This article details the establishment of Fluorescence-Activated Cell Sorting (FACS) as a high-throughput screening platform for engineering Saccharomyces cerevisiae, using betaxanthin fluorescence as a biosensor for metabolic flux.
This article provides a comprehensive overview of the latest advancements in microfluidic screening systems tailored for engineered metabolic libraries.
This article provides a comprehensive overview of CRISPR-dCas9 gRNA library screening and its transformative applications in metabolic engineering.
This article provides a comprehensive analysis of cutting-edge biosensor technologies for enhancing L-threonine production in microbial systems.
This article explores the establishment and application of protoplast-based screening platforms as powerful, high-throughput tools for plant metabolic engineering.
This article explores the latest bioengineering strategies for discovering and optimizing novel gene targets to enhance p-coumaric acid (p-CA) production.
This article explores the integration of high-throughput screening (HTS) technologies with metabolic network optimization to overcome the formidable challenge of identifying high-performing microbial strains from vast genetic libraries.
This guide provides researchers, scientists, and drug development professionals with a comprehensive overview of modern high-throughput screening (HTS) systems in synthetic biology.
This article provides a comprehensive resource for researchers and drug development professionals on the foundational concepts of high-throughput (HTP) genetic engineering in the yeast Saccharomyces cerevisiae.
This article provides a comprehensive guide for researchers and scientists on systematic approaches to uncover nonobvious genetic targets for metabolic engineering, moving beyond traditional, intuition-based methods.