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OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae

Rice blast disease is a serious disease in rice caused by Magnaporthe oryzae (M. oryzae). Ascorbic acid (AsA), or vitamin C, is a strong antioxidant that prevents oxidative damage to cellular components and plays an essential role in plant defense response. GDP-D-mannose pyrophosphorylase (GMP or VT...

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Autores principales: Lamanchai, Kanyanat, Smirnoff, Nicholas, Salmon, Deborah L., Ngernmuen, Athipat, Roytrakul, Sittiruk, Leetanasaksakul, Kantinan, Kittisenachai, Suthathip, Jantasuriyarat, Chatchawan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460107/
https://www.ncbi.nlm.nih.gov/pubmed/36079570
http://dx.doi.org/10.3390/plants11172189
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author Lamanchai, Kanyanat
Smirnoff, Nicholas
Salmon, Deborah L.
Ngernmuen, Athipat
Roytrakul, Sittiruk
Leetanasaksakul, Kantinan
Kittisenachai, Suthathip
Jantasuriyarat, Chatchawan
author_facet Lamanchai, Kanyanat
Smirnoff, Nicholas
Salmon, Deborah L.
Ngernmuen, Athipat
Roytrakul, Sittiruk
Leetanasaksakul, Kantinan
Kittisenachai, Suthathip
Jantasuriyarat, Chatchawan
author_sort Lamanchai, Kanyanat
collection PubMed
description Rice blast disease is a serious disease in rice caused by Magnaporthe oryzae (M. oryzae). Ascorbic acid (AsA), or vitamin C, is a strong antioxidant that prevents oxidative damage to cellular components and plays an essential role in plant defense response. GDP-D-mannose pyrophosphorylase (GMP or VTC1) is an enzyme that generates GDP-D-mannose for AsA, cell wall, and glycoprotein synthesis. The OsVTC1 gene has three homologs in the rice genome: OsVTC1-1, OsVTC1-3, and OsVTC1-8. Using OsVTC1-1 RNAi lines, this study investigated the role of the OsVTC1-1 gene during rice blast fungus inoculation. The OsVTC1-1 RNAi inoculated with rice blast fungus induced changes to cell wall monosaccharides, photosynthetic efficiency, reactive oxygen species (ROS) accumulation, and malondialdehyde (MDA) content. Additionally, the OsVTC1-1 RNAi lines were shown to be more resistant to rice blast fungus than the wild type. Genes and proteins related to defense response, plant hormone synthesis, and signaling pathways, especially salicylic acid and jasmonic acid, were up-regulated in the OsVTC1-1 RNAi lines after rice blast inoculation. These results suggest that the OsVTC1-1 gene regulates rice blast resistance through several defense mechanisms, including hormone synthesis and signaling pathways.
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spelling pubmed-94601072022-09-10 OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae Lamanchai, Kanyanat Smirnoff, Nicholas Salmon, Deborah L. Ngernmuen, Athipat Roytrakul, Sittiruk Leetanasaksakul, Kantinan Kittisenachai, Suthathip Jantasuriyarat, Chatchawan Plants (Basel) Article Rice blast disease is a serious disease in rice caused by Magnaporthe oryzae (M. oryzae). Ascorbic acid (AsA), or vitamin C, is a strong antioxidant that prevents oxidative damage to cellular components and plays an essential role in plant defense response. GDP-D-mannose pyrophosphorylase (GMP or VTC1) is an enzyme that generates GDP-D-mannose for AsA, cell wall, and glycoprotein synthesis. The OsVTC1 gene has three homologs in the rice genome: OsVTC1-1, OsVTC1-3, and OsVTC1-8. Using OsVTC1-1 RNAi lines, this study investigated the role of the OsVTC1-1 gene during rice blast fungus inoculation. The OsVTC1-1 RNAi inoculated with rice blast fungus induced changes to cell wall monosaccharides, photosynthetic efficiency, reactive oxygen species (ROS) accumulation, and malondialdehyde (MDA) content. Additionally, the OsVTC1-1 RNAi lines were shown to be more resistant to rice blast fungus than the wild type. Genes and proteins related to defense response, plant hormone synthesis, and signaling pathways, especially salicylic acid and jasmonic acid, were up-regulated in the OsVTC1-1 RNAi lines after rice blast inoculation. These results suggest that the OsVTC1-1 gene regulates rice blast resistance through several defense mechanisms, including hormone synthesis and signaling pathways. MDPI 2022-08-24 /pmc/articles/PMC9460107/ /pubmed/36079570 http://dx.doi.org/10.3390/plants11172189 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lamanchai, Kanyanat
Smirnoff, Nicholas
Salmon, Deborah L.
Ngernmuen, Athipat
Roytrakul, Sittiruk
Leetanasaksakul, Kantinan
Kittisenachai, Suthathip
Jantasuriyarat, Chatchawan
OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae
title OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae
title_full OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae
title_fullStr OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae
title_full_unstemmed OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae
title_short OsVTC1-1 Gene Silencing Promotes a Defense Response in Rice and Enhances Resistance to Magnaporthe oryzae
title_sort osvtc1-1 gene silencing promotes a defense response in rice and enhances resistance to magnaporthe oryzae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9460107/
https://www.ncbi.nlm.nih.gov/pubmed/36079570
http://dx.doi.org/10.3390/plants11172189
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