Omoni Victor Taghoghor, Bankole Paul Olusegun, Semple Kirk Taylor, Ojo Adesola Samson, Ibeto Cynthia, Okekporo Stephen Efe, Harrison Idorenyin Ambrose
Lancaster Environment Centre, Lancaster University, Lancaster, LA1 4YQ UK.
Department of Microbiology, College of Biosciences, Federal University of Agriculture, P.M.B. 2373, Makurdi, Benue State Nigeria.
Indian J Microbiol. 2025 Jun;65(2):775-797. doi: 10.1007/s12088-024-01383-7. Epub 2024 Sep 9.
Nutrient-limited soils from growing global contamination with polycyclic aromatic hydrocarbons (PAHs) and the massive organic waste generation from agro-based and food industries have raised more demand for exploring and recycling the latter as sustainable, cost-effective, and green nutrient-rich sources for soil amendment. To further enhanced the potentials of these substrates in soil, immobilisation or biological pre-treatment techniques using fungi are employed. The white-rot fungi- basidiomycetes, are the most widely researched and efficient organisms to perform these functions because of their high lignin-degrading ability for organic materials, such as corn cob, straws, spent brewery grains, sugarcane bagasse, etc. This review addresses the importance of organic amendment to enhance the biodegradation efficiency of PAH from contaminated soils and it also highlights various biological techniques for improving PAH biodegradation using organic waste materials and white-rot basidiomycetes. This review will also show a better understanding of the concepts of fungal immobilisation and pre-treatment for PAH degradation in soil and show their insights as feasible and optimise techniques for developing remedial strategies for contaminated soils.
全球土壤受多环芳烃(PAHs)污染日益严重,养分受限,同时农业和食品工业产生大量有机废物,这使得人们对探索和循环利用这些有机废物作为可持续、经济高效且富含绿色养分的土壤改良剂的需求不断增加。为进一步提高这些底物在土壤中的潜力,人们采用了利用真菌的固定化或生物预处理技术。白腐真菌——担子菌,因其对玉米芯、秸秆、酿酒废渣、甘蔗渣等有机材料具有高木质素降解能力,是执行这些功能研究最广泛且最有效的生物。本综述阐述了有机改良剂对提高污染土壤中PAH生物降解效率的重要性,还强调了利用有机废料和白腐担子菌提高PAH生物降解的各种生物技术。本综述还将更好地理解土壤中PAH降解的真菌固定化和预处理概念,并展示其作为开发污染土壤修复策略的可行且优化技术的见解。