Results provide novel insights into the molecular mechanisms underlying microbial interactions in the tomato rhizosphere and highlight the potential of P. chlororaphis ToZa7 for effective biological control of FORL.
Verticillium dahliae is a destructive soil-borne fungus with a broad host range, and its persistence in soil complicates control. Current measures, mainly resistant cultivars and chemicals, are limited and environmentally risky, promoting biocontrol as a green alternative. Here, we investigated the biocontrol mechanism...
W. Jian, Yuan-Yuan Li, Yu Chen et al.· Microbiology Research· 0 citations
Fusarium wilt, caused by the soil-borne fungus Fusarium oxysporum f. sp. lycopersici (Fol), is a devastating disease that severely constrains tomato production worldwide. In this study, an endophytic bacterium, designated ZN-S18, was isolated from healthy tomato stems and identified as Bacillus amyloliquefaciens based...
Dan-Na Ma, Yi-Han Niu, Meng-Li Chen et al.· Journal of Fungi· 0 citations
It is reported that the methyltransferase FpLaeA is a global regulator essential for F. proliferatum pathogenicity and a target for integrated control of F. proliferatum and its associated mycotoxin risk.
Ling Wang, Shaoqing Tang, Weiyang Liao et al.· Journal of Agricultural and...· 0 citations
Fusarium oxysporum f. sp. cucumerinum is a destructive soilborne pathogen that causes Fusarium wilt in cucumbers. This study evaluated the antagonistic activity of the endophytic fungus Trichoderma viride TVa199 against F. oxysporum f. sp. cucumerinum and the mechanisms underlying its suppression of fungal virulence. T...
Aya A. Elemam, F. Migahed, A. Gebreil et al.· Microbial Pathogenesis· 0 citations
This work greatly enriches the gene annotation resources of C. formosanus but also provides a new perspective for understanding the fungal immune defense mechanisms of social insects at the molecular level, providing a theoretical basis for the development of new immunosuppressive agents.
K. Feng, Qi Ye, Yi-Yang Zhao et al.· Sociobiology· 0 citations
The potential of P1 as a promising bioinoculant candidate for sustainable agriculture in the potato sector is demonstrated and the genome lacked major virulence factors and antimicrobial traits, supporting the non-pathogenic nature of the P1 strain.
Poonam Patel, K. Raval, Satyamitra Shekh et al.· Frontiers in Microbiology· 0 citations
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