Phosphorus availability affects the efficiency of plant–white rot fungus remediation of soil contaminated with polycyclic aromatic hydrocarbons by altering microbial community structure and functions

化学 环境修复 磷酸盐 微生物种群生物学 环境化学 土壤污染 微生物 生物修复 农学 土壤pH值 植物修复 生物降解 真菌 假单胞菌 土壤水分 土壤碳 微生物降解 溶磷菌
作者
Xiaodong Ma,Ai-hua Wang,Li Li,Xia Li,Jun-Xiang Liu,Haiming Kan,Ao Li,Zhenyuan Sun
出处
期刊:Ecotoxicology and Environmental Safety [Elsevier BV]
卷期号:307: 119396-119396
标识
DOI:10.1016/j.ecoenv.2025.119396
摘要

White rot fungi and soil microbial communities at the hyphosphere influence phosphorus availability through their interactions. However, the mechanisms underlying the effects of different phosphorus forms on polycyclic aromatic hydrocarbons (PAHs) during plant-white rot fungus remediation remain unclear. Therefore, this study aimed to investigate the effects of different forms of phosphorus supplementation on the diversity of soil microbial community during plant-white rot fungus remediation and their correlation with PAH biodegradation through amplicon high-throughput sequencing. Salix viminalis was cultivated under two fungal (inoculated and non-inoculated with Crucibulum laeve) and three phosphorus levels (no phosphorus addition, potassium dihydrogen phosphate addition, and calcium phytate addition) to remediate phenanthrene (PHE)-contaminated soil. Among the treatments, two potassium dihydrogen phosphate addition treatments exhibited the highest PHE removal rates (74.0 % and 79.4 %) on day 60. Inoculation with C. laeve significantly increased the relative abundance of Pseudomonas but antagonized other putative indigenous PAH-degrading taxa. The addition of potassium dihydrogen phosphate alleviated the antagonistic effect of C. laeve and indigenous microorganisms and synergistically promoted PHE degradation in soil with C. laeve, whereas calcium phytate addition did not significantly improve soil PHE removal rates. The simultaneous addition of phosphorus and C. laeve inoculation created a unique microbial community structure that facilitated organic phosphorus activation and accelerated phosphorus turnover. However, PHE degradation varied depending on the phosphorus form. Therefore, the addition of soluble phosphorus should be prioritized over organic phosphorus to optimize plant-white rot fungus remediation.
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