4.7 Article

Transcriptome-wide analysis of jasmonate- treated BY-2 cells reveals new transcriptional regulators associated with alkaloid formation in tobacco

Journal

JOURNAL OF PLANT PHYSIOLOGY
Volume 215, Issue -, Pages 1-10

Publisher

ELSEVIER GMBH
DOI: 10.1016/j.jplph.2017.05.004

Keywords

BY-2; RNA-seq; Assembly; Transcriptome; Jasmonate; Alkaloid; Transcription regulator

Categories

Funding

  1. Beijing Key Laboratory of Gene Resource and Molecular Development [201201]
  2. National Natural Science Foundation of China [30870218]
  3. Chinese Tobacco Company [110201202005]
  4. Yunnan Tobacco Company [2013YN04]

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Jasmonates (JAs) are well-known regulators of stress, defence, and secondary metabolism in plants, with JA perception triggering extensive transcriptional reprogramming, including both activation and/or repression of entire metabolic pathways. We performed RNA sequencing based transcriptomic profiling of tobacco BY-2 cells before and after treatment with methyl jasmonate (MeJA) to identify novel transcriptional regulators associated with alkaloid formation. A total of 107,140 unigenes were obtained through de novo assembly, and at least 33,213 transcripts (31%) encode proteins, in which 3419 transcription factors (TFs) were identified, representing 72 gene families, as well as 840 transcriptional regulators (TRs) distributed among 19 gene families. After MeJA treatment BY-2 cells, 7260 differentially expressed transcripts were characterised, which include 4443 MeJA-upregulated and 2817 MeJA-downregulated genes. Of these, 227 TFs/TRs in 36 families were specifically upregulated, and 102 TFs/TRs in 38 families were downregulated in MeJA-treated BY-2 cells. We further showed that the expression of 12 ethylene response factors and four basic helix-loop-helix factors increased at the transcriptional level after MeJA treatment in BY-2 cells and displayed specific expression patterns in nic mutants with or without MeJA treatments. Our data provide a catalogue of transcripts of tobacco BY-2 cells and benefit future study of JA-modulated regulation of secondary metabolism in tobacco.

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