Cargando…

Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation

Plant cold acclimation (CA) is a genetically complex phenomenon involving gene regulation and expression. Little is known about the cascading pattern of gene regulatroy network and the link between genes and metabolites during CA. Dendrobium officinale (DOKM) is an important medicinal and ornamental...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Zhi-Gang, Jiang, Wu, Chen, Song-Lin, Mantri, Nitin, Tao, Zheng-Ming, Jiang, Cheng-Xi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5099257/
https://www.ncbi.nlm.nih.gov/pubmed/27877182
http://dx.doi.org/10.3389/fpls.2016.01653
_version_ 1782465930520952832
author Wu, Zhi-Gang
Jiang, Wu
Chen, Song-Lin
Mantri, Nitin
Tao, Zheng-Ming
Jiang, Cheng-Xi
author_facet Wu, Zhi-Gang
Jiang, Wu
Chen, Song-Lin
Mantri, Nitin
Tao, Zheng-Ming
Jiang, Cheng-Xi
author_sort Wu, Zhi-Gang
collection PubMed
description Plant cold acclimation (CA) is a genetically complex phenomenon involving gene regulation and expression. Little is known about the cascading pattern of gene regulatroy network and the link between genes and metabolites during CA. Dendrobium officinale (DOKM) is an important medicinal and ornamental plant and hypersensitive to low temperature. Here, we used the large scale metabolomic and transcriptomic technologies to reveal the response to CA in DOKM seedlings based on the physiological profile analyses. Lowering temperature from 4 to –2°C resulted in significant increase (P < 0.01) in antioxidant activities and electrolyte leakage (EL) during 24 h. The fitness CA piont of 0°C and control (20°C) during 20 h were firstly obtained according to physiological analyses. Subsequently, massive transcriptome and metabolome reprogramming occurred during CA. The gene to metabolite network demonstrated that the CA associated processes are highly energy demanding through activating hydrolysis of sugars, amino acids catabolism and citrate cycle. The expression levels of 2,767 genes were significantly affected by CA, including 153-fold upregulation of CBF transcription factor, 56-fold upregulation of MAPKKK16 protein kinase. Moreover, the gene interaction and regulation network analysis revealed that the CA as an active process, was regulated at the transcriptional, post-transcriptional, translational and post-translational levels. Our findings highligted a comprehensive regulatory mechanism including cold signal transduction, transcriptional regulation, and gene expression, which contributes a deeper understanding of the highly complex regulatory program during CA in DOKM. Some marker genes identified in DOKM seedlings will allow us to understand the role of each individual during CA by further functional analyses.
format Online
Article
Text
id pubmed-5099257
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-50992572016-11-22 Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation Wu, Zhi-Gang Jiang, Wu Chen, Song-Lin Mantri, Nitin Tao, Zheng-Ming Jiang, Cheng-Xi Front Plant Sci Plant Science Plant cold acclimation (CA) is a genetically complex phenomenon involving gene regulation and expression. Little is known about the cascading pattern of gene regulatroy network and the link between genes and metabolites during CA. Dendrobium officinale (DOKM) is an important medicinal and ornamental plant and hypersensitive to low temperature. Here, we used the large scale metabolomic and transcriptomic technologies to reveal the response to CA in DOKM seedlings based on the physiological profile analyses. Lowering temperature from 4 to –2°C resulted in significant increase (P < 0.01) in antioxidant activities and electrolyte leakage (EL) during 24 h. The fitness CA piont of 0°C and control (20°C) during 20 h were firstly obtained according to physiological analyses. Subsequently, massive transcriptome and metabolome reprogramming occurred during CA. The gene to metabolite network demonstrated that the CA associated processes are highly energy demanding through activating hydrolysis of sugars, amino acids catabolism and citrate cycle. The expression levels of 2,767 genes were significantly affected by CA, including 153-fold upregulation of CBF transcription factor, 56-fold upregulation of MAPKKK16 protein kinase. Moreover, the gene interaction and regulation network analysis revealed that the CA as an active process, was regulated at the transcriptional, post-transcriptional, translational and post-translational levels. Our findings highligted a comprehensive regulatory mechanism including cold signal transduction, transcriptional regulation, and gene expression, which contributes a deeper understanding of the highly complex regulatory program during CA in DOKM. Some marker genes identified in DOKM seedlings will allow us to understand the role of each individual during CA by further functional analyses. Frontiers Media S.A. 2016-11-08 /pmc/articles/PMC5099257/ /pubmed/27877182 http://dx.doi.org/10.3389/fpls.2016.01653 Text en Copyright © 2016 Wu, Jiang, Chen, Mantri, Tao and Jiang. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Wu, Zhi-Gang
Jiang, Wu
Chen, Song-Lin
Mantri, Nitin
Tao, Zheng-Ming
Jiang, Cheng-Xi
Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation
title Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation
title_full Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation
title_fullStr Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation
title_full_unstemmed Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation
title_short Insights from the Cold Transcriptome and Metabolome of Dendrobium officinale: Global Reprogramming of Metabolic and Gene Regulation Networks during Cold Acclimation
title_sort insights from the cold transcriptome and metabolome of dendrobium officinale: global reprogramming of metabolic and gene regulation networks during cold acclimation
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5099257/
https://www.ncbi.nlm.nih.gov/pubmed/27877182
http://dx.doi.org/10.3389/fpls.2016.01653
work_keys_str_mv AT wuzhigang insightsfromthecoldtranscriptomeandmetabolomeofdendrobiumofficinaleglobalreprogrammingofmetabolicandgeneregulationnetworksduringcoldacclimation
AT jiangwu insightsfromthecoldtranscriptomeandmetabolomeofdendrobiumofficinaleglobalreprogrammingofmetabolicandgeneregulationnetworksduringcoldacclimation
AT chensonglin insightsfromthecoldtranscriptomeandmetabolomeofdendrobiumofficinaleglobalreprogrammingofmetabolicandgeneregulationnetworksduringcoldacclimation
AT mantrinitin insightsfromthecoldtranscriptomeandmetabolomeofdendrobiumofficinaleglobalreprogrammingofmetabolicandgeneregulationnetworksduringcoldacclimation
AT taozhengming insightsfromthecoldtranscriptomeandmetabolomeofdendrobiumofficinaleglobalreprogrammingofmetabolicandgeneregulationnetworksduringcoldacclimation
AT jiangchengxi insightsfromthecoldtranscriptomeandmetabolomeofdendrobiumofficinaleglobalreprogrammingofmetabolicandgeneregulationnetworksduringcoldacclimation