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发育不稳定性与智利本土鱼类,拟脂鲤属的鱼类( Trichomycterus areolatus )的雌激素内分泌干扰有关。

Developmental instability is associated with estrogenic endocrine disruption in the Chilean native fish species, Trichomycterus areolatus.

机构信息

Departamento de Biología, Universidad de La Serena, Raúl Bitrán 1305, La Serena, Chile.

Centro de Estudios Avanzados en Zonas Áridas (CEAZA), Raúl Bitrán 1305, La Serena, Chile.

出版信息

Sci Total Environ. 2020 Apr 20;714:136638. doi: 10.1016/j.scitotenv.2020.136638. Epub 2020 Jan 17.

DOI:10.1016/j.scitotenv.2020.136638
PMID:31982740
Abstract

Endocrine disrupting compounds (EDCs) are widespread contaminants that alter the normal functioning of the endocrine system. While they cause dysfunctions in essential biological processes, it is unclear whether EDCs also impact developmental stability. In the present study, we investigated the occurrence of estrogenic endocrine disrupting compounds in a small watershed of south-central Chile impacted by anthropogenic activities. Then, we assessed their relationship with internal levels of estrogenic active compounds and fluctuating asymmetry (FA), a proxy of developmental stability in organisms with bilateral symmetry, in a native fish species (Trichomycterus areolatus). Yeast estrogenic screen assays were performed to measure estrogenic activity in river sediments and in male fish tissues collected from 17 sites along the Chillán watershed, and geometric morphometrics used to estimate fluctuating asymmetry based on the shapes of 248 fish skulls. Estrogenic activity was detected both in sediments and male fish tissues at concentrations of up to 1005 ng and 83 ng 17β-estradiol equivalent/kg dw, respectively. No significant correlation was found between the two. However, fish tissue estrogenicity, water temperature and dissolved oxygen explained >80% of the FA population variation. By showing a significant relationship between estrogenic activity and FA of T. areolatus, our results indicate that developmental stability can be altered by estrogenic endocrine disruption, and that FA can be a useful indicator of sub-lethal stress in T. areolatus populations.

摘要

内分泌干扰化合物 (EDCs) 是广泛存在的污染物,它们会改变内分泌系统的正常功能。虽然它们会导致重要生物过程的功能障碍,但目前还不清楚 EDC 是否也会影响发育稳定性。在本研究中,我们调查了受到人为活动影响的智利中南部一个小流域中雌激素内分泌干扰化合物的发生情况。然后,我们评估了它们与内源性雌激素活性化合物水平以及双侧对称生物发育稳定性的一个替代指标——波动不对称(FA)之间的关系,研究对象是一种本地鱼类(Trichomycterus areolatus)。我们进行了酵母雌激素筛选试验,以测量河流沉积物和从奇廉流域 17 个地点采集的雄性鱼类组织中的雌激素活性,并使用几何形态测量学根据 248 条鱼的头骨形状来估计波动不对称。在沉积物和雄性鱼类组织中,雌激素活性的检测浓度分别高达 1005ng 和 83ng 17β-雌二醇当量/kg dw。两者之间没有发现显著相关性。然而,鱼类组织的雌激素活性、水温和溶解氧解释了超过 80%的 FA 种群变化。通过显示 T. areolatus 的雌激素活性与 FA 之间存在显著关系,我们的研究结果表明,发育稳定性可能会受到雌激素内分泌干扰的影响,而且 FA 可以作为 T. areolatus 种群亚致死应激的有用指标。

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引用本文的文献

1
Endocrine Disruptor Impacts on Fish From Chile: The Influence of Wastewaters.内分泌干扰物对智利鱼类的影响:废水的影响。
Front Endocrinol (Lausanne). 2021 Mar 25;12:611281. doi: 10.3389/fendo.2021.611281. eCollection 2021.