环境科学
环境修复
污染物
生物炭
生态系统
微生物种群生物学
农业
微生物
环境化学
可持续农业
土壤有机质
生物修复
营养物
环境工程
生物量(生态学)
土壤健康
生态系统服务
有益生物体
生态学
土壤污染
土壤污染物
土壤生物学
环境保护
有机质
营养循环
可持续发展
生态系统健康
土壤改良剂
作者
Venuste Munyaneza,Wen Zhang,Sharjeel Haider,Lulu Ren,Haili Song,Botao Yi,Chuang Wang,Lei Shi,Fangsen Xu,Surya Kant,Guangda Ding
标识
DOI:10.1021/acs.jafc.5c13543
摘要
Soil microorganisms are essential drivers of ecosystem functioning and mediate pollutant degradation, metal detoxification, and nutrient cycling. This review aims to synthesize recent mechanistic advances in understanding how microbes degrade organic contaminants, transform or immobilize metals, mitigate toxic effects on plants through chelation, redox reactions, sequestration, and support soil structure and fertility. Microbial consortia and rhizosphere-associated taxa accelerate pollutant breakdown, reduce metal toxicity, and enhance plant resilience in acidic or contaminated soils. Integration of microbial processes with amendments such as biochar and organic matter further improve remediation efficiency and sustainability. Key insights reveal that microbial signaling networks, biofilm formation, and plant-microbe interactions are critical for maintaining the ecosystem stability under stress. These findings underscore the potential of microbial driven strategies to restore degraded soils, minimize reliance on chemical inputs, and promote sustainable agricultural practices, although field-scale persistence and ecological interactions warrant further research.
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