Oak Ridge Institute for Science and Education, Oak Ridge, TN, USA.
U.S. EPA/ORD/NHEERL/RCU, RTP, NC, USA.
Sci Rep. 2019 May 8;9(1):7064. doi: 10.1038/s41598-019-43346-9.
Estrogenic chemicals are widespread environmental contaminants associated with diverse health and ecological effects. During early vertebrate development, estrogen receptor signaling is critical for many different physiologic responses, including nervous system function. Recently, host-associated microbiota have been shown to influence neurodevelopment. Here, we hypothesized that microbiota may biotransform exogenous 17-βestradiol (E2) and modify E2 effects on swimming behavior. Colonized zebrafish were continuously exposed to non-teratogenic E2 concentrations from 1 to 10 days post-fertilization (dpf). Changes in microbial composition and predicted metagenomic function were evaluated. Locomotor activity was assessed in colonized and axenic (microbe-free) zebrafish exposed to E2 using a standard light/dark behavioral assay. Zebrafish tissue was collected for chemistry analyses. While E2 exposure did not alter microbial composition or putative function, colonized E2-exposed larvae showed reduced locomotor activity in the light, in contrast to axenic E2-exposed larvae, which exhibited normal behavior. Measured E2 concentrations were significantly higher in axenic relative to colonized zebrafish. Integrated peak area for putative sulfonated and glucuronidated E2 metabolites showed a similar trend. These data demonstrate that E2 locomotor effects in the light phase are dependent on the presence of microbiota and suggest that microbiota influence chemical E2 toxicokinetics. More broadly, this work supports the concept that microbial colonization status may influence chemical toxicity.
雌激素类化学物质是广泛存在的环境污染物,与多种健康和生态影响有关。在早期脊椎动物发育过程中,雌激素受体信号对于许多不同的生理反应至关重要,包括神经系统功能。最近,宿主相关的微生物群已被证明会影响神经发育。在这里,我们假设微生物群可能会将外源性 17-β雌二醇(E2)生物转化,并改变 E2 对游泳行为的影响。从受精后 1 到 10 天(dpf),用非致畸 E2 浓度连续暴露于已定植的斑马鱼。评估微生物组成和预测的宏基因组功能的变化。用标准的明暗行为测定法评估暴露于 E2 的已定植和无菌(无微生物)斑马鱼的运动活性。收集斑马鱼组织进行化学分析。尽管 E2 暴露没有改变微生物组成或假定功能,但与暴露于 E2 的无菌幼虫相比,暴露于 E2 的已定植幼虫在光线下的运动活性降低,而暴露于 E2 的无菌幼虫表现出正常行为。在无菌相对已定植的斑马鱼中,测得的 E2 浓度明显更高。推测的磺化和葡萄糖醛酸化 E2 代谢物的积分峰面积也显示出类似的趋势。这些数据表明,E2 在光相中的运动效应依赖于微生物群的存在,并表明微生物群影响化学 E2 毒代动力学。更广泛地说,这项工作支持这样的概念,即微生物定植状态可能会影响化学毒性。