Transcriptome analysis of salt stress in hibiscus hamabo sieb. Et zucc based on pacbio full‐length transcriptome sequencing

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Abstract

Hibiscus hamabo Sieb. et Zucc is an important semi‐mangrove plant with great morphological features and strong salt resistance. In this study, by combining single molecule real time and next‐generation sequencing technologies, we explored the transcriptomic changes in the roots of salt stressed H. hamabo. A total of 94,562 unigenes were obtained by clustering the same isoforms using the PacBio RSII platform, and 2269 differentially expressed genes were obtained under salt stress using the Illumina platform. There were 519 differentially expressed genes co-expressed at each treatment time point under salt stress, and these genes were found to be enriched in ion signal transduction and plant hormone signal transduction. We used Arabidopsis thaliana (L.) Heynh. transformation to confirm the function of the HhWRKY79 gene and discovered that overexpression enhanced salt tolerance. The full‐length transcripts generated in this study provide a full characterization of the transcriptome of H. hamabo and may be useful in mining new salt stress-related genes specific to this species, while facilitating the understanding of the salt tolerance mechanisms.

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Ni, L., Wang, Z., Liu, X., Wu, S., Hua, J., Yin, Y., … Gu, C. (2022). Transcriptome analysis of salt stress in hibiscus hamabo sieb. Et zucc based on pacbio full‐length transcriptome sequencing. International Journal of Molecular Sciences, 23(1). https://doi.org/10.3390/ijms23010138

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