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Building Customizable Auto-luminescent Luciferase-based Reporters in Plants

Overview
Journal Elife
Specialty Biology
Date 2020 Mar 27
PMID 32209230
Citations 26
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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) 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 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.

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References
1.
Verdonk J, Haring M, van Tunen A, Schuurink R . ODORANT1 regulates fragrance biosynthesis in petunia flowers. Plant Cell. 2005; 17(5):1612-24. PMC: 1091778. DOI: 10.1105/tpc.104.028837. View

2.
Kaskova Z, Dorr F, Petushkov V, Purtov K, Tsarkova A, Rodionova N . Mechanism and color modulation of fungal bioluminescence. Sci Adv. 2017; 3(4):e1602847. PMC: 5406138. DOI: 10.1126/sciadv.1602847. View

3.
Wend S, Dal Bosco C, Kampf M, Ren F, Palme K, Weber W . A quantitative ratiometric sensor for time-resolved analysis of auxin dynamics. Sci Rep. 2013; 3:2052. PMC: 3689175. DOI: 10.1038/srep02052. View

4.
Khakhar A, Leydon A, Lemmex A, Klavins E, Nemhauser J . Synthetic hormone-responsive transcription factors can monitor and re-program plant development. Elife. 2018; 7. PMC: 5976440. DOI: 10.7554/eLife.34702. View

5.
Kim T, Hauser F, Ha T, Xue S, Bohmer M, Nishimura N . Chemical genetics reveals negative regulation of abscisic acid signaling by a plant immune response pathway. Curr Biol. 2011; 21(11):990-7. PMC: 3109272. DOI: 10.1016/j.cub.2011.04.045. View