, Ziyu Dai, Nathalie Munoz, Young-Mo Kim, Yuqian Gao, Shuang Deng, Teresa Lemmon, Marie S Swita, Jeremy D Zucker, Joonhoon Kim, Stephen J Mondo, Ellen Panisko, Meagan C Burnet, Bobbie-Jo M Webb-Robertson, Beth Hofstad, Scott E Baker, Kristin E Burnum-Johnson, Jon K Magnuson, . Itaconic acid production is regulated by LaeA in . Metabolic engineering communications. 2022, 15: e00203
    Cited : 9
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  • 4)- Jacob A Fenster, Allison Z Werner, Jian Wei Tay, Matthew Gillen, Leo Schirokauer, Nicholas C Hill, Audrey Watson, Kelsey J Ramirez, Christopher W Johnson, Gregg T Beckham, Jeffrey C Cameron, Carrie A Eckert. Dynamic and single cell characterization of a CRISPR-interference toolset in KT2440 for β-ketoadipate production from -coumarate. Metabolic engineering communications. 2022, 15: e00204
    Cited : 11
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  • 5)- Andrea Steinmann, Katrin Schullehner, Anna Kohl, Christina Dickmeis, Maurice Finger, Georg Hubmann, Guido Jach, Ulrich Commandeur, Marco Girhard, Vlada B Urlacher, Stephan Lütz. A targeted metabolomics method for extra- and intracellular metabolite quantification covering the complete monolignol and lignan synthesis pathway. Metabolic engineering communications. 2022, 15: e00205
    Cited : 3
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  • 6)- Jeffrey J Czajka, Deepanwita Banerjee, Thomas Eng, Javier Menasalvas, Chunsheng Yan, Nathalie Munoz Munoz, Brenton C Poirier, Young-Mo Kim, Scott E Baker, Yinjie J Tang, Aindrila Mukhopadhyay. Tuning a high performing multiplexed-CRISPRi strain to further enhance indigoidine production. Metabolic engineering communications. 2022, 15: e00206
    Cited : 8
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  • 7)- Chien-Yuan Lin, Yang Tian, Kimberly Nelson-Vasilchik, Joel Hague, Ramu Kakumanu, Mi Yeon Lee, Venkataramana R Pidatala, Jessica Trinh, Christopher M De Ben, Jutta Dalton, Trent R Northen, Edward E K Baidoo, Blake A Simmons, John M Gladden, Corinne D Scown, Daniel H Putnam, Albert P Kausch, Henrik V Scheller, Aymerick Eudes. Engineering sorghum for higher 4-hydroxybenzoic acid content. Metabolic engineering communications. 2022, 15: e00207
    Cited : 7
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  • 8)- Danielle Bever, Ian Wheeldon, Nancy Da Silva. RNA polymerase II-driven CRISPR-Cas9 system for efficient non-growth-biased metabolic engineering of . Metabolic engineering communications. 2022, 15: e00208
    Cited : 5
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  • 9)- Jasmeet Kaur Khanijou, Hanna Kulyk, Cécilia Bergès, Leng Wei Khoo, Pnelope Ng, Hock Chuan Yeo, Mohamed Helmy, Floriant Bellvert, Wee Chew, Kumar Selvarajoo. Metabolomics and modelling approaches for systems metabolic engineering. Metabolic engineering communications. 2022, 15: e00209
    Cited : 14
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  • 10)- Mamta Gupta, Matthew Wong, Kamran Jawed, Kamil Gedeon, Hannah Barrett, Marcelo Bassalo, Clifford Morrison, Danish Eqbal, Syed Shams Yazdani, Ryan T Gill, Jiaqi Huang, Marc Douaisi, Jonathan Dordick, Georges Belfort, Mattheos A G Koffas. Isobutanol production by combined and metabolic engineering. Metabolic engineering communications. 2022, 15: e00210
    Cited : 5
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  • 11)- Biao Geng, Xiaojing Jia, Xiaowei Peng, Yejun Han. Biosynthesis of value-added bioproducts from hemicellulose of biomass through microbial metabolic engineering. Metabolic engineering communications. 2022, 15: e00211
    Cited : 8
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  • 12)- Emil Ljungqvist, Martin Gustavsson. Genome-scale reconstruction and metabolic modelling of the fast-growing thermophile sp. LC300. Metabolic engineering communications. 2022, 15: e00212
    Cited : 3
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  • 13)- Jonathan Asmund Arnesen, Irina Borodina. Engineering of for terpenoid production. Metabolic engineering communications. 2022, 15: e00213
    Cited : 9
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  • 14)- Annie Yap, Irene Glarcher, Matthias Misslinger, Hubertus Haas. Characterization and engineering of the xylose-inducible promoter for use in mold fungal species. Metabolic engineering communications. 2022, 15: e00214
    Cited : 7
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