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DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response

GDP-mannose pyrophosphorylase (GMP) catalyzed the formation of GDP-mannose, which serves as a donor for the biosynthesis of mannose-containing polysaccharides. In this study, three GMP genes from Dendrobium officinale (i.e., DoGMPs) were cloned and analyzed. The putative 1000 bp upstream regulatory...

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Autores principales: He, Chunmei, Yu, Zhenming, Teixeira da Silva, Jaime A., Zhang, Jianxia, Liu, Xuncheng, Wang, Xiaojuan, Zhang, Xinhua, Zeng, Songjun, Wu, Kunlin, Tan, Jianwen, Ma, Guohua, Luo, Jianping, Duan, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5296857/
https://www.ncbi.nlm.nih.gov/pubmed/28176760
http://dx.doi.org/10.1038/srep41010
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author He, Chunmei
Yu, Zhenming
Teixeira da Silva, Jaime A.
Zhang, Jianxia
Liu, Xuncheng
Wang, Xiaojuan
Zhang, Xinhua
Zeng, Songjun
Wu, Kunlin
Tan, Jianwen
Ma, Guohua
Luo, Jianping
Duan, Jun
author_facet He, Chunmei
Yu, Zhenming
Teixeira da Silva, Jaime A.
Zhang, Jianxia
Liu, Xuncheng
Wang, Xiaojuan
Zhang, Xinhua
Zeng, Songjun
Wu, Kunlin
Tan, Jianwen
Ma, Guohua
Luo, Jianping
Duan, Jun
author_sort He, Chunmei
collection PubMed
description GDP-mannose pyrophosphorylase (GMP) catalyzed the formation of GDP-mannose, which serves as a donor for the biosynthesis of mannose-containing polysaccharides. In this study, three GMP genes from Dendrobium officinale (i.e., DoGMPs) were cloned and analyzed. The putative 1000 bp upstream regulatory region of these DoGMPs was isolated and cis-elements were identified, which indicates their possible role in responses to abiotic stresses. The DoGMP1 protein was shown to be localized in the cytoplasm. To further study the function of the DoGMP1 gene, 35S:DoGMP1 transgenic A. thaliana plants with an enhanced expression level of DoGMP1 were generated. Transgenic plants were indistinguishable from wild-type (WT) plants in tissue culture or in soil. However, the mannose content of the extracted water-soluble polysaccharides increased 67%, 96% and 92% in transgenic lines #1, #2 and #3, respectively more than WT levels. Germination percentage of seeds from transgenic lines was higher than WT seeds and the growth of seedlings from transgenic lines was better than WT seedlings under salinity stress (150 mM NaCl). Our results provide genetic evidence for the involvement of GMP genes in the biosynthesis of mannose-containing polysaccharides and the mediation of GMP genes in the response to salt stress during seed germination and seedling growth.
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spelling pubmed-52968572017-02-13 DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response He, Chunmei Yu, Zhenming Teixeira da Silva, Jaime A. Zhang, Jianxia Liu, Xuncheng Wang, Xiaojuan Zhang, Xinhua Zeng, Songjun Wu, Kunlin Tan, Jianwen Ma, Guohua Luo, Jianping Duan, Jun Sci Rep Article GDP-mannose pyrophosphorylase (GMP) catalyzed the formation of GDP-mannose, which serves as a donor for the biosynthesis of mannose-containing polysaccharides. In this study, three GMP genes from Dendrobium officinale (i.e., DoGMPs) were cloned and analyzed. The putative 1000 bp upstream regulatory region of these DoGMPs was isolated and cis-elements were identified, which indicates their possible role in responses to abiotic stresses. The DoGMP1 protein was shown to be localized in the cytoplasm. To further study the function of the DoGMP1 gene, 35S:DoGMP1 transgenic A. thaliana plants with an enhanced expression level of DoGMP1 were generated. Transgenic plants were indistinguishable from wild-type (WT) plants in tissue culture or in soil. However, the mannose content of the extracted water-soluble polysaccharides increased 67%, 96% and 92% in transgenic lines #1, #2 and #3, respectively more than WT levels. Germination percentage of seeds from transgenic lines was higher than WT seeds and the growth of seedlings from transgenic lines was better than WT seedlings under salinity stress (150 mM NaCl). Our results provide genetic evidence for the involvement of GMP genes in the biosynthesis of mannose-containing polysaccharides and the mediation of GMP genes in the response to salt stress during seed germination and seedling growth. Nature Publishing Group 2017-02-08 /pmc/articles/PMC5296857/ /pubmed/28176760 http://dx.doi.org/10.1038/srep41010 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
He, Chunmei
Yu, Zhenming
Teixeira da Silva, Jaime A.
Zhang, Jianxia
Liu, Xuncheng
Wang, Xiaojuan
Zhang, Xinhua
Zeng, Songjun
Wu, Kunlin
Tan, Jianwen
Ma, Guohua
Luo, Jianping
Duan, Jun
DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
title DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
title_full DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
title_fullStr DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
title_full_unstemmed DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
title_short DoGMP1 from Dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
title_sort dogmp1 from dendrobium officinale contributes to mannose content of water-soluble polysaccharides and plays a role in salt stress response
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5296857/
https://www.ncbi.nlm.nih.gov/pubmed/28176760
http://dx.doi.org/10.1038/srep41010
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