Effects of three plant growth-promoting bacterial symbiosis with ryegrass for remediation of Cd, Pb, and Zn soil in a mining area

植物修复 根际细菌 环境修复 化学 土壤质量 生物利用度 农学 园艺 土壤污染 环境化学 土壤水分 根际 生物 污染 细菌 重金属 生态学 遗传学 生物信息学
作者
Yan Zhao,Jun Yao,Hao Li,Geoffrey I. Sunahara,Miaomiao Li,Chuiyun Tang,Robert Duran,Bo Ma,Houquan Liu,Feng Liu,Jun‐Jie Zhu,Yaoming Wu
出处
期刊:Journal of Environmental Management [Elsevier]
卷期号:353: 120167-120167
标识
DOI:10.1016/j.jenvman.2024.120167
摘要

The quality of soil containing heavy metals (HMs) around nonferrous metal mining areas is often not favorable for plant growth. Three types of plant growth promoting rhizobacteria (PGPR)-assisted ryegrass were examined here to treat Cd, Pb, and Zn contaminated soil collected from a nonferrous metal smelting facility. The effects of PGPR-assisted plants on soil quality, plant growth, and the migration and transformation of HMs were evaluated. Results showed that inter-root inoculation of PGPR to ryegrass increased soil redox potential, urease, sucrase and acid phosphatase activities, microbial calorimetry, and bioavailable P, Si, and K content. Inoculation with PGPR also increased aboveground parts and root length, P, Si, and K contents, and antioxidant enzyme activities. The most significant effect was that the simultaneous inoculation of all three PGPRs increased the ryegrass extraction (%) of Cd (59.04–79.02), Pb (105.56–157.13), and Zn (27.71–40.79), compared to CK control (without fungi). Correspondingly, the inter-root soil contents (%) of total Cd (39.94–57.52), Pb (37.59–42.17), and Zn (34.05–37.28) were decreased compared to the CK1 control (without fungi and plants), whereas their bioavailability was increased. Results suggest that PGPR can improve soil quality in mining areas, promote plant growth, transform the fraction of HMs in soil, and increase the extraction of Cd, Pb, and Zn by ryegrass. PGPR is a promising microbe-assisted phytoremediation strategy that can promote the re-greening of vegetation in the mining area while remediating HMs pollution.
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