科研速览继续刷下去 →
◆ Applied biochemistry and biotechnology2026-08-31

Genomic and Functional Characterization of Bacillus subtilis Strain 55-7 as a Dual-Function Bioinoculant for Fungal Biocontrol and Enhancing Sweet Corn Seedling Growth Under Reduced Fertilizer Input.

Yusuf Ibrahim Sadisu, Koonsirin Buraphan, Jiraporn Jirakkakul, Saengchai Akeprathumchai, Chatsuda Sakdapetsiri, Paripok Phitsuwan, Lakha Salaipeth

一句话结论

These findings position B. subtilis strain 55-7 as a promising bioinoculant for integrated crop management, reducing chemical inputs while maintaining productivity.

原始摘要(原文)
Fungal pathogens and unsustainable fertilizer use pose a threat to global food security, driving demand for eco-friendly alternatives to conventional disease management and crop fertilization. This study characterizes Bacillus subtilis strain 55-7, isolated from a saline hot spring in Krabi, Thailand, as a dual-function bioinoculant for sustainable plant cultivation. Laboratory assays demonstrated potent antifungal activity against Curvularia lunata (91.9% by volatile organic compounds and 49.1% by confrontation assay) and multiple plant growth-promoting traits, including nitrogen fixation, phosphate solubilization, siderophore production, and IAA synthesis. In greenhouse trials, combining strain 55-7 with 50% reduced N-P-K fertilizer enhanced sweet corn shoot biomass by 2.9-fold and root length by 70.8% compared to the control, matching full-fertilizer performance. Whole-genome sequencing revealed 4,324 genes within a 4.06 Mb genome, and ten biosynthetic gene clusters with low similarity (16-73%) to known antimicrobial pathways, suggesting novel or uncharacterized variants of the secondary metabolites. These findings position B. subtilis strain 55-7 as a promising bioinoculant for integrated crop management, reducing chemical inputs while maintaining productivity.
读原文 ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文

Genomic and Functional Characterization of Bacillus subtilis Strain 55-7 as a Dual-Function Bioinoculant for Fungal Biocontrol and Enhancing Sweet Corn Seedling Growth Under Reduced Fertilizer Input. — 科研速览 Science Skim