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Genome-wide identification, phylogenetic and expression analysis of the heat shock transcription factor family in bread wheat (Triticum aestivum L.)

Zhou, Min; Zheng, Shigang; Liu, Rong; Lu, Jing; Lu, Lu; Zhang, Chihong; Liu, Zehou; Luo, Congpei; Zhang, Lei; Yant, Levi; Wu, Yu

Genome-wide identification, phylogenetic and expression analysis of the heat shock transcription factor family in bread wheat (Triticum aestivum L.) Thumbnail


Authors

Min Zhou

Shigang Zheng

Rong Liu

Jing Lu

Lu Lu

Chihong Zhang

Zehou Liu

Congpei Luo

Lei Zhang

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LEVI YANT LEVI.YANT@NOTTINGHAM.AC.UK
Professor of Evolutionary Genomics

Yu Wu



Abstract

Background
Environmental toxicity from non-essential heavy metals such as cadmium (Cd), which is released from human activities and other environmental causes, is rapidly increasing. Wheat can accumulate high levels of Cd in edible tissues, which poses a major hazard to human health. It has been reported that heat shock transcription factor A 4a (HsfA4a) of wheat and rice conferred Cd tolerance by upregulating metallothionein gene expression. However, genome-wide identification, classification, and comparative analysis of the Hsf family in wheat is lacking. Further, because of the promising role of Hsf genes in Cd tolerance, there is need for an understanding of the expression of this family and their functions on wheat under Cd stress. Therefore, here we identify the wheat TaHsf family and to begin to understand the molecular mechanisms mediated by the Hsf family under Cd stress.

Results
We first identified 78 putative Hsf homologs using the latest available wheat genome information, of which 38 belonged to class A, 16 to class B and 24 to class C subfamily. Then, we determined chromosome localizations, gene structures, conserved protein motifs, and phylogenetic relationships of these TaHsfs. Using RNA sequencing data over the course of development, we surveyed expression profiles of these TaHsfs during development and under different abiotic stresses to characterise the regulatory network of this family. Finally, we selected 13 TaHsf genes for expression level verification under Cd stress using qRT-PCR.

Conclusions
To our knowledge, this is the first report of the genome organization, evolutionary features and expression profiles of the wheat Hsf gene family. This work therefore lays the foundation for targeted functional analysis of wheat Hsf genes, and contributes to a better understanding of the roles and regulatory mechanism of wheat Hsfs under Cd stress.

Citation

Zhou, M., Zheng, S., Liu, R., Lu, J., Lu, L., Zhang, C., …Wu, Y. (2019). Genome-wide identification, phylogenetic and expression analysis of the heat shock transcription factor family in bread wheat (Triticum aestivum L.). BMC Genomics, 20(1), 1-18. https://doi.org/10.1186/s12864-019-5876-x

Journal Article Type Article
Acceptance Date May 31, 2019
Online Publication Date Jun 18, 2019
Publication Date 2019-12
Deposit Date Jun 19, 2019
Publicly Available Date Jun 19, 2019
Journal BMC Genomics
Electronic ISSN 1471-2164
Publisher Springer Verlag
Peer Reviewed Peer Reviewed
Volume 20
Issue 1
Article Number 505
Pages 1-18
DOI https://doi.org/10.1186/s12864-019-5876-x
Keywords Biotechnology; Genetics
Public URL https://nottingham-repository.worktribe.com/output/2207797
Publisher URL https://bmcgenomics.biomedcentral.com/articles/10.1186/s12864-019-5876-x

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