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短时间暴露于环境相关浓度苯并[a]芘对食蚊鱼(Pimephales promelas)雌雄鱼肠道微生物区系的差异响应。

Differential responses of gut microbiota of male and female fathead minnow (Pimephales promelas) to a short-term environmentally-relevant, aqueous exposure to benzo[a]pyrene.

机构信息

Toxicology Centre, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

Toxicology Centre, University of Saskatchewan, Saskatoon, Saskatchewan, Canada.

出版信息

Chemosphere. 2020 Aug;252:126461. doi: 10.1016/j.chemosphere.2020.126461. Epub 2020 Mar 12.

Abstract

In addition to aiding in digestion of food and uptake of nutrients, microbiota in guts of vertebrates are responsible for regulating several beneficial functions, including development of an organism and maintaining homeostasis. However, little is known about effects of exposures to chemicals on structure and function of gut microbiota of fishes. To assess effects of exposure to polycyclic aromatic hydrocarbons (PAHs) on gut microbiota, male and female fathead minnows (Pimephales promelas) were exposed to environmentally-relevant concentrations of the legacy PAH benzo[a]pyrene (BaP) in water. Measured concentrations of BaP ranged from 2.3 × 10 to 1.3 μg L. The community of microbiota in the gut were assessed by use of 16S rRNA metagenetics. Exposure to environmentally-relevant aqueous concentrations of BaP did not alter expression levels of mRNA for cyp1a1, a "classic" biomarker of exposure to BaP, but resulted in shifts in relative compositions of gut microbiota in females rather than males. Results presented here illustrate that in addition to effects on more well-studied molecular endpoints, relative compositions of the microbiota in guts of fish can also quickly respond to exposure to chemicals, which can provide additional mechanisms for adverse effects on individuals.

摘要

除了帮助消化食物和吸收营养外,脊椎动物肠道中的微生物群还负责调节多种有益功能,包括生物体的发育和维持体内平衡。然而,人们对化学物质暴露对鱼类肠道微生物群的结构和功能的影响知之甚少。为了评估多环芳烃 (PAHs) 暴露对肠道微生物群的影响,雄性和雌性黑头呆鱼 (Pimephales promelas) 在水中暴露于环境相关浓度的多环芳烃苯并[a]芘 (BaP) 中。测量的 BaP 浓度范围为 2.3×10 至 1.3μg/L。通过 16S rRNA 宏基因组学评估肠道中微生物群的群落。暴露于环境相关的水性 BaP 浓度不会改变 cyp1a1 的 mRNA 表达水平,cyp1a1 是 BaP 暴露的“经典”生物标志物,但会导致雌性而不是雄性肠道微生物群的相对组成发生变化。这里呈现的结果表明,除了对更成熟的分子终点的影响外,鱼类肠道微生物群的相对组成也可以快速响应化学物质的暴露,这为化学物质对个体的不良影响提供了额外的机制。

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