(Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism

<p>Abstract</p> <p>Background</p> <p>Plants are subjected to continuous stimuli from the environment and have evolved an ability to respond through various growth and development processes. Phototropism and gravitropism responses enable the plant to reorient with regard...

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Main Authors: Fourcaud Thierry, Salin Franck, Stokes Alexia, Ba El Hadji, Lalanne Celine, Krier Catherine, Herrera Raul, Claverol Stéphane, Plomion Christophe
Format: Article
Language:English
Published: BMC 2010-10-01
Series:BMC Plant Biology
Online Access:http://www.biomedcentral.com/1471-2229/10/217
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spelling doaj-fee1e9a969a342ad8a74379e835d4e442020-11-24T21:04:43ZengBMCBMC Plant Biology1471-22292010-10-0110121710.1186/1471-2229-10-217(Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropismFourcaud ThierrySalin FranckStokes AlexiaBa El HadjiLalanne CelineKrier CatherineHerrera RaulClaverol StéphanePlomion Christophe<p>Abstract</p> <p>Background</p> <p>Plants are subjected to continuous stimuli from the environment and have evolved an ability to respond through various growth and development processes. Phototropism and gravitropism responses enable the plant to reorient with regard to light and gravity.</p> <p>Results</p> <p>We quantified the speed of maritime pine seedlings to reorient with regard to light and gravity over 22 days. Seedlings were inclined at 15, 30 and 45 degrees with vertical plants as controls. A lateral light source illuminated the plants and stem movement over time was recorded. Depending on the initial angle of stem lean, the apical response to the lateral light source differed. In control and 15° inclined plants, the apex turned directly towards the light source after only 2 h. In plants inclined at 30° and 45°, the apex first reoriented in the vertical plane after 2 h, then turned towards the light source after 24 h. Two-dimensional gel electrophoresis coupled with mass spectrometry was then used to describe the molecular response of stem bending involved in photo- and gravi-tropism after 22 hr and 8 days of treatment. A total of 486 spots were quantitatively analyzed using image analysis software. Significant changes were determined in the protein accumulation of 68 protein spots. Early response gravitropic associated proteins were identified, which are known to function in energy related and primary metabolism. A group of thirty eight proteins were found to be involved in primary metabolism and energy related metabolic pathways. Degradation of Rubisco was implicated in some protein shifts.</p> <p>Conclusions</p> <p>Our study demonstrates a rapid gravitropic response in apices of maritime pine seedlings inclined >30°. Little or no response was observed at the stem bases of the same plants. The primary gravitropic response is concomitant with a modification of the proteome, consisting of an over accumulation of energy and metabolism associated proteins, which may allow the stem to reorient rapidly after bending.</p> http://www.biomedcentral.com/1471-2229/10/217
collection DOAJ
language English
format Article
sources DOAJ
author Fourcaud Thierry
Salin Franck
Stokes Alexia
Ba El Hadji
Lalanne Celine
Krier Catherine
Herrera Raul
Claverol Stéphane
Plomion Christophe
spellingShingle Fourcaud Thierry
Salin Franck
Stokes Alexia
Ba El Hadji
Lalanne Celine
Krier Catherine
Herrera Raul
Claverol Stéphane
Plomion Christophe
(Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
BMC Plant Biology
author_facet Fourcaud Thierry
Salin Franck
Stokes Alexia
Ba El Hadji
Lalanne Celine
Krier Catherine
Herrera Raul
Claverol Stéphane
Plomion Christophe
author_sort Fourcaud Thierry
title (Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
title_short (Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
title_full (Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
title_fullStr (Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
title_full_unstemmed (Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
title_sort (not) keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism
publisher BMC
series BMC Plant Biology
issn 1471-2229
publishDate 2010-10-01
description <p>Abstract</p> <p>Background</p> <p>Plants are subjected to continuous stimuli from the environment and have evolved an ability to respond through various growth and development processes. Phototropism and gravitropism responses enable the plant to reorient with regard to light and gravity.</p> <p>Results</p> <p>We quantified the speed of maritime pine seedlings to reorient with regard to light and gravity over 22 days. Seedlings were inclined at 15, 30 and 45 degrees with vertical plants as controls. A lateral light source illuminated the plants and stem movement over time was recorded. Depending on the initial angle of stem lean, the apical response to the lateral light source differed. In control and 15° inclined plants, the apex turned directly towards the light source after only 2 h. In plants inclined at 30° and 45°, the apex first reoriented in the vertical plane after 2 h, then turned towards the light source after 24 h. Two-dimensional gel electrophoresis coupled with mass spectrometry was then used to describe the molecular response of stem bending involved in photo- and gravi-tropism after 22 hr and 8 days of treatment. A total of 486 spots were quantitatively analyzed using image analysis software. Significant changes were determined in the protein accumulation of 68 protein spots. Early response gravitropic associated proteins were identified, which are known to function in energy related and primary metabolism. A group of thirty eight proteins were found to be involved in primary metabolism and energy related metabolic pathways. Degradation of Rubisco was implicated in some protein shifts.</p> <p>Conclusions</p> <p>Our study demonstrates a rapid gravitropic response in apices of maritime pine seedlings inclined >30°. Little or no response was observed at the stem bases of the same plants. The primary gravitropic response is concomitant with a modification of the proteome, consisting of an over accumulation of energy and metabolism associated proteins, which may allow the stem to reorient rapidly after bending.</p>
url http://www.biomedcentral.com/1471-2229/10/217
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