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暴露于铜板后 中的代谢组学变化。

Metabolomic changes in from after exposure to copper plate.

机构信息

School of Marine Sciences, Ningbo University, Ningbo, China.

College of Animal Science, Zhejiang University, Hangzhou, China.

出版信息

Front Cell Infect Microbiol. 2024 Jun 28;14:1424669. doi: 10.3389/fcimb.2024.1424669. eCollection 2024.

Abstract

is a highly detrimental parasite in mariculture, causing significant economic losses to the aquaculture industry of . In recent years, copper and copper alloy materials have been used to kill parasites. In this study, the effect of copper plates on the tomont period of was explored. The findings indicated that copper plates effectively eradicated tomonts, resulting in a hatching rate of 0. The metabolomic analysis revealed that a total of 2,663 differentially expressed metabolites (1,032 up-regulated and 1,631 down-regulated) were screened in the positive ion mode, and 2,199 differentially expressed metabolites (840 up-regulated and 1,359 down-regulated) were screened in the negative ion mode. L-arginine and L-aspartic acid could be used as potential biomarkers. Copper plate treatment affected 25 metabolic pathways in the tomont, most notably influencing histidine metabolism, retinol metabolism, the biosynthesis of phenylalanine, tyrosine, and tryptophan, as well as arginine and proline metabolism. It was shown that high concentrations of copper ions caused a certain degree of disruption to the metabolome of tomonts in , thereby impacting their metabolic processes. Consequently, this disturbance ultimately leads to the rapid demise of tomonts upon exposure to copper plates. The metabolomic changes observed in this study elucidate the lethal impact of copper on tomonts, providing valuable reference data for the prevention and control of in aquaculture.

摘要

是水产养殖中极具危害性的寄生虫,给养殖业造成了重大的经济损失。近年来,铜及铜合金材料被用于杀灭寄生虫。本研究探讨了铜版对 的包囊期的影响。结果表明,铜版能有效杀灭包囊,孵化率为 0。代谢组学分析显示,在正离子模式下筛选到 2663 个差异表达代谢物(1032 个上调和 1631 个下调),在负离子模式下筛选到 2199 个差异表达代谢物(840 个上调和 1359 个下调)。L-精氨酸和 L-天冬氨酸可作为潜在的生物标志物。铜版处理影响包囊期的 25 条代谢途径,其中影响最显著的是组氨酸代谢、视黄醇代谢、苯丙氨酸、酪氨酸和色氨酸的生物合成以及精氨酸和脯氨酸代谢。结果表明,高浓度的铜离子对 包囊期的代谢组产生了一定程度的破坏,从而影响其代谢过程。因此,这种干扰最终导致包囊期在接触铜版时迅速死亡。本研究中观察到的代谢组变化阐明了铜对 包囊期的致死作用,为水产养殖中 防治提供了有价值的参考数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b977/11239337/a0e596165a2d/fcimb-14-1424669-g001.jpg

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