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Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale

The homeodomain-leucine zipper (HD-ZIP) gene family, as one of the plant-specific transcription factor families, plays an important role in regulating plant growth and development as well as in response to diverse stresses. Although it has been extensively characterized in many plants, the HD-ZIP fa...

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Autores principales: Yang, Qianyu, Xiang, Weibo, Li, Zhihui, Nian, Yuxin, Fu, Xiaoyun, Zhou, Guangzhu, Li, Linbao, Zhang, Jun, Huang, Guiyun, Han, Xiao, Xu, Lu, Bai, Xiao, Liu, Lei, Wu, Di
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971680/
https://www.ncbi.nlm.nih.gov/pubmed/35368655
http://dx.doi.org/10.3389/fgene.2022.797014
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author Yang, Qianyu
Xiang, Weibo
Li, Zhihui
Nian, Yuxin
Fu, Xiaoyun
Zhou, Guangzhu
Li, Linbao
Zhang, Jun
Huang, Guiyun
Han, Xiao
Xu, Lu
Bai, Xiao
Liu, Lei
Wu, Di
author_facet Yang, Qianyu
Xiang, Weibo
Li, Zhihui
Nian, Yuxin
Fu, Xiaoyun
Zhou, Guangzhu
Li, Linbao
Zhang, Jun
Huang, Guiyun
Han, Xiao
Xu, Lu
Bai, Xiao
Liu, Lei
Wu, Di
author_sort Yang, Qianyu
collection PubMed
description The homeodomain-leucine zipper (HD-ZIP) gene family, as one of the plant-specific transcription factor families, plays an important role in regulating plant growth and development as well as in response to diverse stresses. Although it has been extensively characterized in many plants, the HD-ZIP family is not well-studied in Dendrobium officinale, a valuable ornamental and traditional Chinese medicinal herb. In this study, 37 HD-ZIP genes were identified in Dendrobium officinale (Dohdzs) through the in silico genome search method, and they were classified into four subfamilies based on phylogenetic analysis. Exon–intron structure and conserved protein domain analyses further supported the prediction with the same group sharing similar gene and protein structures. Furthermore, their expression patterns were investigated in nine various tissues and under cold stress based on RNA-seq datasets to obtain the tissue-specific and cold-responsive candidates. Finally, Dohdz5, Dohdz9, and Dohdz12 were selected to validate their expression through qRT-PCR analysis, and they displayed significantly differential expression under sudden chilling stress, suggesting they might be the key candidates underlying cold stress response. These findings will contribute to better understanding of the regulatory roles of the HD-ZIP family playing in cold stress and also will provide the vital targets for further functional studies of HD-ZIP genes in D. officinale.
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spelling pubmed-89716802022-04-02 Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale Yang, Qianyu Xiang, Weibo Li, Zhihui Nian, Yuxin Fu, Xiaoyun Zhou, Guangzhu Li, Linbao Zhang, Jun Huang, Guiyun Han, Xiao Xu, Lu Bai, Xiao Liu, Lei Wu, Di Front Genet Genetics The homeodomain-leucine zipper (HD-ZIP) gene family, as one of the plant-specific transcription factor families, plays an important role in regulating plant growth and development as well as in response to diverse stresses. Although it has been extensively characterized in many plants, the HD-ZIP family is not well-studied in Dendrobium officinale, a valuable ornamental and traditional Chinese medicinal herb. In this study, 37 HD-ZIP genes were identified in Dendrobium officinale (Dohdzs) through the in silico genome search method, and they were classified into four subfamilies based on phylogenetic analysis. Exon–intron structure and conserved protein domain analyses further supported the prediction with the same group sharing similar gene and protein structures. Furthermore, their expression patterns were investigated in nine various tissues and under cold stress based on RNA-seq datasets to obtain the tissue-specific and cold-responsive candidates. Finally, Dohdz5, Dohdz9, and Dohdz12 were selected to validate their expression through qRT-PCR analysis, and they displayed significantly differential expression under sudden chilling stress, suggesting they might be the key candidates underlying cold stress response. These findings will contribute to better understanding of the regulatory roles of the HD-ZIP family playing in cold stress and also will provide the vital targets for further functional studies of HD-ZIP genes in D. officinale. Frontiers Media S.A. 2022-03-18 /pmc/articles/PMC8971680/ /pubmed/35368655 http://dx.doi.org/10.3389/fgene.2022.797014 Text en Copyright © 2022 Yang, Xiang, Li, Nian, Fu, Zhou, Li, Zhang, Huang, Han, Xu, Bai, Liu and Wu. 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 Genetics
Yang, Qianyu
Xiang, Weibo
Li, Zhihui
Nian, Yuxin
Fu, Xiaoyun
Zhou, Guangzhu
Li, Linbao
Zhang, Jun
Huang, Guiyun
Han, Xiao
Xu, Lu
Bai, Xiao
Liu, Lei
Wu, Di
Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale
title Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale
title_full Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale
title_fullStr Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale
title_full_unstemmed Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale
title_short Genome-Wide Characterization and Expression Analysis of HD-ZIP Gene Family in Dendrobium officinale
title_sort genome-wide characterization and expression analysis of hd-zip gene family in dendrobium officinale
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971680/
https://www.ncbi.nlm.nih.gov/pubmed/35368655
http://dx.doi.org/10.3389/fgene.2022.797014
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