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September 23, 2025Agronomy6 citationsOpen Access

Bio-Organic Fertilizers Enhance Yield in Continuous Cotton Cropping Systems Through Rhizosphere Microbiota Modulation and Soil Nutrient Improvement

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MYMengmeng YuHHHao HeLCLiyang Cheng

Key Points

  • Seed cotton yield increased by 19.82–28.17% with bio-organic fertilizers, indicating significant productivity gains.
  • Total plant biomass improved by 56.66–61.97%, reflecting enhanced root development and nutrient acquisition.
  • Soil analysis showed 12.05–17.72% increase in organic matter without pH alteration, highlighting nutrient improvement.
  • Metagenomic sequencing revealed enrichment of beneficial taxa and reduction of harmful pathogens, enhancing soil resilience.

Abstract

The application of bio-organic fertilizers (BOFs) represents a promising strategy for mitigating soil degradation in continuous monoculture systems, yet their long-term mechanistic impacts in aged cotton fields remain poorly elucidated. This study aims to uncover how BOFs enhance soil health, reshape microbial communities, and sustain cotton productivity under decades-long continuous cropping in Xinjiang, China. A two-year field experiment compared conventional chemical fertilization (CK, N−P−K: 300–180–150 kg·ha−1) with combined chemical and BOF treatment (BOF, N−P−K: 300−180−150 kg·ha−1, BOFs: 4159 kg·ha−1 in 2023 and 4545 kg·ha−1 in 2024). The BOFs used in this study contained ≥40.0% organic matter and ≥0.20 × 108 CFU·g−1 of Bacillus amyloliquefaciens. The results demonstrated that BOF application significantly increased seed cotton yield by 19.82–28.17% and total plant biomass by 56.66–61.97%, with the latter reflecting improved root development and nutrient acquisition—key factors contributing to yield gains. Soil analysis indicated substantial elevations in organic matter (12.05–17.72%) and available nutrients without altering pH. Metagenomic sequencing revealed that the BOF treatment enriched beneficial taxa (e.g., Lysobacter increased by 50.53%), suppressed Fusarium (decreased by 36.08%), enhanced microbial network complexity, and reinforced disease-suppressive functions. These findings provide mechanistic insights into the role of BOFs in restoring rhizosphere ecology and promoting soil resilience. This study supports the practical integration of BOFs as a sustainable measure for rejuvenating degraded cotton monoculture systems and optimizing fertilizer management in arid agroecosystems.

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Cite This Study

Yu et al. (2025) studied this question.

synapsesocial.com/papers/68d473b531b076d99fa6c6c5https://doi.org/10.3390/agronomy15092238
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