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Manure source distance and soil depth: a natural screening system for nutrient-solubilizing bacteria
Chaoqun Tong1,2, Ruoyun Yu1,3, An Hu4
1Coconut Research Institute, Chinese Academy of Tropical Agricultural Sciences, Wenchang 571339, China.
Journal of Applied Microbiology
|March 12, 2026
Summary
This study developed an ecology-driven strategy using manure and soil depth gradients to isolate nutrient-solubilizing bacteria (NSB) for biofertilizers. This method efficiently targets beneficial microbes for sustainable agriculture.
Area of Science:
- Microbial Ecology
- Soil Science
- Biotechnology
Background:
- Nutrient-solubilizing bacteria (NSB) are crucial for plant nutrient uptake and sustainable agriculture.
- Traditional methods for isolating NSB are often inefficient and lack ecological context.
- Understanding microbial community dynamics in response to environmental gradients is key for bioprospecting.
Purpose of the Study:
- To develop and validate an ecology-driven strategy for isolating nutrient-solubilizing bacteria (NSB).
- To leverage natural manure-soil depth gradients as a screening system.
- To identify NSB with high biofertilizer potential for targeted applications.
Main Methods:
- Implemented a full-factorial sampling design across manure-distance and soil-depth gradients.
- Isolated culturable bacteria using a culture-dependent approach.
- Identified bacteria via 16S rRNA gene sequencing and screened for nitrogen fixation, phosphate solubilization (PS), and potassium solubilization (KS).
Main Results:
- Manure input and soil depth created a heterogeneous soil nutrient landscape, with phosphorus influencing bacterial communities.
- Phosphate-solubilizing bacteria (PSB) were enriched in low-phosphorus habitats, confirming niche-based selection.
- Multifunctional NSB strains (e.g., Klebsiella, Enterobacter) with nitrogen fixation, PS, and KS capabilities were successfully isolated from specific microhabitats.
Conclusions:
- Intersecting manure and soil depth gradients provide a powerful, predictable natural screening system for beneficial bacteria isolation.
- This ecology-driven strategy effectively links microbial ecology to bioprospecting.
- The approach yields a curated library of isolates with defined ecological origins, aiding in customized biofertilizer development and enhancing microbial resource mining for sustainable agriculture.
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