Effects of plant growth regulator and chelating agent on the phytoextraction of heavy metals by Pfaffia glomerata and on the soil microbial community

植物修复 化学 环境修复 螯合作用 环境化学 土壤污染 土壤pH值 超量积累植物 蛋白质细菌 放线菌门 土壤水分 根际 金属 植物 生物累积 开枪 重金属 园艺
作者
Rong Huang,Xiaoying Cui,Xianzhen Luo,Peng Mao,Ping Zhuang,Yongxing Li,Yingwen Li,Zhian Li
出处
期刊:Environmental Pollution [Elsevier BV]
卷期号:283: 117159-117159 被引量:10
标识
DOI:10.1016/j.envpol.2021.117159
摘要

Pfaffia glomerata is a candidate for the remediation of heavy metal-contaminated soil, but phytoremediation efficiency requires enhancement. In this study, we evaluated how application of DA-6, EDTA, or CA affected the growth and heavy metal accumulation of P. glomerata and soil microorganisms. We found that P. glomerata removed more Cd and Zn than Pb or Cu from contaminated soil. When compared to the control, application of DA-6, CA, or CA + DA-6 increased plant biomass and increased stem Cd concentration by 1.28-, 1.20-, and 1.31-fold respectively; increased leaf Cd concentration by 1.25-, 1.28-, and 1.20-fold, respectively; and increased the total quantity of Cd extracted by 1.37-, 1.37-, and 1.38-fold, respectively. When compared to the control, application EDTA or EDTA + DA-6 significantly increased the soil available metal and Na concentrations, which harmed plant growth. Application of EDTA or EDTA + DA-6 also significantly decreased the Cd concentration in roots and stems. 16S rRNA high-throughput sequencing analysis revealed that application of EDTA or CA alone to soil significantly reduced the richness and diversity of soil bacteria, while foliar spraying of DA-6 combined with EDTA or CA slightly alleviated this reduction. EDTA or CA addition significantly changed the proportion of Actinobacteria and Proteobacteria. In addition, EDTA or CA addition caused changes in soil properties (e.g. heavy metal availability, K concentration, Na concentration, soil pH, soil CEC, and soil DOC concentration) that were associated with changes in the bacterial community. EDTA addition mainly affected the soil bacterial community by changing soil DOC concentration, the soil available Pb and Na concentration, and CA addition mainly affected the soil bacterial community by changing the soil available Ca concentration. • Cd and Zn were removed more readily than Pb and Cu from contaminated soil by P. glomerata. • DA-6, CA, and CA + DA-6 enhanced the removal of Cd and Zn from contaminated soil by P. glomerata. • EDTA reduced plant growth by increasing heavy metal availability and Na concentration in soil. • DA-6, EDTA, and CA significantly changed the proportion of Actinobacteria and Proteobacteria. DA-6 enhanced heavy metal phytoremediation by P. glomerata and had only minor effects on the soil bacterial community.
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