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Genomics Characterization of an Engineered in Bioreactor Cultivation Under Ionic Liquid Stress. | LitMetric

AI Article Synopsis

  • The study focuses on a genetically engineered microbial strain (BRC-JBEI 1.1.2) that efficiently produces bioproducts such as amino acids and biofuels.
  • Researchers resequenced the strain and analyzed how gene expression changes when transitioning from shake flasks to bioreactors, especially when exposed to an ionic liquid called cholinium lysinate.
  • Findings revealed distinct metabolic and regulatory responses essential for growth in industrial settings, along with variations in the accumulation of organic acids and bioproducts, enhancing our understanding of the engineered strain's performance in bioproduction.

Article Abstract

is an ideal microbial chassis for production of valuable bioproducts including amino acids and next generation biofuels. Here we resequence engineered isopentenol (IP) producing BRC-JBEI 1.1.2 strain and assess differential transcriptional profiles using RNA sequencing under industrially relevant conditions including scale transition and compare the presence absence of an ionic liquid, cholinium lysinate ([Ch][Lys]). Analysis of the scale transition from shake flask to bioreactor with transcriptomics identified a distinct pattern of metabolic and regulatory responses needed for growth in this industrial format. These differential changes in gene expression corroborate altered accumulation of organic acids and bioproducts, including succinate, acetate, and acetoin that occur when cells are grown in the presence of 50 mM [Ch][Lys] in the stirred-tank reactor. This new genome assembly and differential expression analysis of cells grown in a stirred tank bioreactor clarify the cell response of an strain engineered to produce IP.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637627PMC
http://dx.doi.org/10.3389/fbioe.2021.766674DOI Listing

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