Distinct heat shock factors and chromatin modifications mediate the organ-autonomous transcriptional memory of heat stress

Plants can be primed by a stress cue to mount a faster or stronger activation of defense mechanisms upon a subsequent stress. A crucial component of such stress priming is the modified reactivation of genes upon recurring stress; however, the underlying mechanisms are poorly understood. Here, we report that dozens of Arabidopsis thaliana genes display transcriptional memory, i.e. stronger upregulation after a recurring heat stress, that lasts for at least three days. We define a set of transcription factors involved in this memory response and show that the transcriptional memory results in enhanced transcriptional activation within minutes after the onset of a heat stress cue. Further, we show that the transcriptional memory is active in all tissues. It may last for up to a week, and is associated with histone H3 lysine 4 hyper-methylation during this time. This transcriptional memory is cis-encoded, as we identify a promoter fragment that confers memory onto a heterologous gene. In summary, heat-induced transcriptional memory is a widespread and sustained response, and our study provides a framework for future mechanistic studies of somatic stress memory in higher plants.

 

同研究人員:Hsiang-chin Liu, Jörn Lämke, Siou-ying Lin, Meng-Ju Hung, Kuan-Ming Liu, Isabel Bäurle
Yee-yung Charng

Yee-yung Charng

Research Fellow

(02) 2787-2047
yycharng@sinica.edu.tw
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  • 2015-to date Research Fellow, ABRC, Academia Sinica
  • 2006-2015 Associate Research Fellow, ABRC, Academia Sinica
  • 1998-2006 Assistant Research Fellow, Inst. of BioAgric. Sci., Academia Sinica
  • 1995-1997 Pdf, IPMB, Academia Sinica
  • 1994-1995 Pdf, Dept. of Vegetable Crops, Univ. of California, Davis
  • 1994 Ph.D., Dept. of Biochem., Michigan State Univ.