Guangzhou Key Laboratory of Subtropical Biodiversity and Biomonitoring, Guangdong Provincial Engineering Technology Research Center for Drug and Food Biological Resources Processing and Comprehensive Utilization, Key Laboratory of Ecology and Environmental Science in Guangdong Higher Education, College of Life Sciences, South China Normal University, Guangzhou, P. R. China.
Int J Phytoremediation. 2020;22(10):1009-1018. doi: 10.1080/15226514.2020.1725867. Epub 2020 Feb 16.
A greenhouse pot experiment was conducted to assess the effects of biochar (BC) and arbuscular mycorrhizal fungus (AMF)- (Fm), (Gv) and (Ri) on the plant growth and Cd/Pb accumulation by corn grown in the soils artificially contaminated with 5 mg Cd and 300 mg Pb kg soil. The single AMF inoculation and combined usage of AMF and BC evidently improved the P contents of maize. Furthermore, the combined use of AMF and BC produced pronounced positive effect on corn growth, and the shoot biomass in Gv + BC group was 9.85-fold higher than that of the control. Meanwhile, the single BC addition and combined utilization of AMF and BC significantly reduced Cd and Pb concentrations in maize, and the greater reduces were found in the combined utilization, and the lowest Cd concentration of shoot was appeared in Gv + BC group. The single BC addition and combined application of AMF and BC significantly increased soil pH, and reduced soil diethylenetriaminepentaacetic acid (DTPA)-extractable Cd/Pb. This study demonstrated a synergistic effect between AMF (Gv, Fm, Ri) and BC on improving maize growth and decreasing Cd/Pb accumulation in maize, and the combined use of Gv and BC brought the most pronounced effect, which could provide a feasible strategy for safe production of maize from Cd/Pb-polluted soils.
采用温室盆栽试验,评估生物炭(BC)和丛枝菌根真菌(AMF)(Gv)、(Fm)和(Ri)对生长在人为添加 5mg Cd 和 300mg Pb kg 土壤的污染土壤中的玉米的植物生长和 Cd/Pb 积累的影响。单一 AMF 接种和 AMF 与 BC 的联合使用明显提高了玉米的磷含量。此外,AMF 和 BC 的联合使用对玉米生长产生了显著的积极影响,Gv+BC 组的地上生物量比对照高 9.85 倍。同时,单一 BC 添加和 AMF 与 BC 的联合利用显著降低了玉米中的 Cd 和 Pb 浓度,联合利用的降低幅度更大,在 Gv+BC 组中发现了最低的地上 Cd 浓度。单一 BC 添加和 AMF 与 BC 的联合应用显著提高了土壤 pH 值,降低了土壤二乙烯三胺五乙酸(DTPA)可提取的 Cd/Pb。本研究表明,AMF(Gv、Fm、Ri)和 BC 之间存在协同作用,可提高玉米生长和降低玉米中 Cd/Pb 的积累,Gv 和 BC 的联合使用效果最为显著,可为 Cd/Pb 污染土壤中安全生产玉米提供可行的策略。