LaMYC7, a positive regulator of linalool and caryophyllene biosynthesis, confers plant resistance to Pseudomonas syringae

Author:

Dong Yanmei12,Wei Ziling123,Zhang Wenying123,Li Jingrui12,Han Meixian123,Bai Hongtong12,Li Hui12,Shi Lei12

Affiliation:

1. Chinese Academy of Sciences State Key Laboratory of Plant Diversity and Specialty Crops, Institute of Botany, , No.20 Nanxincun, Xiangshan, Beijing 100093, China

2. China National Botanical Garden , Beijing 100093, China

3. University of Chinese Academy of Sciences , Beijing 100049, China

Abstract

Abstract Linalool and caryophyllene are the main monoterpene and sesquiterpene compounds in lavender; however, the genes regulating their biosynthesis still remain many unknowns. Here, we identified LaMYC7, a positive regulator of linalool and caryophyllene biosynthesis, confers plant resistance to Pseudomonas syringae. LaMYC7 was highly expressed in glandular trichomes, and LaMYC7 overexpression could significantly increase the linalool and caryophyllene contents and reduce susceptibility to P. syringae in Nicotiana. In addition, the linalool possessed antimicrobial activity against P. syringae growth and acted dose-dependently. Further analysis demonstrated that LaMYC7 directly bound to the promoter region of LaTPS76, which encodes the terpene synthase (TPS) for caryophyllene biosynthesis, and that LaTPS76 was highly expressed in glandular trichomes. Notably, the LaMYC7 promoter contained hormone and stress-responsive regulatory elements and responded to various treatments, including ultraviolet, low temperature, salt, drought, methyl jasmonate, and P. syringae infection treatments. Under these treatments, the changes in the linalool and caryophyllene contents were similar to those in LaMYC7 transcript abundance. Based on the results, LaMYC7 could respond to P. syringae infection in addition to being involved in linalool and caryophyllene biosynthesis. Thus, the MYC transcription factor gene LaMYC7 can be used in the breeding of high-yielding linalool and caryophyllene lavender varieties with pathogen resistance.

Funder

Strategic Priority Research Program of the Chinese Academy of Sciences

International Partnership Program of the Chinese Academy of Sciences

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

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