Key Laboratory of Original Agro-Environmental Pollution Prevention and Control, Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, People's Republic of China.
School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, People's Republic of China.
J Hazard Mater. 2021 Aug 15;416:125916. doi: 10.1016/j.jhazmat.2021.125916. Epub 2021 Apr 19.
Cadmium (Cd) pollution in paddy soil seriously endangers food safety production. To investigate the effects and microbiological mechanisms of calcium-magnesium-phosphate (CMP) fertilizer application on Cd reduction in rice, field experiments were conducted in Cd-contaminated paddy soil. Compared with conventional compound fertilizer, CMP fertilizer treatments inhibited Cd uptake through plant roots, significantly decreasing Cd content in rice grains from 0.340 to 0.062 mg/kg. Soil pH and total Ca, Mg and P contents increased after CMP fertilizer application, resulting in a further decrease in soil available Cd content from 0.246 to 0.181 mg/kg. Specific extraction analysis recorded a decrease in both available Fe content and the ratio of nitrate to ammonium nitrogen, indicating that the soil Fe-N cycle was affected by the addition of CMP fertilizer. This finding was also recorded using soil bacterial community sequencing, with CMP fertilizer promoting the progress of nitrate-dependent Fe-oxidation driven by Thiobacillus (1.60-2.83%) and subsequent dissimilatory nitrate reduction to ammonium (DNRA) driven by Ignavibacteriae (1.01-1.92%); Fe-reduction driven by Anaeromyxobacter (3.09-2.23%) was also inhibited. Our results indicate that CMP fertilizer application regulates the Fe-N coupling cycle driven by the soil microbial community to benefit remediation of Cd contaminated paddy soil.
镉(Cd)污染对稻田土壤的安全生产构成严重威胁。为研究钙镁磷肥(CMP)对水稻降低镉的效果和微生物学机制,在镉污染稻田进行了田间试验。与常规复合肥相比,CMP 肥料处理通过植物根系抑制了 Cd 的吸收,使水稻籽粒中的 Cd 含量从 0.340 降至 0.062mg/kg。CMP 肥料施用后,土壤 pH 值和总 Ca、Mg 和 P 含量增加,导致土壤有效 Cd 含量进一步从 0.246 降至 0.181mg/kg。特定提取分析记录到有效 Fe 含量和硝酸盐与铵态氮比值降低,表明土壤 Fe-N 循环受到 CMP 肥料添加的影响。这一发现也通过土壤细菌群落测序得到证实,CMP 肥料促进了由 Thiobacillus(1.60-2.83%)驱动的依赖硝酸盐的 Fe 氧化和随后由 Ignavibacteriae(1.01-1.92%)驱动的异化硝酸盐还原为铵(DNRA)的进展;由 Anaeromyxobacter(3.09-2.23%)驱动的 Fe 还原也受到抑制。我们的结果表明,CMP 肥料的施用调节了由土壤微生物群落驱动的 Fe-N 偶联循环,有利于修复 Cd 污染的稻田土壤。