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OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice

Cuticular wax covers aerial organs of plants and functions as the outermost barrier against non-stomatal water loss. We reported here the functional characterization of the Glossy1(GL1)-homologous gene OsGL1-3 in rice using overexpression and RNAi transgenic rice plants. OsGL1-3 gene was ubiquitousl...

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Autores principales: Zhou, Xiaoyun, Li, Linzhi, Xiang, Jianhua, Gao, Guofu, Xu, Faxi, Liu, Ailing, Zhang, Xianwen, Peng, Yan, Chen, Xinbo, Wan, Xiangyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4282203/
https://www.ncbi.nlm.nih.gov/pubmed/25555239
http://dx.doi.org/10.1371/journal.pone.0116676
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author Zhou, Xiaoyun
Li, Linzhi
Xiang, Jianhua
Gao, Guofu
Xu, Faxi
Liu, Ailing
Zhang, Xianwen
Peng, Yan
Chen, Xinbo
Wan, Xiangyuan
author_facet Zhou, Xiaoyun
Li, Linzhi
Xiang, Jianhua
Gao, Guofu
Xu, Faxi
Liu, Ailing
Zhang, Xianwen
Peng, Yan
Chen, Xinbo
Wan, Xiangyuan
author_sort Zhou, Xiaoyun
collection PubMed
description Cuticular wax covers aerial organs of plants and functions as the outermost barrier against non-stomatal water loss. We reported here the functional characterization of the Glossy1(GL1)-homologous gene OsGL1-3 in rice using overexpression and RNAi transgenic rice plants. OsGL1-3 gene was ubiquitously expressed at different level in rice plants except root and its expression was up-regulated under ABA and PEG treatments. The transient expression of OsGL1-3–GFP fusion protein indicated that OsGL1-3 is mainly localized in the plasma membrane. Compared to the wild type, overexpression rice plants exhibited stunted growth, more wax crystallization on leaf surface, and significantly increased total cuticular wax load due to the prominent changes of C(30)–C(32) aldehydes and C(30) primary alcohols. While the RNAi knockdown mutant of OsGL1-3 exhibited no significant difference in plant height, but less wax crystallization and decreased total cuticular wax accumulation on leaf surface. All these evidences, together with the effects of OsGL1-3 on the expression of some wax synthesis related genes, suggest that OsGL1-3 is involved in cuticular wax biosynthesis. Overexpression of OsGL1-3 decreased chlorophyll leaching and water loss rate whereas increased tolerance to water deficit at both seedling and late-tillering stages, suggesting an important role of OsGL1-3 in drought tolerance.
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spelling pubmed-42822032015-01-07 OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice Zhou, Xiaoyun Li, Linzhi Xiang, Jianhua Gao, Guofu Xu, Faxi Liu, Ailing Zhang, Xianwen Peng, Yan Chen, Xinbo Wan, Xiangyuan PLoS One Research Article Cuticular wax covers aerial organs of plants and functions as the outermost barrier against non-stomatal water loss. We reported here the functional characterization of the Glossy1(GL1)-homologous gene OsGL1-3 in rice using overexpression and RNAi transgenic rice plants. OsGL1-3 gene was ubiquitously expressed at different level in rice plants except root and its expression was up-regulated under ABA and PEG treatments. The transient expression of OsGL1-3–GFP fusion protein indicated that OsGL1-3 is mainly localized in the plasma membrane. Compared to the wild type, overexpression rice plants exhibited stunted growth, more wax crystallization on leaf surface, and significantly increased total cuticular wax load due to the prominent changes of C(30)–C(32) aldehydes and C(30) primary alcohols. While the RNAi knockdown mutant of OsGL1-3 exhibited no significant difference in plant height, but less wax crystallization and decreased total cuticular wax accumulation on leaf surface. All these evidences, together with the effects of OsGL1-3 on the expression of some wax synthesis related genes, suggest that OsGL1-3 is involved in cuticular wax biosynthesis. Overexpression of OsGL1-3 decreased chlorophyll leaching and water loss rate whereas increased tolerance to water deficit at both seedling and late-tillering stages, suggesting an important role of OsGL1-3 in drought tolerance. Public Library of Science 2015-01-02 /pmc/articles/PMC4282203/ /pubmed/25555239 http://dx.doi.org/10.1371/journal.pone.0116676 Text en © 2015 Zhou 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
Zhou, Xiaoyun
Li, Linzhi
Xiang, Jianhua
Gao, Guofu
Xu, Faxi
Liu, Ailing
Zhang, Xianwen
Peng, Yan
Chen, Xinbo
Wan, Xiangyuan
OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice
title OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice
title_full OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice
title_fullStr OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice
title_full_unstemmed OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice
title_short OsGL1-3 is Involved in Cuticular Wax Biosynthesis and Tolerance to Water Deficit in Rice
title_sort osgl1-3 is involved in cuticular wax biosynthesis and tolerance to water deficit in rice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4282203/
https://www.ncbi.nlm.nih.gov/pubmed/25555239
http://dx.doi.org/10.1371/journal.pone.0116676
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