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环丙沙星对……中细胞微囊藻毒素产生及组成的影响

Effects of Ciprofloxacin on the Production and Composition of Cellular Microcystins in .

作者信息

Wan Liang, Huang Rong, Zhou Yan, Guo Jiahao, Jiao Yiying, Gao Jian

机构信息

School of Civil Engineering, Architecture and Environment, Hubei University of Technology, Wuhan 430068, China.

Key Laboratory of Intelligent Health Perception and Ecological Restoration of Rivers and Lakes, Ministry of Education, Hubei University of Technology, Wuhan 430068, China.

出版信息

Toxics. 2024 Oct 19;12(10):759. doi: 10.3390/toxics12100759.

Abstract

Antibiotics can affect the photosynthetic system of , potentially altering the balance of carbon and nitrogen, which may influence the synthesis of different microcystin (MC) congeners. However, the regulatory mechanisms by which antibiotics affect the synthesis of various MC congeners in remain unknown. In this study, the effects of ciprofloxacin (CIP) on the growth, carbon and nitrogen balance, amino acid composition, gene expression, and production of different MC congeners were investigated in two toxin-producing strains of . The results show that CIP exposure significantly inhibited the growth of both strains, achieving an inhibition rate of 71.75% in FACHB-315 and 41.13% in FACHB-915 at 8 μg/L CIP by the end of the cultivation. The intracellular C:N ratio in FACHB-315 increased by 51.47%, while no significant change was observed in FACHB-915. The levels of leucine, tyrosine, and arginine, as identified and quantified by UPLC-MS/MS, were significantly altered at higher CIP concentrations, leading to a reduction in leucine percentage and a notable increase in tyrosine in both strains, which contributed to a reduction in MC-LR proportion and an increase in MC-RR and MC-YR proportion. Additionally, the expression of the gene was upregulated by as much as 5.57 times, indicating that antibiotic stress could enhance MC synthesis at the genetic level, contributing to the increased toxicity of cyanobacteria. These findings emphasize the significant role of CIP in the biochemical processes of , particularly in MC synthesis and composition, providing valuable insights into the ecological risks posed by antibiotics and harmful cyanobacteria.

摘要

抗生素会影响(某种生物,原文未明确)的光合系统,可能改变碳氮平衡,这或许会影响不同微囊藻毒素(MC)同系物的合成。然而,抗生素影响(某种生物,原文未明确)中各种MC同系物合成的调控机制仍不清楚。在本研究中,我们在两种产毒素的(某种生物,原文未明确)菌株中研究了环丙沙星(CIP)对其生长、碳氮平衡、氨基酸组成、(某种基因,原文未明确)基因表达以及不同MC同系物产生的影响。结果表明,暴露于CIP显著抑制了两种菌株的生长,在培养结束时,8 μg/L CIP使FACHB - 315的抑制率达到71.75%,FACHB - 915的抑制率达到41.13%。FACHB - 315细胞内的C:N比增加了51.47%,而FACHB - 915中未观察到显著变化。通过超高效液相色谱 - 串联质谱法(UPLC - MS/MS)鉴定和定量的亮氨酸、酪氨酸和精氨酸水平在较高CIP浓度下显著改变,导致两种菌株中亮氨酸百分比降低,酪氨酸显著增加,这使得MC - LR比例降低,MC - RR和MC - YR比例增加。此外,(某种基因,原文未明确)基因的表达上调了多达5.57倍,表明抗生素胁迫可在基因水平上增强MC合成,导致蓝藻毒性增加。这些发现强调了CIP在(某种生物,原文未明确)生化过程中的重要作用,特别是在MC合成和组成方面,为抗生素和有害蓝藻带来的生态风险提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26b1/11511219/0c90a88ae779/toxics-12-00759-g001.jpg

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