纳米塑性毒性对凡纳滨对虾鳃离子转运及代谢调控的蛋白质组学研究

IF 5.8 2区 环境科学与生态学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yiming Li, Yucong Ye, Xiaoyi Zhu, Zongli Yao, Yan Li, Zhen Sun, Na Rihan, Yunlong Zhao, Qifang Lai
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引用次数: 0

摘要

聚苯乙烯纳米塑料(PS-NP)污染已成为一个全球性的环境问题,其对水生生物的潜在毒性引起了广泛关注。在本研究中,建立了28天的慢性纳米塑料暴露(0、0.1、1、5和10 mg L−1)实验,研究了离子转运和代谢调节对凡纳滨对虾(Litopenaeus vanamei)的影响。结果表明,随着PS-NP浓度的升高,鳃组织中离子含量降低,atp酶活性显著降低。PS-NP暴露破坏了鳃组织结构,破坏了离子转运酶的活性,影响了谷胱甘肽的代谢。血清尿素氮、谷氨酸和脯氨酸含量随PS-NP浓度的升高先升高后降低。参与能量代谢的一氧化氮合酶和硫氧还蛋白基因表达降低。尿素氮含量与离子转运模块呈负相关,脯氨酸含量与离子转运模块和基因表达呈正相关。蛋白质组学分析结果显示,PS-NP暴露主要影响氨基酸生物合成和mTOR信号通路。这些结果表明,PS-NP暴露通过抑制离子转运干扰尿素循环和谷胱甘肽代谢,从而对凡纳梅的生理状态产生负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ion transport and metabolic regulation induced by nanoplastic toxicity in gill of Litopenaeus vannamei using proteomics

Ion transport and metabolic regulation induced by nanoplastic toxicity in gill of Litopenaeus vannamei using proteomics
Polystyrene nanoplastic (PS-NP) pollution has become a global environmental problem, and its potential toxicity to aquatic organisms has led to widespread concern. In this study, a 28-day chronic nanoplastic exposure (0, 0.1, 1, 5, and 10 mg L−1) experiment was established to investigate the effects of ion transport and metabolic regulation in Pacific white shrimp Litopenaeus vannamei. The results showed that the ion content in gill tissues decreased and the ATPase activities significantly decreased with the increase in PS-NP concentration. PS-NP exposure destroyed the gill tissue structure, disrupted the activity of ion transport enzymes, and affected the glutathione metabolism. The blood urea nitrogen, glutamate, and proline contents first increased and then decreased with the increase in PS-NP concentration. The expression of nitric oxide synthase and thioredoxin genes involved in energy metabolism decreased. The urea nitrogen content was negatively correlated with the ion transport module, and the proline content was positively correlated with the ion transport module and gene expression. Proteomic analysis results showed that PS-NP exposure mainly affected the amino acid biosynthesis and mTOR signaling pathway. These results suggested that PS-NP exposure negatively affected the physiological state of L. vannamei by interfering with the urea cycle and glutathione metabolism via inhibition of ion transport.
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来源期刊
Environmental Science: Nano
Environmental Science: Nano CHEMISTRY, MULTIDISCIPLINARY-ENVIRONMENTAL SCIENCES
CiteScore
12.20
自引率
5.50%
发文量
290
审稿时长
2.1 months
期刊介绍: Environmental Science: Nano serves as a comprehensive and high-impact peer-reviewed source of information on the design and demonstration of engineered nanomaterials for environment-based applications. It also covers the interactions between engineered, natural, and incidental nanomaterials with biological and environmental systems. This scope includes, but is not limited to, the following topic areas: Novel nanomaterial-based applications for water, air, soil, food, and energy sustainability Nanomaterial interactions with biological systems and nanotoxicology Environmental fate, reactivity, and transformations of nanoscale materials Nanoscale processes in the environment Sustainable nanotechnology including rational nanomaterial design, life cycle assessment, risk/benefit analysis
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