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Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery

Saline stress is a major abiotic stress that inhibits plant growth and yields worldwide. The plant transcription factor (TF) family plays an important role in converting abiotic stress signals into gene expression changes. In this study, a transcriptome-based comparative analysis was performed to in...

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Autores principales: Wang, Yingkai, Meng, Weilong, Ye, Yan, Yu, Xinfang, Chen, Haiyuan, Liu, Yuchen, Xu, Minghong, Wang, Ningning, Qi, Fan, Lan, Yujie, Xu, Yan, Ma, Jian, Zhang, Chunying
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650042/
https://www.ncbi.nlm.nih.gov/pubmed/37958969
http://dx.doi.org/10.3390/ijms242115982
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author Wang, Yingkai
Meng, Weilong
Ye, Yan
Yu, Xinfang
Chen, Haiyuan
Liu, Yuchen
Xu, Minghong
Wang, Ningning
Qi, Fan
Lan, Yujie
Xu, Yan
Ma, Jian
Zhang, Chunying
author_facet Wang, Yingkai
Meng, Weilong
Ye, Yan
Yu, Xinfang
Chen, Haiyuan
Liu, Yuchen
Xu, Minghong
Wang, Ningning
Qi, Fan
Lan, Yujie
Xu, Yan
Ma, Jian
Zhang, Chunying
author_sort Wang, Yingkai
collection PubMed
description Saline stress is a major abiotic stress that inhibits plant growth and yields worldwide. The plant transcription factor (TF) family plays an important role in converting abiotic stress signals into gene expression changes. In this study, a transcriptome-based comparative analysis was performed to investigate the global gene expression of all the TFs in diploid and autotetraploid rice during the early stage of NaCl stress and recovery period. The phenotypic data indicated that the tetraploid rice exhibited a superior salt-tolerant ability compared to the diploid rice. A total of 55 TF families were co-expressed in the tetraploid and diploid rice, and the cumulative number of TF-expressed genes was relatively higher in the diploid rice than in the tetraploid rice at all time points. Unlike the diploid rice, the overall gene expression levels of the tetraploid rice were comparable to the control during recovery. The number of differentially expressed TFs (DE-TFs) in the tetraploid rice decreased after recovery, whereas it increased to a large extent in the diploid rice. GO and KEGG pathway enrichment analysis of the DE-TFs discovered the early switching of the ABA-activated signaling pathway and specific circadian rhythm in the tetraploid rice. Combining the PPI network and heatmap analysis, some core DE-TFs were found that may have potential roles to play in tetraploid salt tolerance. This study will pave the way for elucidating the complex network regulatory mechanisms of salt tolerance in tetraploid rice.
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spelling pubmed-106500422023-11-05 Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery Wang, Yingkai Meng, Weilong Ye, Yan Yu, Xinfang Chen, Haiyuan Liu, Yuchen Xu, Minghong Wang, Ningning Qi, Fan Lan, Yujie Xu, Yan Ma, Jian Zhang, Chunying Int J Mol Sci Article Saline stress is a major abiotic stress that inhibits plant growth and yields worldwide. The plant transcription factor (TF) family plays an important role in converting abiotic stress signals into gene expression changes. In this study, a transcriptome-based comparative analysis was performed to investigate the global gene expression of all the TFs in diploid and autotetraploid rice during the early stage of NaCl stress and recovery period. The phenotypic data indicated that the tetraploid rice exhibited a superior salt-tolerant ability compared to the diploid rice. A total of 55 TF families were co-expressed in the tetraploid and diploid rice, and the cumulative number of TF-expressed genes was relatively higher in the diploid rice than in the tetraploid rice at all time points. Unlike the diploid rice, the overall gene expression levels of the tetraploid rice were comparable to the control during recovery. The number of differentially expressed TFs (DE-TFs) in the tetraploid rice decreased after recovery, whereas it increased to a large extent in the diploid rice. GO and KEGG pathway enrichment analysis of the DE-TFs discovered the early switching of the ABA-activated signaling pathway and specific circadian rhythm in the tetraploid rice. Combining the PPI network and heatmap analysis, some core DE-TFs were found that may have potential roles to play in tetraploid salt tolerance. This study will pave the way for elucidating the complex network regulatory mechanisms of salt tolerance in tetraploid rice. MDPI 2023-11-05 /pmc/articles/PMC10650042/ /pubmed/37958969 http://dx.doi.org/10.3390/ijms242115982 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Wang, Yingkai
Meng, Weilong
Ye, Yan
Yu, Xinfang
Chen, Haiyuan
Liu, Yuchen
Xu, Minghong
Wang, Ningning
Qi, Fan
Lan, Yujie
Xu, Yan
Ma, Jian
Zhang, Chunying
Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery
title Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery
title_full Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery
title_fullStr Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery
title_full_unstemmed Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery
title_short Transcriptome-Wide Analysis of Core Transcription Factors Associated with Defense Responses in Autotetraploid versus Diploid Rice under Saline Stress and Recovery
title_sort transcriptome-wide analysis of core transcription factors associated with defense responses in autotetraploid versus diploid rice under saline stress and recovery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10650042/
https://www.ncbi.nlm.nih.gov/pubmed/37958969
http://dx.doi.org/10.3390/ijms242115982
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