DOAJ Open Access 2026

Integrated metabolomics and metagenomics uncover pathogenic mechanisms of Fusarium wilt and faba bean defense responses

Jiaqi Zheng Chaowen Zhang Siheng Xiang Mengqing Li Hongji Wang +3 lainnya

Abstrak

Abstract Fusarium wilt diseases pose a huge threat to faba bean (Vicia faba L.) production globally, with significant outbreaks in Chongqing, China. Symptomatic plants showed wilting leaves and rotten roots, ultimately perishing in the advanced stage. Morphological features, multilocus phylogenetic analyses, and pathogenicity tests demonstrated that the primary causal agent was Fusarium oxysporum. Untargeted metabolomics of faba beans revealed substantial metabolic differences in the infected faba bean roots. Plants responded to fungal biotic stress by reprogramming key metabolic pathways, including alanine, aspartate, and glutamate metabolism, the citrate cycle, arginine biosynthesis, and jasmonic acid metabolism, which collectively underscore activated defense responses. Metagenome sequencing showed that Fusarium wilt significantly reshaped the structure of the rhizosphere microbiota and affected the abundance of genes encoding element cycling in soil. This work elucidates the pathogenic mechanisms of F. oxysporum by integrating pathogen identification, host metabolism, and microbiome ecology. Our findings offer biomarkers for disease diagnosis and targets for biocontrol, advancing sustainable management of Fusarium wilt diseases in legumes.

Penulis (8)

J

Jiaqi Zheng

C

Chaowen Zhang

S

Siheng Xiang

M

Mengqing Li

H

Hongji Wang

K

Kexin Shi

D

Dorjeeh Tondrob

Y

Yuzhu Han

Format Sitasi

Zheng, J., Zhang, C., Xiang, S., Li, M., Wang, H., Shi, K. et al. (2026). Integrated metabolomics and metagenomics uncover pathogenic mechanisms of Fusarium wilt and faba bean defense responses. https://doi.org/10.1038/s41538-025-00673-8

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Informasi Jurnal
Tahun Terbit
2026
Sumber Database
DOAJ
DOI
10.1038/s41538-025-00673-8
Akses
Open Access ✓