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分离能够降解联苯、二苯醚和太阳能热电站中使用的传热流体的细菌菌株。

Isolation of bacterial strains able to degrade biphenyl, diphenyl ether and the heat transfer fluid used in thermo-solar plants.

机构信息

Departamento de Bioquímica y Biología Molecular, Edificio Severo Ochoa, 1ª Planta, Campus de Rabanales, Universidad de Córdoba, 14071 Córdoba, Spain.

Departamento de Bioquímica y Biología Molecular, Edificio Severo Ochoa, 1ª Planta, Campus de Rabanales, Universidad de Córdoba, 14071 Córdoba, Spain.

出版信息

N Biotechnol. 2017 Mar 25;35:35-41. doi: 10.1016/j.nbt.2016.11.003. Epub 2016 Nov 21.

Abstract

Thermo-solar plants use eutectic mixtures of diphenyl ether (DE) and biphenyl (BP) as heat transfer fluid (HTF). Potential losses of HTF may contaminate soils and bioremediation is an attractive tool for its treatment. DE- or BP-degrading bacteria are known, but up to now bacteria able to degrade HTF mixture have not been described. Here, five bacterial strains which are able to grow with HTF or its separate components DE and BP as sole carbon sources have been isolated, either from soils exposed to HTF or from rhizospheric soils of plants growing near a thermo-solar plant. The organisms were identified by 16S rRNA gene sequencing as Achromobacter piechaudii strain BioC1, Pseudomonas plecoglossicida strain 6.1, Pseudomonas aeruginosa strains HBD1 and HBD3, and Pseudomonas oleovorans strain HBD2. Activity of 2,3-dihydroxybiphenyl dioxygenase (BphC), a key enzyme of the biphenyl upper degradation pathway, was detected in all isolates. Pseudomonas strains almost completely degraded 2000ppm HTF after 5-day culture, and even tolerated and grew in the presence of 150,000ppm HTF, being suitable candidates for in situ soil bioremediation. Degradation of both components of HTF is of particular interest since in the DE-degrader Sphingomonas sp. SS3, growth on DE or benzoate was strongly inhibited by addition of BP.

摘要

热太阳能工厂使用二苯醚(DE)和联苯(BP)的低共熔混合物作为传热流体(HTF)。HTF 的潜在损失可能会污染土壤,而生物修复是一种有吸引力的处理方法。已经知道 DE 或 BP 降解细菌,但到目前为止,还没有描述能够降解 HTF 混合物的细菌。在这里,从暴露于 HTF 的土壤或从热太阳能工厂附近生长的植物的根际土壤中分离出了五株能够以 HTF 或其单独成分 DE 和 BP 作为唯一碳源生长的细菌菌株。通过 16S rRNA 基因测序鉴定这些生物为 Achromobacter piechaudii 菌株 BioC1、Pseudomonas plecoglossicida 菌株 6.1、Pseudomonas aeruginosa 菌株 HBD1 和 HBD3 以及 Pseudomonas oleovorans 菌株 HBD2。所有分离株中都检测到联苯上降解途径的关键酶 2,3-二羟基联苯双加氧酶(BphC)的活性。在 5 天的培养后,假单胞菌菌株几乎完全降解了 2000ppm 的 HTF,甚至在存在 150000ppm 的 HTF 时也能耐受并生长,是原位土壤生物修复的合适候选物。HTF 的两种成分的降解尤其有趣,因为在 DE 降解菌 Sphingomonas sp. SS3 中,DE 或苯甲酸的生长受到 BP 加入的强烈抑制。

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