Agriculture-Independent Bioplastic Production: Engineered Bacteria Synthesizes Polylactic Acid from Solar C2 Chemicals
en-GBde-DEes-ESfr-FR

Agriculture-Independent Bioplastic Production: Engineered Bacteria Synthesizes Polylactic Acid from Solar C2 Chemicals

26.07.2026 HEP Journals

The global dominance of fossil-fuel-based plastics has led to severe environmental pollution, prompting a shift toward biodegradable alternatives like polylactic acid (PLA). However, current PLA production relies heavily on agricultural resources such as corn and sugarcane to produce the monomer, lactic acid (LA). This dependence on crops raises sustainability concerns. To address this, a research team has successfully engineered E. coli to synthesize PLA directly from solar C2 chemicals, specifically ethanol and acetate, which can be generated from CO2 through artificial photosynthesis.
In this study, the researchers constructed a synthetic metabolic pathway in E. coli that converts ethanol and acetate into PLA. A key breakthrough was the discovery that cofeeding ethanol and acetate synergistically enhances production. The PLA titer achieved under cofeeding conditions was 5-fold and 53-fold higher than that obtained with ethanol or acetate alone, respectively.
Proteomics and metabolomics analyses revealed that this synergistic effect upregulates the glyoxylate shunt, the Entner-Doudoroff pathway, and serine anabolism. These metabolic adjustments facilitate the efficient generation of lactic acid from acetyl-CoA. By integrating this optimized biological pathway with a CO2 electroreduction unit, the team achieved a complete “CO2-to-PLA” conversion process, which offers a sustainable alternative to traditional manufacturing, potentially reducing the environmental footprint of plastic production.
The work entitled “Synthesis of polylactic acid from solar C2 chemicals in engineered Escherichia coli” was published on Systems Microbiology and Biomanufacturing (published on April 9, 2026).
DOI:10.1007/s43393-026-00446-8
Angehängte Dokumente
  • Image: Schematic illustration of the polylactic acid (PLA) synthesis from CO2
26.07.2026 HEP Journals
Regions: Asia, China
Keywords: Science, Chemistry

Disclaimer: AlphaGalileo is not responsible for the accuracy of content posted to AlphaGalileo by contributing institutions or for the use of any information through the AlphaGalileo system.

Referenzen

We have used AlphaGalileo since its foundation but frankly we need it more than ever now to ensure our research news is heard across Europe, Asia and North America. As one of the UK’s leading research universities we want to continue to work with other outstanding researchers in Europe. AlphaGalileo helps us to continue to bring our research story to them and the rest of the world.
Peter Dunn, Director of Press and Media Relations at the University of Warwick
AlphaGalileo has helped us more than double our reach at SciDev.Net. The service has enabled our journalists around the world to reach the mainstream media with articles about the impact of science on people in low- and middle-income countries, leading to big increases in the number of SciDev.Net articles that have been republished.
Ben Deighton, SciDevNet
AlphaGalileo is a great source of global research news. I use it regularly.
Robert Lee Hotz, LA Times

Wir arbeiten eng zusammen mit...


  • The Research Council of Norway
  • SciDevNet
  • Swiss National Science Foundation
  • iesResearch
Copyright 2026 by DNN Corp Terms Of Use Privacy Statement