Cargando…

A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice

In biological discovery and engineering research, there is a need to spatially and/or temporally regulate transgene expression. However, the limited availability of promoter sequences that are uniquely active in specific tissue‐types and/or at specific times often precludes co‐expression of multiple...

Descripción completa

Detalles Bibliográficos
Autores principales: Danila, Florence, Schreiber, Tom, Ermakova, Maria, Hua, Lei, Vlad, Daniela, Lo, Shuen‐Fang, Chen, Yi‐Shih, Lambret‐Frotte, Julia, Hermanns, Anna S., Athmer, Benedikt, von Caemmerer, Susanne, Yu, Su‐May, Hibberd, Julian M., Tissier, Alain, Furbank, Robert T., Kelly, Steven, Langdale, Jane A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398400/
https://www.ncbi.nlm.nih.gov/pubmed/35639605
http://dx.doi.org/10.1111/pbi.13864
_version_ 1784772320349388800
author Danila, Florence
Schreiber, Tom
Ermakova, Maria
Hua, Lei
Vlad, Daniela
Lo, Shuen‐Fang
Chen, Yi‐Shih
Lambret‐Frotte, Julia
Hermanns, Anna S.
Athmer, Benedikt
von Caemmerer, Susanne
Yu, Su‐May
Hibberd, Julian M.
Tissier, Alain
Furbank, Robert T.
Kelly, Steven
Langdale, Jane A.
author_facet Danila, Florence
Schreiber, Tom
Ermakova, Maria
Hua, Lei
Vlad, Daniela
Lo, Shuen‐Fang
Chen, Yi‐Shih
Lambret‐Frotte, Julia
Hermanns, Anna S.
Athmer, Benedikt
von Caemmerer, Susanne
Yu, Su‐May
Hibberd, Julian M.
Tissier, Alain
Furbank, Robert T.
Kelly, Steven
Langdale, Jane A.
author_sort Danila, Florence
collection PubMed
description In biological discovery and engineering research, there is a need to spatially and/or temporally regulate transgene expression. However, the limited availability of promoter sequences that are uniquely active in specific tissue‐types and/or at specific times often precludes co‐expression of multiple transgenes in precisely controlled developmental contexts. Here, we developed a system for use in rice that comprises synthetic designer transcription activator‐like effectors (dTALEs) and cognate synthetic TALE‐activated promoters (STAPs). The system allows multiple transgenes to be expressed from different STAPs, with the spatial and temporal context determined by a single promoter that drives expression of the dTALE. We show that two different systems—dTALE1‐STAP1 and dTALE2‐STAP2—can activate STAP‐driven reporter gene expression in stable transgenic rice lines, with transgene transcript levels dependent on both dTALE and STAP sequence identities. The relative strength of individual STAP sequences is consistent between dTALE1 and dTALE2 systems but differs between cell‐types, requiring empirical evaluation in each case. dTALE expression leads to off‐target activation of endogenous genes but the number of genes affected is substantially less than the number impacted by the somaclonal variation that occurs during the regeneration of transformed plants. With the potential to design fully orthogonal dTALEs for any genome of interest, the dTALE‐STAP system thus provides a powerful approach to fine‐tune the expression of multiple transgenes, and to simultaneously introduce different synthetic circuits into distinct developmental contexts.
format Online
Article
Text
id pubmed-9398400
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-93984002022-08-26 A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice Danila, Florence Schreiber, Tom Ermakova, Maria Hua, Lei Vlad, Daniela Lo, Shuen‐Fang Chen, Yi‐Shih Lambret‐Frotte, Julia Hermanns, Anna S. Athmer, Benedikt von Caemmerer, Susanne Yu, Su‐May Hibberd, Julian M. Tissier, Alain Furbank, Robert T. Kelly, Steven Langdale, Jane A. Plant Biotechnol J Research Articles In biological discovery and engineering research, there is a need to spatially and/or temporally regulate transgene expression. However, the limited availability of promoter sequences that are uniquely active in specific tissue‐types and/or at specific times often precludes co‐expression of multiple transgenes in precisely controlled developmental contexts. Here, we developed a system for use in rice that comprises synthetic designer transcription activator‐like effectors (dTALEs) and cognate synthetic TALE‐activated promoters (STAPs). The system allows multiple transgenes to be expressed from different STAPs, with the spatial and temporal context determined by a single promoter that drives expression of the dTALE. We show that two different systems—dTALE1‐STAP1 and dTALE2‐STAP2—can activate STAP‐driven reporter gene expression in stable transgenic rice lines, with transgene transcript levels dependent on both dTALE and STAP sequence identities. The relative strength of individual STAP sequences is consistent between dTALE1 and dTALE2 systems but differs between cell‐types, requiring empirical evaluation in each case. dTALE expression leads to off‐target activation of endogenous genes but the number of genes affected is substantially less than the number impacted by the somaclonal variation that occurs during the regeneration of transformed plants. With the potential to design fully orthogonal dTALEs for any genome of interest, the dTALE‐STAP system thus provides a powerful approach to fine‐tune the expression of multiple transgenes, and to simultaneously introduce different synthetic circuits into distinct developmental contexts. John Wiley and Sons Inc. 2022-06-24 2022-09 /pmc/articles/PMC9398400/ /pubmed/35639605 http://dx.doi.org/10.1111/pbi.13864 Text en © 2022 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Danila, Florence
Schreiber, Tom
Ermakova, Maria
Hua, Lei
Vlad, Daniela
Lo, Shuen‐Fang
Chen, Yi‐Shih
Lambret‐Frotte, Julia
Hermanns, Anna S.
Athmer, Benedikt
von Caemmerer, Susanne
Yu, Su‐May
Hibberd, Julian M.
Tissier, Alain
Furbank, Robert T.
Kelly, Steven
Langdale, Jane A.
A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice
title A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice
title_full A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice
title_fullStr A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice
title_full_unstemmed A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice
title_short A single promoter‐TALE system for tissue‐specific and tuneable expression of multiple genes in rice
title_sort single promoter‐tale system for tissue‐specific and tuneable expression of multiple genes in rice
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9398400/
https://www.ncbi.nlm.nih.gov/pubmed/35639605
http://dx.doi.org/10.1111/pbi.13864
work_keys_str_mv AT danilaflorence asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT schreibertom asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT ermakovamaria asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT hualei asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT vladdaniela asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT loshuenfang asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT chenyishih asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT lambretfrottejulia asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT hermannsannas asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT athmerbenedikt asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT voncaemmerersusanne asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT yusumay asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT hibberdjulianm asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT tissieralain asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT furbankrobertt asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT kellysteven asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT langdalejanea asinglepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT danilaflorence singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT schreibertom singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT ermakovamaria singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT hualei singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT vladdaniela singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT loshuenfang singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT chenyishih singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT lambretfrottejulia singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT hermannsannas singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT athmerbenedikt singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT voncaemmerersusanne singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT yusumay singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT hibberdjulianm singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT tissieralain singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT furbankrobertt singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT kellysteven singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice
AT langdalejanea singlepromotertalesystemfortissuespecificandtuneableexpressionofmultiplegenesinrice