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Bisphenol A in eggs causes development-specific liver molecular reprogramming in two generations of rainbow trout

机译:鸡蛋中的双酚A在两代虹鳟鱼中导致发育特定的肝脏分子重编程

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摘要

Bisphenol A (BPA) is widely used in the manufacture of plastics and epoxy resins and is prevalent in the aquatic environment. BPA disrupts endocrine pathways in fish, but the long-term developmental implications are unknown. We demonstrate that BPA deposition in the eggs of rainbow trout (Oncorhynchus mykiss), an ecologically and economically important species of fish, reprograms liver metabolism in the offspring and alters the developmental growth trajectory in two generations. Specifically, BPA reduces growth during early development, followed by a catch-up growth post-juveniles. More importantly, we observed a developmental shift in the liver transcriptome, including an increased propensity for protein breakdown during early life stages to lipid and cholesterol synthesis post- juveniles. The liver molecular responses corresponded with the transient growth phenotypes observed in the F1 generation, and this was also evident in the F2 generation. Altogether, maternal and/or ancestral embryonic exposure to BPA affects liver metabolism leading to development-distinct effects on growth, underscoring the need for novel risk assessment strategies for this chemical in the aquatic environment. This is particularly applicable to migratory species, such as salmon, where distinct temporal changes in growth and physiology during development are critical for their spawning success.
机译:双酚A(BPA)被广泛用于塑料和环氧树脂的制造,并且在水生环境中普遍存在。 BPA破坏了鱼类的内分泌途径,但其长期发展影响尚不清楚。我们证明了双酚A沉积在虹鳟鱼(Oncorhynchus mykiss)的卵中,虹鳟鱼是一种具有生态和经济意义的重要鱼类,在后代中重新编程肝脏代谢,并在两代中改变了发育的生长轨迹。具体来说,BPA会降低早期发育过程中的生长,然后在幼年期追赶生长。更重要的是,我们观察到肝转录组发生了发展变化,包括生命早期蛋白质分解为幼年后脂质和胆固醇合成的倾向增加。肝分子反应与在F1代中观察到的瞬时生长表型相对应,这在F2代中也很明显。总体而言,母体和/或祖先的胚胎接触BPA会影响肝脏代谢,从而导致发育对生长的影响,从而突出了对这种化学物质在水生环境中的新颖风险评估策略的需求。这尤其适用于迁徙物种,例如鲑鱼,其中在发育过程中生长和生理的明显时间变化对于它们的产卵成功至关重要。

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