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耐酸格氏枝霉 MA1 长期酸胁迫下的代谢组学和生理学变化。

Metabolomic and physiological changes of acid-tolerant Graesiella sp. MA1 during long-term acid stress.

机构信息

School of Resources and Environmental Engineering, Hefei University of Technology, Hefei, 230009, Anhui, China.

Anhui Engineering Research Center of Industrial Wastewater Treatment and Resource Recovery, Hefei University of Technology, Hefei, 230009, Anhui, China.

出版信息

Environ Sci Pollut Res Int. 2023 Sep;30(43):97209-97218. doi: 10.1007/s11356-023-29295-x. Epub 2023 Aug 17.

Abstract

Algae plays a significant role for the primary production in the oligotrophic ecosystems such as the acid mine pit lakes. Graesiella sp. MA1 was a new acid-tolerant photosynthetic protist isolated from an acid mine pit lake. To understand the acid responses of Graesiella sp. MA1, its physiological changes and metabolomics were studied during long-term acid stress. Photosynthetic pigments, soluble proteins, and antioxidant systems of Graesiella sp. MA1 cells displayed two phases, the adaptation phase and the growth phase. During the adaptation phase, both photosynthetic pigments and soluble proteins were inhibited, while antioxidant activity of SOD, APX, and GSH were promoted to response to the organism's damage. Metabolomics results revealed lipids and organic acids were abundant components in Graesiella sp. MA1 cells. In response to acid stress, the levels of acid-dependent resistant amino acids, including glutamate, aspartate, arginine, proline, lysine, and histidine, accumulated continuously to maintain orderly intracellular metabolic processes. In addition, fatty acids were mainly unsaturated, which could improve the fluidity of the cell membranes under acid stress. Metabolomic and physiological changes showed that Graesiella sp. MA1 had tolerance during long-term acid stress and the potential to be used as a bioremediation strain for the acidic wastewater.

摘要

藻类在贫营养生态系统(如酸性矿山坑湖)的初级生产中起着重要作用。从酸性矿山坑湖中分离到的新的耐酸光合原生生物 Graesiella sp. MA1。为了了解 Graesiella sp. MA1 的酸响应,研究了其在长期酸胁迫下的生理变化和代谢组学。Graesiella sp. MA1 细胞的光合色素、可溶性蛋白和抗氧化系统显示出两个阶段,适应阶段和生长阶段。在适应阶段,光合色素和可溶性蛋白均受到抑制,而 SOD、APX 和 GSH 的抗氧化活性则增强,以应对机体的损伤。代谢组学结果表明,脂质和有机酸是 Graesiella sp. MA1 细胞中丰富的成分。在酸性胁迫下,依赖酸的抗性氨基酸(包括谷氨酸、天冬氨酸、精氨酸、脯氨酸、赖氨酸和组氨酸)的水平不断积累,以维持细胞内有序的代谢过程。此外,脂肪酸主要是不饱和的,这可以提高细胞膜在酸性胁迫下的流动性。代谢组学和生理变化表明,Graesiella sp. MA1 在长期酸胁迫下具有耐受性,并有可能作为酸性废水的生物修复菌株。

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