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  4. Environmental history modulates Arabidopsis pattern-triggered immunity in a histone acetyltransferase1-dependent manner
 
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Environmental history modulates Arabidopsis pattern-triggered immunity in a histone acetyltransferase1-dependent manner

Journal
Plant Cell
Journal Volume
26
Journal Issue
6
Pages
2676-2688
Date Issued
2014
Author(s)
Singh P.
Yekondi S.
Chen P.-W.
Tsai C.-H.
CHUN-WEI YU  
KEQIANG WU  
Zimmerli L.
DOI
10.1105/tpc.114.123356
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/414190
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904999739&doi=10.1105%2ftpc.114.123356&partnerID=40&md5=a19a11cfe407a2f34ea78ecf94c464a0
Abstract
In nature, plants are exposed to a fluctuating environment, and individuals exposed to contrasting environmental factors develop different environmental histories. Whether different environmental histories alter plant responses to a current stress remains elusive. Here, we show that environmental history modulates the plant response to microbial pathogens. Arabidopsis thaliana plants exposed to repetitive heat, cold, or salt stress were more resistant to virulent bacteria than Arabidopsis grown in a more stable environment. By contrast, long-term exposure to heat, cold, or exposure to high concentrations of NaCl did not provide enhanced protection against bacteria. Enhanced resistance occurred with priming of Arabidopsis pattern-triggered immunity (PTI)-responsive genes and the potentiation of PTI-mediated callose deposition. In repetitively stress-challenged Arabidopsis, PTI-responsive genes showed enrichment for epigenetic marks associated with transcriptional activation. Upon bacterial infection, enrichment of RNA polymerase II at primed PTI marker genes was observed in environmentally challenged Arabidopsis. Finally, repetitively stress-challenged histone acetyltransferase1-1 (hac1-1) mutants failed to demonstrate enhanced resistance to bacteria, priming of PTI, and increased open chromatin states. These findings reveal that environmental history shapes the plant response to bacteria through the development of a HAC1-dependent epigenetic mark characteristic of a primed PTI response, demonstrating a mechanistic link between the primed state in plants and epigenetics. ? 2014 American Society of Plant Biologists. All rights reserved.
Publisher
American Society of Plant Biologists
Type
journal article

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