Inducible directed evolution of complex phenotypes in bacteria

Author:

Al’Abri Ibrahim S1,Haller Daniel J1,Li Zidan1,Crook Nathan1ORCID

Affiliation:

1. Department of Chemical and Biomolecular Engineering, North Carolina State University , Raleigh , NC , USA

Abstract

Abstract Directed evolution is a powerful method for engineering biology in the absence of detailed sequence-function relationships. To enable directed evolution of complex phenotypes encoded by multigene pathways, we require large library sizes for DNA sequences >5–10 kb in length, elimination of genomic hitchhiker mutations, and decoupling of diversification and screening steps. To meet these challenges, we developed Inducible Directed Evolution (IDE), which uses a temperate bacteriophage to package large plasmids and transfer them to naive cells after intracellular mutagenesis. To demonstrate IDE, we evolved a 5-gene pathway from Bacillus licheniformis that accelerates tagatose catabolism in Escherichia coli, resulting in clones with 65% shorter lag times during growth on tagatose after only two rounds of evolution. Next, we evolved a 15.4 kb, 10-gene pathway from Bifidobacterium breve UC2003 that aids E. coli’s utilization of melezitose. After three rounds of IDE, we isolated evolved pathways that both reduced lag time by more than 2-fold and enabled 150% higher final optical density. Taken together, this work enhances the capacity and utility of a whole pathway directed evolution approach in E. coli.

Funder

North Carolina State University's Chemical and Biomolecular Engineering

NCSU’s Faculty Research and Professional Development Fund

NCSU CBE

Ministry of Higher Education - Oman

Publisher

Oxford University Press (OUP)

Subject

Genetics

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