FoRSR1 Is Important for Conidiation, Fusaric Acid Production, and Pathogenicity in Fusarium oxysporum f. sp. ginseng

Author:

Yang Cui12ORCID,Sun Jing1,Wu Zhaoqun1,Jiang Maozhu1,Li Dayong1,Wang Xinjie1,Zhou Chunxiang1,Liu Xuecheng1,Ren Zhiguo2,Wang Jun1,Sun Manli2,Sun Wenxian13,Gao Jie14ORCID

Affiliation:

1. College of Plant Protection, Jilin Agricultural University, Changchun, 130118, China

2. State Key Laboratory of North China Crop Improvement and Regulation, Hebei Agricultural University, Baoding, Hebei, 071000, China

3. College of Plant Protection and the Ministry of Agriculture Key Laboratory of Pest Monitoring and Green Management, China Agricultural University, Beijing, 100193, China

4. State-Local Joint Engineering Research Center of Ginseng Breeding and Application, Changchun, 130118, China

Abstract

The root rot disease caused by Fusarium oxysporum f. sp. ginseng is one of the most destructive diseases of ginseng, an economically important herb. However, little is known about the pathogen's toxin biosynthesis or the molecular mechanisms regulating infection of ginseng. In this study we identified and functionally characterized the FoRSR1 gene that encodes a Ras-related (RSR) small GTPase homologous to yeast Rsr1 in F. oxysporum f. sp. ginseng. Disruption of FoRSR1 resulted in a significant reduction in mycelial dry weight in liquid cultures, although vegetative growth rate was not affected on culture plates. Notably, the Forsr1 mutant exhibited blunted and swollen hyphae with multi-nucleated compartments. It produced fewer and morphologically abnormal conidia and was defective in chlamydospore formation. In infection assays with ginseng roots, the Forsr1 mutant was significantly less virulent and caused only limited necrosis at the wounding sites. Deletion of FoRSR1 also affected pigmentation, autophagy, and production of fusaric acid. Furthermore, the expression of many candidate genes involved in secondary metabolism was significantly downregulated in the mutant, suggesting that FoRSR1 is also important for secondary metabolism. Overall, our results indicated that FoRSR1 plays important roles in conidiation, vacuolar morphology, secondary metabolism, and pathogenesis in F. oxysporum f. sp. ginseng.

Funder

National Natural Science Foundation of China

State Key Laboratory of North China Crop Improvement and Regulation

Jilin Science and Technology Department of Science and Technology Development Project, Jilin Province

Department of Education, Jilin Province

Publisher

Scientific Societies

Subject

Plant Science,Agronomy and Crop Science

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