Building customizable auto-luminescent luciferase-based reporters in plants

Author:

Khakhar Arjun12ORCID,Starker Colby G12ORCID,Chamness James C12,Lee Nayoung3,Stokke Sydney12,Wang Cecily12,Swanson Ryan12,Rizvi Furva12,Imaizumi Takato3,Voytas Daniel F12ORCID

Affiliation:

1. Department Genetics, Cell Biology, & Development, University of Minnesota, Minneapolis, United States

2. Center for Precision Plant Genomics, University of Minnesota, St. Paul, United States

3. Department of Biology, University of Washington, Seattle, United States

Abstract

Bioluminescence is a powerful biological signal that scientists have repurposed as a reporter for gene expression in plants and animals. However, there are downsides associated with the need to provide a substrate to these reporters, including its high cost and non-uniform tissue penetration. In this work we reconstitute a fungal bioluminescence pathway (FBP) in planta using a composable toolbox of parts. We demonstrate that the FBP can create luminescence across various tissues in a broad range of plants without external substrate addition. We also show how our toolbox can be used to deploy the FBP in planta to build auto-luminescent reporters for the study of gene-expression and hormone fluxes. A low-cost imaging platform for gene expression profiling is also described. These experiments lay the groundwork for future construction of programmable auto-luminescent plant traits, such as light driven plant-pollinator interactions or light emitting plant-based sensors.

Funder

University of Minnesota

National Institutes of Health

Rural Development Administration

U.S. Department of Energy

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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