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Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism

NAC (NAM, ATAF1/2, and CUC2) transcription factors (TFs) are one of the most prominent plant-specific TF families and play essential roles in plant growth, development and adaptation to abiotic stress. Although the NAC gene family has been extensively characterized in many species, systematic analys...

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Autores principales: Huang, Xiaoyu, Qiu, Xiaojun, Wang, Yue, Abubakar, Aminu Shehu, Chen, Ping, Chen, Jikang, Chen, Kunmei, Yu, Chunming, Wang, Xiaofei, Gao, Gang, Zhu, Aiguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10003206/
https://www.ncbi.nlm.nih.gov/pubmed/36902009
http://dx.doi.org/10.3390/ijms24054578
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author Huang, Xiaoyu
Qiu, Xiaojun
Wang, Yue
Abubakar, Aminu Shehu
Chen, Ping
Chen, Jikang
Chen, Kunmei
Yu, Chunming
Wang, Xiaofei
Gao, Gang
Zhu, Aiguo
author_facet Huang, Xiaoyu
Qiu, Xiaojun
Wang, Yue
Abubakar, Aminu Shehu
Chen, Ping
Chen, Jikang
Chen, Kunmei
Yu, Chunming
Wang, Xiaofei
Gao, Gang
Zhu, Aiguo
author_sort Huang, Xiaoyu
collection PubMed
description NAC (NAM, ATAF1/2, and CUC2) transcription factors (TFs) are one of the most prominent plant-specific TF families and play essential roles in plant growth, development and adaptation to abiotic stress. Although the NAC gene family has been extensively characterized in many species, systematic analysis is still relatively lacking in Apocynum venetum (A. venetum). In this study, 74 AvNAC proteins were identified from the A. venetum genome and were classified into 16 subgroups. This classification was consistently supported by their gene structures, conserved motifs and subcellular localizations. Nucleotide substitution analysis (Ka/Ks) showed the AvNACs to be under the influence of strong purifying selection, and segmental duplication events were found to play the dominant roles in the AvNAC TF family expansion. Cis-elements analysis demonstrated that the light-, stress-, and phytohormone-responsive elements being dominant in the AvNAC promoters, and potential TFs including Dof, BBR-BPC, ERF and MIKC_MADS were visualized in the TF regulatory network. Among these AvNACs, AvNAC58 and AvNAC69 exhibited significant differential expression in response to drought and salt stresses. The protein interaction prediction further confirmed their potential roles in the trehalose metabolism pathway with respect to drought and salt resistance. This study provides a reference for further understanding the functional characteristics of NAC genes in the stress-response mechanism and development of A. venetum.
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spelling pubmed-100032062023-03-11 Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism Huang, Xiaoyu Qiu, Xiaojun Wang, Yue Abubakar, Aminu Shehu Chen, Ping Chen, Jikang Chen, Kunmei Yu, Chunming Wang, Xiaofei Gao, Gang Zhu, Aiguo Int J Mol Sci Article NAC (NAM, ATAF1/2, and CUC2) transcription factors (TFs) are one of the most prominent plant-specific TF families and play essential roles in plant growth, development and adaptation to abiotic stress. Although the NAC gene family has been extensively characterized in many species, systematic analysis is still relatively lacking in Apocynum venetum (A. venetum). In this study, 74 AvNAC proteins were identified from the A. venetum genome and were classified into 16 subgroups. This classification was consistently supported by their gene structures, conserved motifs and subcellular localizations. Nucleotide substitution analysis (Ka/Ks) showed the AvNACs to be under the influence of strong purifying selection, and segmental duplication events were found to play the dominant roles in the AvNAC TF family expansion. Cis-elements analysis demonstrated that the light-, stress-, and phytohormone-responsive elements being dominant in the AvNAC promoters, and potential TFs including Dof, BBR-BPC, ERF and MIKC_MADS were visualized in the TF regulatory network. Among these AvNACs, AvNAC58 and AvNAC69 exhibited significant differential expression in response to drought and salt stresses. The protein interaction prediction further confirmed their potential roles in the trehalose metabolism pathway with respect to drought and salt resistance. This study provides a reference for further understanding the functional characteristics of NAC genes in the stress-response mechanism and development of A. venetum. MDPI 2023-02-26 /pmc/articles/PMC10003206/ /pubmed/36902009 http://dx.doi.org/10.3390/ijms24054578 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
Huang, Xiaoyu
Qiu, Xiaojun
Wang, Yue
Abubakar, Aminu Shehu
Chen, Ping
Chen, Jikang
Chen, Kunmei
Yu, Chunming
Wang, Xiaofei
Gao, Gang
Zhu, Aiguo
Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism
title Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism
title_full Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism
title_fullStr Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism
title_full_unstemmed Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism
title_short Genome-Wide Investigation of the NAC Transcription Factor Family in Apocynum venetum Revealed Their Synergistic Roles in Abiotic Stress Response and Trehalose Metabolism
title_sort genome-wide investigation of the nac transcription factor family in apocynum venetum revealed their synergistic roles in abiotic stress response and trehalose metabolism
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10003206/
https://www.ncbi.nlm.nih.gov/pubmed/36902009
http://dx.doi.org/10.3390/ijms24054578
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