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比较代谢组学分析揭示了 Comamonas testosteroni ZG2 对 Ni(II)胁迫的响应机制。

Comparative metabolomic analysis reveals Ni(II) stress response mechanism of Comamonas testosteroni ZG2.

机构信息

College of Resource and Environment, Jilin Agricultural University, Changchun 130118, China; College of Animal Science, Jilin University, Changchun, Jilin 130062, China.

College of Resource and Environment, Jilin Agricultural University, Changchun 130118, China.

出版信息

Ecotoxicol Environ Saf. 2023 Sep 15;263:115244. doi: 10.1016/j.ecoenv.2023.115244. Epub 2023 Jul 11.

Abstract

The focus on the toxicity of nickel (Ni(II)) in animal and human cells has increased recently. Ni(II) contamination hazards to animals and humans can be reduced by bioremediation methods. However, one of the limitation of bioremediation bacteria in soil remediation is that they cannot survive in moderate and heavy contamination Ni(II)-contaminated environments. Therefore, the Ni(II) response mechanism of Comamonas testosteroni ZG2 which has soil remediation ability in high-concentration Ni(II) environment must be elucidated. The results demonstrated that the ZG2 strain can survive at 350 mg/L concentration of Ni(II), but the growth of ZG2 was completely inhibited under the concentration of 400 mg/L Ni(II) with significant alterations in the membrane morphology, adhesion behavior, and functional groups and serious membrane damage. Furthermore, the metabolic analysis showed that Ni(II) may affect the adhesion behavior and biofilm formation of the ZG2 strain by affecting the abundance of metabolites in amino acid biosynthesis, aminoacyl-tRNA biosynthesis, ABC transporter, and cofactor biosynthesis pathways, and inhibiting its growth. This study provides new evidence clarifying the response mechanism of Ni(II) stress in the ZG2 strain, thus playing a significant role in designing the strategies of bioremediation.

摘要

近年来,人们越来越关注镍(Ni(II))在动物和人体细胞中的毒性。通过生物修复方法可以降低 Ni(II)对动物和人类的污染危害。然而,土壤修复中生物修复细菌的一个局限性是,它们不能在中度和重度污染的 Ni(II)污染环境中存活。因此,必须阐明具有在高浓度 Ni(II)环境中土壤修复能力的粪产碱杆菌 ZG2 对 Ni(II)的响应机制。结果表明,ZG2 菌株可以在 350mg/L 的 Ni(II)浓度下存活,但在 400mg/L Ni(II)浓度下,ZG2 的生长完全受到抑制,细胞膜形态、粘附行为和功能基团发生显著变化,膜严重受损。此外,代谢分析表明,Ni(II)可能通过影响氨基酸生物合成、氨酰-tRNA 生物合成、ABC 转运蛋白和辅因子生物合成途径中代谢物的丰度,以及抑制其生长,影响 ZG2 菌株的粘附行为和生物膜形成。本研究为阐明 ZG2 菌株对 Ni(II)胁迫的响应机制提供了新的证据,从而为生物修复策略的设计提供了重要依据。

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