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Highlighter: An optogenetic system for high-resolution gene expression control in plants

Optogenetic actuators have revolutionized the resolution at which biological processes can be controlled. In plants, deployment of optogenetics is challenging due to the need for these light-responsive systems to function in the context of horticultural light environments. Furthermore, many availabl...

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Autores principales: Larsen, Bo, Hofmann, Roberto, Camacho, Ines S., Clarke, Richard W., Lagarias, J Clark, Jones, Alex R., Jones, Alexander M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10513317/
https://www.ncbi.nlm.nih.gov/pubmed/37733664
http://dx.doi.org/10.1371/journal.pbio.3002303
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author Larsen, Bo
Hofmann, Roberto
Camacho, Ines S.
Clarke, Richard W.
Lagarias, J Clark
Jones, Alex R.
Jones, Alexander M.
author_facet Larsen, Bo
Hofmann, Roberto
Camacho, Ines S.
Clarke, Richard W.
Lagarias, J Clark
Jones, Alex R.
Jones, Alexander M.
author_sort Larsen, Bo
collection PubMed
description Optogenetic actuators have revolutionized the resolution at which biological processes can be controlled. In plants, deployment of optogenetics is challenging due to the need for these light-responsive systems to function in the context of horticultural light environments. Furthermore, many available optogenetic actuators are based on plant photoreceptors that might crosstalk with endogenous signaling processes, while others depend on exogenously supplied cofactors. To overcome such challenges, we have developed Highlighter, a synthetic, light-gated gene expression system tailored for in planta function. Highlighter is based on the photoswitchable CcaS-CcaR system from cyanobacteria and is repurposed for plants as a fully genetically encoded system. Analysis of a re-engineered CcaS in Escherichia coli demonstrated green/red photoswitching with phytochromobilin, a chromophore endogenous to plants, but also revealed a blue light response likely derived from a flavin-binding LOV-like domain. We deployed Highlighter in transiently transformed Nicotiana benthamiana for optogenetic control of fluorescent protein expression. Using light to guide differential fluorescent protein expression in nuclei of neighboring cells, we demonstrate unprecedented spatiotemporal control of target gene expression. We implemented the system to demonstrate optogenetic control over plant immunity and pigment production through modulation of the spectral composition of broadband visible (white) light. Highlighter is a step forward for optogenetics in plants and a technology for high-resolution gene induction that will advance fundamental plant biology and provide new opportunities for crop improvement.
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spelling pubmed-105133172023-09-22 Highlighter: An optogenetic system for high-resolution gene expression control in plants Larsen, Bo Hofmann, Roberto Camacho, Ines S. Clarke, Richard W. Lagarias, J Clark Jones, Alex R. Jones, Alexander M. PLoS Biol Methods and Resources Optogenetic actuators have revolutionized the resolution at which biological processes can be controlled. In plants, deployment of optogenetics is challenging due to the need for these light-responsive systems to function in the context of horticultural light environments. Furthermore, many available optogenetic actuators are based on plant photoreceptors that might crosstalk with endogenous signaling processes, while others depend on exogenously supplied cofactors. To overcome such challenges, we have developed Highlighter, a synthetic, light-gated gene expression system tailored for in planta function. Highlighter is based on the photoswitchable CcaS-CcaR system from cyanobacteria and is repurposed for plants as a fully genetically encoded system. Analysis of a re-engineered CcaS in Escherichia coli demonstrated green/red photoswitching with phytochromobilin, a chromophore endogenous to plants, but also revealed a blue light response likely derived from a flavin-binding LOV-like domain. We deployed Highlighter in transiently transformed Nicotiana benthamiana for optogenetic control of fluorescent protein expression. Using light to guide differential fluorescent protein expression in nuclei of neighboring cells, we demonstrate unprecedented spatiotemporal control of target gene expression. We implemented the system to demonstrate optogenetic control over plant immunity and pigment production through modulation of the spectral composition of broadband visible (white) light. Highlighter is a step forward for optogenetics in plants and a technology for high-resolution gene induction that will advance fundamental plant biology and provide new opportunities for crop improvement. Public Library of Science 2023-09-21 /pmc/articles/PMC10513317/ /pubmed/37733664 http://dx.doi.org/10.1371/journal.pbio.3002303 Text en © 2023 Larsen et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Methods and Resources
Larsen, Bo
Hofmann, Roberto
Camacho, Ines S.
Clarke, Richard W.
Lagarias, J Clark
Jones, Alex R.
Jones, Alexander M.
Highlighter: An optogenetic system for high-resolution gene expression control in plants
title Highlighter: An optogenetic system for high-resolution gene expression control in plants
title_full Highlighter: An optogenetic system for high-resolution gene expression control in plants
title_fullStr Highlighter: An optogenetic system for high-resolution gene expression control in plants
title_full_unstemmed Highlighter: An optogenetic system for high-resolution gene expression control in plants
title_short Highlighter: An optogenetic system for high-resolution gene expression control in plants
title_sort highlighter: an optogenetic system for high-resolution gene expression control in plants
topic Methods and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10513317/
https://www.ncbi.nlm.nih.gov/pubmed/37733664
http://dx.doi.org/10.1371/journal.pbio.3002303
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