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新型耐镉细菌在 Cd 污染土壤生物修复中的潜在应用。

Potential application of novel cadmium-tolerant bacteria in bioremediation of Cd-contaminated soil.

机构信息

College of Resources and Environment, Qingdao Agricultural University, Qingdao 266005, PR China.

College of Resources and Environment, Qingdao Agricultural University, Qingdao 266005, PR China.

出版信息

Ecotoxicol Environ Saf. 2023 Apr 15;255:114766. doi: 10.1016/j.ecoenv.2023.114766. Epub 2023 Mar 14.

Abstract

With the increase in cadmium (Cd) release into the environment, it is necessary to find appropriate solutions to reduce soil Cd pollution. Microorganisms are a green and effective means for the remediation of Cd-contaminated soil. In this study, in a Cd-contaminated farmland, we screened and identified novel Cd-resistant strains, Paenarthrobactor nitroguajacolicus, Lysinibacillus fusiformis, Bacillus licheniformis, and Methyllobacium brachiatum, with minimum inhibitory concentrations of 100, 100, 50, and 50 mg/L, respectively, and added them each to pots containing Cd-contaminated rape plants to explore their remediation ability. The results showed that treatment with each of the four strains significantly increased the abundance of Nitrospirae, Firmicutes, Verrucomicrobia, and Patescibacterium in the rhizosphere soil of the plants. This led to changes in soil physical and chemical indices; pH; and available phosphorus, urease, and catalase activities, which were significantly negatively correlated with bioavailable Cd, reducing 28.74-58.82 % Cd enrichment to plants and 23.72-43.79 % Cd transport within plants, and reducing 5.52-10.68 % available cadmium in soil, effectively reducing the biotoxicity of Cd. Thus, this study suggests microbial remediation as a reliable option, forming a basis for the remediation of Cd-contaminated soil.

摘要

随着镉(Cd)释放到环境中的增加,有必要寻找合适的解决方案来减少土壤 Cd 污染。微生物是修复 Cd 污染土壤的一种绿色有效手段。在本研究中,在 Cd 污染的农田中,我们筛选和鉴定了新型 Cd 抗性菌株,即 Paenarthrobacter nitroguajacolicus、Lysinibacillus fusiformis、Bacillus licheniformis 和 Methyllobacium brachiatum,它们的最小抑制浓度分别为 100、100、50 和 50 mg/L,并将它们分别添加到含有 Cd 污染油菜植物的盆中,以探索它们的修复能力。结果表明,四种菌株的处理均显著增加了植物根际土壤中 Nitrospirae、Firmicutes、Verrucomicrobia 和 Patescibacterium 的丰度。这导致土壤物理化学指标、pH 值、有效磷、脲酶和过氧化氢酶活性发生变化,与生物可利用 Cd 呈显著负相关,将植物对 Cd 的富集降低了 28.74-58.82%,将 Cd 在植物体内的转运降低了 23.72-43.79%,并将土壤中有效 Cd 降低了 5.52-10.68%,有效降低了 Cd 的生物毒性。因此,本研究表明微生物修复是一种可靠的选择,为 Cd 污染土壤的修复奠定了基础。

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