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A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation

The shade avoidance syndrome (SAS) allows plants to anticipate and avoid shading by neighbouring plants by initiating an elongation growth response. The phytochrome photoreceptors are able to detect a reduction in the red:far red ratio in incident light, the result of selective absorption of red and...

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Autores principales: Wang, Xuewen, Roig-Villanova, Irma, Khan, Safina, Shanahan, Hugh, Quail, Peter H., Martinez-Garcia, Jaime F., Devlin, Paul F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3202935/
https://www.ncbi.nlm.nih.gov/pubmed/21398429
http://dx.doi.org/10.1093/jxb/err062
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author Wang, Xuewen
Roig-Villanova, Irma
Khan, Safina
Shanahan, Hugh
Quail, Peter H.
Martinez-Garcia, Jaime F.
Devlin, Paul F.
author_facet Wang, Xuewen
Roig-Villanova, Irma
Khan, Safina
Shanahan, Hugh
Quail, Peter H.
Martinez-Garcia, Jaime F.
Devlin, Paul F.
author_sort Wang, Xuewen
collection PubMed
description The shade avoidance syndrome (SAS) allows plants to anticipate and avoid shading by neighbouring plants by initiating an elongation growth response. The phytochrome photoreceptors are able to detect a reduction in the red:far red ratio in incident light, the result of selective absorption of red and blue wavelengths by proximal vegetation. A shade-responsive luciferase reporter line (PHYB::LUC) was used to carry out a high-throughput screen to identify novel SAS mutants. The dracula 1 (dra1) mutant, that showed no avoidance of shade for the PHYB::LUC response, was the result of a mutation in the PHYA gene. Like previously characterized phyA mutants, dra1 showed a long hypocotyl in far red light and an enhanced hypocotyl elongation response to shade. However, dra1 additionally showed a long hypocotyl in red light. Since phyB levels are relatively unaffected in dra1, this gain-of-function red light phenotype strongly suggests a disruption of phyB signalling. The dra1 mutation, G773E within the phyA PAS2 domain, occurs at a residue absolutely conserved among phyA sequences. The equivalent residue in phyB is absolutely conserved as a threonine. PAS domains are structurally conserved domains involved in molecular interaction. Structural modelling of the dra1 mutation within the phyA PAS2 domain shows some similarity with the structure of the phyB PAS2 domain, suggesting that the interference with phyB signalling may be the result of non-functional mimicry. Hence, it was hypothesized that this PAS2 residue forms a key distinction between the phyA and phyB phytochrome species.
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spelling pubmed-32029352011-10-27 A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation Wang, Xuewen Roig-Villanova, Irma Khan, Safina Shanahan, Hugh Quail, Peter H. Martinez-Garcia, Jaime F. Devlin, Paul F. J Exp Bot Research Papers The shade avoidance syndrome (SAS) allows plants to anticipate and avoid shading by neighbouring plants by initiating an elongation growth response. The phytochrome photoreceptors are able to detect a reduction in the red:far red ratio in incident light, the result of selective absorption of red and blue wavelengths by proximal vegetation. A shade-responsive luciferase reporter line (PHYB::LUC) was used to carry out a high-throughput screen to identify novel SAS mutants. The dracula 1 (dra1) mutant, that showed no avoidance of shade for the PHYB::LUC response, was the result of a mutation in the PHYA gene. Like previously characterized phyA mutants, dra1 showed a long hypocotyl in far red light and an enhanced hypocotyl elongation response to shade. However, dra1 additionally showed a long hypocotyl in red light. Since phyB levels are relatively unaffected in dra1, this gain-of-function red light phenotype strongly suggests a disruption of phyB signalling. The dra1 mutation, G773E within the phyA PAS2 domain, occurs at a residue absolutely conserved among phyA sequences. The equivalent residue in phyB is absolutely conserved as a threonine. PAS domains are structurally conserved domains involved in molecular interaction. Structural modelling of the dra1 mutation within the phyA PAS2 domain shows some similarity with the structure of the phyB PAS2 domain, suggesting that the interference with phyB signalling may be the result of non-functional mimicry. Hence, it was hypothesized that this PAS2 residue forms a key distinction between the phyA and phyB phytochrome species. Oxford University Press 2011-05 2011-03-11 /pmc/articles/PMC3202935/ /pubmed/21398429 http://dx.doi.org/10.1093/jxb/err062 Text en © 2011 The Author(s). This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. This paper is available online free of all access charges (see http://jxb.oxfordjournals.org/open_access.html for further details)
spellingShingle Research Papers
Wang, Xuewen
Roig-Villanova, Irma
Khan, Safina
Shanahan, Hugh
Quail, Peter H.
Martinez-Garcia, Jaime F.
Devlin, Paul F.
A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation
title A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation
title_full A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation
title_fullStr A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation
title_full_unstemmed A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation
title_short A novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phyA mutation
title_sort novel high-throughput in vivo molecular screen for shade avoidance mutants identifies a novel phya mutation
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3202935/
https://www.ncbi.nlm.nih.gov/pubmed/21398429
http://dx.doi.org/10.1093/jxb/err062
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