Related Experiment Video
Updated: Mar 1, 2026

Production of Chemicals by Klebsiella pneumoniae Using Bamboo Hydrolysate as Feedstock
Published on: June 29, 2017
A shortened, two-enzyme pathway for 2,3-butanediol production in Escherichia coli
Shamlan M S Reshamwala1, Shalini S Deb2, Arvind M Lali2,3
1DBT-ICT Centre for Energy Biosciences, Institute of Chemical Technology, Matunga (East), Mumbai, Maharashtra, 400019, India. ss.reshamwala@ictmumbai.edu.in.
Abstract:
The platform chemical 2,3-butanediol (2,3-BDO) is produced by a number of microorganisms via a three-enzyme pathway starting from pyruvate. Here, we report production of 2,3-BDO via a shortened, two-enzyme pathway in Escherichia coli. A synthetic operon consisting of the acetolactate synthase (ALS) and acetoin reductase (AR) genes from Enterobacter under control of the T7 promoter was cloned in an episomal plasmid. E. coli transformed with this plasmid produced 2,3-BDO and the pathway intermediate acetoin, demonstrating that the shortened pathway was functional. To assemble a synthetic operon for inducer- and plasmid-free production of 2,3-BDO, ALS and AR genes were integrated in the E. coli genome under control of the constitutive ackA promoter. Shake flask-level cultivation led to accumulation of ~1 g/L acetoin and ~0.66 g/L 2,3-BDO in the medium. The novel biosynthetic route for 2,3-BDO biosynthesis described herein provides a simple and cost-effective approach for production of this important chemical.
Related Concept Videos
Other Glycolytic Pathways
Glycolysis: Preparatory Phase
Biosynthesis in Bacteria
Glycolysis
Carbon-dioxide Fixation
E2 Reaction: Kinetics and Mechanism

