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Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant

As a vital antioxidant, L-ascorbic acid (AsA) affects diverse biological processes in higher plants. Lack of AsA in cell impairs plant development. In the present study, we manipulated a gene of GDP-mannose pyrophosphorylase which catalyzes the conversion of D-mannose-1-P to GDP-D-mannose in AsA bio...

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Autores principales: Zhang, Chanjuan, Ouyang, Bo, Yang, Changxian, Zhang, Xiaohui, Liu, Hui, Zhang, Yuyang, Zhang, Junhong, Li, Hanxia, Ye, Zhibiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3633959/
https://www.ncbi.nlm.nih.gov/pubmed/23626761
http://dx.doi.org/10.1371/journal.pone.0061987
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author Zhang, Chanjuan
Ouyang, Bo
Yang, Changxian
Zhang, Xiaohui
Liu, Hui
Zhang, Yuyang
Zhang, Junhong
Li, Hanxia
Ye, Zhibiao
author_facet Zhang, Chanjuan
Ouyang, Bo
Yang, Changxian
Zhang, Xiaohui
Liu, Hui
Zhang, Yuyang
Zhang, Junhong
Li, Hanxia
Ye, Zhibiao
author_sort Zhang, Chanjuan
collection PubMed
description As a vital antioxidant, L-ascorbic acid (AsA) affects diverse biological processes in higher plants. Lack of AsA in cell impairs plant development. In the present study, we manipulated a gene of GDP-mannose pyrophosphorylase which catalyzes the conversion of D-mannose-1-P to GDP-D-mannose in AsA biosynthetic pathway and found out the phenotype alteration of tomato. In the tomato genome, there are four members of GMP gene family and they constitutively expressed in various tissues in distinct expression patterns. As expected, over-expression of SlGMP3 increased total AsA contents and enhanced the tolerance to oxidative stress in tomato. On the contrary, knock-down of SlGMP3 significantly decreased AsA contents below the threshold level and altered the phenotype of tomato plants with lesions and further senescence. Further analysis indicated the causes for this symptom could result from failing to instantly deplete the reactive oxygen species (ROS) as decline of free radical scavenging activity. More ROS accumulated in the leaves and then triggered expressions of defence-related genes and mimic symptom occurred on the leaves similar to hypersensitive responses against pathogens. Consequently, the photosynthesis of leaves was dramatically fallen. These results suggested the vital roles of AsA as an antioxidant in leaf function and defence response of tomato.
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spelling pubmed-36339592013-04-26 Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant Zhang, Chanjuan Ouyang, Bo Yang, Changxian Zhang, Xiaohui Liu, Hui Zhang, Yuyang Zhang, Junhong Li, Hanxia Ye, Zhibiao PLoS One Research Article As a vital antioxidant, L-ascorbic acid (AsA) affects diverse biological processes in higher plants. Lack of AsA in cell impairs plant development. In the present study, we manipulated a gene of GDP-mannose pyrophosphorylase which catalyzes the conversion of D-mannose-1-P to GDP-D-mannose in AsA biosynthetic pathway and found out the phenotype alteration of tomato. In the tomato genome, there are four members of GMP gene family and they constitutively expressed in various tissues in distinct expression patterns. As expected, over-expression of SlGMP3 increased total AsA contents and enhanced the tolerance to oxidative stress in tomato. On the contrary, knock-down of SlGMP3 significantly decreased AsA contents below the threshold level and altered the phenotype of tomato plants with lesions and further senescence. Further analysis indicated the causes for this symptom could result from failing to instantly deplete the reactive oxygen species (ROS) as decline of free radical scavenging activity. More ROS accumulated in the leaves and then triggered expressions of defence-related genes and mimic symptom occurred on the leaves similar to hypersensitive responses against pathogens. Consequently, the photosynthesis of leaves was dramatically fallen. These results suggested the vital roles of AsA as an antioxidant in leaf function and defence response of tomato. Public Library of Science 2013-04-23 /pmc/articles/PMC3633959/ /pubmed/23626761 http://dx.doi.org/10.1371/journal.pone.0061987 Text en © 2013 Zhang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhang, Chanjuan
Ouyang, Bo
Yang, Changxian
Zhang, Xiaohui
Liu, Hui
Zhang, Yuyang
Zhang, Junhong
Li, Hanxia
Ye, Zhibiao
Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant
title Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant
title_full Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant
title_fullStr Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant
title_full_unstemmed Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant
title_short Reducing AsA Leads to Leaf Lesion and Defence Response in Knock-Down of the AsA Biosynthetic Enzyme GDP-D-Mannose Pyrophosphorylase Gene in Tomato Plant
title_sort reducing asa leads to leaf lesion and defence response in knock-down of the asa biosynthetic enzyme gdp-d-mannose pyrophosphorylase gene in tomato plant
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3633959/
https://www.ncbi.nlm.nih.gov/pubmed/23626761
http://dx.doi.org/10.1371/journal.pone.0061987
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