Transcriptome and Metabolome Analyses Reveal That Jasmonic Acids May Facilitate the Infection of Cucumber Green Mottle Mosaic Virus in Bottle Gourd

Author:

Li Zhenggang1ORCID,Tang Yafei1,Lan Guobing1,Yu Lin1,Ding Shanwen1,She Xiaoman1,He Zifu1

Affiliation:

1. Guangdong Provincial Key Laboratory of High Technology for Plant Protection, Plant Protection Research Institute, Guangdong Academy of Agricultural Sciences, Guangzhou 510640, China

Abstract

Cucumber green mottle mosaic virus (CGMMV) is a typical seed-borne tobamovirus that mainly infects cucurbit crops. Due to the rapid growth of international trade, CGMMV has spread worldwide and become a significant threat to cucurbit industry. Despite various studies focusing on the interaction between CGMMV and host plants, the molecular mechanism of CGMMV infection is still unclear. In this study, we utilized transcriptome and metabolome analyses to investigate the antiviral response of bottle gourd (Lagenaria siceraria) under CGMMV stress. The transcriptome analysis revealed that in comparison to mock-inoculated bottle gourd, 1929 differently expressed genes (DEGs) were identified in CGMMV-inoculated bottle gourd. Among them, 1397 genes were upregulated while 532 genes were downregulated. KEGG pathway enrichment indicated that the DEGs were mainly involved in pathways including the metabolic pathway, the biosynthesis of secondary metabolites, plant hormone signal transduction, plant–pathogen interaction, and starch and sucrose metabolism. The metabolome result showed that there were 76 differentially accumulated metabolites (DAMs), of which 69 metabolites were up-accumulated, and 7 metabolites were down-accumulated. These DAMs were clustered into several pathways, including biosynthesis of secondary metabolites, tyrosine metabolism, flavonoid biosynthesis, carbon metabolism, and plant hormone signal transduction. Combining the transcriptome and metabolome results, the genes and metabolites involved in the jasmonic acid and its derivatives (JAs) synthesis pathway were significantly induced upon CGMMV infection. The silencing of the allene oxide synthase (AOS) gene, which is the key gene involved in JAs synthesis, reduced CGMMV accumulation. These findings suggest that JAs may facilitate CGMMV infection in bottle gourd.

Funder

National Natural Science Foundation of China

Project of Collaborative Innovation Center of GDAAS

Agricultural Competitive Industry Discipline Team Building Project of Guangdong Academy of Agricultural Sciences

Science and Technology Program of Guangzhou

Young Talent Support Project of Guangzhou Association for Science and Technology

Special Fund for Scientific Innovation Strategy—Construction of High-Level Academy of Agriculture Science

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference78 articles.

1. Cucumber green mottle mosaic virus on cucumber and watermelon and melon necrotic spot virus on muskmelon;Komuro;Jarq-Jpn. Agric. Res. Q.,1971

2. Occurrence of a variant of cucumber green mottle mosaic virus in Israel;Antignus;Phytoparasitica,1990

3. A strain of cucumber green mottle mosaic virus (CGMMV) from bottle gourd in Saudi Arabia;Abdalla;J. Phytopathol.,1992

4. First report of cucumber green mottle mosaic virus in snake gourd (Trichosanthes cucumerina) in India;Nagendran;Plant Dis.,2015

5. A new source of resistance to cucumber green mottle mosaic virus in melon;Sugiyama;J. Jpn. Soc. Hortic. Sci.,2006

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