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An AP2/ERF member LlERF012 confers thermotolerance via activation of HSF pathway in lily.

Authors :
Li, Ting
Wu, Ze
Zhang, Yinyi
Xu, Sujuan
Xiang, Jun
Ding, Liping
Teng, Nianjun
Source :
Plant, Cell & Environment. Dec2024, Vol. 47 Issue 12, p4702-4719. 18p.
Publication Year :
2024

Abstract

Heat stress transcription factors (HSFs) are core factors of plants in response to heat stress (HS), but their regulatory network is complicated and remains elusive in a large part, especially HSFBs. In this study, we reported that the LlERF012‐LlHSFA1 module participates in heat stress response (HSR) by directly regulating HSF pathway in lily (Lilium longiflorum). LlHSFB1 was confirmed as a positive regulator in lily thermotolerance and a heat‐inducible AP2/ERF member LlERF012 (Ethylene Response Factor 012) was further identified to be a direct trans‐activator of LlHSFB1. Overexpression of LlERF012 elevated the thermotolerance of transgenic Arabidopsis and lily, but silencing LlERF012 reduced thermotolerance in lily. Further analysis showed LlERF012 interacted with LlHSFA1, which led to enhanced transactivation activity and DNA‐binding capability of LlERF012. In addition, LlERF012 also directly activated the expression of LlHSFA1 by binding its promoter. As expected, we found that LlERF012 bound the promoters of LlHSFA2, LlHSFA3A, and LlHSFA3B to stimulate their expression, and LlERF012‐LlHSFA1 interaction enhanced these activation effects. Overall, our data suggested that LlERF012 was a key factor for lily thermotolerance and the LlERF012‐LlHSFA1 interaction synergistically regulated the activity of the HSF pathway including the class A and B members, which might be of great significance for coordinating the functions of different HSFs. Summary Statement: An unreported regulatory mechanism of heat stress response mediated by the module LlERF012‐LlHSFA1 was proposed, which confers thermotolerance by activating both the class A and the class B HSF pathway. The results provide new evidence on ERF‐mediated coordination of different HSFs in plant thermotolerance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01407791
Volume :
47
Issue :
12
Database :
Academic Search Index
Journal :
Plant, Cell & Environment
Publication Type :
Academic Journal
Accession number :
180681850
Full Text :
https://doi.org/10.1111/pce.15058