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评估自由生活蝙蝠中农药暴露的非破坏性方法。

Non-destructive methods to assess pesticide exposure in free-living bats.

机构信息

Department of Ecology and Evolutionary Biology, University of Toronto, Toronto, Ontario, Canada; Department of Biological Sciences, University of Toronto Scarborough, Toronto, Ontario, Canada.

Department of Biological Sciences, University of Toronto Scarborough, Toronto, Ontario, Canada.

出版信息

Sci Total Environ. 2023 Apr 20;870:162011. doi: 10.1016/j.scitotenv.2023.162011. Epub 2023 Feb 1.

Abstract

Bat populations are dwindling worldwide due to anthropogenic activities like agriculture, however the role that pesticide exposure plays on these declines is unclear. To address these research gaps, we first need to develop reliable methods to detect and monitor exposure to environmental pollutants and its effects on free-living bats. The use of biomarkers is a sensitive and informative tool to study sublethal effects in wildlife, however it requires laboratory validation and integrative approaches to be applicable to free-living species. In this study, we propose a set of non-destructive biomarkers to evaluate pesticide exposure in free-ranging bats and validated their suitability with dose-exposure experiments in captivity. We selected three biomarkers that have been widely used in vertebrate ecotoxicology and that combined represent sensitive, specific, and ecologically relevant responses to pollutants: DNA damage, AChE activity, and leukocyte profiles. We used two insectivorous bat species as model species Eptesicus fuscus (laboratory) and Pteronotus mexicanus (field). We found that micronuclei frequency (genotoxicity) and AChE activity (exposure and neurotoxicity) were robust indicators of toxicant exposure. The validity of this set of endpoints was supported by their consistent performance in laboratory and field experiments as well as by the significant correlation among them. Leukocyte profile (systemic stress) results were not consistent between laboratory and field studies, suggesting further evaluation of its suitability is needed. Integrative approaches, like the one we used here, maximize the insights about toxicant effects by combining the information of single biomarkers into more meaningful inferences, which can be applied to environmental risk assessments in wildlife. Furthermore, the use of non-destructive, cost-effective biomarkers is imperative when assessing toxicant exposure and effects in vulnerable wildlife and it should be a priority in the field of wildlife toxicology.

摘要

由于农业等人为活动,蝙蝠在全球范围内的数量正在减少,但目前尚不清楚农药暴露对这些减少的影响。为了弥补这些研究空白,我们首先需要开发可靠的方法来检测和监测环境污染物的暴露及其对自由生活蝙蝠的影响。生物标志物的使用是研究野生动物亚致死效应的一种敏感且信息丰富的工具,但是需要实验室验证和综合方法才能适用于自由生活的物种。在这项研究中,我们提出了一组非破坏性的生物标志物来评估自由生活蝙蝠的农药暴露情况,并通过圈养中的剂量暴露实验验证了它们的适用性。我们选择了三种在脊椎动物生态毒理学中广泛使用的生物标志物,它们结合起来代表了对污染物敏感、特异和具有生态相关性的反应:DNA 损伤、AChE 活性和白细胞谱。我们使用两种食虫蝙蝠物种作为模型物种,即 Eptesicus fuscus(实验室)和 Pteronotus mexicanus(野外)。我们发现微核频率(遗传毒性)和 AChE 活性(暴露和神经毒性)是毒物暴露的可靠指标。这些终点的有效性得到了实验室和野外实验的一致表现以及它们之间的显著相关性的支持。白细胞谱(全身应激)的结果在实验室和野外研究之间并不一致,这表明需要进一步评估其适用性。综合方法,如我们在这里使用的方法,可以通过将单个生物标志物的信息组合成更有意义的推断,从而最大限度地了解毒物的影响,可用于野生动物的环境风险评估。此外,在评估脆弱野生动物的毒物暴露和效应时,使用非破坏性、具有成本效益的生物标志物是必不可少的,这应该是野生动物毒理学领域的优先事项。

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