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生理、代谢组学和转录组学分析揭示了盐藻 GY-H13 细胞在长时间暴露于 Cd 条件下的动态氧化还原稳态。

Physiological, metabolomic, and transcriptomic analyses reveal the dynamic redox homeostasis upon extended exposure of Dunaliella salina GY-H13 cells to Cd.

机构信息

Systems Biology, School of Marine Science and Technology, Zhejiang Ocean University, Zhoushan, Zhejiang 316022, China.

Zhejiang Marine Development Research Institute, Zhoushan, Zhejiang 316000, China.

出版信息

Ecotoxicol Environ Saf. 2021 Oct 15;223:112593. doi: 10.1016/j.ecoenv.2021.112593. Epub 2021 Aug 3.

Abstract

The study was done to elucidate the molecular mechanisms underlying the steady maintenance of the green microalga Dunaliella salina GY-H13 in successive subcultures in F/2 medium supplemented with the high cadmium (Cd) concentration (5 mg L) for 3 months or 84 days using physiological, metabolomic, and transcriptomic methodologies. Physiological analysis indicated that Cd suppressed growth rate, photosynthetic efficiency, and pigment contents and promoted Cd accumulation, reactive oxygen species (ROS) generation and lipid peroxidation. UPLC-MS/MS-based metabolic analysis identified the top most upregulated and downregulated metabolites, the 5'-dehydroxyadenosine and thiamine acetic acid that were associated with the formation and removal of HO. RNA-seq-based transcriptomic analysis showed the overrepresentation of low-CO-inducible genes in the most downregulated gene set. Metabolomic and transcriptomic analyses further showed that the decreased GSSG/GSH-based redox potential, increased oxidative-phosphorylation gene expression, and reduced activity of TCA cycle in cells after extended exposure to Cd. Taken together, our results imply that cellular defense to Cd in D. salina is achieved by upregulation of ROS-scavenging activities including depletion of thiamine acetic acid. Dynamic redox homeostasis is maintained in cells with extended exposure to Cd by production of both oxidants and antioxidants through multiple pathways.

摘要

该研究旨在阐明在 F/2 培养基中添加高浓度镉(5mg/L)的条件下,连续传代培养绿色微藻盐生杜氏藻 GY-H13 达 3 个月或 84 天的分子机制。采用生理、代谢组学和转录组学方法。生理分析表明,Cd 抑制了生长速率、光合作用效率和色素含量,促进了 Cd 的积累、活性氧(ROS)的产生和脂质过氧化。基于 UPLC-MS/MS 的代谢分析确定了上调和下调最多的代谢物,即 5'-去氢腺苷和硫胺素乙酸,它们与 HO 的形成和去除有关。基于 RNA-seq 的转录组分析表明,在下调基因集中,低 CO 诱导基因的过表达。代谢组学和转录组学分析进一步表明,细胞在延长暴露于 Cd 后,基于 GSSG/GSH 的氧化还原电势降低,氧化磷酸化基因表达增加,三羧酸循环活性降低。综上所述,我们的研究结果表明,盐生杜氏藻对 Cd 的细胞防御是通过上调包括硫胺素乙酸在内的 ROS 清除活性来实现的。在延长暴露于 Cd 的情况下,通过多种途径产生氧化剂和抗氧化剂,维持细胞内的动态氧化还原平衡。

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