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Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.

Tobacco has a strong cadmium (Cd) enrichment capacity, meaning that it can absorb large quantities from the environment, but too much Cd will cause damage to the plant. It is not yet clear how the plant can dynamically respond to Cd stress. Here, we performed a temporal transcriptome analysis of tob...

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Autores principales: Li, Chenyang, Hong, Yi, Sun, Jinhao, Wang, Guoping, Zhou, Huina, Xu, Liangtao, Wang, Long, Xu, Guoyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10027936/
https://www.ncbi.nlm.nih.gov/pubmed/36959946
http://dx.doi.org/10.3389/fpls.2023.1143349
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author Li, Chenyang
Hong, Yi
Sun, Jinhao
Wang, Guoping
Zhou, Huina
Xu, Liangtao
Wang, Long
Xu, Guoyun
author_facet Li, Chenyang
Hong, Yi
Sun, Jinhao
Wang, Guoping
Zhou, Huina
Xu, Liangtao
Wang, Long
Xu, Guoyun
author_sort Li, Chenyang
collection PubMed
description Tobacco has a strong cadmium (Cd) enrichment capacity, meaning that it can absorb large quantities from the environment, but too much Cd will cause damage to the plant. It is not yet clear how the plant can dynamically respond to Cd stress. Here, we performed a temporal transcriptome analysis of tobacco roots under Cd treatment from 0 to 48 h. The number of differentially expressed genes (DEGs) was found to change significantly at 3 h of Cd treatment, which we used to define the early and middle stages of the Cd stress response. The gene ontology (GO) term analysis indicates that genes related to photosynthesis and fatty acid synthesis were enriched during the early phases of the stress response, and in the middle phase biological process related to metal ion transport, DNA damage repair, and metabolism were enriched. It was also found that plants use precursor mRNA (pre-mRNA) processes to first resist Cd stress, and with the increasing of Cd treatment time, the overlapped genes number of DEGs and DAS increased, suggesting the transcriptional levels and post-transcriptional level might influence each other. This study allowed us to better understand how plants dynamically respond to cadmium stress at the transcriptional and post-transcriptional levels and provided a reference for the screening of Cd-tolerant genes in the future.
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spelling pubmed-100279362023-03-22 Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L. Li, Chenyang Hong, Yi Sun, Jinhao Wang, Guoping Zhou, Huina Xu, Liangtao Wang, Long Xu, Guoyun Front Plant Sci Plant Science Tobacco has a strong cadmium (Cd) enrichment capacity, meaning that it can absorb large quantities from the environment, but too much Cd will cause damage to the plant. It is not yet clear how the plant can dynamically respond to Cd stress. Here, we performed a temporal transcriptome analysis of tobacco roots under Cd treatment from 0 to 48 h. The number of differentially expressed genes (DEGs) was found to change significantly at 3 h of Cd treatment, which we used to define the early and middle stages of the Cd stress response. The gene ontology (GO) term analysis indicates that genes related to photosynthesis and fatty acid synthesis were enriched during the early phases of the stress response, and in the middle phase biological process related to metal ion transport, DNA damage repair, and metabolism were enriched. It was also found that plants use precursor mRNA (pre-mRNA) processes to first resist Cd stress, and with the increasing of Cd treatment time, the overlapped genes number of DEGs and DAS increased, suggesting the transcriptional levels and post-transcriptional level might influence each other. This study allowed us to better understand how plants dynamically respond to cadmium stress at the transcriptional and post-transcriptional levels and provided a reference for the screening of Cd-tolerant genes in the future. Frontiers Media S.A. 2023-03-07 /pmc/articles/PMC10027936/ /pubmed/36959946 http://dx.doi.org/10.3389/fpls.2023.1143349 Text en Copyright © 2023 Li, Hong, Sun, Wang, Zhou, Xu, Wang and Xu https://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) and the copyright owner(s) 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
Li, Chenyang
Hong, Yi
Sun, Jinhao
Wang, Guoping
Zhou, Huina
Xu, Liangtao
Wang, Long
Xu, Guoyun
Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.
title Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.
title_full Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.
title_fullStr Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.
title_full_unstemmed Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.
title_short Temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in Nicotiana tabacum L.
title_sort temporal transcriptome analysis reveals several key pathways involve in cadmium stress response in nicotiana tabacum l.
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10027936/
https://www.ncbi.nlm.nih.gov/pubmed/36959946
http://dx.doi.org/10.3389/fpls.2023.1143349
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