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了解微囊藻水华动态:通过蛋白质组学和代谢组学方法揭示悬浮固体的影响。

Understanding the dynamics of Microcystis bloom: Unraveling the influence of suspended solids through proteomics and metabolomics approaches.

作者信息

Huang Suzhen, Chen Yican, Wang Jie, Lao An, Huang Haiqing, Wang Zhikai, Luo Xingzhang, Zheng Zheng

机构信息

Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, China.

Department of Environmental Science and Engineering, Fudan University, Shanghai 200433, China; Fuhuan Qingyun Technology Zhejiang Co., Ltd., Zhejiang 312000, China.

出版信息

Sci Total Environ. 2023 Oct 28:168079. doi: 10.1016/j.scitotenv.2023.168079.

Abstract

Light plays a crucial role in blue-green algae bloom formation in lakes, while suspended solids (SS) influence underwater light intensity. This study investigates the integrated effects of SS concentrations (0-125 mg/L) on Microcystis aeruginosa in natural conditions. Results show that SS inhibits cyanobacterial growth above 100 mg/L, with 25-75 mg/L favoring bloom formation. Proteomic analysis reveals differential protein involvement in ribosomes, ABC transporters, cofactor biosynthesis, and photosynthesis pathways at 25 mg/L SS. SS concentrations within the range of 25-125 mg/L significantly impact the metabolism of algal cells, resulting in an increase in lipid metabolism and a decrease in the biosynthesis of secondary metabolites in cyanobacteria. These coordinated biochemical adaptations play a vital role in the survival of cyanobacteria in challenging environmental conditions. Employing a multi-omics approach enhances our comprehension of how M. aeruginosa responds to SS and the underlying molecular mechanisms, thereby contributing to our understanding of cyanobacteria outbreaks. This underscores the importance of monitoring SS concentrations in lakes as a proactive measure for future control of cyanobacteria dominance.

摘要

光照在湖泊蓝藻水华形成过程中起着关键作用,而悬浮固体(SS)会影响水下光强。本研究调查了自然条件下SS浓度(0 - 125mg/L)对铜绿微囊藻的综合影响。结果表明,当SS浓度高于100mg/L时会抑制蓝藻生长,而25 - 75mg/L的浓度有利于水华形成。蛋白质组学分析显示,在25mg/L SS条件下,核糖体、ABC转运蛋白、辅因子生物合成和光合作用途径中涉及的蛋白质存在差异。25 - 125mg/L范围内的SS浓度显著影响藻类细胞的代谢,导致蓝藻脂质代谢增加,次生代谢物生物合成减少。这些协同的生化适应在蓝藻在具有挑战性的环境条件下的生存中起着至关重要的作用。采用多组学方法可增强我们对铜绿微囊藻如何响应SS及其潜在分子机制的理解,从而有助于我们了解蓝藻爆发。这凸显了监测湖泊中SS浓度作为未来控制蓝藻优势的积极措施的重要性。

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