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探究新型土著不动杆菌 Ax-9 和德克斯氏菌 DX2b 中铁离子刺激对偶氮染料脱色的金属效应和协同相互作用。

Exploring metal effects and synergistic interactions of ferric stimulation on azo-dye decolorization by new indigenous Acinetobacter guillouiae Ax-9 and Rahnella aquatilis DX2b.

机构信息

Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China,

出版信息

Bioprocess Biosyst Eng. 2014 Feb;37(2):217-24. doi: 10.1007/s00449-013-0988-1. Epub 2013 Jun 7.

Abstract

The first-attempt study deciphered metal-interacting effects on dye-decolorizing capabilities of indigenous bioelectricity-generating strains, Acinetobacter guillouiae Ax-9 and Rahnella aquatilis DX2b. Most of the metallic ions were inhibitory to color removal capabilities of these strains. However, with supplementation of 5 mM ferric chloride, specific decolorization rate (SDR) of Ax-9 increased by 55.48% compared to Fe(3+)-free conditions. In contrast, SDR of DX2b decreased 75.35% due to the inhibition of ferric chloride. On the other hand, ferric citrate could stimulate SDR of DX2b for 21.5% at same dosage. Enzymatic assay indicated that Fe reductase activity was consistent with synergistic effects of ferric chloride on Ax-9, and ferric citrate on DX2b. Protein analysis via SDS-PAGE and identification of Tandem MS/MS afterwards showed that outer membrane protein (Omp) primarily deals with decolorization as a channeling regulation. Moreover, molecular modeling and bioinformatics data also provided detailed evidences to confirm the biological significance of Omp.

摘要

该首次尝试性研究旨在解析金属相互作用对土著产电菌(不动杆菌属 Guillouiae Ax-9 和海杆菌属 Rahnella aquatilis DX2b)染料脱色能力的影响。大多数金属离子对这些菌株的脱色能力具有抑制作用。然而,在添加 5mM 三氯化铁的情况下,Ax-9 的比脱色率(SDR)比无铁(3+)条件下提高了 55.48%。相比之下,由于三氯化铁的抑制作用,DX2b 的 SDR 降低了 75.35%。另一方面,相同剂量的柠檬酸铁可以刺激 DX2b 的 SDR 增加 21.5%。酶活性测定表明,Fe 还原酶活性与三氯化铁对 Ax-9 的协同作用以及柠檬酸铁对 DX2b 的协同作用一致。通过 SDS-PAGE 进行的蛋白质分析以及随后的串联 MS/MS 鉴定表明,外膜蛋白(Omp)主要作为一种通道调节作用参与脱色。此外,分子建模和生物信息学数据也提供了详细的证据,证实了 Omp 的生物学意义。

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