4.7 Article

Genome-wide identification and expression profiling of DREB genes in Saccharum spontaneum

期刊

BMC GENOMICS
卷 22, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12864-021-07799-5

关键词

Saccharum spontaneum; DREB; Phylogenetic analysis; Gene expression; Dehydration response

资金

  1. program for the National key research and development program [2018YFD1000104]
  2. National Hightech RD Program [2013AA100604]
  3. National Natural Science Foundation of China [31201260, 31760413, 31660420]
  4. Science and Technology Major Project of Guangxi [AA17202025]
  5. Fujian Provincial Department of Education [JA12082]

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This study identified 12 DREB1 genes and 6 DREB2 genes in the genome of S. spontaneum, with all proteins containing a conserved AP2/ERF domain. Phylogenetic analysis suggested tandem duplication contributed to the expansion of DREB1-type genes in sugarcane. Expression profiling revealed that certain SsDREB genes were involved in both development and stress responses in S. spontaneum, highlighting the important role of DREBs in multiple aspects of plant physiology.
Background The dehydration-responsive element-binding proteins (DREBs) are important transcription factors that interact with a DRE/CRT (C-repeat) sequence and involve in response to multiple abiotic stresses in plants. Modern sugarcane are hybrids from the cross between Saccharum spontaneum and Saccharum officinarum, and the high sugar content is considered to the attribution of S. officinaurm, while the stress tolerance is attributed to S. spontaneum. To understand the molecular and evolutionary characterization and gene functions of the DREBs in sugarcane, based on the recent availability of the whole genome information, the present study performed a genome-wide in silico analysis of DREB genes and transcriptome analysis in the polyploidy S. spontaneum. Results Twelve DREB1 genes and six DREB2 genes were identified in S. spontaneum genome and all proteins contained a conserved AP2/ERF domain. Eleven SsDREB1 allele genes were assumed to be originated from tandem duplications, and two of them may be derived after the split of S. spontaneum and the proximal diploid species sorghum, suggesting tandem duplication contributed to the expansion of DREB1-type genes in sugarcane. Phylogenetic analysis revealed that one DREB2 gene was lost during the evolution of sugarcane. Expression profiling showed different SsDREB genes with variable expression levels in the different tissues, indicating seven SsDREB genes were likely involved in the development and photosynthesis of S. spontaneum. Furthermore, SsDREB1F, SsDREB1L, SsDREB2D, and SsDREB2F were up-regulated under drought and cold condition, suggesting that these four genes may be involved in both dehydration and cold response in sugarcane. Conclusions These findings demonstrated the important role of DREBs not only in the stress response, but also in the development and photosynthesis of S. spontaneum.

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