Grupo de Biología y Toxicología Ambiental, Facultad de Ciencias, Universidad Nacional de Educación a Distancia, UNED. Urbanización Monte Rozas. Avda. Esparta s/n. Ctra. de Las Rozas al Escorial Km. 5, 28232, Las Rozas-Madrid, Spain.
Grupo de Biomedicina en Cuidados Críticos, Facultad de Medicina, Universidad de Valladolid, Av. Ramón y Cajal 7, 47005, Valladolid, Spain.
Environ Sci Pollut Res Int. 2022 Feb;29(7):10210-10221. doi: 10.1007/s11356-021-16339-3. Epub 2021 Sep 13.
Chemical compounds produced by humans are continuously reaching the environment. In this work, we characterised the expression patterns of important endocrine-related genes involved in the ecdysone pathway in the fourth larval instar of the model species Chironomus riparius after exposure to three chemicals: ethinyl oestradiol (EE), nonylphenol (NP) and bis(tributyltin) oxide (TBTO). We used real-time PCR to analyse the gene expression levels of ecdysone receptor (EcR) and ultraspiracle (usp), two genes that encode the dimerising partners of the functional ecdysone receptor; the orphan receptor ERR (oestrogen-related receptor), with an unknown function in invertebrates; and E74, an early response gene induced by ecdysteroids. We estimated the bioaccumulation potential, bioavailability and physicochemical properties of these chemicals, together with a number of other exogenous agents known to interfere with the hormonal system. We also provide a review of previous transcriptional studies showing the effect of all these chemicals on ecdysone cascade genes. This analysis provides useful data for future ecotoxicological studies involving invertebrate species. CAPSULE: Changes in transcriptional activities of EcR, E74, usp and ERR genes after exposure to endocrine-disrupting chemicals would be useful as molecular bioindicators of endocrine disruption in Chironomus riparius.
人类产生的化学物质不断进入环境。在这项工作中,我们研究了模式生物摇蚊第四龄幼虫在暴露于三种化学物质:雌二醇(EE)、壬基酚(NP)和氧化双三丁基锡(TBTO)后,蜕皮激素途径中重要的与内分泌相关的基因的表达模式。我们使用实时 PCR 分析了蜕皮激素受体(EcR)和超螺距(usp)的基因表达水平,这两个基因编码功能性蜕皮激素受体的二聚化伴侣;未知在无脊椎动物中功能的孤儿受体 ERR(雌激素相关受体);以及 E74,一种由蜕皮激素诱导的早期反应基因。我们估计了这些化学物质的生物积累潜力、生物利用度和物理化学性质,以及其他一些已知干扰激素系统的外源物质。我们还回顾了以前的转录研究,这些研究显示了所有这些化学物质对蜕皮激素级联基因的影响。这项分析为未来涉及无脊椎动物物种的生态毒理学研究提供了有用的数据。
暴露于内分泌干扰化学物质后 EcR、E74、usp 和 ERR 基因转录活性的变化可用作摇蚊内分泌干扰的分子生物标志物。