Engineering control of bacterial cellulose production using a genetic toolkit and a new cellulose-producing strain

Author:

Florea Michael,Hagemann Henrik,Santosa Gabriella,Abbott JamesORCID,Micklem Chris N.,Spencer-Milnes Xenia,de Arroyo Garcia Laura,Paschou Despoina,Lazenbatt Christopher,Kong Deze,Chughtai Haroon,Jensen Kirsten,Freemont Paul S.,Kitney Richard,Reeve Benjamin,Ellis Tom

Abstract

Bacterial cellulose is a strong and ultrapure form of cellulose produced naturally by several species of theAcetobacteraceae. Its high strength, purity, and biocompatibility make it of great interest to materials science; however, precise control of its biosynthesis has remained a challenge for biotechnology. Here we isolate a strain ofKomagataeibacter rhaeticus(K. rhaeticusiGEM) that can produce cellulose at high yields, grow in low-nitrogen conditions, and is highly resistant to toxic chemicals. We achieved external control over its bacterial cellulose production through development of a modular genetic toolkit that enables rational reprogramming of the cell. To further its use as an organism for biotechnology, we sequenced its genome and demonstrate genetic circuits that enable functionalization and patterning of heterologous gene expression within the cellulose matrix. This work lays the foundations for using genetic engineering to produce cellulose-based materials, with numerous applications in basic science, materials engineering, and biotechnology.

Funder

Engineering and Physical Sciences Research Council

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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