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化学污染对主要生命转折的影响:对两栖动物氧化应激的荟萃分析。

The impact of chemical pollution across major life transitions: a meta-analysis on oxidative stress in amphibians.

机构信息

School of Biodiversity, One Health and Veterinary Medicine, University of Glasgow , Glasgow G12 8QQ, UK.

Doñana Biological Station (CSIC) , Seville 41092, Spain.

出版信息

Proc Biol Sci. 2024 Aug;291(2029):20241536. doi: 10.1098/rspb.2024.1536. Epub 2024 Aug 28.

DOI:10.1098/rspb.2024.1536
PMID:39191283
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11349447/
Abstract

Among human actions threatening biodiversity, the release of anthropogenic chemical pollutants which have become ubiquitous in the environment, is a major concern. Chemical pollution can induce damage to macromolecules by causing the overproduction of reactive oxygen species, affecting the redox balance of animals. In species undergoing metamorphosis (i.e. the vast majority of the extant animal species), antioxidant responses to chemical pollution may differ between pre- and post-metamorphic stages. Here, we meta-analysed (= 104 studies, 2283 estimates) the impact of chemical pollution on redox balance across the three major amphibian life stages (embryo, tadpole, adult). Before metamorphosis, embryos did not experience any redox change while tadpoles activate their antioxidant pathways and do not show increased oxidative damage from pollutants. Tadpoles may have evolved stronger defences against pollutants to reach post-metamorphic life stages. In contrast, post-metamorphic individuals show only weak antioxidant responses and marked oxidative damage in lipids. The type of pollutant (i.e. organic versus inorganic) has contrasting effects across amphibian life stages. Our findings show a divergent evolution of the redox balance in response to pollutants across life transitions of metamorphosing amphibians, most probably a consequence of differences in the ecological and developmental processes of each life stage.

摘要

在威胁生物多样性的人类活动中,人为化学污染物的排放是一个主要关注点,这些污染物在环境中无处不在。化学污染会通过产生过多的活性氧物种导致大分子损伤,从而影响动物的氧化还原平衡。在经历变态(即绝大多数现存的动物物种)的物种中,化学污染对抗氧化反应的影响可能在变态前和变态后阶段有所不同。在这里,我们对(= 104 项研究,2283 项估计)化学污染对三种主要两栖动物生命阶段(胚胎、蝌蚪和成体)的氧化还原平衡的影响进行了荟萃分析。在变态前,胚胎没有经历任何氧化还原变化,而蝌蚪激活了它们的抗氧化途径,并且不会因污染物而增加氧化损伤。蝌蚪可能已经进化出更强的防御能力来应对污染物,以达到变态后的生命阶段。相比之下,变态后的个体只显示出较弱的抗氧化反应和脂质中明显的氧化损伤。污染物的类型(即有机与无机)对两栖动物的生命阶段有相反的影响。我们的发现表明,在经历变态的两栖动物的生命过渡中,氧化还原平衡对污染物的反应呈现出不同的进化,这很可能是每个生命阶段的生态和发育过程的差异造成的。

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