微塑料对斑马鱼行为的影响取决于初始人格状态

IF 4.2 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Nawal Al Jabri, Raeid M.M. Abed, Aziz Al Habsi, Aliya Ansari, Michael J. Barry
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引用次数: 0

摘要

微塑料污染与鱼类的炎症、肠道菌群失调和行为变化有关。鱼类具有明显的个性特征,但很少考虑到个性在行为毒理学中的作用。我们根据四种行为轴对斑马鱼进行了分类:胆量、焦虑、社会性和探索倾向,然后将它们暴露在低浓度或高浓度的两种聚乙烯微塑料(低密度和高密度)中 28 天。然后对它们的行为、抗氧化酶(过氧化氢酶和超氧化物歧化酶)和肠道微生物组进行了测量。微塑料对鱼类的胆量、焦虑和交际能力有直接影响。不过,鱼类保留了最初的行为倾向。接触所有微塑料处理都会降低平均游速,减少静止不动的时间。接触微塑料不会影响抗氧化酶,但会导致肠道微生物组的组成发生显著变化。这项研究表明,环境中实际浓度的微塑料会改变鱼类的行为,但大部分反应差异可以用性格来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The impacts of microplastics on zebrafish behavior depend on initial personality state

Microplastic pollution is associated with inflammation, gut dysbiosis and behavioral changes in fish. Fish have distinct personality traits but the role of personality in behavioral toxicology is rarely considered. We classified zebrafish on four behavioral axes: boldness, anxiety, sociability and exploration tendency then exposed them to low- or high- concentrations of two types of polyethylene microplastics (low- and high-density) for 28 days. Behaviors, antioxidant enzymes (catalase and superoxide dismutase), and gut microbiome were then measured. There were direct effects of microplastics on boldness, anxiety and sociability. However, fish retained their initial behavioral tendencies. Exposure to all microplastic treatments reduced average swimming speed and decreased the time spent motionless. Microplastic exposure did not affect antioxidant enzymes but did cause significant changes in the composition of the gut microbiome. This study demonstrates that environmentally realistic concentrations of microplastics can alter fish behavior, but much of the variance in response can be explained by personality.

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来源期刊
CiteScore
7.00
自引率
4.70%
发文量
185
审稿时长
34 days
期刊介绍: Environmental Toxicology and Pharmacology publishes the results of studies concerning toxic and pharmacological effects of (human and veterinary) drugs and of environmental contaminants in animals and man. Areas of special interest are: molecular mechanisms of toxicity, biotransformation and toxicokinetics (including toxicokinetic modelling), molecular, biochemical and physiological mechanisms explaining differences in sensitivity between species and individuals, the characterisation of pathophysiological models and mechanisms involved in the development of effects and the identification of biological markers that can be used to study exposure and effects in man and animals. In addition to full length papers, short communications, full-length reviews and mini-reviews, Environmental Toxicology and Pharmacology will publish in depth assessments of special problem areas. The latter publications may exceed the length of a full length paper three to fourfold. A basic requirement is that the assessments are made under the auspices of international groups of leading experts in the fields concerned. The information examined may either consist of data that were already published, or of new data that were obtained within the framework of collaborative research programmes. Provision is also made for the acceptance of minireviews on (classes of) compounds, toxicities or mechanisms, debating recent advances in rapidly developing fields that fall within the scope of the journal.
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