Root exudates mediating plant–soil–microbe interactions: regulation of plant growth and environmental remediation

Root exudates are key substances mediating plant-soil-microbe interactions and regulating plant growth, soil ecology and pollutant transformation. They exert dual regulatory effects on plant growth: growth promotion is achieved through nutrient chelation, redox activation and beneficial microbial recruitment, whereas autotoxic allelochemical accumulation and excessive ROS production induce growth inhibition. For organic pollutants, root exudates accelerate contaminant degradation via co-metabolism and enzyme induction. For heavy metals, root exudates trigger two opposing mechanisms: mobilization for metal phytoextraction and immobilization for in-situ stabilization. These regulatory outcomes are modulated by plant species, stress conditions, experimental systems, and other factors. Future research directions include multi-omics analysis, green regulation of continuous cropping obstacles and combined-pollution response mechanisms, providing theoretical support for rhizosphere ecology, soil remediation and sustainable agriculture

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Publication Details

Journal
Soil Science & Plant Nutrition
Published
2026-09-17
DOI
https://doi.org/10.1080/00380768.2026.2734468
Primary Topic
Allelopathy and phytotoxic interactions
Type
article
Field-Weighted Citation Impact
0.00

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article

Root exudates mediating plant–soil–microbe interactions: regulation of plant growth and environmental remediation

Xiaoying Li, Fengzhi Wu, Zihan Wang, Yu Zhang et al.
Soil Science & Plant Nutrition
Allelopathy and phytotoxic interactions
article

Root exudates mediating plant–soil–microbe interactions: regulation of plant growth and environmental remediation

Xiaoying Li, Fengzhi Wu, Zihan Wang, Yu Zhang, Lu Lu, Xinjiang Guo, Yuwei Cao
article en

Abstract

Root exudates are key substances mediating plant-soil-microbe interactions and regulating plant growth, soil ecology and pollutant transformation. They exert dual regulatory effects on plant growth: growth promotion is achieved through nutrient chelation, redox activation and beneficial microbial recruitment, whereas autotoxic allelochemical accumulation and excessive ROS production induce growth inhibition. For organic pollutants, root exudates accelerate contaminant degradation via co-metabolism and enzyme induction. For heavy metals, root exudates trigger two opposing mechanisms: mobilization for metal phytoextraction and immobilization for in-situ stabilization. These regulatory outcomes are modulated by plant species, stress conditions, experimental systems, and other factors. Future research directions include multi-omics analysis, green regulation of continuous cropping obstacles and combined-pollution response mechanisms, providing theoretical support for rhizosphere ecology, soil remediation and sustainable agriculture

Soil Science & Plant Nutrition
Northeast Agricultural University (CN)
National Natural Science Foundation of China
Zero hunger
Openalex Percentile: Top 13%
Allelopathy and phytotoxic interactions
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Root exudates mediating plant–soil–microbe interactions: regulation of plant growth and environmental remediation — Xiaoying Li, Fengzhi Wu, et al. · Soil Science & Plant Nutrition (2026) | TGRS Research Map | TGRS