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Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses

Cold stress is a major abiotic factor that affects plant growth and geographical distribution. Pinus sibirica is extremely frigostable tree species. To understand the molecular mechanisms of cold tolerance by P. sibirica, physiological responses were analyzed and transcriptome profiling was conducte...

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Autores principales: Wang, Fang, Chen, Song, Cai, Kewei, Lu, Zhimin, Yang, Yuchun, Tigabu, Mulualem, Zhao, Xiyang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society of Breeding 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8784350/
https://www.ncbi.nlm.nih.gov/pubmed/35087319
http://dx.doi.org/10.1270/jsbbs.21009
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author Wang, Fang
Chen, Song
Cai, Kewei
Lu, Zhimin
Yang, Yuchun
Tigabu, Mulualem
Zhao, Xiyang
author_facet Wang, Fang
Chen, Song
Cai, Kewei
Lu, Zhimin
Yang, Yuchun
Tigabu, Mulualem
Zhao, Xiyang
author_sort Wang, Fang
collection PubMed
description Cold stress is a major abiotic factor that affects plant growth and geographical distribution. Pinus sibirica is extremely frigostable tree species. To understand the molecular mechanisms of cold tolerance by P. sibirica, physiological responses were analyzed and transcriptome profiling was conducted to the plants treated by cold stress. The physiological data showed that membrane permeability relative conductivity (REC), reactive oxygen species (ROS), malonaldehyde (MDA) content, peroxidase (POD) and catalase (CAT) activity, soluble sugar, soluble protein and proline contents were increased significantly (p < 0.05) in response to cold stress. Transcriptome analysis identified a total of 871, 1397 and 872 differentially expressed genes (DEGs) after cold treatment for 6 h, 24 h and 48 h at –20°C, respectively. The signaling pathway mediated by Ca(2+) as a signaling molecule and abscisic acid pathways were the main cold signal transduction pathways in P. sibirica. The APETALA2/Ethylene-Responsive Factor (AP2/ERF) and MYB transcription factor families also play an important role in the transcriptional regulation of P. sibirica. In addition, many genes related to photosynthesis were differentially expressed under cold stress. We also validated the reliability of transcriptome data with quantitative real-time PCR. This study lays the foundation for understanding the molecular mechanisms related to cold responses in P. sibirica.
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spelling pubmed-87843502022-01-26 Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses Wang, Fang Chen, Song Cai, Kewei Lu, Zhimin Yang, Yuchun Tigabu, Mulualem Zhao, Xiyang Breed Sci Research Paper Cold stress is a major abiotic factor that affects plant growth and geographical distribution. Pinus sibirica is extremely frigostable tree species. To understand the molecular mechanisms of cold tolerance by P. sibirica, physiological responses were analyzed and transcriptome profiling was conducted to the plants treated by cold stress. The physiological data showed that membrane permeability relative conductivity (REC), reactive oxygen species (ROS), malonaldehyde (MDA) content, peroxidase (POD) and catalase (CAT) activity, soluble sugar, soluble protein and proline contents were increased significantly (p < 0.05) in response to cold stress. Transcriptome analysis identified a total of 871, 1397 and 872 differentially expressed genes (DEGs) after cold treatment for 6 h, 24 h and 48 h at –20°C, respectively. The signaling pathway mediated by Ca(2+) as a signaling molecule and abscisic acid pathways were the main cold signal transduction pathways in P. sibirica. The APETALA2/Ethylene-Responsive Factor (AP2/ERF) and MYB transcription factor families also play an important role in the transcriptional regulation of P. sibirica. In addition, many genes related to photosynthesis were differentially expressed under cold stress. We also validated the reliability of transcriptome data with quantitative real-time PCR. This study lays the foundation for understanding the molecular mechanisms related to cold responses in P. sibirica. Japanese Society of Breeding 2021-12 2021-09-28 /pmc/articles/PMC8784350/ /pubmed/35087319 http://dx.doi.org/10.1270/jsbbs.21009 Text en Copyright © 2021 by JAPANESE SOCIETY OF BREEDING https://creativecommons.org/licenses/by-nc-nd/3.0/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 work is properly cited.
spellingShingle Research Paper
Wang, Fang
Chen, Song
Cai, Kewei
Lu, Zhimin
Yang, Yuchun
Tigabu, Mulualem
Zhao, Xiyang
Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses
title Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses
title_full Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses
title_fullStr Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses
title_full_unstemmed Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses
title_short Transcriptome sequencing and gene expression profiling of Pinus sibirica under different cold stresses
title_sort transcriptome sequencing and gene expression profiling of pinus sibirica under different cold stresses
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8784350/
https://www.ncbi.nlm.nih.gov/pubmed/35087319
http://dx.doi.org/10.1270/jsbbs.21009
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