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烷基酚假单胞菌 KL28 对土壤中汞固定和栽培植物中汞积累的影响。

Effects of Pseudomonas alkylphenolica KL28 on immobilization of Hg in soil and accumulation of Hg in cultivated plant.

机构信息

School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Biotechnol Lett. 2019 Nov;41(11):1343-1354. doi: 10.1007/s10529-019-02736-9. Epub 2019 Oct 3.

Abstract

OBJECTIVE

The available content of mercury (Hg) in farmland soil is directly related to the safety of agricultural products. Meanwhile, humans may accumulate high concentrations of Hg through the food chain, resulting in health damage. Regarding the remediation technologies of Hg-contaminated soil, research and development is mainly concentrated on the immobilisation of Hg in soil and efficient extraction by accumulators. Therefore, in this work, the highly Hg-tolerant strain Pseudomonas alkylphenolica KL28 was used to study the removal effect of Hg in a solution, immobilization effect of Hg in soil, and its effect on growth, Hg accumulation and photosynthetic characteristics of Brassica campestris L.

RESULTS

KL28 could effectively remove Hg in the solution, with the removal ratio of 96.0% at 24 h. This strain could reduce decreases in shoots' and roots' dry weights by 31% and 16%, respectively, at a Hg concentration of 20 mg/L. The available Hg in the soil decreased to 4.7-9.4% in 8 days treated with KL28 bacterial solution at a dosage of 100 L/hm. Meanwhile, with increases in Hg concentrations, Fv/Fm, Y(II), Y(I) and Y(NPQ) in the leaves of B. campestris showed a downward trend while Y(ND) and Y(NO) displayed an upward trend. Under the stress of 20 mg/L Hg, KL28 could reduce the Fv/Fm from 11.2 to 6.1%.

CONCLUSIONS

KL28 could effectively remove Hg in the solution, immobilize Hg in soil, promote growth, decrease Hg accumulation and affect photosynthetic characteristics of B. campestris, indicating its potential use in Hg contaminated soils.

摘要

目的

农田土壤中汞(Hg)的有效含量直接关系到农产品的安全。同时,人类可能通过食物链积累高浓度的汞,导致健康受损。关于受 Hg 污染土壤的修复技术,研究和开发主要集中在土壤中 Hg 的固定化和积累器的高效提取上。因此,在这项工作中,使用耐 Hg 能力高的假单胞菌属菌株 Pseudomonas alkylphenolica KL28 研究了其在溶液中去除 Hg 的效果、在土壤中固定 Hg 的效果,及其对 Brassica campestris L.生长、Hg 积累和光合作用特性的影响。

结果

KL28 可以有效地去除溶液中的 Hg,24 小时的去除率为 96.0%。在 Hg 浓度为 20mg/L 时,该菌株可分别降低 31%和 16%的茎叶干重下降。用 KL28 菌液(用量为 100 L/hm)处理 8 天,可使土壤中有效 Hg 降低至 4.7-9.4%。同时,随着 Hg 浓度的增加,B. campestris 叶片中的 Fv/Fm、Y(II)、Y(I)和 Y(NPQ)呈下降趋势,而 Y(ND)和 Y(NO)呈上升趋势。在 20mg/L Hg 的胁迫下,KL28 可将 Fv/Fm 从 11.2 降低至 6.1%。

结论

KL28 可以有效地去除溶液中的 Hg,固定土壤中的 Hg,促进生长,降低 B. campestris 对 Hg 的积累,影响其光合作用特性,表明其在受 Hg 污染土壤中的应用潜力。

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