Pepper NAC-type transcription factor NAC2c balances the trade-off between growth and defense responses

Author:

Cai Weiwei123,Yang Sheng123ORCID,Wu Ruijie123,Cao Jianshen123,Shen Lei123,Guan Deyi123ORCID,Shuilin He123ORCID

Affiliation:

1. Key Laboratory of Applied Genetics of Universities in Fujian Province, Fujian Agriculture and Forestry University, Fuzhou, Fujian, 350002, China

2. National Education Ministry Key Laboratory of Plant Genetic Improvement and Comprehensive Utilization, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, China

3. Agricultural College, Fujian Agriculture and Forestry University, Fuzhou, Fujian 350002, China

Abstract

Abstract Plant responses to pathogen attacks and high-temperature stress (HTS) are distinct in nature but generally share several signaling components. How plants produce specific responses through these common signaling intermediates remains elusive. With the help of reverse-genetics approaches, we describe here the mechanism underlying trade-offs in pepper (Capsicum annuum) between growth, immunity, and thermotolerance. The NAC-type transcription factor CaNAC2c was induced by HTS and Ralstonia solanacearum infection (RSI). CaNAC2c-inhibited pepper growth, promoted immunity against RSI by activating jasmonate-mediated immunity and H2O2 accumulation, and promoted HTS responses by activating Heat shock factor A5 (CaHSFA5) transcription and blocking H2O2 accumulation. We show that CaNAC2c physically interacts with CaHSP70 and CaNAC029 in a context-specific manner. Upon HTS, CaNAC2c–CaHSP70 interaction in the nucleus protected CaNAC2c from degradation and resulted in the activation of thermotolerance by increasing CaNAC2c binding and transcriptional activation of its target promoters. CaNAC2c did not induce immunity-related genes under HTS, likely due to the degradation of CaNAC029 by the 26S proteasome. Upon RSI, CaNAC2c interacted with CaNAC029 in the nucleus and activated jasmonate-mediated immunity but was prevented from activating thermotolerance-related genes. In non-stressed plants, CaNAC2c was tethered outside the nucleus by interaction with CaHSP70, and thus was unable to activate either immunity or thermotolerance. Our results indicate that pepper growth, immunity, and thermotolerance are coordinately and tightly regulated by CaNAC2c via its inducible expression and differential interaction with CaHSP70 and CaNAC029.

Funder

National Natural Science Foundation of China

Scientific Research Foundation

Graduate School of Fujian Agriculture and Forestry University

Development Fund Project of Fujian Agriculture and Forestry University

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

Reference112 articles.

1. Capsicum annuum HsfB2a positively regulates the response to Ralstonia solanacearum infection or high temperature and high humidity forming transcriptional cascade with CaWRKY6 and CaWRKY40;Ashraf;Plant Cell Physiol,2018

2. Protection against virus infection in tobacco plants expressing the coat protein of grapevine fanleaf nepovirus;Bardonnet;Plant Cell Rep,1994

3. Principles and characteristics of the Arabidopsis WRKY regulatory network during early MAMP-triggered immunity;Birkenbihl;Plant J Cell Mol Biol,2018

4. Emerging insights into the functions of pathogenesis-related protein 1;Breen;Trends Plant Sci,2017

5. CaWRKY6 transcriptionally activates CaWRKY40, regulates Ralstonia solanacearum resistance, and confers high-temperature and high-humidity tolerance in pepper;Cai;J Exp Bot,2015

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