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Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed

The TIFY gene family plays important roles in various plant biological processes and responses to stress and hormones. The chromosome-level genome of the Brassiceae species has been released, but knowledge concerning the TIFY family is lacking in the Brassiceae species. The current study performed a...

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Autores principales: Sun, Fujun, Chen, Zhiyou, Zhang, Qianwei, Wan, Yuanyuan, Hu, Ran, Shen, Shulin, Chen, Si, Yin, Nengwen, Tang, Yunshan, Liang, Ying, Lu, Kun, Qu, Cunmin, Hua, Wei, Li, Jiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912736/
https://www.ncbi.nlm.nih.gov/pubmed/35270137
http://dx.doi.org/10.3390/plants11050667
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author Sun, Fujun
Chen, Zhiyou
Zhang, Qianwei
Wan, Yuanyuan
Hu, Ran
Shen, Shulin
Chen, Si
Yin, Nengwen
Tang, Yunshan
Liang, Ying
Lu, Kun
Qu, Cunmin
Hua, Wei
Li, Jiana
author_facet Sun, Fujun
Chen, Zhiyou
Zhang, Qianwei
Wan, Yuanyuan
Hu, Ran
Shen, Shulin
Chen, Si
Yin, Nengwen
Tang, Yunshan
Liang, Ying
Lu, Kun
Qu, Cunmin
Hua, Wei
Li, Jiana
author_sort Sun, Fujun
collection PubMed
description The TIFY gene family plays important roles in various plant biological processes and responses to stress and hormones. The chromosome-level genome of the Brassiceae species has been released, but knowledge concerning the TIFY family is lacking in the Brassiceae species. The current study performed a bioinformatics analysis on the TIFY family comparing three diploid (B. rapa, B. nigra, and B. oleracea) and two derived allotetraploid species (B. juncea, and B. napus). A total of 237 putative TIFY proteins were identified from five Brassiceae species, and classified into ten subfamilies (six JAZ types, one PPD type, two TIFY types, and one ZML type) based on their phylogenetic relationships with TIFY proteins in A. thaliana and Brassiceae species. Duplication and synteny analysis revealed that segmental and tandem duplications led to the expansion of the TIFY family genes during the process of polyploidization, and most of these TIFY family genes (TIFYs) were subjected to purifying selection after duplication based on Ka/Ks values. The spatial and temporal expression patterns indicated that different groups of BnaTIFYs have distinct spatiotemporal expression patterns under normal conditions and heavy metal stresses. Most of the JAZIII subfamily members were highest in all tissues, but JAZ subfamily members were strongly induced by heavy metal stresses. BnaTIFY34, BnaTIFY59, BnaTIFY21 and BnaTIFY68 were significantly upregulated mostly under As(3+) and Cd(2+) treatment, indicating that they could be actively induced by heavy metal stress. Our results may contribute to further exploration of TIFYs, and provided valuable information for further studies of TIFYs in plant tolerance to heavy metal stress.
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spelling pubmed-89127362022-03-11 Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed Sun, Fujun Chen, Zhiyou Zhang, Qianwei Wan, Yuanyuan Hu, Ran Shen, Shulin Chen, Si Yin, Nengwen Tang, Yunshan Liang, Ying Lu, Kun Qu, Cunmin Hua, Wei Li, Jiana Plants (Basel) Article The TIFY gene family plays important roles in various plant biological processes and responses to stress and hormones. The chromosome-level genome of the Brassiceae species has been released, but knowledge concerning the TIFY family is lacking in the Brassiceae species. The current study performed a bioinformatics analysis on the TIFY family comparing three diploid (B. rapa, B. nigra, and B. oleracea) and two derived allotetraploid species (B. juncea, and B. napus). A total of 237 putative TIFY proteins were identified from five Brassiceae species, and classified into ten subfamilies (six JAZ types, one PPD type, two TIFY types, and one ZML type) based on their phylogenetic relationships with TIFY proteins in A. thaliana and Brassiceae species. Duplication and synteny analysis revealed that segmental and tandem duplications led to the expansion of the TIFY family genes during the process of polyploidization, and most of these TIFY family genes (TIFYs) were subjected to purifying selection after duplication based on Ka/Ks values. The spatial and temporal expression patterns indicated that different groups of BnaTIFYs have distinct spatiotemporal expression patterns under normal conditions and heavy metal stresses. Most of the JAZIII subfamily members were highest in all tissues, but JAZ subfamily members were strongly induced by heavy metal stresses. BnaTIFY34, BnaTIFY59, BnaTIFY21 and BnaTIFY68 were significantly upregulated mostly under As(3+) and Cd(2+) treatment, indicating that they could be actively induced by heavy metal stress. Our results may contribute to further exploration of TIFYs, and provided valuable information for further studies of TIFYs in plant tolerance to heavy metal stress. MDPI 2022-02-28 /pmc/articles/PMC8912736/ /pubmed/35270137 http://dx.doi.org/10.3390/plants11050667 Text en © 2022 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
Sun, Fujun
Chen, Zhiyou
Zhang, Qianwei
Wan, Yuanyuan
Hu, Ran
Shen, Shulin
Chen, Si
Yin, Nengwen
Tang, Yunshan
Liang, Ying
Lu, Kun
Qu, Cunmin
Hua, Wei
Li, Jiana
Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed
title Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed
title_full Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed
title_fullStr Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed
title_full_unstemmed Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed
title_short Genome-Wide Identification of the TIFY Gene Family in Brassiceae and Its Potential Association with Heavy Metal Stress in Rapeseed
title_sort genome-wide identification of the tify gene family in brassiceae and its potential association with heavy metal stress in rapeseed
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8912736/
https://www.ncbi.nlm.nih.gov/pubmed/35270137
http://dx.doi.org/10.3390/plants11050667
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