Hydroxyproline-rich glycoproteins expressed during stress response in cassava

The storage roots of cassava (Manihot esculenta Crantz) suffer from a rapid post-harvest deterioration that is a major constraint to their increased exploitation. In many ways this deterioration resembles wound responses in other better studied plant systems, though it appears to lack an adequate wo...

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Main Authors: Han, Y, Gómez Vásquez, R, Reilly, K, Li, H, Tohme, Joseph M., Cooper, R.M., Beeching, J.R.
Format: Journal Article
Language:Inglés
Published: Springer 2001
Subjects:
Online Access:https://hdl.handle.net/10568/43540
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author Han, Y
Gómez Vásquez, R
Reilly, K
Li, H
Tohme, Joseph M.
Cooper, R.M.
Beeching, J.R.
author_browse Beeching, J.R.
Cooper, R.M.
Gómez Vásquez, R
Han, Y
Li, H
Reilly, K
Tohme, Joseph M.
author_facet Han, Y
Gómez Vásquez, R
Reilly, K
Li, H
Tohme, Joseph M.
Cooper, R.M.
Beeching, J.R.
author_sort Han, Y
collection Repository of Agricultural Research Outputs (CGSpace)
description The storage roots of cassava (Manihot esculenta Crantz) suffer from a rapid post-harvest deterioration that is a major constraint to their increased exploitation. In many ways this deterioration resembles wound responses in other better studied plant systems, though it appears to lack an adequate wound repair response. A cDNA clone (cMeHRGP1) for a hydroxyproline-rich glycoprotein expressed during the deterioration response was isolated and characterised. This clone proved to be an antisense pairing, coding for part of phosphoserine aminotransferase on its complementary strand. Messenger RNA corresponding to cMeHRGP1 accumulated in deteriorating cassava roots from day three after harvest, by which time the deterioration response was well advanced. There by confirming that aspects of the wound repair response were inadequate in harvested cassava roots.
format Journal Article
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publishDate 2001
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spelling CGSpace435402024-08-29T11:41:34Z Hydroxyproline-rich glycoproteins expressed during stress response in cassava Han, Y Gómez Vásquez, R Reilly, K Li, H Tohme, Joseph M. Cooper, R.M. Beeching, J.R. manihot esculenta root crops storage postharvest physiology plantas de raíces comestibles almacenamiento fisiología postcosecha The storage roots of cassava (Manihot esculenta Crantz) suffer from a rapid post-harvest deterioration that is a major constraint to their increased exploitation. In many ways this deterioration resembles wound responses in other better studied plant systems, though it appears to lack an adequate wound repair response. A cDNA clone (cMeHRGP1) for a hydroxyproline-rich glycoprotein expressed during the deterioration response was isolated and characterised. This clone proved to be an antisense pairing, coding for part of phosphoserine aminotransferase on its complementary strand. Messenger RNA corresponding to cMeHRGP1 accumulated in deteriorating cassava roots from day three after harvest, by which time the deterioration response was well advanced. There by confirming that aspects of the wound repair response were inadequate in harvested cassava roots. 2001 2014-09-24T08:42:17Z 2014-09-24T08:42:17Z Journal Article https://hdl.handle.net/10568/43540 en Limited Access Springer
spellingShingle manihot esculenta
root crops
storage
postharvest physiology
plantas de raíces comestibles
almacenamiento
fisiología postcosecha
Han, Y
Gómez Vásquez, R
Reilly, K
Li, H
Tohme, Joseph M.
Cooper, R.M.
Beeching, J.R.
Hydroxyproline-rich glycoproteins expressed during stress response in cassava
title Hydroxyproline-rich glycoproteins expressed during stress response in cassava
title_full Hydroxyproline-rich glycoproteins expressed during stress response in cassava
title_fullStr Hydroxyproline-rich glycoproteins expressed during stress response in cassava
title_full_unstemmed Hydroxyproline-rich glycoproteins expressed during stress response in cassava
title_short Hydroxyproline-rich glycoproteins expressed during stress response in cassava
title_sort hydroxyproline rich glycoproteins expressed during stress response in cassava
topic manihot esculenta
root crops
storage
postharvest physiology
plantas de raíces comestibles
almacenamiento
fisiología postcosecha
url https://hdl.handle.net/10568/43540
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