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超越行为表型:揭示水生生态神经毒理学的机制基础。

Beyond the behavioural phenotype: Uncovering mechanistic foundations in aquatic eco-neurotoxicology.

机构信息

The Neurotox Laboratory, School of Science, RMIT University, Melbourne, Australia.

Department of Hydrobiology and Protection of Ecosystems, Faculty of Environmental Biology, University of Life Sciences, Lublin, Poland.

出版信息

Sci Total Environ. 2022 Jul 10;829:154584. doi: 10.1016/j.scitotenv.2022.154584. Epub 2022 Mar 16.

Abstract

During the last decade, there has been an increase in awareness of how anthropogenic pollution can alter behavioural traits of diverse aquatic organisms. Apart from understanding profound ecological implications, alterations in neuro-behavioural indices have emerged as sensitive and physiologically integrative endpoints in chemical risk assessment. Accordingly, behavioural ecotoxicology and broader eco-neurotoxicology are becoming increasingly popular fields of research that span a plethora of fundamental laboratory experimentations as well as applied field-based studies. Despite mounting interest in aquatic behavioural ecotoxicology studies, there is, however, a considerable paucity in deciphering the mechanistic foundations underlying behavioural alterations upon exposure to pollutants. The behavioural phenotype is indeed the highest-level integrative neurobiological phenomenon, but at its core lie myriads of intertwined biochemical, cellular, and physiological processes. Therefore, the mechanisms that underlie changes in behavioural phenotypes can stem among others from dysregulation of neurotransmitter pathways, electrical signalling, and cell death of discrete cell populations in the central and peripheral nervous systems. They can, however, also be a result of toxicity to sensory organs and even metabolic dysfunctions. In this critical review, we outline why behavioural phenotyping should be the starting point that leads to actual discovery of fundamental mechanisms underlying actions of neurotoxic and neuromodulating contaminants. We highlight potential applications of the currently existing and emerging neurobiology and neurophysiology analytical strategies that should be embraced and more broadly adopted in behavioural ecotoxicology. Such strategies can provide new mechanistic discoveries instead of only observing the end sum phenotypic effects.

摘要

在过去的十年中,人们越来越意识到人为污染如何改变各种水生生物的行为特征。除了了解深刻的生态影响外,神经行为指标的改变已成为化学风险评估中敏感和生理综合的终点。因此,行为生态毒理学和更广泛的生态神经毒理学正成为越来越受欢迎的研究领域,涵盖了大量基础实验室实验以及应用现场研究。尽管人们对水生行为生态毒理学研究越来越感兴趣,但对于在接触污染物后行为改变的机制基础,仍存在相当大的认识不足。行为表型确实是最高水平的综合神经生物学现象,但它的核心是无数相互交织的生化、细胞和生理过程。因此,行为表型变化的机制可能源于神经递质途径、电信号和中枢及外周神经系统离散细胞群体的细胞死亡失调等,也可能是由于对感觉器官的毒性甚至代谢功能障碍所致。在这篇评论中,我们概述了为什么行为表型应该是导致发现神经毒性和神经调节污染物作用的基本机制的起点。我们强调了目前存在和新兴的神经生物学和神经生理学分析策略的潜在应用,这些策略应该在行为生态毒理学中得到接受和更广泛的采用。这些策略可以提供新的机制发现,而不仅仅是观察最终的表型效应。

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